NASDAQ: NCIQ

Hashdex Nasdaq CME Crypto Index ETF

CIK 0002031069 · Financials · SIC 6221 · Commodity Contracts Brokers & Dealers

Small by assets Assets $98M as of Jul 27, 2026

Hashdex Nasdaq CME Crypto Index ETF (f/k/a Hashdex Nasdaq Crypto Index US ETF, prior to January 20, 2026) (the “Trust”) is a Delaware statutory trust organized on July 12, 2024. The Trust operates pursuant to the Fifth Amended and Restated Trust Agreement, dated January 20, 2026. The Trust issues… About this business →

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8-K Filed Jul 24, 2026 · Period ending Jul 22, 2026

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424B3 Filed Jul 24, 2026

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424B3 Filed May 15, 2026

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10-Q Filed May 12, 2026 · Period ending Mar 31, 2026

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10-K Filed Mar 25, 2026 · Period ending Dec 31, 2025

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424B3 Filed Mar 16, 2026

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8-K Filed Mar 16, 2026 · Period ending Mar 13, 2026

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8-K Filed Mar 11, 2026 · Period ending Mar 5, 2026

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10-Q Filed Nov 10, 2025 · Period ending Sep 30, 2025

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Latest financial statements

From 10-Q filed May 12, 2026 (period ending Mar 31, 2026). SEC XBRL (companyfacts) — not generated by the model.

SEC XBRL

Consolidated Statements of Operations (Unaudited)

Description Q1 ended Mar 31, 2026 Q3 ended Sep 30, 2025
Operating expenses:
Total operating expenses 0.1 0.2
Net income (29.5) 16.5

Consolidated Balance Sheets (Unaudited)

Description Mar 31, 2026 Dec 31, 2025
Current assets:
Cash and equivalents 0.1 0.1
TOTAL ASSETS 98.1 121.3
Current liabilities:
Total liabilities 0.02 0.03
Shareholders' equity:
Capital in excess of stated value (129.6) (123.3)
Retained earnings (deficit) 31.5 2.0

Amounts in millions USD; EPS as reported. Line labels are presentation-friendly mappings of filer XBRL tags — not a re-audit of the full statements. Use EDGAR for interactive notes and detail. Interactive statements & notes on EDGAR ↗

About Hashdex Nasdaq CME Crypto Index ETF

Source: Item 1 (Business) from the 10-K filed March 25, 2026. Description as filed by the company with the SEC.

Item 1. Business

Overview

Hashdex Nasdaq CME Crypto Index ETF (f/k/a Hashdex
Nasdaq Crypto Index US ETF, prior to January 20, 2026) (the “Trust”) is a Delaware statutory trust organized on July 12, 2024.
The Trust operates pursuant to the Fifth Amended and Restated Trust Agreement, dated January 20, 2026. The Trust issues shares of beneficial
interest (“Shares”), representing fractional undivided beneficial interests in the Trust. The Shares trade on The Nasdaq Stock
Market, LLC (the “Exchange”) under the symbol “NCIQ”. The principal office address of the Trust is 19 West 44th
Street, Suite 200, New York, NY 10036 and the Trust’s telephone number is 800-927-9800.

The Trust is designed to provide investors with price
exposure to certain crypto assets. Prior to January 20, 2026, such crypto assets were those included in the Nasdaq Crypto US Settlement
Price™ Index (the “NCIUSS” or the “Former Index”). Effective January 20, 2026 (the “Transition
Date”), the reference index changed to the Nasdaq CME Crypto Settlement Price Index™ (the “NCIS” or the “New
Index”), as detailed below. References to the “Index” as used herein refer to the Former Index prior to the Transition
Date and the New Index after the Transition Date. The NCIUSS represents the daily closing value of the Nasdaq Crypto US™ Index (the
“NCIUS”), and the NCIS represents the daily closing value of the Nasdaq CME Crypto™ Index (the “NCI”). The
NCIUSS and the NCIS apply substantially identical methodologies, reflect the same constituents, and are both designed to measure the performance
of a material portion of the overall crypto asset market.

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The Trust’s investment objective is to align
the daily changes in the net asset value (“NAV”) of the Shares with the daily price changes of the Index, minus operational
expenses and liabilities, by investing in the digital assets that are constituents of the Index or may be added as constituents of the
Index in the future (the “Index Constituents”). Because the Trust’s investment objective is to track the price of the
Index, changes in the price of the Shares may vary from changes in the individual Index Constituents’ prices.

The sponsor of the Trust is Hashdex Asset Management
Ltd. (the “Sponsor”). CSC Delaware Trust Company is the trustee of the Trust (“Trustee”). U.S. Bancorp Fund Services,
LLC (d/b/a U.S. Bank Global Fund Services) (the “Administrator” or the “Transfer Agent”) provides administrative
services to the Trust. The Administrator also assists the Trust and the Sponsor with certain functions and duties relating to accounting
and as the Trust’s transfer agent. Paralel Distributors LLC is the marketing agent of the Trust (the “Marketing Agent”).
Coinbase Custody Trust Company, LLC (“Coinbase Custody”), BitGo Trust Company, Inc. (“BitGo”) and Fidelity Digital
Asset Services, LLC (“Fidelity”) are the custodians for the Trust’s crypto asset holdings (the “Crypto Custodians”).
U.S. Bank National Association is the custodian for the Trust’s cash and cash equivalent holdings (the “Cash Custodian”
and together with the Crypto Custodians, the “Custodians”).

The Trust is an exchange-traded fund. The Trust does
not purchase or sell digital assets other than in connection with the creation and redemption of blocks of 10,000 Shares called “Baskets”
to certain broker-dealers that have entered into an agreement with the Sponsor (“Authorized Participants”), or to pay certain
expenses.

The Trust is not an investment company registered
under the Investment Company Act of 1940, as amended, and the Sponsor is not registered with the U.S. Securities and Exchange Commission
(the “SEC”) as an investment adviser and is not subject to regulation by the SEC as such in connection with its activities
with respect to the Trust. The Trust is not a commodity pool under the Commodity Exchange Act of 1936, as amended (the
“CEA”), and the Sponsor is not subject to regulation by the Commodity Futures Trading Commission (the “CFTC”)
as a commodity pool operator or a commodity trading advisor with respect to the Trust.

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Investment Objective and Strategy

The Shares are designed to provide investors with
a straightforward means of obtaining price exposure to the Index Constituents, as opposed to direct acquisition, holding, and trading
of crypto assets on a peer-to-peer or other basis or via a crypto asset platform. The Shares are intended to reduce the complexities and
operational burdens associated with direct investment in these crypto assets, while maintaining an intrinsic value that reflects the investment
exposure to the assets held by the Trust, less the Trust’s expenses and liabilities. This structure offers investors an alternative
method of accessing the crypto asset markets through the public securities market.

The Sponsor will employ a passive investment strategy
intended to track the changes in the Index, regardless of its direction, meaning that the Sponsor will not attempt to outperform the Index.
This strategy aims to allow investors to buy and sell Shares to hedge against losses in Index-related transactions or to gain price exposure
to the Index. Consistent with its investment objective, the Trust will not use its investments to enhance leverage or seek performance
that is the multiple or inverse multiple of the Index.

The Trust will gain exposure to the prices of the
Index Constituents by purchasing these crypto assets and will maintain cash balances as necessary to cover currently due Trust-payable
expenses. Absent any Share redemption orders or currently due Trust-payable expenses, the Trust’s portfolio will consist solely
of Index Constituents. The Trust will not invest in any crypto assets other than the Index Constituents. The Trust will not invest in
tokenized assets, or stablecoins.

The Trust, Sponsor, Custodians, or any other person
associated with the Trust may, directly or indirectly, engage in any actions that result in the applicable portion of the Trust’s
crypto assets becoming subject to Index Constituents networks’ proof-of-stake validation.

Overview of the Index Constituents’ Industry

As of December 31, 2025, the Index Constituents were bitcoin (BTC), ether
(ETH), XRP, solana (SOL), cardano (ADA), chainlink (LINK) and stellar (XLM). Each Index Constituent operates on its respective network.
The Index Constituents’ networks are decentralized peer-to-peer computer systems that rely on public key cryptography for security,
and their values are primarily influenced by market supply and demand. The Sponsor discloses the current Index Constituents and their
weighting on the Trust’s website on an ongoing basis.

Bitcoin

In this section, Bitcoin with an upper case “B”
is used to describe the Bitcoin System as a whole that is involved in maintaining the ledger of bitcoin ownership and facilitating the
transfer of bitcoin among parties, as well as its components, such as the Bitcoin Network, the Bitcoin Blockchain, the Bitcoin Protocol
and Bitcoin Clients (together, the “Bitcoin System”). When referring to the crypto asset within the bitcoin network, bitcoin
is written with a lower case “b” (except, of course, at the beginning of sentences or paragraph sections). For clarification
purposes, bitcoin is written with a lower case “b” when used to describe the crypto asset native to the Bitcoin System, whose
ownership registry and full transfer history is made by the Bitcoin System.

Bitcoin is a crypto asset that serves as the unit
of account on an open-source, permissionless, decentralized, peer-to-peer computer network (known as the Bitcoin Network). Every
bitcoin is fractionable to the eighth decimal place, with its smallest fraction equal to 0.00000001 bitcoin and called a “Satoshi”.
It may be used to pay for goods and services, stored for future use, or converted to government-backed currency such as the U.S.
dollar. As of the date of this annual report on Form 10-K (this “Report”), the adoption of bitcoin for these purposes has
been limited. The value of bitcoin is not backed by any government, corporation, or other identified body.

Bitcoin Blockchain and Consensus Mechanism

Transactions in bitcoin are broadcasted over the Bitcoin
Network and registered in bundles called blocks, which are set to occur on average every 10 minutes and collectively track the full transaction
history and ownership of bitcoins in circulation. Every block is cryptographically tied to its predecessor, creating a chain of blocks
called the “Bitcoin Blockchain”. Blocks are identified by a block height as if they were progressively piled up starting from
a height of zero. The first block of the Bitcoin Blockchain is known as the Genesis block, assigned a height of 0 (zero), and was
created on January 3, 2009.

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Whilst in traditional financial ledgers, a central
authority is responsible for updating users’ balances and preventing the same balance from being spent twice, the Bitcoin System
introduces a cost for network participants to add new blocks of transactions to the Bitcoin Blockchain. This consists of creating a proof-of-work by
solving a highly costly cryptographic problem by trial and error and broadcasting the obtained solution to other network participants
for verification. A key feature of proof-of-work is its asymmetry: the proof generator needs to expend large amounts of computational
power to generate it, whereas others can easily verify that the proof is valid at a negligible cost.

The solution to the proof-of-work problem creates
a cryptographic hash that sets a unique identifier for every block and includes an imprint of all the transactions included in the block
as well as the identifier of the block’s immediate predecessor. This generates a strong cryptographic tie among the blocks in the
Bitcoin Blockchain and implies that rebuilding the transaction history from a height smaller than or equal to the current one would demand
regenerating all the cumulative proof-of-work from that point until the current block. Given the necessary computational cost, the
bigger the pile of blocks stacked above a specific block, the smaller the likelihood for the information included in it to be changed,
effectively making it immutable after enough proof-of-work is generated on top of it. At any height, if two diverging versions of
the Bitcoin Blockchain exist, a bifurcation referred to as a blockchain fork, the consensual version of the Bitcoin Blockchain is defined
as the chain with the largest cumulative proof-of-work, establishing Bitcoin’s so-called fork choice rule. These rules establish
a mechanism for the Bitcoin Blockchain to be appended over time and for the Bitcoin Network to reach consensus on bitcoin ownership and
transaction history. Therefore, proof-of-work is generally referred to as the consensus mechanism of the Bitcoin System.

The built-in incentive element of the Bitcoin
System is bitcoin, which is issued over time as a subsidy that rewards network participants responsible for generating proof-of-work and,
thus, adding new blocks to the Bitcoin Blockchain. Since they invest in computational equipment and expend electricity in exchange for
newly-issued coins, there exists a clear similarity between this activity and the mining of precious metals such as gold or silver.

The creation of proof-of-work is thus popularly
referred to as bitcoin mining, and network participants engaging in the activity are called bitcoin miners. Users of the Bitcoin Network
might also pay transaction fees in bitcoin to gain priority over others in having their transactions included in a new block. The fees
paid by all transactions in a mined block are reverted to the successful miner alongside the mining subsidy.

To make sure that the creation of blocks and thus
the issuance of new bitcoin occur on average every 10 minutes, the Bitcoin System has a built-in difficulty adjustment that tunes
the cost of generating a valid proof-of-work every interval of 2,016 blocks — approximately every two weeks — starting
from the Genesis block. If some miners get more specialized and are able to mine blocks faster than 10 minutes on average, the difficulty
is increased when the next cycle of 2,016 blocks starts. On the other hand, if some miners have to shut down operations and blocks start
being appended to the blockchain with an average interval exceeding 10 minutes, difficulty is decreased as of the beginning of the next
cycle of 2,016 blocks. The computational power of a miner is measured by its capacity to compute cryptographic hashes in the attempt to
generate a valid proof-of-work. The collective computational power of the Bitcoin Network is known as the network’s hash rate.

Bitcoin Supply

The value of bitcoin depends on its supply (which
is limited), and demand for bitcoin in the markets for exchange that have been organized to facilitate the trading of bitcoin. The supply
of bitcoin follows a predefined issuance schedule since Bitcoin’s conception. In every multiple of 210,000 blocks following height
0 (210,000, 420,000, 630,000, etc.), the issuance of bitcoin per block is reduced in half. These events are referred to as “halvings”.
Bitcoin’s mining subsidy started at 50 bitcoin per mined block and remained constant between heights 0 and 209,999. The first halving
took place on November 28, 2012 at height 210,000, dropping the mining subsidy to 25 bitcoin until height 419,999. The second halving
occurred on July 9, 2016 at height 420,000, setting the subsidy per block to 12.5 bitcoin until height 629,999. The third halving
took place on May 11, 2020 at height 630,000, setting the subsidy per block to 6.25 bitcoin until height 839,999. The most recent
halving happened on April 20, 2024 at height 840,000, setting the current subsidy per block to 3.125 bitcoin until height 1,049,999.

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By design, the supply of bitcoin is intentionally
limited to 21 million units, making bitcoin a disinflationary asset, that is, with a rate of supply growth that decreases over time
until reaching zero when the last satoshi is issued. The maximum cap and the disinflationary nature of bitcoin makes it a potential candidate
for digital store of value, an investment thesis that is still gaining traction among investors worldwide. As of the date of this Annual
Report, there are approximately 19.75 million bitcoins in circulation.

Bitcoin Network, Protocol, Clients and Network
Upgrades

Bitcoin is maintained on the decentralized, open source,
peer-to-peer computer network, the Bitcoin Network. No single entity owns or operates the Bitcoin Network. The Bitcoin Network is
accessed through software and governs bitcoin’s creation and movement. The source code for the Bitcoin Network, often referred to
as the “Bitcoin Protocol”, is open-source, and anyone can contribute to its development.

Proof-of-work, the fork choice rule, the difficulty
adjustment and the supply schedule of bitcoin comprise the Bitcoin Protocol, the full set rules that users of the Bitcoin System must
agree on in order to participate in the Bitcoin Network. Implementations of the Bitcoin Protocol are called “Bitcoin Clients”.
These are open-source codes that can be maintained by anyone and used by any individual wishing to join the Bitcoin Network. Every
computer running an instance of a Bitcoin Client is called a node.

The infrastructure of the Bitcoin Network is collectively
maintained by its participants, which include miners, developers, and users. Miners register transactions and provide security to the
Bitcoin Network. Developers maintain and contribute updates to the Bitcoin Clients. Users access the Bitcoin Network either running their
own node or communicating with the node run by a third-party server. Anyone can be a user, developer, or miner, but not all Bitcoin
Network participants need to run a node.

Bitcoin is “stored” on a digital transaction
ledger commonly known as a “blockchain.” A blockchain is a distributed database that is continuously updated and reconciled
among certain users and is protected by cryptography. The bitcoin blockchain contains a complete record and history for each bitcoin transaction.

New bitcoins are created through a process called
“mining.” Miners use specialized computer software and hardware to solve a highly complex mathematical problem presented by
the Bitcoin Protocol. The first miner to successfully solve the problem is permitted to add a block of transactions to the bitcoin blockchain.
The new block is then confirmed through acceptance by a majority of users who maintain versions of the blockchain on their individual
computers. Miners that successfully add a block to the bitcoin blockchain are automatically rewarded with a fixed amount of bitcoin for
their effort plus any transaction fees paid by transferors whose transactions are recorded in the block. This reward system is how new
bitcoin enter circulation and is the mechanism by which versions of the blockchain held by users on a decentralized network are kept in
consensus.

The Bitcoin Protocol is thus an open-source project
with no official company or group in control, and anyone can review the underlying code for its clients. There are, however, a number
of individual developers that regularly contribute to a specific Bitcoin Client known as the “bitcoin core” (“Bitcoin
Core”). Developers of the Bitcoin Core loosely oversee the development of the source code. There are many other compatible versions
of the Bitcoin Protocol, but Bitcoin Core is the most widely adopted and currently provides the de facto standard for the Bitcoin Protocol.
Bitcoin Core developers are able to access, and can alter, the client’s source code and, as a result, they are responsible for quasi-official releases
of updates and other changes to the Bitcoin Core. Upgrade proposals to the Bitcoin protocol can be created by any individual as a Bitcoin
Improvement Proposal (“BIP”).

However, because Bitcoin has no central authority,
the release of updates to the Bitcoin Core or other Bitcoin Clients by their developers does not guarantee that the updates will be automatically
adopted by the other network participants. Users and miners must accept any changes made to the source code by downloading the proposed
modification and that modification is effective only with respect to those Bitcoin users and miners who choose to download it and run.
As a practical matter, a modification to the source code becomes part of the Bitcoin Network only if it is accepted by individuals that
collectively form a majority of the Bitcoin Network. If a modification is accepted by only a small percentage of users and miners, a division
will occur such that one network will run the pre-modification source code and the other network will run the modified source code.
Such a division is known as a “hard fork.” To avoid network splits, the Bitcoin community chooses to implement BIPs via soft
forks, which are backward-compatible updates and thus optional in nature, meaning multiple versions of the same Bitcoin Client can
coexist in the Bitcoin Network.

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Development of Bitcoin Clients has increasingly focused
on amendments to the Bitcoin Protocol to enhance speed and scalability. For example, in August 2017, a BIP known as “segregated
witness” was adopted in a Bitcoin soft fork. Among other things, it enables so-called second layer solutions, such as the “Lightning
Network”, or payment channels, which could potentially allow greater speed and a greater number of transactions that the Bitcoin
Network can process in a given time interval (i.e., transaction throughput). The “Lightning Network” is an open-source decentralized
network that enables the instant off-blockchain transfer of bitcoin without requiring a trusted third party. The Lightning Network
uses bidirectional payment channels, which work as follows: an on-blockchain transaction is required to open a channel, which can
later be closed through another on-blockchain transaction. Once a channel is open, value can be transferred instantly between counterparties
engaging in bitcoin transactions without such transactions being broadcasted to the Bitcoin Network. This enables increased transaction
throughput and reduces the computational burden on the Bitcoin Network. The Lightning Network is currently a subject of ongoing research
and development and does not yet have material adoption as of August 2024, with approximately 5,200 bitcoins in total liquidity deposited
in its payment channels.

Other uses of segregated witness include smart contracts
(which are programs that automatically execute on a blockchain) and distributed registers built into, built atop, or pegged alongside
the Bitcoin Blockchain. For example, one white paper published by the blockchain technology company Blockstream Corporation Inc. calls
for the use of “pegged sidechains” to develop programming environments built within blockchain ledgers that can interact with
and rely on the security of the Bitcoin Network and blockchain while remaining independent thereof. Applications of this concept include
open-source projects such as RSK (Rootstock), which seeks to create novel open-source smart contract platforms built on the
Bitcoin Blockchain to allow automated, condition-based payments with increased speed and scalability.

Such research and development projects may utilize
bitcoin as tokens for the facilitation of their non-financial uses, thereby potentially increasing demand for bitcoin and the utility
of the Bitcoin Network as a whole. Conversely, to the extent that such projects operate on the Bitcoin Blockchain, they may increase the
data flow on the Bitcoin Network and could either “bloat” the size of the blockchain or result in slower confirmation times.
At this time, such projects remain in early stages and have not been materially integrated into the blockchain or Bitcoin Network.

The latest Bitcoin soft fork known as “Taproot”
was activated in November 2021, introducing a new scheme for digital signatures, enhancing the privacy of more complex Bitcoin scripts
and optimizing block space usage for multi-signature transactions. Taproot has become more prominent since late 2022 with the launch
of Bitcoin inscriptions, which uses Taproot functionality to assign pieces of information to distinct satoshis. Also, Taproot is being
used in the implementation of Taproot Assets, a novel programmability layer built on top of Bitcoin that allows users to create other
crypto assets on the Bitcoin Blockchain, while using them at fast speeds and low costs over the Lightning Network. Similar to the adoption
of the Lightning Network, inscriptions and Taproot Assets are still experimental technologies and might be subject to significant risks.

Bitcoin Wallets and Transactions

Users of the Bitcoin Network must either run a Bitcoin
Client or use a Bitcoin wallet. To initiate a Bitcoin transaction, users generate one or more unique pairs of private and public keys,
the latter being used to receive funds, and the former to authenticate transactions and send bitcoin. These pairs can be hierarchically
derived from a single set of words known as a seed phrase. As their names suggest, public keys can be safely shared with anyone in the
network, whereas private keys should be kept secret. This is analogous to the use of a bank account, with a public key similar to the
bank identifier and branch number, and the private key the analogue to the account’s transaction password.

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A private-public key pair is generated using
asymmetric cryptographic, meaning that deriving a public key from its corresponding private key is easy, whereas guessing a private key
from a known public key is virtually impossible. The generation of the pair and the signing of transactions is securely carried out using
a device disconnected from the internet, maintaining the secrecy of the private key and the custody of bitcoins in a so-called cold
wallet. If a private key is at least once exposed to the internet, it turns the corresponding wallet into a so-called hot wallet,
exposing the user to the risk of theft of funds by a malicious actor that might gain access to the device during the time of internet
exposure. Therefore, security and ownership of bitcoins rely heavily on the proper management of private keys, as these keys are the only
way to authorize transactions. This property guarantees the possibility of secure custody of bitcoins without counterparty risk and the
ability for a user to be the only network participant knowing the private key to its wallet. On the other hand, losing a private key means
losing access to the associated funds permanently, similar to a bearer asset like cash, and exposing it to the internet creates the risk
of a malicious actor becoming able to drain funds from the wallet.

Bitcoin Markets

In the Bitcoin market, participants range from individual
end-users who utilize bitcoin for peer-to-peer transactions, to merchants who accept bitcoin as payment for goods and services.
Despite its potential, bitcoin has not yet achieved widespread adoption as a mainstream payment method. Investors also represent a significant
portion of market participants, purchasing bitcoin as a speculative asset or as part of a diversified investment portfolio. These transactions
occur both on bitcoin spot markets and over-the-counter (“OTC”) markets, with the former being more accessible to retail
investors and the latter catering to institutional entities handling large volumes of bitcoin.

In addition to using bitcoin to purchase goods and
services, investors may purchase and sell bitcoin to speculate as to the value of bitcoin in the bitcoin market, or as a long-term investment
to diversify their portfolio. The value of bitcoin within the market is determined, in part, by the supply of and demand for bitcoin in
the global bitcoin market, market expectations for the adoption of bitcoin as a store of value, the number of merchants that accept bitcoin
as a form of payment, and the volume of peer-to-peer transactions, among other factors.

Bitcoin spot markets typically permit investors to
open accounts with the market and then purchase and sell bitcoin via websites or through mobile applications on a prefunded basis. Prices
for trades on bitcoin spot markets are typically reported publicly. An investor opening a trading account must deposit an accepted government-issued currency
into their account with the spot market, or a previously acquired crypto asset, before they can purchase or sell assets on the spot market.
The process of establishing an account with a bitcoin market and trading bitcoin is different from, and should not be confused with, the
process of users sending bitcoin from one bitcoin address to another bitcoin address on the Bitcoin Blockchain. This latter process is
an activity that occurs on the Bitcoin Network, while the former is an activity that occurs entirely within the order book operated by
the spot market. The spot market typically records the investor’s ownership of bitcoin in its internal books and records, rather
than on the Bitcoin Blockchain. The spot market ordinarily does not transfer bitcoin to the investor on the Bitcoin Blockchain unless
the investor makes a request to the exchange to withdraw the bitcoin in his or her exchange account to an off-exchange bitcoin wallet.

In addition, bitcoin futures and options trading occur
on exchanges in the U.S. regulated by the CFTC. The market for CFTC-regulated trading of bitcoin derivatives has developed substantially.
Data aggregated by The Block shows that, in August 2024, total regulated bitcoin futures had $158.4 billion in aggregate notional
trading volume on the Chicago Mercantile Exchange (“CME”), up 279% in comparison to $41.8 billion in August 2023. Furthermore,
average open interest in August 2024 was equal to $8.9 billion, up 305% in comparison to $2.2 billion in the same month one
year prior. As of September 2024, the bitcoin market capitalization had reached approximately $1.18 trillion and represented approximately
56% of the entire crypto asset market.

Although bitcoin was the first crypto asset, in
the ensuing years, the number of crypto assets, market participants and companies in the space has increased dramatically. In
addition to bitcoin, other well-known crypto assets include ether, solana, bitcoin cash, and litecoin. The category and
protocols are still being defined and evolving. Bitcoin has generally exhibited high price volatility relative to more traditional
asset classes. One volatility measure, standard deviation, is based on the variability of historical price returns. A higher
standard deviation indicates a wider dispersion of past price returns and thus greater historical volatility.

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Ethereum

In this section, Ethereum with an uppercase “E”
denotes the entire system responsible for maintaining the ledger of ether ownership and enabling the transfer of ether among parties,
as well as the components of the Ethereum system such as the Ethereum Network, the Ethereum Blockchain, the Ethereum Protocol and the
Ethereum Clients (together, the “Ethereum System”). When referring to the crypto asset native to the Ethereum Network, whose
ownership registry and full transfer history is made by the latter, ether is written with a lowercase “e” (except at the beginning
of sentences or paragraph sections).

Ethereum is a permissionless, decentralized and peer-to-peer computer
network of nodes that enables developers to build and deploy the so-called smart contracts and decentralized applications (“DApps”)
on a global scale. The Ethereum Network improves on the capabilities of the Bitcoin Network by allowing, in addition to simple ether transfers,
the creation of the smart contracts (software that are automatically executed when predetermined terms and conditions are met). Smart
contracts permit the creation of crypto assets with various properties and the deployment of decentralized applications on Ethereum.

Ether, the native cryptocurrency of the Ethereum Network,
serves as a unit of account, allowing for peer-to-peer transactions and incentivizing network participants. Every ether is fractionable
to the eighteenth decimal place, with its smallest fraction equal to 0.000000000000000001 ether and called a wei.

The computational environment of the Ethereum Network
is known as the Ethereum Virtual Machine (“EVM”), and computational cycles in the EVM consume so-called gas units which
are denominated in fractions of ether and expressed in Gwei (short for “gigawei” or one billion wei or one billionth of one
ether). The EVM is similar to an engine, while ether is the fuel that propels it. Ether is therefore known as the “gas” token
of the Ethereum Network. Ether may also be used to pay for goods and services, stored for future use, or converted to government-backed currency
such as the U.S. dollar. The value of ether is not backed by any government, corporation, or other identified body.

Ethereum Blockchain and Consensus Mechanism

Similar to Bitcoin, transactions on Ethereum are broadcasted
over the Ethereum Network and registered in blocks, which are set to occur every 12 seconds. Ethereum blocks collectively track the full
transaction history, the accounts and balances of users and contracts in the “Ethereum System”, and other blockchain data
that collectively are referred to as the state of Ethereum. Ethereum ensures that its state transition is deterministic, meaning that
given the same initial state and set of transactions, all nodes in the Ethereum Network are able to compute the same final state. Blocks
are organized in a chain forming the “Ethereum Blockchain”, starting from the “genesis block” at height 0 (zero),
which was created on July 30, 2015.

Unlike Bitcoin, which relies on proof-of-work, Ethereum
operates on a proof-of-stake consensus mechanism where users must lock a certain amount of ether to engage with transaction validation
and code execution. In contrast to proof-of-work, in which miners expend hardware and electricity to become eligible to append new blocks
to the blockchain, in proof-of-stake, users known as validators pledge capital denominated in ether as a “stake,” providing
a guarantee of action in good faith towards the honest operation of the network. If Ethereum Network participants detect a malicious activity
by a validator, such as proposing two different blocks at the same height or attesting to two different versions of the consensual Ethereum
Blockchain, they can cast a slashing alert that subtracts part of the malicious actor’s stake. As such, proof-of-stake substitutes
the computational cost to cheat on proof-of-work by the risk of losing part of a validator’s stake, aligning the incentives
for consensus participants to remain honest over time. Ethereum’s implementation of proof-of-stake also has a fork choice rule,
which uses validators’ votes on the chain with the most accumulated validator activity to select the consensual chain at any point
in time.

Actors running Ethereum validators range from individual
enthusiasts to professional operations with dedicated hardware and data centers. Users activate a validator by running consensus software
on Ethereum and depositing 32 ether on a staking contract deployed on the Ethereum Network. They are rewarded with newly issued ether
as a subsidy and transaction fees paid by users to gain priority in having their transactions executed first. The Ethereum Network’s
complexity and reliance on staking attract a specific type of participant, one who is often deeply involved in the ecosystem, increasing
the likelihood for committed entities to take on the responsibilities of a validator.

7

Smart Contracts, Crypto Assets and Decentralized
Applications

The Ethereum Network allows users to write and implement
smart contracts — that is, general-purpose code that executes on every node in the network and can instruct the transmission
of information and value based on a sophisticated set of logical conditions. Using smart contracts, users can leverage the EVM through
its built-in programming language, Solidity, to create markets, store registries of debts or promises, represent the ownership of
property, move funds in accordance with conditional instructions and create crypto assets other than ether.

Development on the Ethereum Network involves building
more complex tools on top of smart contracts, such as DApps, organizations that are autonomous, known as decentralized autonomous organizations
(“DAOs”), and entirely new decentralized governance systems. For example, a company that distributes charitable donations
on behalf of users could hold donated funds in smart contracts that are paid to charities only if the charity satisfies certain predefined
conditions.

Ethereum is also a platform for creating new crypto
assets and conducting their associated initial coin offerings. It has a suite of standards that allow for the creation of fungible crypto
assets, such as governance tokens that confer voting power in DAOs or stablecoins pegged to government-backed currencies like the
dollar; non-fungible tokens (“NFTs”) allowing for the creation of unique representations of value, such as digital collectibles,
digital art, decentralized identity systems and digital characters and items in metaverses and videogames; and more versatile tokens that
bring new utility to DApps by integrating decentralized data provision and indexing. As of the date of this Annual Report, a majority
of crypto assets in the crypto market were built on the Ethereum Network, with such assets representing a significant amount of the total
market value of all crypto assets.

An important set of DApps on the Ethereum Network
exists within the sector known as decentralized finance (“DeFi”) or open finance platforms, which seek to democratize access
to financial services, such as borrowing, lending, custody, trading, derivatives, and insurance, by removing third party intermediaries.
DeFi can allow users to lend and earn interest on their crypto assets, exchange one crypto asset for another, and create derivative crypto
assets such as stablecoins. Currently, $44 billion worth of crypto assets are deposited on DeFi applications on the Ethereum Network.
Ethereum is also used to create decentralized naming systems, decentralized social networks, and the registry and commercialization of
digital art. More recently, companies and asset managers have started to use Ethereum to tokenize traditional assets such as money-market funds.
While experiencing a significant rise in total value secured by the Ethereum Network since inception, most applications in the Ethereum
ecosystem are still incipient and/or in experimental phase.

Since smart contracts are general purpose software,
they can be naturally used to create highly complex DApps, which can be further combined among themselves in a composable manner to create
even more complex applications. On the other hand, given the nascent nature of the EVM and Solidity, there might be significant architectural
risks and unseen bugs in Ethereum’s current technological stack. This may pose relevant security risks on DApps running on the platform,
lead to the drain, loss or indefinite lock of value deposited on them, and potentially harm users interacting with such applications or
having participation in the total value deposited in a DApp.

Ether Supply

Unlike bitcoin, the supply schedule of ether has changed
a number of times since the inception of the Ethereum Network. The initial creation of ether involved the issuance of 72.0 million
tokens. Of these, 60.0 million ether (83.33% of the supply) were sold to the public in a crowd sale in 2014, raising approximately
$18 million. Another 6.0 million ether (8.33% of the supply) went to the Ethereum Foundation for operational costs, while 3.0 million
ether each (4.17% of the supply) were distributed to developers who contributed to the network and members of the Ethereum Foundation
for purchasing at the initial crowd sale price.

8

While currently operating under a proof-of-stake consensus
mechanism, the Ethereum Network started operation under a proof-of-work consensus mechanism similar to Bitcoin, migrating to its
current proof-of-stake consensus mechanism in September 2022 during an upgrade known as “The Merge”. Over time, new ether
was put into circulation by miners creating blocks on the Ethereum blockchain.

From the Genesis block to late 2017, the mining subsidy
on the Ethereum Network was equal to 5 ether per block. In October 2017, the Byzantium upgrade was activated, decreasing the mining
subsidy to 3 ether and aiming to prepare Ethereum for future scaling solutions. In February 2019, the Constantinople upgrade further
reduced the mining subsidy to 2 ether per block. In December 2020, Ethereum’s new proof-of-stake consensus layer called
the Beacon Chain was launched in preparation for The Merge in September 2022, introducing a deterministic supply curve that issues
new ether to validators based on the total amount of ether staked. In August 2021, the London upgrade introduced the concept of a
base fee burn. This means that a portion of the transaction fees paid by users on the network started being burned, effectively working
as an ether supply reduction mechanism. This base fee is algorithmically adjusted based on network demand, and ether burn is more intense
in periods of high network activity. The latest change in ether monetary policy took place during The Merge, in which mining was deprecated
and mining subsidies ceased. Unlike bitcoin, ether’s supply is uncapped and can be inflationary — that is, with
a positive supply growth rate — if issuance is bigger than burns or deflationary — that is, with a negative
supply growth rate — if issuance is smaller than burns.

As of the date of this Annual Report, 72 million
ether were pre-mined, 50.4 million ether were issued by miners before the switch to proof-of-stake, 2.3 million ether were issued
to validators staking ether and 4.4 million ether were burned in base fees, leading to a circulating supply of 120.3 million
ether. There is no guarantee that the ether issuance policy will remain unchanged over time, and future modifications to monetary policy
might create splits in the Ethereum community and lead to two or more conflicting Ethereum networks.

Ethereum Protocol, Clients and Network Upgrades

Proof-of-stake, the fork choice rule, the EVM architecture
and the monetary policy of ether comprise the “Ethereum Protocol”, the full set rules that users of the Ethereum System have
to agree on in order to participate in the network. Implementations of the Ethereum Protocol are called “Ethereum Clients”.
These are open-source codes that can be maintained by anyone and used by any individual wishing to join the Ethereum Network. Every
computer running an instance of an Ethereum Client is called a node. The infrastructure of the Ethereum Network is collectively maintained
by various participants, which includes validators, developers, and users. Validators register transactions inside blocks and provide
security to the Ethereum Network. Developers maintain and contribute updates to Ethereum Clients. Users access the Ethereum Network either
running their own node or communicating with nodes run by a third party server. Anyone can be a user, developer, or validator, but not
all network participants need to run a node.

Similar to BIPs, Ethereum upgrade proposals are known
as Ethereum Improvement Proposals (“EIPs”). However, all Ethereum upgrades are made through hard forks, which are not backward-compatible and
thus demand Ethereum users to update their clients to continue having access to the Ethereum Network. The Merge introduced the Beacon
Chain as the new consensus layer of Ethereum, responsible for block production and finalization, whereas the original Ethereum chain remained
as the network’s execution layer, in which code execution takes place. This transition was expected since the network’s launch
in mid-2015, and aimed at reducing Ethereum’s overall energy consumption while paving the way for higher scalability and increased
transaction throughput. Since The Merge, all upgrades on Ethereum consist of new releases for both consensus and execution software of
all clients implementing the Ethereum Protocol.

While the Ethereum Protocol is an open-source project
with no official company or group in control, there is one entity called the Ethereum Foundation which supports the development, growth,
and research on Ethereum. It plays a role in stewarding the Ethereum ecosystem, but it does not control or manage the network. Instead,
the Ethereum Foundation provides resources, grants, and coordination to help maintain the Ethereum Protocol and its infrastructure.

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Unlike Bitcoin, which has Bitcoin Core as its dominant
client, the Ethereum Network is operated by a more diverse list of clients. As of the date of this Annual Report, 41.7% of Ethereum nodes
run the geth client, 40.3% the nethermind client, and the remaining 18% are split among five others. Core developers of Ethereum clients
are able to access, and can alter, the client’s source code and, as a result, they are responsible for official releases of updates
and other changes to Ethereum Clients.

Since The Merge, Ethereum experienced the successful
activation of two other upgrades. First, the Shapella upgrade, activated in April 2023, which enabled ether withdrawals for validators
participating in the network’s consensus layer. Second, the Dencun upgrade, activated in March 2024, which introduced proto-danksharding (or
EIP-4844), a new technology that reduces the costs for second layer solutions known as rollups to post data on Ethereum and thus significantly
decreases transaction fees paid by users using these upper layers to access the Ethereum ecosystem.

Particularly, following the Dencun upgrade, most second
layers that had properly prepared for the activation of EIP-4844 experienced, as expected, reduced transaction fees when batching
transactions to the main Ethereum Network. In turn, the upgrade lowered the transaction costs for executing transactions on such networks
and significantly reduced activity on Ethereum’s base layer. However, some second layer solutions reportedly experienced outages
and other disruptions in the aftermath of the upgrade, which in the case of “Blast”, one of Ethereum’s rollups, led
to a halt in block production for a period of time. Blast normal operation was reportedly restored afterward. As with any change to open-source software
code and client overhaul, planned forks such as the ones activated since The Merge could introduce bugs, coding defects, unanticipated
or undiscovered problems, flaws, security risks, problematic incentive structures, or otherwise fail to work as intended or achieve the
expected benefits that proponents hope for in the short term or the long term.

Because Ethereum has no central authority, the release
of updates to Ethereum Clients by their developers does not guarantee that the updates will be automatically adopted by the other network
participants. Users and validators must accept any changes made to the source code by downloading the proposed modification and that modification
is effective only with respect to those Ethereum users and validators who choose to download and run it. As a practical matter, a modification
to the source code becomes part of the Ethereum Network only if it is accepted by individuals that collectively have a majority of the
Ethereum Network. If a modification is accepted by only a percentage of users and validators, a division will occur such that one network
will run the pre-modification source code and the other network will run the modified source code.

As a continuation to the Ethereum 2.0 transition, Ethereum activated a third
upgrade called Pectra on May 2025, introducing improvements to account abstraction, validator operations, and network performance. On
December 3, 2025, Ethereum activated a fourth upgrade called Fusaka, which focused on scaling data availability for Layer 2 networks.
As with any protocol upgrade, these changes may introduce new or unforeseen risks to the Ethereum Network.

Ethereum Wallets and Transactions

Similar to Bitcoin, users of the Ethereum Network
must either run an Ethereum Client or use an Ethereum wallet. To initiate an Ethereum transaction, users generate a pair of private and
public keys, the latter being used to receive funds, and the former to authenticate transactions, send funds and interact with DApps on
the platform. The same careful management of private keys must be carried out in the case of Ethereum, allowing a user to securely custody
ether and other crypto assets living on the Ethereum Network. Nonetheless, in contrast to Bitcoin, where multiple private-public key
pairs can be derived from a single seed phrase, Ethereum operates on an account-based model. This means that instead of tracking
multiple individual key pairs, a single account is used to manage the balance of ether and crypto assets. Each account has an associated
public address and private key, and the entire balance is tied to the account rather than to individual key pairs. To execute any transaction
on Ethereum, including sending ether and other crypto assets, and interacting with DApps, a user must hold enough ether on its balance
to pay for the gas costs of the corresponding code execution.

10

Ether Markets

The Ethereum market includes a wide array of participants
in the investment, retail, and service sectors. The investment sector, similar to Bitcoin, includes both private and professional investors
who trade ether for speculative purposes. The retail sector involves users who buy ether to transfer it or to pay for transaction fees
when transferring other crypto assets and interacting with DApps on the Ethereum Network. Retail users can also buy ether to pay for goods
and services, though its adoption as a payment method is still in its infancy. The service sector, on the other hand, is expanding rapidly,
with companies like Coinbase, Kraken, and Gemini providing essential services such as trading, payment processing, custodial solutions
and staking. As Ethereum continues to evolve, the service sector is expected to grow, offering more sophisticated and varied services
to accommodate the network’s increasing user base and its unique functionalities like smart contracts.

In addition to using ether to engage in transactions,
investors may purchase and sell ether to speculate as to the value of ether in the market, or as a long-term investment to diversify
their portfolio. The value of ether within the market is determined, in part, by the supply of and demand for ether in the global ether
market, market expectations for the adoption of ether as a store of value, the number of merchants that accept ether as a form of payment,
and the volume of peer-to-peer transactions, among other factors.

Centralized spot ether markets typically permit investors
to open accounts with the trading platform and then purchase and sell ether via websites or through mobile applications. Prices for trades
on centralized spot ether markets are typically reported publicly. An investor opening a trading account must deposit an accepted government-issued currency
into their account with the spot market, or a previously acquired crypto asset, before they can purchase or sell assets on the spot market.
The process of establishing an account with a centralized ether market and trading ether is different from, and should not be confused
with, the process of users sending ether from one Ethereum address to another Ethereum address on the Ethereum Blockchain or decentralized
on-chain trading platforms. This latter process is an activity that occurs on the Ethereum Network, while the former is an activity
that occurs entirely within the order book operated by the centralized spot market. The centralized spot market typically records the
investor’s ownership of ether in its internal books and records, rather than on the Ethereum Blockchain. The centralized spot market
ordinarily does not transfer ether to the investor on the Ethereum Blockchain unless the investor makes a request to the crypto asset
trading platform to withdraw the ether in their account to an off-exchange ether wallet.

Outside of the spot markets, ether can be traded OTC. The
OTC market is largely institutional in nature, and OTC market participants generally consist of institutional entities, such as firms
that offer ether-sided liquidity for Ether, investment managers, proprietary trading firms, high-net-worth individuals that
trade ether on a proprietary basis, entities with sizable ether holdings, and family offices. The OTC market provides a relatively flexible
market in terms of quotes, price, quantity, and other factors, although it tends to involve large blocks of Ether. The OTC market has
no formal structure and no open-outcry meeting place. Parties engaging in OTC transactions will agree upon a price — often
via phone or email — and then one of the two parties will initiate the transaction. For example, a seller of ether could
initiate the transaction by sending the ether to the buyer’s ether address. The buyer would then wire U.S. dollars to the seller’s
bank account. OTC trades are sometimes hedged and eventually settled with concomitant trades on ether spot markets.

In addition, ether futures and options trading occur
on exchanges in the U.S. regulated by the CFTC. The market for CFTC-regulated trading of ether derivatives has developed
substantially. Data aggregated by The Block shows that, in August, 2024, regulated ether futures represented approximately $20.8 billion
in aggregate notional trading volume on the CME, up 117% in comparison to $9.6 billion in August 2023. Furthermore, average
open interest in August 2024 was equal to $917 million, up 187% in comparison to $319 in the same month one year prior. Through
the common membership of NYSE Arca Inc. (“NYSE Arca”) and the CME Ethereum Futures market in the Intermarket Surveillance
Group (“ISG”), NYSE Arca may obtain information regarding trading in the Shares and listed ether derivatives from the CME
Ethereum Futures market via the ISG and from other exchanges who are members or affiliates of the ISG. Such an arrangement with the
ISG and the CME Ethereum Futures market allows for the surveillance of ether futures market conditions and price movements on a real-time and
ongoing basis in order to detect and prevent price distortions, including price distortions caused by manipulative efforts. The sharing
of surveillance information between NYSE Arca and the CME Ethereum Futures market regarding market trading activity, clearing activity
and customer identity assists in detecting, investigating and deterring fraudulent and manipulative misconduct, as well as violations
of NYSE Arca’s rules and the applicable federal securities laws and rules. NYSE Arca has also implemented surveillance procedures
to monitor the trading of the Shares on NYSE Arca during all trading sessions and to deter and detect violations of NYSE Arca rules and
the applicable federal securities laws.

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XRP

XRP is the native asset of the XRP Ledger (XRPL).
XRPL is an open-source, decentralized blockchain created in 2012 by Ripple co-founder Chris Larsen, designed to facilitate rapid and cost-effective
global payments. Its system comprises the XRPL Blockchain, the XRPL Protocol and XRPL Clients. XRPL can process nearly 1,000 transactions
per second, making it suitable for cross-border payments with very low transaction fees. It supports a variety of transaction types, including
payments, escrows, trust sets, order book transactions, and payment channel transactions.

The XRP Ledger uses a unique consensus protocol that
ensures all users can agree on the ledger’s current state and the order of transactions. This protocol, known as the XRP Ledger
Consensus Protocol, processes valid transactions without relying on a central operator, avoiding single points of failure. The network
remains functional even if participants join, leave, or misbehave. If too many participants are unreachable or acting maliciously, progress
halts instead of confirming invalid transactions. This consensus method avoids the resource-intensive competition seen in most other blockchain
systems. The XRP Ledger Consensus Protocol aims to agree on a set of transactions for the next ledger version, apply them in order, and
confirm that all participants reach the same result. Once this process is complete, the ledger version is considered validated and final.

The native token of the XRPL is XRP, and it serves
as a bridge currency for financial transactions between different currencies and assets, granting access to the XRPL, which is designed
to support a wide range of uses, including asset tokenization solutions and the issuance of digital currencies. XRP tokens function both
as a crypto asset and as a security measure to prevent spam and malicious activity. Every XRP is fractionable to the smallest unit called
Drop, and it has the same precision as a 64-bit unsigned integer where each unit is equivalent to 0.000001 XRP. It uses integer math,
so that any amount less than a full drop is rounded down. XRP has a burning mechanism where a small fee is levied on each transaction,
and this fee is permanently removed from the total supply. This explains why the total supply of XRP slightly differs from the maximum
supply of 100 billion, with the current total at 99.98 billion.

XRP possesses a maximum supply cap of 100 billion
coins, and there was no ICO for XRP. Instead, XRP was created and distributed through a private sale, with Ripple Labs, the company
behind the XRP Ledger, initially holding a significant portion of the total supply. XRP’s distribution was structured differently
from typical ICOs, and no public token sale occurred at the time of its launch. The initial distribution of the pre-mined XRP tokens was
allocated among Ripple, the company behind the XRP Ledger, its co-founders, and the core team. Out of the 100 billion tokens, Ripple
received 80 billion, while the remaining 20 billion were assigned to the co-founders and core team. To maintain control over
the supply, Ripple locked 55 billion of the 80 billion tokens it received. These locked tokens are periodically unlocked through
monthly escrows. As of now, approximately 62 billion XRP are in circulation, with the remaining 37 billion held by Ripple Labs
and its founders.

Any changes affecting transaction processing or consensus
must be approved by at least 80% of the network of validators. While Ripple Labs contributes to the network, its rights are the same as
any other contributor. The XRP Ledger has over 150 validators, with more than 35 on the default Unique Node List (UNL), and Ripple operates
only one of these nodes.

The XRP Ledger can be seen as a direct competitor
to Bitcoin in the crypto asset space, as it seeks to improve upon Bitcoin by offering faster transaction confirmation times and a more
diverse ecosystem of applications, though it is not as complex as traditional smart contract platforms like Ethereum. Recent advancements
in programmability, coupled with successes in legal battles, have enhanced XRP’s public perception. However, the value of XRP is
primarily influenced by factors such as demand in the global crypto market, market expectations for the adoption of the XRP Ledger as
a novel payment network, the number of merchants accepting XRP, and the volume of peer-to-peer transactions involving the asset, among
others.

Solana (SOL)

SOL is the native asset of the Solana blockchain.
Solana is a high-performance smart contract platform designed for efficiency, enabling the creation of decentralized applications (dApps)
for purposes such as decentralized finance (DeFi), digital collectibles (NFTs), and blockchain games. Its system comprises the Solana
Network, the Solana Blockchain, the Solana Protocol and Solana Clients.

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Solana uses Proof-of-Stake (PoS) for network consensus
but integrates Proof-of-History (PoH) into its PoS mechanism to enable continuous block production. This allows Solana to skip over slow
or unresponsive slot leaders without waiting for a full consensus round. Proof-of-History (PoH) is not a standalone consensus algorithm.
PoH ensures consistent block production, with each validator independently verifying the PoH sequence, eliminating the need for external
time synchronization.

Solana’s consensus algorithm, Tower BFT, leverages
PoH’s synchronized clock computations to enhance performance and efficiency. This creates a universal clock across the network,
allowing it to skip slots assigned to slow or unresponsive leaders. Validators can produce blocks continuously without waiting for previous
blocks or undergoing a synchronous consensus round for each slot.

SOL, the native crypto asset for the Solana System,
has a total supply of about 587 million tokens with no fixed cap, while the circulating supply is roughly 470 million tokens.
SOL serves multiple purposes: (i) existing tokens are deposited as collateral (or stake) for users to join the network and provide
security, (ii) newly issued tokens are issued as rewards for validators operating the network, and (iii) existing tokens are
the medium of exchange with which users pay for code execution on the platform, allowing them to interact with different applications
and send assets from one place to another. Every SOL is fractionable to the smallest unit called Lamports, with its smallest fraction
equal to 0.000000001 SOL each.

The Solana blockchain relies on two types of globally
distributed nodes: Validators and Remote Procedure Call (RPC) nodes. Validators are voting consensus nodes, while RPC nodes are non-voting
nodes. Validators vote to determine the validity of transactions until consensus is reached. Once validated, the on-chain state changes
are applied, and the transactions are recorded in the Solana ledger for permanent storage. The RPC node then sends the response back to
the client application. Solana’s governance relies on Solana Improvement Proposals (SIPs), which outline suggested network changes.
Anyone can submit a SIP, but community support is crucial. Validators, developers, and stakeholders review proposals to reach consensus
on updates that shape the blockchain’s future.

Cardano (ADA)

Cardano is a blockchain platform designed for scalability,
security, and sustainability, supporting smart contracts and decentralized applications with a focus on research-driven development. Its
System comprises the Cardano Network, the Cardano Blockchain, the Cardano Protocol, and Cardano Clients.

Cardano uses the Ouroboros PoS protocol to maintain
its Blockchain where each block contains transactions and data, cryptographically linked. The Protocol includes rules for transaction
processing, block creation, and consensus. Cardano Clients run on distributed computers worldwide, which interact with the Network to
maintain the Blockchain, validate transactions and execute smart contracts.

13

ADA is the native crypto asset of the System, used
to pay for transaction fees on the Network, as a peer-to-peer currency for value transfer, a unit of account with the ecosystem of applications,
as the economic incentive for staking and participating in consensus, and within Cardano’s governance model where ADA holders can
vote on proposals. Every ADA is fractionable to the sixth decimal place, with its smallest fraction equal to 0.000001 ADA and called a
“Lovelace.”

To participate in Ouroboros, ADA holders can either
operate staking pools and run Clients or delegate ADA holdings to a staking pool. Over time, pool operators are selected to create blocks
based on their share of the stake in the Network. Similarly to Bitcoin and Ethereum, network upgrades are managed through Cardano Improvement
Proposals (CIPs), with significant updates like the implementation of smart contracts happening in September 2021 via the Alonzo
upgrade and further enhancements in scalability such as the launch of the Hydra second layer in May 2023.

ADA possesses a maximum supply cap of 45 billion coins, whose distribution
included an initial coin offering (ICO), in which participants bought ADA using other crypto assets such as bitcoin and ether prior to
the network’s genesis block, created on September 23, 2017. Approximately 31.1 billion ADA were initially distributed
as follows: 648.2 million were assigned to the Cardano Foundation, 2.1 billion ADA to EMURGO, 2.5 billion ADA to IOHK,
and 25.9 billion ADA were sold to the public during the ICO. The remaining ADA supply is distributed over time through staking
rewards. When a stake pool successfully creates a block, it earns a reward to be shared among the pool’s operators and delegators.
The reward consists of a base reward, a fixed amount of ADA awarded for creating a block, and fees paid by users whose transactions are
included in the block. As of the date of this prospectus, the circulating supply of ADA is approximately 36 billion coins.

To incentivize decentralization of the capital among
staking operators, pools with a larger stake receive more opportunities to create blocks, but the reward distribution mechanism ensures
that smaller pools can still be viable. There’s a saturation point beyond which additional stake in a pool does not yield additional
rewards, encouraging the delegation of ADA to multiple pools for a more decentralized network. A portion of the block reward is also allocated
to a community treasury, which can be used for funding projects through Cardano’s governance system. While new ADA is minted through
staking rewards, the rate of issuance is designed to become increasingly less inflationary over time. This controlled inflation aims to
balance incentivizing participation with maintaining the value of ADA, with rewards from staking expected to decrease as more ADA is staked,
reducing the overall issuance rate.

Being a smart contracts platform, Cardano directly
competes with networks like Ethereum and Solana, distinguishing itself with its academic approach to blockchain development, emphasizing
peer-reviewed research. The network’s evolution, particularly in smart contract capabilities, positions ADA as an integral part
of Cardano’s broader ecosystem for decentralized applications. As such, the value of ADA is determined, in part, by the supply of
and demand for ADA in the global crypto market, market expectations for the adoption of Cardano as a novel technological platform for
DApps, the number of merchants that accept ADA as a form of payment, the volume of peer-to-peer transactions involving the asset, among
other factors.

Chainlink

Chainlink is a digital asset that exists as a token
on the Ethereum Blockchain, issued via smart contract and transferable using the Ethereum Blockchain’s peer-to-peer network protocols.
Chainlink transactions are settled on the Ethereum Blockchain, while the Chainlink Network delivers data across the Ethereum Blockchain
and other blockchains. No single entity owns or operates the Ethereum Blockchain, the infrastructure of which is collectively maintained
by a decentralized user base.

Chainlink was created by Sergey Nazarov and Steve
Ellis in 2017. Their aim was to develop a mechanism through which smart contracts could pull real-time data from the off-chain world.
The network they created relies on a series of decentralized oracle nodes that furnish data to blockchains, most notably the Ethereum
Blockchain. Since its inception, Chainlink has gained significant attention and investment, positioning itself as a prominent player in
the blockchain industry.

The Chainlink Network allows people to exchange tokens
of value, Chainlink, for access to the data provided by the network’s oracle services. Chainlink can be used to pay for goods and
services, including to receive data from the Chainlink Network, or it can be converted to fiat currencies, such as the U.S. dollar.

Chainlink is issued through a smart contract on the
Ethereum Blockchain. It follows the ERC-677 token standard, a variation of the widely used ERC-20 token standard with additional functionalities.
The design of Chainlink tokens allows senders of Chainlink to pay an oracle node and request data from that oracle node in the same transaction.
This adds efficiencies to transactions by cutting down on costs.

Chainlink attempts to derive much of its value from
utility. Users who want to utilize the Chainlink Network must pay fees in Chainlink.

14

The Chainlink token is issued on a shared public ledger,
the Ethereum Blockchain, similar to the Bitcoin network. However, the Chainlink Network differentiates itself from many other digital
asset networks in that its stated primary function is as a data provider for decentralized applications, rather than serving as a store
of value or means of payment, or as a platform for building smart contracts.

Chainlink aims to deliver reliable data feeds to smart
contracts on Ethereum, layer-2 networks reliant on the Ethereum Blockchain, as well as Solana, Avalanche, and other widely used blockchain
networks. It sources data from multiple independent node operators to create an aggregated report that it submits on-chain.

Chainlink launched as an initial coin offering in
2017. Thirty-five percent of its total token supply was sold to the public through an on-chain sale. An additional 35% was earmarked for
community initiatives, and 30% was reserved for the Chainlink team.

Stellar (XLM)

Stellar is a decentralized, open-source blockchain
protocol designed to facilitate the issuance, transfer, and settlement of digital representations of all forms of money—fiat currencies,
crypto assets, and other value forms. It was launched in 2014 by the Stellar Development Foundation (SDF) with the mission of increasing
financial access and efficiency through blockchain technology. At its core, Stellar enables near-instant, low-cost cross-border transactions
by supporting tokenized assets and offering a built-in decentralized exchange (DEX).

The Stellar network uses the Stellar Consensus Protocol
(SCP), a unique federated Byzantine agreement (FBA) model that achieves consensus without relying on mining or staking. This consensus
design promotes energy efficiency and fast finality (typically within 5 seconds), while allowing trusted nodes to define their own quorum
slices. The protocol supports features such as multi-signature accounts, a limited set of smart contracts with constrained logic, and
programmable payments.

Stellar’s native asset, lumen (XLM), serves
two primary purposes: it is used to pay minimal transaction fees on the network and is required as a base reserve for each account to
help deter ledger spam. While XLM plays a role in pathfinding and bridging between assets on Stellar’s DEX, it is not required for
transfers of tokenized fiat currencies or stablecoins once sufficient liquidity is achieved. XLM has a total supply of 50 billion coins,
with a circulating supply, as of July 4, 2025, of 30.9 billion coins.

Stellar has seen adoption by financial institutions,
fintech firms, and central banks exploring digital currency issuance.

Stellar’s architecture makes it well-suited
for remittances, payments, and tokenized asset issuance, positioning it as a foundational layer for regulated financial services and interoperable
blockchain applications.

The Trust’s Index

The Trust will use the Index as a reference to track
and measure its performance compared to the price performance of the markets for the Index Constituents and for valuation purposes when
calculating the Trust’s NAV.

Prior to the Transition Date, the Trust used the Nasdaq
Crypto US Settlement Price™ Index. Effective as of the Transition Date, the reference index changed to the Nasdaq CME Crypto Settlement
Price Index™. References to the “Index” as used herein refer to the Former Index prior to the Transition Date and the
New Index after the Transition Date. The Former Index and the New Index apply substantially identical methodologies, reflect the same
Index Constituents, and are both designed to measure the performance of a material portion of the overall crypto asset market.

The Index does not track the overall performance of
all crypto assets generally, nor the performance of any specific crypto assets. The Index is owned and administered by Nasdaq, Inc. (the
“Index Provider”) and is calculated by CF Benchmarks Limited (the “Calculation Agent”), which is experienced in
calculating and administering crypto asset indices. The Calculation Agent publishes daily a list of the Index Constituents, the Index
Constituents’ weightings, the intraday value of the Index, and the daily settlement value of the Index, which is effectively the
Index’s closing value.

15

The Index is derived from a rules-based methodology
(the “Index Rules”), which is overseen by the Nasdaq Index Management Committee (the “NIMC”). The NIMC governs
the Index and is responsible for its implementation, administration, and general oversight, including assessing crypto assets for eligibility,
adjustments to account for regulatory changes and periodic methodology reviews. The NIMC shall approve any material changes to the methodology
and review the Index methodology at least on an annual basis. The Index Rules may only be changed by the Index Provider with the approval
of the NIMC. Neither the Trust nor the Sponsor have control over the Index Rules or the Index administration. Changes to Index Rules may
result in adverse effects to the Trust and/or in the ability of the Sponsor to implement the Trust’s investment strategy.

Crypto assets are eligible for inclusion in the Index
if they satisfy the criteria set forth under the Index methodology. The Index adjusts its constituents and weightings on a quarterly basis
to reflect changes in the crypto asset markets. Notwithstanding inclusion in the eligible list, the NIMC reserves the right to further
exclude any additional assets based on one or more factors, including but not limited to, its review of general reputation, fraud, manipulation,
or security concerns connected to the asset. The Index will not include assets deemed to be securities by U.S. regulators. Assets that,
in the sole discretion of the NIMC, do not offer utility, do not facilitate novel use cases, or that do not exhibit technical, structural
or crypto-economic innovation (e.g., assets inspired by memes or internet jokes) may also be excluded. The Index methodology has been
written and designed to be forward-looking to account for any potential future regulatory changes, including potential changes where crypto
asset trading platforms would be regulated by U.S. regulators such as the SEC.

The Index will be reconstituted and rebalanced quarterly,
on the first Business Day in March, June, September and December (the “Reconstitution Date”). A “Business Day”
means any day other than a day when the Exchange is closed for regular trading.

Index Constituents Criteria

Pursuant to the Index Rules, to be eligible for inclusion
in the Index, crypto assets must meet the following criteria on a quarterly basis:

1. Have active tradable markets listed on at least two “Core Crypto Platforms” (as defined below)
for the entire period since the previous Index reconstitution;

2. Be supported by at least one Core Custodian (as defined below) for the entire period since the previous
Index reconstitution;

3. Have a median daily trading volume in the U.S. dollar pair conducted across all Core Crypto Platforms
that is no less than 0.5% of the cryptocurrency asset that has the highest median daily trading volume;

4. As of the Index reconstitution determination date (unless otherwise noted), fall into at least one of
the following categories:

(a) the digital asset trades on a market that is an ISG member, provided that the Exchange may obtain information
about trading in such digital asset from the ISG member;

(b) the digital asset underlies a futures contract that has been made available to trade on a designated contract
market for at least six months prior to the Index reconstitution effective date; provided that the Exchange has a comprehensive surveillance
sharing agreement, whether directly or through common membership in ISG, with such designated contract market; or

(c) on an initial basis only, an exchange-traded fund designed to provide economic exposure of no less than
40% of its NAV to the digital asset lists and trades on a national securities exchange;

5. Have free-floating pricing (i.e., not be pegged to the value of any asset).

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If a crypto asset meets requirements (1) through
(5), it will be considered eligible for Index inclusion. The Index will assess any digital assets resulting from a hard fork or an airdrop
under the same criteria as established digital assets and will only include a new digital asset if it meets the eligibility criteria.

A “Core Crypto Platform” is a crypto asset
platform that, in the opinion of the Index, exhibits at a minimum the following characteristics: (1) has strong forking controls; (2)
has effective anti-money laundering controls; (3) has a reliable and transparent application programming interface (API) that provides
real-time and historical trading data; (4) charges fees for trading and structure trading incentives that do not interfere with the forces
of supply and demand; (5) is licensed by a public independent governing body; (6) includes surveillance for manipulative trading practices
and erroneous transactions; (7) evidences a robust information technology infrastructure; (8) demonstrates active capacity management;
(9) evidences cooperation with regulators and law enforcement; (10) has a minimum market representation for trading volume; and (11) maintains
a comprehensive Information Sharing Agreement with the CME.

The Index methodology defines a “Core Custodian”
to be a crypto assets custodian that, in the opinion of the Index: (1) provide custody accounts whose holders are the legal beneficiaries
of the assets held in the account. In case of bankruptcy or insolvency of a custodian, creditors or the estate should have no rights to
the client’s assets; (2) offer segregated individual accounts and store crypto assets in segregated individual accounts and
not in omnibus accounts. Custodians must not allow securities lending against crypto assets; (3) generate account-segregated private
keys for crypto assets using high entropy random number generation methods and employ advanced security practices; (4) utilize technology
for storing private keys in offline digital vaults and apply secure processes, such as private key segmentation, multi-signature authorization,
and geographic distribution of stored assets to limit access to private keys (the custodian will use security technology for storing private
keys aiming to avoid theft or misappropriation of assets due to online attacks, collusion of agents managing the storage services, or
any other threat); (5) offers redemption processes for timely and secure transfers of crypto assets and allows account holders to
set withdrawal authorization restrictions such as whitelisting and multi-user account controls; (6) must support the Index’s
forking policy and allow the split of assets to be reflected in the Index asset holdings; (7) have a comprehensive risk management
policy and formalized framework for managing operational and custody risks, including a disaster recovery program that ensures continuity
of operations in the event of a system failure (the custodian must have a business continuity plan to help ensure continued customer access
to the assets); (8) is licensed as a custodian by a reputable and independent governing body (e.g., the SEC, the New York Department
of Financial Services, or other state, national or international regulators), as can be ascertained by certain public data sources; (9) provides
third-party audit reports at least annually on operational and security processes. This audit may be completed either by having a full
SOC2 certification issued or the third-party auditor providing an attestation report based off the full SOC2 methodology; and (10) have
an insurance policy that covers, at least partially, third-party theft of private keys, insider theft from internal employees, and loss
of keys. A Core Custodian might lose eligibility if it does not comply with the above requirements or with any other Index requirements.

The Index Constituents will be weighted according
to their relative free float market capitalizations. The free float market capitalization of an Index Constituent on any given day
is defined as the product of a settlement price of one of the Index Constituents (“Index Constituent Settlement Price”) and
its circulating supply as set in the most recent reconstitution. Weights are calculated by dividing the free float market capitalization
of a crypto asset by the total free float market capitalization of all Index Constituents at the time of rebalancing.

The Index Constituent Settlement Price is calculated
once every trading day by applying a publicly available rules-based pricing methodology (the “Pricing Methodology”)
to a diverse collection of pricing sources to provide an institutional-grade reference price for each constituent. The Pricing Methodology
is designed to account for variances in price across a wide range of sources, each of which has been vetted according to criteria identified
in the methodology.

Specifically, the Index Constituent Settlement Price
is the Time Weighted Average Price (“TWAP”) calculated across the volume weighted average prices (“VWAPs”) for
each minute in the settlement price window, which is between 3:50:00 and 4:00:00 p.m. New York time, on all Core Crypto Platforms.
Where there are no transactions observed in any given minute of the settlement price window, that minute is excluded from the calculation
of the TWAP.

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Where it is not possible to calculate the settlement
price for any individual constituent asset in accordance with the methodology for any reason, including in the event of the absence of
or insufficient inputs from Core Exchanges, the settlement price for the impacted constituent asset for that day shall be the last
published settlement price for that asset.

Principal Market and Fair Value Determination of
Assets

The Trust’s NAV per Share will be calculated
by taking the current market value of the Trust’s total assets, subtracting any liabilities, and dividing that total by the number
of Shares. The assets of the Trust will consist of crypto assets, cash and cash equivalents. The Sponsor has the exclusive authority to
determine the Trust’s NAV, which it has delegated to the Administrator.

The Administrator of the Trust will calculate the
NAV once each Business Day, as of the earlier of the close of the Exchange or 4:00 p.m. Eastern Time (“E.T.”).

In determining the value of the Trust’s holdings,
the Administrator will value the Index Constituents held by the Trust based on the Index Constituents’ Settlement Prices, unless
the prices are not available or the Administrator, in its sole discretion, determines that the Index Constituents’ Settlement Prices
are unreliable (“Fair Value Event”).

In the instance of a Fair Value Event, the Trust’s
holdings may be fair valued on a temporary basis in accordance with the fair value policies approved by the Administrator. In the instance
of a Fair Value Event and pursuant to the Administrator’s fair valuation policies and procedures, VWAP or volume weighted median
prices (VWMP) from another index administrator (“Secondary Index”) will be utilized.

If a Secondary Index is also not available or the
Administrator in its sole discretion determines the Secondary Index is unreliable, the price set by the Trust’s principal market
as of 4:00 p.m. E.T., on the valuation date will be utilized. In the event the principal market price is not available or the Administrator
in its sole discretion determines the principal market valuation is unreliable, the Administrator will use its best judgment to determine
a good faith estimate of fair value. The Administrator identifies and determines the Trust’s principal market (or in the absence
of a principal market, the most advantageous market) for crypto assets consistent with the application of the fair value measurement framework
in Financial Accounting Standards Board (“FASB”) Accounting Standards Codification (“ASC”) 820-10. The principal
market is the market where the reporting entity would normally enter into a transaction to sell the asset or transfer the liability. The
principal market must be available to and be accessible by the reporting entity. The reporting entity is the Trust.

A Fair Value Event value determination will be based
upon all available factors that the Sponsor or the Administrator deems relevant at the time of the determination and may be based on analytical
values determined by the Sponsor or Administrator using third party valuation models. Fair value policies approved by the Administrator
will seek to determine the fair value price that the Trust might reasonably expect to receive from the current sale of that asset or liability
in an arm’s-length transaction on the date on which the asset or liability is being valued consistent with “Relevant Transactions”.
A “Relevant Transaction” is any crypto asset versus U.S. dollar spot trade that occurs during the observation window between
3:00 p.m. and 4:00 p.m. E.T. on a Core Crypto Platform in the bitcoin/U.S. dollar pair that is reported and disseminated by a Core Crypto
Platform through its publicly available application programming interface and observed by the Index Provider.

Indicative Trust Value

In order to provide updated information relating to
the Trust for use by shareholders and market professionals, the Sponsor will engage an independent calculator to calculate an updated
Indicative Trust Value (“ITV”). The ITV will be calculated by using the prior day’s closing NAV per Share of the Trust
as a base and will be updated throughout the regular market session of 9:30 a.m. E.T. to 4:00 p.m. E.T. (the “Regular Market Session”)
to reflect changes in the value of the Trust’s holdings during the trading day. For purposes of calculating the ITV, the Trust’s
crypto asset holdings will be priced using a real time version of the Index.

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The ITV will be disseminated on a per Share basis
every 15 seconds during the Regular Market Session and will be widely disseminated by one or more major market data vendors during the
Regular Market Session. Several major market data vendors display and/or make widely available ITVs taken from the Consolidated Tape Association
(CTA) or other data feeds.

Competition

The Trust faces competition from other securities
and investment vehicles that provide exposure to crypto assets, including other exchange-traded products, grantor trusts, and partnerships
that invest in crypto assets. The Trust also competes with the direct purchase of crypto
assets on crypto asset trading platforms and other peer-to-peer transactions. Market and
financial conditions, and other conditions beyond the Sponsor’s control, may make
it more attractive to invest in other vehicles or to invest in crypto assets directly.

Trust Fees and Expenses

The Trust shall pay the Sponsor a management fee (the “Management
Fee”), monthly in arrears, in an amount equal to 0.25% per annum of the daily NAV of the Trust. The Sponsor may, in its sole discretion
and from time to time, waive all or a portion of the Management Fee for stated periods of time. The Sponsor is under no obligation to
waive any portion of its fees, and any such waiver shall create no obligation to waive any such fees during any period not covered by
the waiver. The Management Fee is paid in consideration of the Sponsor’s services related to the management of the Trust’s
business and affairs. The Administrator will calculate the Management Fee on a daily basis with respect to the NAV of the Trust, and the
Management Fee will be paid directly by the Trust to the Sponsor. The Management Fee will accrue daily and be payable monthly in cash.

In addition to the Management Fee, the Trust pays
all of its respective brokerage commissions, including applicable exchange fees and give-up fees, and other transaction-related fees and
expenses charged in connection with trading activities. The Trust also pays all fees and commissions related to any crypto transaction
fees for on-chain transfers of assets. The Sponsor pays all other routine operational, administrative and other ordinary expenses of the
Trust, including but not limited to, fees and expenses of the Administrator, Trustee, Custodians, Marketing Agent, Transfer Agent, licensors,
accounting and audit fees and expenses, tax preparation expenses, ongoing SEC registration fees, individual Schedule K-1 preparation and
mailing fees, report preparation and mailing expenses, and up to $250,000 per annum in ordinary legal fees and expenses. The Sponsor may
determine in its sole discretion to assume legal fees and expenses of the Trust in excess of $250,000 per annum. To the extent that the
Sponsor does not voluntarily assume such fees and expenses, they will be the responsibility of the Trust.

The Trust pays all of its non-recurring and unusual
fees and expenses, if any, as determined by the Sponsor. Non-recurring and unusual fees and expenses are unexpected or unusual in nature,
such as legal claims and liabilities and litigation costs or indemnification or other unanticipated expenses. Extraordinary fees and expenses
also include material expenses which are not currently anticipated obligations of the Trust. Routine operational, administrative and other
ordinary expenses are not deemed extraordinary expenses. In the event the Trust’s cash balance is insufficient to pay all fees and
expenses, including the Management Fee, the Trust may need to sell crypto assets from time to time to pay for fees and expenses. The Sponsor
may determine in its sole discretion to assume any non-recurring and unusual fees and expenses of the Trust, if applicable. To the extent
that the Sponsor does not voluntarily assume such fees and expenses, they will be the responsibility of the Trust.

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Non-recurring, unusual or extraordinary expenses of
the Trust will be allocated as determined by the Sponsor using a pro rata allocation methodology that allocates such Trust expenses to
the Trust. Unusual or extraordinary expenses paid by Sponsor are not subject to any caps or limits. The Trust may be required to indemnify
the Sponsor, and the Trust and/or the Sponsor may be required to indemnify the Trust’s service providers under certain unusual or
extraordinary circumstances. Any indemnification paid by the Trust and/or Sponsor generally would cover losses incurred by an indemnified
party for (1) expenses incurred by a party when rendering services to the Trust or the Sponsor, (2) expenses arising from a breach of
obligations or non-compliance with laws, or (3) expenses arising out of the formation, operation or termination of the Trust. Unless such
expenses are specifically attributable to the Trust or arise out of the Trust’s operations, any such expenses will be allocated
by the Sponsor using a pro rata methodology that allocates certain Trust expenses to the Trust.

Creation and Redemption of Shares

The Trust expects to create and redeem Shares on a continuous basis but
only in Baskets of 10,000 Shares. Only Authorized Participants can place orders to receive Baskets.

Creations and redemptions of Shares may be conducted
in cash or in-kind for crypto assets.

Cash Creations and Redemptions. For cash creations
and redemptions, the Sponsor and the Trust will engage in crypto asset transactions for converting cash into crypto assets (in association
with creation orders) and crypto assets into cash (in association with redemption orders). The Trust will conduct its transactions by
choosing, in its sole discretion, either to trade (1) directly with third parties, who are not registered broker-dealers (each a “Crypto
Trading Counterparty”), pursuant to written agreements between such Crypto Trading Counterparties and the Trust, or (2) through
Coinbase, Inc., as the “Prime Execution Agent”. The Sponsor and the Trust expect to conduct these transactions by trading
directly with Crypto Trading Counterparties. Crypto Trading Counterparties may be added at any time, subject to the discretion of the
Sponsor. In the event the Sponsor engages any additional Crypto Trading Counterparties, shareholders will be notified of the addition
of such Crypto Trading Counterparty through a prospectus supplement and/or a current report on Form 8-K or through the Trust’s annual
or quarterly reports, or through the Trust’s website.

In-Kind Creations and Redemptions. For in-kind
creations, Authorized Participants (or their designated agents or clients) will deliver the required amount of crypto assets directly
to the Crypto Custodian on behalf of the Trust in exchange for Shares. For in-kind redemptions, the Crypto Custodian will deliver, on
behalf of the Trust, crypto assets to the Authorized Participant (or its designated agent or client). In such in-kind transactions, Authorized
Participants are responsible for sourcing and delivering (or receiving and liquidating) the required crypto assets. The Trust and the
Sponsor will not be responsible for selecting or directing the counterparties with respect to such transfers.

In a cash creation,
the Trust will create Shares by receiving crypto assets from a third party that is not the Authorized Participant, and the Sponsor and/or
the Trust — not the Authorized Participant — is responsible for selecting the third party to deliver crypto assets. Further,
the third party will not be acting as an agent of the Authorized Participant with respect to the delivery of the crypto assets to the
Trust or acting at the direction of the Authorized Participant with respect to the delivery of crypto assets to the Trust. In a cash redemption,
the Trust will redeem Shares by delivering crypto assets to a third party that is not the Authorized Participant, and the Sponsor and/or
the Trust — not the Authorized Participant — is responsible for selecting the third party to receive crypto assets. Further,
the third party will not be acting as an agent of the Authorized Participant with respect to the receipt of crypto assets from the Trust
or acting at the direction of the Authorized Participant with respect to the receipt of crypto assets from the Trust. The third party
will be unaffiliated with the Trust and the Sponsor. In in-kind creations, the Authorized Participant (or its designated agent or client)
will deliver crypto assets directly to the Trust’s account with the relevant Crypto Custodian and in in-kind redemptions the Authorized
Participant (or its designated agent or client) will receive crypto assets directly from the Crypto Custodian on behalf of the Trust.

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Creation and redemption orders will take place as
follows, where “T” is the date of the order and each day in the sequence must be a Business Day:

Cash Creation Order Date (T)

Cash Creation Settlement Date (T+1)


Authorized Participant places a creation order.


The Authorized Participant delivers the cash related to the purchase transaction to the Trust’s cash account that is maintained with the Cash Custodian.


The Transfer Agent accepts (or rejects) the creation order.


The Crypto Trading Counterparty or the Prime Execution Agent deposits the crypto assets into the Trust’s trading account related to the purchase transaction.


The Trust will enter into a transaction with the Crypto Trading Counterparty or the Prime Execution Agent to purchase the corresponding crypto assets.


Once the Trust is in simultaneous possession of the cash and the crypto assets, the Trust delivers the corresponding Shares to the Authorized Participant.


As soon as practicable after 4:00 p.m. E.T., the Sponsor determines the cash related to the purchase transaction, including any dollar cost difference between the price utilized in calculating NAV per Share and the price at which the Trust acquires the crypto assets.


The Trust transfers the cash related to the purchase transaction from the Trust cash account maintained with the Cash Custodian to the Crypto Trading Counterparty or the Prime Execution Agent.

Cash Redemption Order Date (T)

Cash Redemption Settlement Date (T+1)


Authorized Participant places a redemption order.


The Authorized Participant delivers the Baskets of Shares to be redeemed to the Trust.


The Transfer Agent accepts (or rejects) the redemption order.


The Crypto Trading Counterparty or the Prime Execution Agent delivers cash to the Trust’s cash account that is maintained with the Cash Custodian related to the sell transaction.


The Trust instructs the Crypto Custodian to prepare to move the corresponding crypto assets from the Trust’s account at the Crypto Custodian to the Trust’s trading account.


Once the Trust is in simultaneous possession of the Basket of Shares and the cash related to the sell transaction, the Trust cancels the Shares comprising the number of Baskets redeemed by the Authorized Participant.


The Trust enters into a transaction with the Crypto Trading Counterparty or the Prime Execution Agent to sell the corresponding crypto assets.


The Trust instructs the Crypto Custodian to transfer the corresponding crypto assets agreed on the sell transaction from the Trust’s trading account to the Crypto Trading Counterparty or Prime Execution Agent.


As soon as practicable after 4:00 p.m. E.T., the Sponsor determines the cash related to the sell transaction, including any dollar cost difference between the crypto assets price utilized in calculating NAV per Share and the price at which the Trust sells the crypto assets.


The Trust transfers the cash related to the sell transaction from the cash account maintained with the Cash Custodian to the Authorized Participant.

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In-Kind Creation Order Date (T)

In-Kind Creation Settlement Date (T+1)


Authorized Participant submits an in-kind creation order.


Authorized Participant (or its agent or client) deposits crypto assets into the Trust’s account with Crypto Custodian.


The Transfer Agent accepts (or rejects) the creation order.


Once the Trust confirms receipt of the corresponding assets, it delivers Shares to the Authorized Participant.


As soon as practicable after 4:00 p.m. E.T., the Sponsor determines the Basket.


Trust confirms asset amounts and crypto addresses.

In-Kind Redemption Order Date (T)

In-Kind Redemption Settlement Date (T+1)


Authorized Participant submits an in-kind redemption order.


The Authorized Participant delivers the Baskets of Shares to be redeemed to the Trust.


The Transfer Agent accepts (or rejects) the redemption order.


Once the Trust is in simultaneous possession of the Basket of Shares and the respective crypto assets, the Trust cancels the Shares comprising the number of Baskets redeemed by the Authorized Participant.


The Trust instructs the Crypto Custodian to prepare to move the corresponding crypto assets from the Trust’s account at the Crypto Custodian to the Authorized Participant (or its agent or client).


The Crypto  Custodian delivers crypto assets to the Authorized Participant (or its agent or client).


As soon as practicable after 4:00 p.m. E.T., the Sponsor determines the Basket components.

The Trust’s Service Providers

The Sponsor

The Sponsor is responsible for investing the assets of the Trust in accordance
with the objectives and policies of the Trust. In addition, the Sponsor arranges for one or more third parties to provide administrative,
custodial, accounting, transfer agency and other necessary services to the Trust. For the Sponsor’s services, the Trust is contractually
obligated to pay a monthly management fee to the Sponsor, based on average daily net assets, at a rate equal to 0.25% per annum. The Sponsor
acts as the Trust’s sponsor pursuant to the terms of the Trust Agreement. Under the Trust Agreement, the Sponsor acts as an agent
of the Trust and is solely responsible for the conduct of the Trust’s business. The Sponsor serves as the sponsor, investment manager,
or investment adviser to investment vehicles other than the Trust. As of December 31, 2025, the Sponsor serves as sponsor, investment
manager, or investment adviser to nine (9) pooled investment vehicles across multiple jurisdictions, including investment strategies relating
to crypto asset markets.

As of December 31, 2025, the Sponsor is responsible
for approximately $1.2 billion in assets under management. As a result, conflicts of interest may arise between the Sponsor’s responsibilities
to the Trust on the one hand and, on the other, the responsibilities the Sponsor owes to those other pooled investment vehicles for which
it serves as sponsor, investment manager, or investment adviser. Such conflicts may include, but are not limited to, the allocation of
investment opportunities. If the Sponsor acquires knowledge of a potential transaction or arrangement that may be an opportunity for the
Trust, it shall have no duty to offer such opportunity to the Trust, and the Sponsor will not be liable to the Trust or the Shareholders
for breach of any fiduciary or other duty if the Sponsor pursues such opportunity or directs it to another person or does not communicate
such opportunity to the Trust and is not required to share income or profits derived from such business ventures with the Trust.

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The Trustee

The sole Trustee of the Trust is CSC Delaware Trust
Company. The Trustee’s principal offices are located at 19 West 44th Street, Suite 200, New York, NY 10036 and its telephone number
is 800-927-9800. The Trustee is unaffiliated with the Sponsor. The Trustee’s duties and liabilities with respect to the offering
of Shares and the management of the Trust are limited to its express obligations under the Trust Agreement.

The Trustee will accept service of legal process on
the Trust in the State of Delaware and will make certain filings under the Delaware Statutory Trust Act (the “DSTA”). The
Trustee does not owe any other duties to the Trust, the Sponsor or the shareholders. The Trustee is permitted to resign upon at least
thirty (30) days’ notice to the Sponsor. The Trust Agreement provides that the Trustee shall be entitled to receive from the
Trust reasonable compensation for its services as set forth in a separate fee agreement with the Sponsor and shall be entitled to be reimbursed
by the Trust for reasonable out-of-pocket expenses incurred by it in the performance of its duties, including without limitation, the
reasonable compensation, out-of-pocket expenses and disbursements of counsel, any experts and such other agents as the Trustee may employ
in connection with the exercise and performance of its rights and duties under the Trust Agreement (together, the “Trust Expenses”).
The Trustee may consult with counsel (who may be counsel for the Sponsor or for the Trustee). The reasonable legal fees incurred in connection
with such consultation shall be reimbursed to the Trustee pursuant to the Trust Agreement, provided that no such fees shall be payable
to the extent that they are incurred as a result of the Trustee’s gross negligence, bad faith or willful misconduct. The Trustee
may earn compensation in the form of short-term interest on items like uncashed distribution checks (from the date issued until the date
cashed), funds that the Trustee is directed not to invest, deposits awaiting investment direction or received too late to be invested
overnight in previously directed investments.

Pursuant to Section 3806(b)(1) of the Delaware Trust
Statute, the Trust shall be managed by the Sponsor in accordance with the Trust Agreement. The Trustee has no duty or liability to supervise
or monitor the Sponsor or otherwise manage the Trust and no such duties shall be implied.

The Administrator

The Trust employs U.S. Bancorp Fund Services, LLC
(d/b/a U.S. Bank Global Fund Services) as the Trust’s administrator. The Administrator is located at 615 East Michigan Street, Milwaukee,
Wisconsin 53202. The Administrator also assists the Trust and the Sponsor with certain functions and duties relating to marketing, accounting,
transfer agent, cash custody and related services. The agreement with the Administrator was executed on January 15, 2025 (the “Trust
Administration Servicing Agreement”).

Under the Trust Administration Servicing Agreement,
the Administrator assists with the overall operation of the Trust, acts as a liaison among service providers, assists with regulatory
compliance and preparation of certain regulatory and financial reports, as well as tax reporting and optional additional tax services.
Under the Trust Administration Servicing Agreement, the Trust shall indemnify and hold harmless the Administrator from and against any
and all claims, demands, losses, expenses, and liabilities of any and every nature (including reasonable attorneys’ fees) the Administrator
may sustain or incur or that may be asserted against Administrator by any person arising out of any action taken or omitted to be taken
by it in performing the services hereunder (i) in accordance with the foregoing standards, or (ii) in reliance upon any written
or oral instruction provided to the Administrator by any duly authorized officer of the Trust or the Sponsor, except for any and all claims,
demands, losses, expenses, and liabilities arising out of or relating to the Administrator’s refusal or failure to comply with the
terms of this Trust Administration Servicing Agreement or from its bad faith, gross negligence, reckless disregard, or willful misconduct
in the performance of its duties under this Trust Administration Servicing Agreement. The Administrator is obligated to indemnify the
Trust against any liabilities arising from the Administrator’s refusal or failure to comply with the terms of the Trust Administration
Servicing Agreement or from its bad faith, negligence, or willful misconduct in the performance of its duties.

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Cash Custodian, Transfer Agent and Accounting Agent

In its capacity as the Cash Custodian, U.S. Bank National
Association, holds the Trust’s cash and/or cash equivalents pursuant to a custodial agreement. U.S. Bancorp Fund Services, LLC (d/b/a
U.S. Bank Global Fund Services), an entity affiliated with the Cash Custodian, is the Transfer Agent for the Trust’s Shares. In
addition, U.S. Bancorp Fund Services, LLC also serves as accounting agent for the Trust, performing certain accounting services and supporting
the preparation of certain SEC reports on behalf of the Trust (the “Accounting Agent”). The Cash Custodian is located at 5065
Wooster Rd, Cincinnati, Ohio 45226. The principal address for the Accounting Agent is 615 East Michigan Street, Milwaukee, Wisconsin 53202.
The agreements between the Trust and each of the Cash Custodian, Transfer Agent and Accounting Agent were executed on January 15, 2025,
and reflect the following terms.

Cash Custody Agreement

Under the Cash Custody Agreement between the Cash
Custodian, the Sponsor, and the Trust (the “Cash Custody Agreement”), upon the Sponsor’s instructions, the Cash Custodian
will establish and maintain a segregated account or accounts for and on behalf of the Trust, into which account or accounts may be transferred
cash and/or securities. The Cash Custodian is responsible for the safekeeping and record-keeping of the Trust’s assets in these
accounts. Upon instructions from the Trust or Sponsor, the Cash Custodian will facilitate the transfer and management of assets, including
cash, within the Trust’s account(s). The Cash Custodian’s fees are payable by the Trust, however, the Sponsor assumes such
fees in accordance with the Sponsor’s agreement with the Trust.

In performing its duties, the Cash Custodian is required
to exercise due care in accordance with reasonable commercial standards. The Cash Custodian is generally not liable for any error of judgment
or mistake of law or for any loss suffered by the Trust in connection with its duties under the Cash Custody Agreement, except a loss
arising out of or relating to the Cash Custodian’s refusal or failure to comply with the terms of the Cash Custody Agreement or
from the Cash Custodian’s bad faith, negligence or willful misconduct in the performance of its duties under the Cash Custody Agreement.

The Cash Custodian is responsible for any actions
or omissions of sub-custodians (if any) to the same extent as if those actions or omissions were performed by the Cash Custodian
itself. The Trust retains the discretion to appoint additional custodians as necessary to manage its assets, subject to the terms of separate
agreements. The Sponsor has the authority to add or terminate custodians as it deems appropriate.

Transfer Agent Servicing Agreement.

Under the Transfer Agent Servicing Agreement, by and
between the Trust, the Sponsor and the Transfer Agent (the “Transfer Agent Servicing Agreement”), the Transfer Agent provides
services to the Trust related to the creation and redemption of Shares, dividend disbursing, and maintaining shareholder records.

The Transfer Agent is responsible for facilitating
purchases and redemptions of Baskets and handling transactions with Authorized Participants. The Transfer Agent also records issuances
of Shares and maintains a record of outstanding Shares for the Trust.

The Transfer Agent is obligated to exercise reasonable
care. The Trust is obligated to indemnify the Transfer Agent against claims not arising from its refusal or failure to comply with the
terms of the Transfer Agent Servicing Agreement or from its bad faith, negligence, or willful misconduct.

Trust Accounting Servicing Agreement.

Under the Trust Accounting Servicing Agreement, by
and between the Trust and the Accounting Agent (the “Trust Accounting Servicing Agreement”), U.S. Bancorp Fund Services, LLC
is appointed as the Accounting Agent for the Trust, responsible for various accounting services such as portfolio accounting, expense
accrual and payment, trust valuation and financial reporting, tax accounting, and compliance control services.

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The Accounting Agent is obligated to exercise reasonable
care in its duties. The Trust is obligated to indemnify the Accounting Agent against losses not arising from such failures or misconduct.
Conversely, the Accounting Agent is obligated to indemnify the Trust for losses resulting from its non-compliance or misconduct.

The Crypto Custodians

The Crypto Custodians for the Trust’s crypto
holdings are Coinbase Custody Trust Company, LLC, BitGo Trust Company, Inc., and Fidelity Digital Asset Services, LLC. The Sponsor may,
in its sole discretion, add or terminate agreements with the Crypto Custodians at any time.

The Crypto Custodians are responsible for safekeeping
passwords, keys or phrases (“Security Factors”) that allow transfers of crypto assets that are safe, secure and confidential.
The Crypto Custodians will help establish accounts and any necessary subaccounts on the crypto asset networks solely for the Trust. The
Crypto Custodians will follow valid instructions to use its Security Factors to effect transfers to and from the Trust’s crypto
accounts.

The custodial services agreements between the Crypto
Custodians and the Trust, and the prime broker agreement between the Trust and Coinbase Custody, will govern the use of custodial and
wallet services provided by the Crypto Custodians. Under the agreements, the Crypto Custodians shall establish and maintain custody accounts
for the Trust’s crypto assets and fiat currency, offering both custodial and non-custodial wallet services.

Coinbase Ventures, an affiliate of Coinbase Custody
Trust Company, LLC, has invested in an affiliate of the Sponsor, which could create the appearance of a conflict of interest. The Sponsor
has adopted and implemented policies and procedures that are reasonably designed to ensure compliance with applicable law, including a
Code of Ethics providing guidance on conflicts of interest. The Sponsor’s policies require that the Sponsor eliminate, mitigate,
or otherwise disclose conflicts of interest.

The Prime Broker

Coinbase Custody will maintain custody of part of
the Trust’s crypto assets, handling their receipt, safekeeping, and maintenance, in accordance with its prime broker agreement with
the Sponsor. Coinbase Custody is a trust company incorporated under the laws of the State of New York and authorized under New York law
to provide custody services for the Trust’s crypto asset holdings. It is a regulated, qualified custodian under New York Banking
Law and operates as one of the Crypto Custodians for the Trust.

The Prime Execution Agent, an affiliate of Coinbase
Custody, one of the Trust’s Crypto Custodians, may facilitate sales of the Trust’s crypto assets. This arrangement creates
potential conflicts of interest when executing trades on behalf of the Trust. These conflicts may include routing orders to its trading
platform (Coinbase Exchange), executing orders against other clients of the Prime Execution Agent or of its affiliates or for its own
inventory or that of its affiliates, and acting in a principal capacity when filling residual orders below minimum thresholds accepted
by other venues. The Prime Execution Agent may execute trades for its own account or affiliates while aware of the Trust’s orders
or imminent orders. These conflicts may affect the price received by the Trust during the execution of crypto asset sales, particularly
if the Prime Execution Agent prioritizes its own interests or those of its affiliates over the Trust’s. To mitigate these risks,
the Prime Execution Agent maintains policies and procedures designed to address such conflicts, including segregation of duties, information
barriers, and internal controls. However, these measures may not eliminate all conflicts, and there is no guarantee that the Trust will
always receive the most favorable execution terms.

The Marketing Agent

The Trust employs Paralel Distributors LLC as the
Marketing Agent for the Trust. Pursuant to the Marketing Agent Agreement, by and between the Marketing Agent, the Sponsor, and the Trust,
the Marketing Agent works with the Cash Custodian in connection with the receipt and processing of orders for creations and redemptions
of Baskets. Additionally, the Marketing Agent reviews and approves of all of the Trust’s sales literature and advertising material.

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The Marketing Agent’s principal business address
is 1700 Broadway, Suite 1850, Denver CO 80290. The Marketing Agent is a broker-dealer registered with the SEC and is a member of FINRA.

Compliance Services

Paralel Distributors LLC also assists the Trust and
the Sponsor with certain functions and duties relating to compliance related services, which include development of compliance procedures
and periodic reviews of the adequacy of the Trust’s and service providers’ compliance policies.

Authorized Participants

Baskets may be created or redeemed only by Authorized
Participants. Each Authorized Participant must be a registered broker-dealer, a participant in the Depository Trust Company (“DTC”),
have entered into an agreement with the Sponsor (the “Authorized Participant Agreement”) and be in a position to transfer
cash to, and take delivery of cash from, the Cash Custodian through one or more accounts. The Authorized Participant Agreement provides
the procedures for the creation and redemption of Baskets and for the delivery of cash in connection with such creations and redemptions.
As of the date of this Annual Report, the Authorized Participants are Macquarie Capital (USA) Inc., Virtu Americas LLC and Cantor Fitzgerald & Co. Additional Authorized Participants may be added at any time, subject to the discretion of the Sponsor.

AML/KYC

The Trust takes measures with
the objective of reducing illicit financing risks in connection with the Trust’s activities. However, illicit financing risks are
present in the crypto asset markets. There can be no assurance that the measures employed by the Trust will prove successful in reducing
illicit financing risks, and the Trust is subject to the complex illicit financing risks and vulnerabilities present in the crypto asset
markets. If such risks eventuate, the Trust, the Sponsor or the Trustee or their affiliates could face civil or criminal liability, fines,
penalties, or other punishments, be subject to investigation, have their assets frozen, lose access to banking services or services provided
by other service providers, or suffer disruptions to their operations, any of which could negatively affect the Trust’s ability
to operate or cause losses in value of the Shares.

The Trust, the Sponsor and its
affiliates have adopted and implemented policies and procedures that are designed to comply with applicable anti-money laundering laws
and sanctions laws and regulations, including applicable know your customer (“KYC”) laws and regulations. The Sponsor and
the Trust will only interact with known third-party service providers with respect to whom the Sponsor or its affiliates have engaged
in a due diligence process to ensure a thorough KYC process, such as the Authorized Participants, market makers, and Crypto Custodians.
Each service provider must undergo onboarding by the Sponsor prior to placing creation or redemption orders with respect to the Trust.
As a result, the Sponsor and the Trust have instituted procedures designed to ensure that a situation would not arise where the Trust
would engage in transactions with a counterparty whose identity the Sponsor and the Trust did not know.

Furthermore, Authorized Participants,
as broker-dealers, and Crypto Custodians, as entities licensed to conduct virtual currency business activity by the New York Department
of Financial Services and a limited purpose trust company subject to New York Banking Law, respectively, are “financial institutions”
subject to the U.S. Bank Secrecy Act, as amended (“BSA”), and U.S. economic sanctions laws. The Trust will only accept creation
and redemption requests from Authorized Participants, and market makers who have represented to the Trust that they have implemented compliance
programs that are designed to ensure compliance with applicable sanctions and anti-money laundering laws. The Custodians have adopted
and implemented anti-money laundering and sanctions compliance programs, which provides additional protections to ensure that the Sponsor
and the Trust do not transact with a sanctioned party.

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Description of Shares

The Trust is authorized under the Trust Agreement
to create and issue an unlimited number of Shares. The Trust will create Shares in Baskets (a Basket equals a block of 10,000 Shares)
only upon the order of an Authorized Participant. The Shares represent units of fractional undivided beneficial interest in the net assets
of the Trust and have no par value. The Shares of the Trust are listed for trading on the Exchange under the symbol “NCIQ.”
The Trust’s Shares may be bought and sold on the Exchange like any other exchange-listed security.

Cash and Other Distributions

The Sponsor intends to re-invest any income and realized
gains of the Trust in Index Constituents rather than distributing cash to shareholders. Therefore, unlike mutual funds, commodity pools
or other investment pools that generally distribute income and gains to their investors, the Trust generally will not distribute cash
to shareholders. Shareholders should not invest in the Trust if they will need cash distributions from the Trust to pay taxes on their
share of income and gains of the Trust, if any, or for any other reason. Although the Trust does not intend to make cash distributions,
it reserves the right to do so in the Sponsor’s sole discretion, in certain situations, including for example, if the income earned
from its investments held directly or posted as margin reach levels that merit distribution, e.g., at levels where such income is not
necessary to support its investments in the Index Constituents, and investors adversely react to being taxed on such income without receiving
distributions that could be used to pay such tax. Cash distributions may be made in these and similar instances.

Description of Limited Rights

The Shares do not represent a traditional investment
and should not be viewed as similar to “shares” of a corporation operating a business enterprise with management and a board
of directors. A shareholder will not have the statutory rights normally associated with the ownership of shares of a corporation; however,
the DSTA does provide shareholders the right to bring “oppression” or “derivative” actions. All of the Shares
are of the same class with equal rights and privileges. Each of the Shares is transferable, is fully paid and nonassessable and entitles
the holder to vote on the limited matters upon which shareholders may vote under the Trust Agreement. The Shares do not entitle their
holders to any conversion or pre-emptive rights or, except as provided below, any redemption rights or rights to distributions.

Voting Rights

Shareholders will have very limited voting rights
with respect to the Trust’s affairs. Shareholders may elect a replacement sponsor only if the current Sponsor resigns voluntarily
or loses its corporate charter. Shareholders will not be permitted to participate in the management or control of the Trust or the conduct
of its business. Shareholders must therefore rely upon the duties and judgment of the Sponsor to manage the Trust’s affairs.

Book-Entry Form

Individual certificates will not be issued for the
Shares. Instead, one or more global certificates will be deposited by the Transfer Agent with DTC and registered in the name of Cede &
Co., as nominee for DTC. The global certificates will evidence all of the Shares outstanding at any time. Shareholders are limited to:
(1) DTC Participants; (2) those who maintain, either directly or indirectly, a custodial relationship with a DTC Participant (“Indirect
Participants”); and (3) those banks, brokers, dealers, trust companies and others who hold interests in the Shares through DTC Participants
or Indirect Participants. The Shares are only transferable through the book-entry system of DTC. Shareholders who are not DTC Participants
may transfer their Shares through DTC by instructing the DTC Participant holding their Shares (or by instructing the Indirect Participant
or other entity through which their Shares are held) to transfer the Shares. Transfers are made in accordance with standard securities
industry practice.

DTC may decide to discontinue providing its service
with respect to Baskets and/or the Shares by giving notice to the Transfer Agent and the Sponsor. Under such circumstances, the Sponsor
will find a replacement for DTC to perform its functions at a comparable cost or, if a replacement is unavailable, the Sponsor will terminate
the Trust.

The rights of the shareholders generally must be exercised
by DTC Participants acting on their behalf in accordance with the rules and procedures of DTC. Because the Shares can only be held in
book-entry form through DTC and DTC Participants, shareholders must rely on DTC, DTC Participants and any other financial intermediary
through which they hold the Shares to receive the benefits and exercise the rights described in this section. Shareholders should consult
with their broker or financial institution to find out about procedures and requirements for securities held in book-entry form through
DTC.

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