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PallasCatFin
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自 3 月 14 日以來#Bitcoin鯨魚活動明顯減少。鯨魚交易量的激增可能是推動
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價格上漲的火花!
#bitcoinhalving
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免責聲明:包含來自第三方的見解。非財務建議。可能包含贊助內容。
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PallasCatFin
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TRADING HACK The more time price spends in a supply/demand zone = the more likely it is to fail Quick, speedy reactions are the best #内容挖矿 #bitcoin #TradingStrategies💼💰
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My prediction for the price of BTC on 20th April 00:00 (UTC+0): 73000 #HalvingHorizons😀 @Binance Square Official $BTC
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As of 2023, the regulatory landscape for cryptocurrencies and Web3 in the United States is multifaceted and evolving, with various federal and state-level laws and regulatory bodies involved. Key regulations and their contexts include: Bank Secrecy Act (BSA) with Amendments from the Patriot Act and AMLA: These laws establish a comprehensive anti-money laundering framework in the U.S. They require financial institutions, including those dealing with cryptocurrencies, to assist government agencies in detecting and preventing money laundering. Commodity Exchange Act (CEA) and Securities Exchange Act: These acts relate to the registration requirements for assets considered securities and commodities. The CEA governs commodity derivatives transactions in the U.S. and is overseen by the Commodity Futures Trading Commission (CFTC), while the Securities Exchange Act regulates securities transactions and is enforced by the Securities and Exchange Commission (SEC). Responsible Financial Innovation Act: This proposed Act aims to create a comprehensive regulatory framework for digital assets, introducing common definitions and covering various aspects like securities, commodities, taxation, and customer protection. However, this Act is still in progress and has not been approved yet. SEC and CFTC Oversight: The SEC and CFTC have overlapping but distinct areas of focus in cryptocurrency regulation. The SEC focuses on securities aspects like initial coin offerings (ICOs) and decentralized finance (DeFi) platforms, while the CFTC has authority over commodities and derivatives trading of cryptocurrencies like Bitcoin. Howey Test: The SEC uses the Howey Test to determine whether a cryptocurrency is considered a security. This test assesses if the token involves an investment of money in a common enterprise with an expectation of profit derived from the efforts of others. #内容挖矿 #Write2Earn
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Q&A on Merkle Trees and Merkle Roots (2) $BTC Q4: How do Merkle Trees enhance the efficiency of blockchain networks? A4: Merkle Trees enhance efficiency by allowing for quick and secure verification of large data sets. Instead of downloading every transaction, a node can download only a small part of the tree and still verify whether a transaction is included in a block. This is especially useful in light-weight nodes or during the process of Simplified Payment Verification (SPV). Q5: Can you explain what a Merkle Proof is and how it is used? A5: A Merkle Proof is a way to prove that a specific transaction is included in a set (like a block of transactions) without requiring the entire set of data. It consists of the transaction hash, the hash of the sibling node, and the hashes on the path leading up to the Merkle Root. By successively hashing the transaction hash with the sibling nodes' hashes, one can arrive at the Merkle Root, thus proving the transaction's inclusion in the block. Q6: What are some of the advantages of using Merkle Trees in data verification? A6: Merkle Trees offer several advantages in data verification, including: -Efficiency: They allow for quick and space-efficient verification of large data sets. -Security: They ensure data integrity, as any alteration in the data changes the Merkle Root. -Scalability: They are suitable for handling large amounts of data, which is essential for blockchain scalability. #内容挖矿 #Write2Earn
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Q&A on Merkle Trees and Merkle Roots (1) $BTC Q: What is a Merkle Tree and why is it important in blockchain technology? A: A Merkle Tree, also known as a hash tree, is a data structure used for efficiently summarizing and verifying the integrity of large sets of data. In blockchain technology, Merkle Trees are crucial because they enable the secure and efficient verification of content in large data structures, like blocks of transactions, ensuring the integrity and consistency of the blockchain. Q: How does a Merkle Tree structure look and how is it constructed? A: A Merkle Tree is a binary tree where each leaf node represents a hash of transactional data, and each non-leaf node is a hash of its respective child nodes. It’s constructed from the bottom up, starting from the leaf nodes (transaction hashes) and combining them pairwise to build up to the root of the tree, known as the Merkle Root. Q: What is a Merkle Root and what role does it play in a blockchain? A: The Merkle Root is the single hash at the top of the Merkle Tree. It serves as a concise representation of all the transactions in a block. In a blockchain, the Merkle Root is stored in the block header, ensuring that all transactions are accounted for and unaltered, as any change in the transaction data would lead to a different Merkle Root. #内容挖矿 #Write2Earn
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