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1. What is Bitcoin (BTC)?
2. Bitcoin’s core featuresFor a more beginner’s introduction to Bitcoin, please visit Binance Academy’s guide to Bitcoin.
Unspent Transaction Output (UTXO) modelA UTXO transaction works like cash payment between two parties: Alice gives money to Bob and receives change (i.e., unspent amount). In comparison, blockchains like Ethereum rely on the account model.
Nakamoto consensusIn the Bitcoin network, anyone can join the network and become a bookkeeping service provider i.e., a validator. All validators are allowed in the race to become the block producer for the next block, yet only the first to complete a computationally heavy task will win. This feature is called Proof of Work (PoW).
The probability of any single validator to finish the task first is equal to the percentage of the total network computation power, or hash power, the validator has. For instance, a validator with 5% of the total network computation power will have a 5% chance of completing the task first, and therefore becoming the next block producer.
Since anyone can join the race, competition is prone to increase. In the early days, Bitcoin mining was mostly done by personal computer CPUs.
As of today, Bitcoin validators, or miners, have opted for dedicated and more powerful devices such as machines based on Application-Specific Integrated Circuit (“ASIC”).
Proof of Work secures the network as block producers must have spent resources external to the network (i.e., money to pay electricity), and can provide proof to other participants that they did so.
With various miners competing for block rewards, it becomes difficult for one single malicious party to gain network majority (defined as more than 51% of the network’s hash power in the Nakamoto consensus mechanism). The ability to rearrange transactions via 51% attacks indicates another feature of the Nakamoto consensus: the finality of transactions is only probabilistic.
Once a block is produced, it is then propagated by the block producer to all other validators to check on the validity of all transactions in that block. The block producer will receive rewards in the network’s native currency (i.e., bitcoin) as all validators approve the block and update their ledgers.
Block productionThe Bitcoin protocol utilizes the Merkle tree data structure in order to organize hashes of numerous individual transactions into each block. This concept is named after Ralph Merkle, who patented it in 1979.
With the use of a Merkle tree, though each block might contain thousands of transactions, it will have the ability to combine all of their hashes and condense them into one, allowing efficient and secure verification of this group of transactions. This single hash called is a Merkle root, which is stored in the Block Header of a block. The Block Header also stores other meta information of a block, such as a hash of the previous Block Header, which enables blocks to be associated in a chain-like structure (hence the name “blockchain”).
An illustration of block production in the Bitcoin Protocol is demonstrated below.
Block time and mining difficultyBlock time is the period required to create the next block in a network. As mentioned above, the node who solves the computationally intensive task will be allowed to produce the next block. Therefore, block time is directly correlated to the amount of time it takes for a node to find a solution to the task. The Bitcoin protocol sets a target block time of 10 minutes, and attempts to achieve this by introducing a variable named mining difficulty.
Mining difficulty refers to how difficult it is for the node to solve the computationally intensive task. If the network sets a high difficulty for the task, while miners have low computational power, which is often referred to as “hashrate”, it would statistically take longer for the nodes to get an answer for the task. If the difficulty is low, but miners have rather strong computational power, statistically, some nodes will be able to solve the task quickly.
Therefore, the 10 minute target block time is achieved by constantly and automatically adjusting the mining difficulty according to how much computational power there is amongst the nodes. The average block time of the network is evaluated after a certain number of blocks, and if it is greater than the expected block time, the difficulty level will decrease; if it is less than the expected block time, the difficulty level will increase.
What are orphan blocks?In a PoW blockchain network, if the block time is too low, it would increase the likelihood of nodes producingorphan blocks, for which they would receive no reward. Orphan blocks are produced by nodes who solved the task but did not broadcast their results to the whole network the quickest due to network latency.
It takes time for a message to travel through a network, and it is entirely possible for 2 nodes to complete the task and start to broadcast their results to the network at roughly the same time, while one’s messages are received by all other nodes earlier as the node has low latency.
Imagine there is a network latency of 1 minute and a target block time of 2 minutes. A node could solve the task in around 1 minute but his message would take 1 minute to reach the rest of the nodes that are still working on the solution. While his message travels through the network, all the work done by all other nodes during that 1 minute, even if these nodes also complete the task, would go to waste. In this case, 50% of the computational power contributed to the network is wasted.
The percentage of wasted computational power would proportionally decrease if the mining difficulty were higher, as it would statistically take longer for miners to complete the task. In other words, if the mining difficulty, and therefore targeted block time is low, miners with powerful and often centralized mining facilities would get a higher chance of becoming the block producer, while the participation of weaker miners would become in vain. This introduces possible centralization and weakens the overall security of the network.
However, given a limited amount of transactions that can be stored in a block, making the block time too longwould decrease the number of transactions the network can process per second, negatively affecting network scalability.
3. Bitcoin’s additional features
Segregated Witness (SegWit)Segregated Witness, often abbreviated as SegWit, is a protocol upgrade proposal that went live in August 2017.
SegWit separates witness signatures from transaction-related data. Witness signatures in legacy Bitcoin blocks often take more than 50% of the block size. By removing witness signatures from the transaction block, this protocol upgrade effectively increases the number of transactions that can be stored in a single block, enabling the network to handle more transactions per second. As a result, SegWit increases the scalability of Nakamoto consensus-based blockchain networks like Bitcoin and Litecoin.
SegWit also makes transactions cheaper. Since transaction fees are derived from how much data is being processed by the block producer, the more transactions that can be stored in a 1MB block, the cheaper individual transactions become.
The legacy Bitcoin block has a block size limit of 1 megabyte, and any change on the block size would require a network hard-fork. On August 1st 2017, the first hard-fork occurred, leading to the creation of Bitcoin Cash (“BCH”), which introduced an 8 megabyte block size limit.
Conversely, Segregated Witness was a soft-fork: it never changed the transaction block size limit of the network. Instead, it added an extended block with an upper limit of 3 megabytes, which contains solely witness signatures, to the 1 megabyte block that contains only transaction data. This new block type can be processed even by nodes that have not completed the SegWit protocol upgrade.
Furthermore, the separation of witness signatures from transaction data solves the malleability issue with the original Bitcoin protocol. Without Segregated Witness, these signatures could be altered before the block is validated by miners. Indeed, alterations can be done in such a way that if the system does a mathematical check, the signature would still be valid. However, since the values in the signature are changed, the two signatures would create vastly different hash values.
For instance, if a witness signature states “6,” it has a mathematical value of 6, and would create a hash value of 12345. However, if the witness signature were changed to “06”, it would maintain a mathematical value of 6 while creating a (faulty) hash value of 67890.
Since the mathematical values are the same, the altered signature remains a valid signature. This would create a bookkeeping issue, as transactions in Nakamoto consensus-based blockchain networks are documented with these hash values, or transaction IDs. Effectively, one can alter a transaction ID to a new one, and the new ID can still be valid.
This can create many issues, as illustrated in the below example:
Since the transaction malleability issue is fixed, Segregated Witness also enables the proper functioning of second-layer scalability solutions on the Bitcoin protocol, such as the Lightning Network.
Lightning NetworkLightning Network is a second-layer micropayment solution for scalability.
Specifically, Lightning Network aims to enable near-instant and low-cost payments between merchants and customers that wish to use bitcoins.
Lightning Network was conceptualized in a whitepaper by Joseph Poon and Thaddeus Dryja in 2015. Since then, it has been implemented by multiple companies. The most prominent of them include Blockstream, Lightning Labs, and ACINQ.
A list of curated resources relevant to Lightning Network can be found here.
In the Lightning Network, if a customer wishes to transact with a merchant, both of them need to open a payment channel, which operates off the Bitcoin blockchain (i.e., off-chain vs. on-chain). None of the transaction details from this payment channel are recorded on the blockchain, and only when the channel is closed will the end result of both party’s wallet balances be updated to the blockchain. The blockchain only serves as a settlement layer for Lightning transactions.
Since all transactions done via the payment channel are conducted independently of the Nakamoto consensus, both parties involved in transactions do not need to wait for network confirmation on transactions. Instead, transacting parties would pay transaction fees to Bitcoin miners only when they decide to close the channel.
One limitation to the Lightning Network is that it requires a person to be online to receive transactions attributing towards him. Another limitation in user experience could be that one needs to lock up some funds every time he wishes to open a payment channel, and is only able to use that fund within the channel.
However, this does not mean he needs to create new channels every time he wishes to transact with a different person on the Lightning Network. If Alice wants to send money to Carol, but they do not have a payment channel open, they can ask Bob, who has payment channels open to both Alice and Carol, to help make that transaction. Alice will be able to send funds to Bob, and Bob to Carol. Hence, the number of “payment hubs” (i.e., Bob in the previous example) correlates with both the convenience and the usability of the Lightning Network for real-world applications.
Schnorr Signature upgrade proposalElliptic Curve Digital Signature Algorithm (“ECDSA”) signatures are used to sign transactions on the Bitcoin blockchain.
However, many developers now advocate for replacing ECDSA with Schnorr Signature. Once Schnorr Signatures are implemented, multiple parties can collaborate in producing a signature that is valid for the sum of their public keys.
This would primarily be beneficial for network scalability. When multiple addresses were to conduct transactions to a single address, each transaction would require their own signature. With Schnorr Signature, all these signatures would be combined into one. As a result, the network would be able to store more transactions in a single block.
The reduced size in signatures implies a reduced cost on transaction fees. The group of senders can split the transaction fees for that one group signature, instead of paying for one personal signature individually.
Schnorr Signature also improves network privacy and token fungibility. A third-party observer will not be able to detect if a user is sending a multi-signature transaction, since the signature will be in the same format as a single-signature transaction.
4. Economics and supply distributionThe Bitcoin protocol utilizes the Nakamoto consensus, and nodes validate blocks via Proof-of-Work mining. The bitcoin token was not pre-mined, and has a maximum supply of 21 million. The initial reward for a block was 50 BTC per block. Block mining rewards halve every 210,000 blocks. Since the average time for block production on the blockchain is 10 minutes, it implies that the block reward halving events will approximately take place every 4 years.
As of May 12th 2020, the block mining rewards are 6.25 BTC per block. Transaction fees also represent a minor revenue stream for miners.
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Bank Of Cambodia To Allow More Control With Blockchain Payments Assistant Governor at the National Bank of Cambodia Serey Chea said that blockchain payments will enable greater financial control and remittance efficiency in an interview with CNBC published on Oct. 22. Chea said that the National Bank of Cambodia has experimented with domestic blockchain payments for retail, but the main interest is testing them for cross-border transactions.
Cashaa Launches Banking Solution For Indian Crypto Owners Banking services platform Cashaa is offering a solution for Indian crypto owners facing banking restrictions imposed by the country’s central bank, the Reserve Bank of India (RBI). The service, starting from Oct 23, allows users to deposit up to one crore rupees (~$141,012) per month to purchase cryptocurrencies.
UK Economic Secretary On Proposed Crypto Ban: FCA Operationally Independent From Government On October 21, John Glen, Economic Secretary to the UK Treasury, replied to a series of questions related to cryptocurrencies, with most of them about the effects of the the Financial Conduct Authority (FCA)’s proposed ban on the offering of crypto-based investment products to retail investors. According to Glen, the FCA is operationally independent from government. “The government continues to endorse the approach set out in that the Cryptoasset Taskforce report as the right way to facilitate innovation while protecting consumers and firms,” he said.
CFTC Chair Says Ether Futures ‘Likely’ In 2020 Commodity Futures Trading Commission (CFTC) Chairman Heath Tarbert believes the crypto world will see Ethereum futures contracts sometime in 2020. Speaking at Georgetown University in a fireside chat during the first day of DC Fintech Week, Tarbert told moderator Chris Brummer that he “absolutely” believes Ether futures could trade in the next six to 12 months.
Encrypted project calendar（October 22, 2019）
ZRX/0x: The 0x protocol (ZRX) Pantera blockchain summit will be held on October 22. Locus Chain (LOCUS): 22 October 2019 Public Test Begins Public test runs for three days from October 22nd to October 24th. IOTA (MIOTA): 22 October 2019 EclipseCon Europe Next week, join Lewis Freiberg, our Director of Ecosystem, to learn how to build an ecosystem around IoT focused distributed ledgers. TRON (TRX): 22 October 2019 TRC20-USDT Bonanza “… @Huobiglobal . Deposit #TRC20- #USDT, enjoy APR up to 30%, starting from 00:00, Oct, 22 to 00:00, Nov, 1, 2019(SGT).” PCHAIN (PI): 22 October 2019 Ama with Founder & CEO “Jeff Cao PCHAIN founder & CEO, will host an AMA on 22nd Oct at 11:00 PM (UTC+8) in the @Binance_DEX Telegram.” iExec RLC (RLC): 22 October 2019 AMA “Tuesday 22 October 2019. You can ask the team anything you want until Thursday 17 October.”
Encrypted project calendar（October 23, 2019）
MIOTA/IOTA: IOTA (MIOTA) IOTA will host a community event on October 23rd at the University of Southern California in Los Angeles with the theme “Connecting the I3 Market and Experiencing Purchase and Sales Data.” BTC/Bitcoin: The WBS World Blockchain Summit (Middle East) will be held in Dubai from October 23rd to 24th. Cardano (ADA) and 1 other: 23 October 2019 WBS Dubai “One of a kind gathering of 500+ curated & pre-qualified investors, CEOs, CIOs, CTOs, Heads of Blockchain, Chief Digital Officers CloakCoin (CLOAK): 23 October 2019 (or earlier) CloakCoin Competition “CloakCoin competition : solve the CloakCoin ENIGMA transaction, 3rd round.” Loom Network (LOOM): 23 October 2019 Singapore Meetup “Unstack the Stack Series: Loom Network” from 6:30–8:30 PM (SST). BTGS/Bitdog: ZG.COM will open the BTGS currency and coin transfer business at 14:00 on October 23, and open the BTGS/USDT transaction pair on October 23 at 18:18. Waltonchain (WTC): 23 October 2019 Transfers Suspended “$WTC deposits and withdrawals on #TaibiExchange will be suspended from 00:00 Oct 22 (UTC+8) and are estimated to resume at 15:00 Oct 23
Encrypted project calendar（October 24, 2019）
BCN/Bytecoin: Bytecoin (BCN) released the hidden amount of the Bytecoin block network on October 24. Horizen (ZEN): 24 October 2019 Weekly Insider Team updates at 3:30 PM UTC/ 11:30 AM EDT: Engineering, Node network, Product/UX, Helpdesk, Legal, BD, Marketing, CEO Closing thoughts, AMA. ANT/Aragon: Aragon (ANT) Aragon Network will hold the theme “DAO: ICO and DeFi next step” in Hong Kong on October 24th? DATA/Streamr DATAcoin: Streamr DATAcoin (DATA) Streamr Network Technology Exchange and Project Development Conference will be held in London on October 24th. Lisk (LSK): 24 October 2019 Coding Workshop — Berlin “During this workshop you will acquire the skills to create custom transactions with the Lisk Alpha SDK using Node.js.” BTU Protocol (BTU)： 24 October 2019 Africa IT Expo “Our co-founder @vidal007 will be speaking at upcoming @africa_aitex [African IT Expo] held in #Rabat #Morocco on 24th of October.” Matrix AI Network (MAN)： 24 October 2019 YouTube AMA YouTube AMA from 3PM, October 24 (GMT+8). Utrum (OOT)： 24 October 2019 AtomicDex Listing “We are pleased to announce that Utrum coin OOT is getting listed on Komodo Platform Decentral Exchange — AtomicDEX. “
Encrypted project calendar（October 25, 2019）
ADA/Cardano: Cardano (ADA) The Ada community will host a community gathering in the Dominican Republic for the first time on October 25. Crypto.com Coin (CRO): 25 October 2019 Live AMA with CEO “Live AMA with our CEO @Kris_HK on @cryptocom’s Twitter next Friday, 25 October, 11AM HKT.” GST/GSTCOIN: GSTCOIN(GST)LBank will be online GST on October 25, 2019 at 16:00 (UTC+8), open trading pair: GST/USDT, GST/ETH.
Encrypted project calendar（October 26, 2019）
KAT/Kambria: Kambria (KAT) Kambria will host the 2019 Southern California Artificial Intelligence and Data Science Conference in Los Angeles on October 26th with IDEAS. BTC/Bitcoin: CoinAgenda Global Summit will be held in Las Vegas from October 26th to 28th Horizen (ZEN): 26 October 2019 (or earlier) ZEN 2.0.19 Upgrade Zen 2.0.19 upgrade at block #610000, which is expected around October 26.
Encrypted project calendar（October 27, 2019）
ICON (ICX): 27 October 2019 Money 20/20 USA Event Money 20/20 USA in Las Vegas from October 27–30.
Encrypted project calendar（October 28, 2019）
LTC/Litecoin: Litecoin (LTC) 2019 Litecoin Summit will be held from October 28th to October 29th in Las Vegas, USA BTC/Bitcoin: Mt.Gox changes the debt compensation plan submission deadline to October 28 ZEC/Zcash: Zcash (ZEC) will activate the Blossom Agreement on October 28th Stellar (XLM): 28 October 2019 Protocol 12 Upgrade Vote Horizon v0.22.0 has been released, which supports Protocol 12. This gives everyone ample time to prepare for the Protocol 12 upgrade vote Celsius (CEL) and 3 others: 28 October 2019 Litecoin Summit “…The Litecoin Summit offers two fun, jam-packed days with something for everyone.” XFOC (XFOC): The IDAX platform will be online XFOC and will open the XFOC/USDT trading pair at 13:00 on October 28. MEDIUM (MDM): The IDAX platform lists MDM and will open MDM/BTC trading pairs on October 28th at 15:00. ZB/ ZB Blockchain: The “2019 Hamburg Intercontinental Dialogue Conference” hosted by ZB.com will be held from October 28th to November 9th at the Four Seasons Hotel Hamburg, Germany. BQT (BQTX)： 28 October 2019 Down for Maintenance BQTX.com will be down for maintenance on the 28th of October from 7 to 12am UTC.
Encrypted project calendar（October 29, 2019）
BTC/Bitcoin: The 2nd World Encryption Conference (WCC) will be held in Las Vegas from October 29th to 31st. ICON (ICX): 29 October 2019 Decentralization “As a result, the decentralization schedule of the ICON Network has been changed from September 24, 2019 to October 29, 2019.” Ark (ARK): and 10 others 29 October 2019 WCC 2019 Second annual Blockchain and Cryptocurrency Technology event, World Crypto Conference (WCC), October 29th — October 31, 2019. Insifa (ISF): 29 October 2019 Prototype Alpha “We from Insifa have decided to be more open. Our Prototype will be developed in scrum. This means new releases every two weeks.”
Encrypted project calendar（October 30, 2019）
Encrypted project calendar（October 31, 2019）
Encrypted project calendar（November 1, 2019）
INS/Insolar: The Insolar (INS) Insolar wallet and the redesigned Insolar Block Explorer will be operational on November 1, 2019. VeChain (VET)：”01 November 2019 BUIDLer Reunion Party BUIDLer Reunion Party in San Francisco from 8–11 PM. uPlexa (UPX)： 01 November 2019 Steadfast Storm — PoS/PoW split (Utility nodes ie. master nodes) — Upcoming Anonymity Network much like TOR — Privacy-based DApps — Reduced network fees. Enjin Coin (ENJ)： 01 November 2019 MFT Binding “ICYMI: On Enjin Coin’s 2nd anniversary (November 1), Enjin MFTs will be bound to hodlers’ blockchain addresses…” Auxilium (AUX)：01 November 2019 AUX Interest Distribution Monthly interest distribution by Auxilium Interest Distribution Platform for coinholders. Also supports charity. Havy (HAVY)：01 November 2019 Token Buyback “Havy tokens buyback, Only in 1 exchange between Idex, Mercatox & Hotbit. The exchange depends on the most lower sell wall.”
Encrypted project calendar（November 2, 2019）
Encrypted project calendar（November 4, 2019）
Encrypted project calendar（November 5, 2019）
Nexus (NXS)： 05 November 2019 Tritium Official Release “Remember, Remember the 5th of November, the day Tritium changed Distributed Ledger. Yes, this is an official release date.” NEM (XEM)： 05 November 2019 Innovation Forum — Kyiv NEM Foundation Council Member Anton Bosenko will be speaking in the upcoming International Innovation Forum in Kyiv on November 5, 2019.
Encrypted project calendar（November 6, 2019）
STEEM/Steem: The Steem (STEEM) SteemFest 4 conference will be held in Bangkok from November 6th to 10th.
Encrypted project calendar（November 7, 2019）
XRP (XRP)： 07 November 2019 Swell 2019 Ripple hosts Swell from November 7th — 8th in Singapore.
Encrypted project calendar（November 8, 2019）
Encrypted project calendar（November 9, 2019）
BTC — So far, BTC has hit a high and fallen back, reaching a maximum of US $8371. At present, BTC has retreated to around us $8200. In the past 24 hours, the net capital inflow of BTC has exceeded US $50 million, and the market capital inflow has decreased significantly compared with the previous period. In terms of the 4-hour line, BTC rose and fell yesterday, with a long shadow. There is a big resistance near the $8400 above. It is possible that BTC will continue to move back in a short term. Sex increased. The medium-term trend is still long. As long as the support of 7800 US dollars is kept below, it is difficult for the air force to dominate the panel. Short term below support around $8100. In terms of operation, close to the resistance level can properly stop the surplus, while maintaining the strategy of bargain hunting.
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As I said earlier, mining Bitcoin is more difficult and more expensive than mining Litecoin. So, to make money mining Bitcoin, you need a very powerful computer. Most people use special computers that are designed to mine Bitcoin. Which are called ASIC miners? As Bitcoin has grown in value, Bitcoin mining has become its own industry. Whole warehouses have been set up to mine Bitcoin. This ... While ASIC chips have been Bitmain’s powerhouses for mining Bitcoin and Bitmain’s mining pools account for significant portions of all the processing power on the global Bitcoin network, they are still finding themselves coming up against a great deal of resistance. There are two ways by which you can mine Bitcoin Diamond: utilizing the cloud mining method or making use of a mining pool. For the purposes of this guide, we will be using a mining pool. To mine Bitcoin Diamond (BCD), you will need: A mining rig/contract; A wallet to store and manage your funds; A miner that is compatible with the X13-BCD ... ASIC è un acronimo che sta per Application Specific Integrated Circuit. Un miner ASIC per il mining di cryptomonete è un unità di calcolo computazionale composta da processori, schede madri, trasformatori di corrente specificatamente disegnati con il solo obbiettivo di minare cryptomonete. According to the data from Skew, Binance Futures now has the most liquid Bitcoin perpetual swap contract. It surpassed BitMEX, which was probed by U.S. regulators in early October. Binance Futures, the futures exchange arm of Binance, launched in September 2019. Since then, it has become one of the largest futures exchanges alongside OKEx and ... Wie man dem Smart Contract wiederum entnehmen kann, gibt es bei dem Burn keinen Gegenwert für die Token. Vielmehr werden die Token direkt verbrannt, was letztlich bedeutet, dass die gesamte verfügbare Menge an BNB-Token sinkt. Das Geld bzw. der Gegenwert bleibt jedoch im Umlauf — bei gleichbleibendem Kurs steigt der „Wert“ aller Token. Wie Binance-CEO in unterem Video eröffnet ... The computing power dedicated to mining bitcoin has hit another new high, suggesting as many as 600,000 machines have come online since June. Bitcoin ASIC Miner Manufacturing Domination: Bitmain and Microbt Battle for Top Positions . Jun 22, 2020 . Bitmain's Cofounder Accused of Hindering Next-Gen Bitcoin Mining Rig Shipments . Jun 14 ...
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