
IOST
IOST 价格
$0.0038900
+$0.000020000
(+0.51%)
过去 24 小时的价格变化

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IOST 市场信息
市值
市值是通过流通总应量与最新价格相乘进行计算。市值 = 当前流通量 × 最新价
流通总量
目前该代币在市场流通的数量
市值排行
该资产的市值排名
历史最高价
该代币在交易历史中的最高价格
历史最低价
该代币在交易历史中的最低价格
24 小时最高
$0.0039700
24 小时最低
$0.0038200
历史最高价
$20.0000
-99.99% (-$19.9961)
最后更新日期:2018年1月15日
历史最低价
$0.0014300
+172.02% (+$0.0024600)
最后更新日期:2020年3月13日
IOST 计算器


IOST 价格表现 (美元)
IOST 当前价格为 $0.0038900。IOST 的价格在过去 24 小时内上涨了 +0.52%。目前,IOST 市值排名为第 0 名,实时市值为 $8,935.34万,流通供应量为 22,911,122,708 IOST,最大供应量为 90,000,000,000 IOST。我们会实时更新 IOST/USD 的价格。
今日
+$0.000020000
+0.51%
7 天
-$0.00046
-10.52%
30 天
-$0.00109
-21.85%
3 个月
-$0.00279
-41.76%
关于 IOST (IOST)
此评级是欧易从不同来源收集的汇总评级,仅供一般参考。欧易不保证评级的质量或准确性。欧易无意提供 (i) 投资建议或推荐;(ii) 购买、出售或持有数字资产的要约或招揽;(iii) 财务、会计、法律或税务建议。包括稳定币和 NFT 的数字资产容易受到市场波动的影响,风险较高,波动较大,可能会贬值甚至变得一文不值。数字资产的价格和性能不受保证,且可能会发生变化,恕不另行通知。您的数字资产不受潜在损失保险的保障。 历史回报并不代表未来回报。欧易不保证任何回报、本金或利息的偿还。欧易不提供投资或资产建议。您应该根据自身的财务状况仔细考虑交易或持有数字资产是否适合您。具体情况请咨询您的专业法务、税务或投资人士。
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IOST 常见问题
IOST 今天值多少钱?
目前,一个 IOST 价值是 $0.0038900。如果您想要了解 IOST 价格走势与行情洞察,那么这里就是您的最佳选择。在欧易探索最新的 IOST 图表,进行专业交易。
数字货币是什么?
数字货币,例如 IOST 是在称为区块链的公共分类账上运行的数字资产。了解有关欧易上提供的数字货币和代币及其不同属性的更多信息,其中包括实时价格和实时图表。
数字货币是什么时候开始的?
由于 2008 年金融危机,人们对去中心化金融的兴趣激增。比特币作为去中心化网络上的安全数字资产提供了一种新颖的解决方案。从那时起,许多其他代币 (例如 IOST) 也诞生了。
IOST 的价格今天会涨吗?
查看 IOST 价格预测页面,预测未来价格,帮助您设定价格目标。
ESG 披露
ESG (环境、社会和治理) 法规针对数字资产,旨在应对其环境影响 (如高能耗挖矿)、提升透明度,并确保合规的治理实践。使数字代币行业与更广泛的可持续发展和社会目标保持一致。这些法规鼓励遵循相关标准,以降低风险并提高数字资产的可信度。
资产详情
名称
OKcoin Europe LTD
相关法人机构识别编码
54930069NLWEIGLHXU42
代币名称
IOST
共识机制
The IOST blockchain uses a consensus mechanism called Proof of Believability (PoB), which is designed to combine the advantages of both Proof of Stake (PoS) and Delegated Proof of Stake (DPoS). The PoB mechanism ensures high scalability, decentralization, and fairness while providing security and efficiency for the network. Key Features of IOST's Consensus Mechanism: 1. Proof of Believability (PoB): Validators in the IOST network are chosen based on their "believability," which is determined by the amount of IOST tokens staked, their performance, and their reputation within the network. The more tokens a validator stakes and the better their performance, the higher their believability score, making them more likely to be selected as a block producer. 2. Scalability and Efficiency: PoB ensures that IOST can process high transaction throughput and scale effectively. The system uses a process of "sharding" where the network is divided into multiple smaller units, allowing for parallel processing and high scalability. 3. Fairness: The selection process for block producers is designed to be fair and decentralized. By using PoB, the IOST blockchain reduces the potential for centralization that can occur in traditional PoS systems, ensuring that more participants can take part in the validation process. 4. Delegated Proof of Stake (DPoS) Elements: Validators are elected by token holders who vote with their IOST tokens. The elected validators produce and validate blocks, and the rewards are shared among them based on their believability and the number of tokens staked. 5. Finality and Security: The PoB mechanism allows for quick finality of transactions, with each block being confirmed as soon as it's produced by a validator, enhancing the overall security and efficiency of the IOST blockchain.
奖励机制与相应费用
The IOST blockchain incentivizes network participants, ensuring active participation and security through a combination of rewards for validators and delegators, along with transaction fees. Here’s how the incentive mechanism and applicable fees work: Key Features of IOST’s Incentive Mechanism: 1. Validator Rewards: Block Rewards: Validators are rewarded with IOST tokens for producing and validating blocks. The rewards are based on their believability score, determined by their stake in the network and their performance. Transaction Fees: In addition to block rewards, validators earn transaction fees from the transactions they validate. These fees incentivize them to prioritize transaction inclusion and maintain network integrity. 2. Delegator Rewards: Delegators can stake their IOST tokens to vote for validators. When delegating, token holders earn a share of the rewards generated by the validator, proportional to the amount of tokens delegated. This encourages users to participate in securing the network and support trusted validators. 3. Staking and Reputation: Validators must stake a certain amount of IOST tokens to be eligible to validate transactions. The more tokens staked, the higher the chance of being selected as a block producer. Performance is also a key factor in improving a validator's believability score, which directly impacts their chances of producing more blocks and earning rewards. 4. Penalties: Validators who behave maliciously or fail to meet performance standards are penalized, including the potential loss of part of their staked tokens. This ensures the security and reliability of the network. Applicable Fees: 1. Transaction Fees: Transaction fees are paid by users to have their transactions processed and included in blocks. These fees vary depending on the complexity of the transaction and network demand. The fees are distributed to the validators who process the transactions, providing them with a continuous incentive to maintain the network. 2. Network Resource Fees: IOST operates on a resource-based model where users must pay for energy and bandwidth to interact with the network, particularly for smart contract executions and dApp usage. Users who stake more IOST tokens are allocated more resources. 3. Smart Contract Execution Fees: Interacting with decentralized applications (dApps) and executing smart contracts on the IOST network requires paying fees based on the computational resources consumed. These fees are paid in IOST tokens and support the operational costs of running dApps.
信息披露时间段的开始日期
2024-03-31
信息披露时间段的结束日期
2025-03-31
能源报告
能源消耗
103017.60000 (kWh/a)
能源消耗来源与评估体系
For the calculation of energy consumptions, the so called “bottom-up” approach is being used. The nodes are considered to be the central factor for the energy consumption of the network. These assumptions are made on the basis of empirical findings through the use of public information sites, open-source crawlers and crawlers developed in-house. The main determinants for estimating the hardware used within the network are the requirements for operating the client software. The energy consumption of the hardware devices was measured in certified test laboratories. When calculating the energy consumption, we used - if available - the Functionally Fungible Group Digital Token Identifier (FFG DTI) to determine all implementations of the asset of question in scope and we update the mappings regulary, based on data of the Digital Token Identifier Foundation.
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IOST 计算器

