aixbt by Virtuals-pris
i USD$0,0927
-$0,00678 (−6,82 %)
USD
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Markedsverdi
$91,04 mill.
Sirkulerende forsyning
985,01 mill. / 1 mrd.
Historisk toppnivå
$0,96
24-timers volum
$22,96 mill.


Om aixbt by Virtuals
Ansvarsfraskrivelse
Det sosiale innholdet på denne siden («Innhold»), inkludert, men ikke begrenset til, tweets og statistikk levert av LunarCrush, er hentet fra tredjeparter og levert «som det er» kun for informasjonsformål. OKX garanterer ikke kvaliteten eller nøyaktigheten til innholdet, og innholdet representerer ikke synspunktene til OKX. Det er ikke ment å gi (i) investeringsråd eller anbefalinger, (ii) et tilbud eller oppfordring til å kjøpe, selge eller holde digitale ressurser, eller (iii) finansiell, regnskapsmessig, juridisk eller skattemessig rådgivning. Digitale ressurser, inkludert stablecoins og NFT-er, innebærer en høy grad av risiko, og kan variere mye. Prisen og ytelsen til den digitale ressursen er ikke garantert og kan endres uten varsel.
OKX gir ikke anbefalinger om investering eller aktiva. Du bør vurdere nøye om trading eller holding av digitale aktiva er egnet for deg i lys av din økonomiske situasjon. Rådfør deg med din juridiske / skatte- / investeringsprofesjonelle for spørsmål om dine spesifikke omstendigheter. For ytterligere detaljer, se våre vilkår for bruk og risikoadvarsel. Ved å bruke tredjepartsnettstedet («TPN») godtar du at all bruk av TPN vil være underlagt og styrt av vilkårene på TPN. Med mindre det er uttrykkelig angitt skriftlig, er OKX og dets partnere («OKX») ikke på noen måte knyttet til eieren eller operatøren av TPN. Du godtar at OKX ikke er ansvarlige for tap, skade eller andre konsekvenser som oppstår fra din bruk av TPN. Vær oppmerksom på at bruk av TNS kan føre til tap eller reduksjon av eiendelene dine. Produktet er kanskje ikke tilgjengelig i alle jurisdiksjoner.
OKX gir ikke anbefalinger om investering eller aktiva. Du bør vurdere nøye om trading eller holding av digitale aktiva er egnet for deg i lys av din økonomiske situasjon. Rådfør deg med din juridiske / skatte- / investeringsprofesjonelle for spørsmål om dine spesifikke omstendigheter. For ytterligere detaljer, se våre vilkår for bruk og risikoadvarsel. Ved å bruke tredjepartsnettstedet («TPN») godtar du at all bruk av TPN vil være underlagt og styrt av vilkårene på TPN. Med mindre det er uttrykkelig angitt skriftlig, er OKX og dets partnere («OKX») ikke på noen måte knyttet til eieren eller operatøren av TPN. Du godtar at OKX ikke er ansvarlige for tap, skade eller andre konsekvenser som oppstår fra din bruk av TPN. Vær oppmerksom på at bruk av TNS kan føre til tap eller reduksjon av eiendelene dine. Produktet er kanskje ikke tilgjengelig i alle jurisdiksjoner.
Prisutviklingen til aixbt by Virtuals
Det siste året
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3 måneder
−29,46 %
$0,13
30 dager
−9,94 %
$0,10
7 dager
−25,45 %
$0,12
aixbt by Virtuals på sosiale medier

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Veiledninger
Finn ut hvordan du kjøper aixbt by Virtuals
Når man begynner med krypto, kan det føles litt overveldende, men det er lettere enn du kanskje tror å lære hvor og hvordan man kjøper krypto.
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aixbt by Virtuals Vanlige spørsmål
For øyeblikket er en aixbt by Virtuals verdt $0,0927. For svar og innsikt i prishandlingen til aixbt by Virtuals, er du på rett sted. Utforsk de nyeste aixbt by Virtuals diagrammene og trade ansvarlig med OKX.
Kryptovalutaer, for eksempel aixbt by Virtuals, er digitale eiendeler som opererer på en offentlig hovedbok kalt blokk-kjeder. Lær mer om mynter og tokens som tilbys på OKX og deres forskjellige attributter, som inkluderer live-priser og sanntidsdiagrammer.
Takket være finanskrisen i 2008 økte interessen for desentralisert finans. Bitcoin tilbød en ny løsning ved å være en sikker digital ressurs på et desentralisert nettverk. Siden den gang har mange andre tokens som aixbt by Virtuals blitt opprettet også.
Ta en titt på vår aixbt by Virtuals prisantydningsside for å forutsi fremtidige priser og bestemme prismålene dine.
Utforsk aixbt by Virtuals
AIXBT er en plattform for KI-agent og kryptomarkedsetterretning.
ESG-erklæring
ESG-forskrifter (Environmental, Social, and Governance) for kryptoaktiva tar sikte på å adressere deres miljøpåvirkning (f.eks. energikrevende gruvedrift), fremme åpenhet og sikre etisk styringspraksis for å tilpasse kryptoindustrien med bredere bærekraft- og samfunnsmål. Disse forskriftene oppfordrer til overholdelse av standarder som reduserer risiko og fremmer tillit til digitale eiendeler.
Aktivadetaljer
Navn
OKCoin Europe Ltd
Relevant juridisk enhetsidentifikator
54930069NLWEIGLHXU42
Navn på kryptoaktiva
aixbt by Virtuals
Konsensusmekanisme
aixbt by Virtuals is present on the following networks: Base, Ethereum, Solana.
Base is a Layer-2 (L2) solution on Ethereum that was introduced by Coinbase and developed using Optimism's OP Stack. L2 transactions do not have their own consensus mechanism and are only validated by the execution clients. The so-called sequencer regularly bundles stacks of L2 transactions and publishes them on the L1 network, i.e. Ethereum. Ethereum's consensus mechanism (Proof-of-stake) thus indirectly secures all L2 transactions as soon as they are written to L1.
The crypto-asset's Proof-of-Stake (PoS) consensus mechanism, introduced with The Merge in 2022, replaces mining with validator staking. Validators must stake at least 32 ETH every block a validator is randomly chosen to propose the next block. Once proposed the other validators verify the blocks integrity. The network operates on a slot and epoch system, where a new block is proposed every 12 seconds, and finalization occurs after two epochs (~12.8 minutes) using Casper-FFG. The Beacon Chain coordinates validators, while the fork-choice rule (LMD-GHOST) ensures the chain follows the heaviest accumulated validator votes. Validators earn rewards for proposing and verifying blocks, but face slashing for malicious behavior or inactivity. PoS aims to improve energy efficiency, security, and scalability, with future upgrades like Proto-Danksharding enhancing transaction efficiency.
Solana uses a unique combination of Proof of History (PoH) and Proof of Stake (PoS) to achieve high throughput, low latency, and robust security. Here’s a detailed explanation of how these mechanisms work: Core Concepts 1. Proof of History (PoH): Time-Stamped Transactions: PoH is a cryptographic technique that timestamps transactions, creating a historical record that proves that an event has occurred at a specific moment in time. Verifiable Delay Function: PoH uses a Verifiable Delay Function (VDF) to generate a unique hash that includes the transaction and the time it was processed. This sequence of hashes provides a verifiable order of events, enabling the network to efficiently agree on the sequence of transactions. 2. Proof of Stake (PoS): Validator Selection: Validators are chosen to produce new blocks based on the number of SOL tokens they have staked. The more tokens staked, the higher the chance of being selected to validate transactions and produce new blocks. Delegation: Token holders can delegate their SOL tokens to validators, earning rewards proportional to their stake while enhancing the network's security. Consensus Process 1. Transaction Validation: Transactions are broadcast to the network and collected by validators. Each transaction is validated to ensure it meets the network’s criteria, such as having correct signatures and sufficient funds. 2. PoH Sequence Generation: A validator generates a sequence of hashes using PoH, each containing a timestamp and the previous hash. This process creates a historical record of transactions, establishing a cryptographic clock for the network. 3. Block Production: The network uses PoS to select a leader validator based on their stake. The leader is responsible for bundling the validated transactions into a block. The leader validator uses the PoH sequence to order transactions within the block, ensuring that all transactions are processed in the correct order. 4. Consensus and Finalization: Other validators verify the block produced by the leader validator. They check the correctness of the PoH sequence and validate the transactions within the block. Once the block is verified, it is added to the blockchain. Validators sign off on the block, and it is considered finalized. Security and Economic Incentives 1. Incentives for Validators: Block Rewards: Validators earn rewards for producing and validating blocks. These rewards are distributed in SOL tokens and are proportional to the validator’s stake and performance. Transaction Fees: Validators also earn transaction fees from the transactions included in the blocks they produce. These fees provide an additional incentive for validators to process transactions efficiently. 2. Security: Staking: Validators must stake SOL tokens to participate in the consensus process. This staking acts as collateral, incentivizing validators to act honestly. If a validator behaves maliciously or fails to perform, they risk losing their staked tokens. Delegated Staking: Token holders can delegate their SOL tokens to validators, enhancing network security and decentralization. Delegators share in the rewards and are incentivized to choose reliable validators. 3. Economic Penalties: Slashing: Validators can be penalized for malicious behavior, such as double-signing or producing invalid blocks. This penalty, known as slashing, results in the loss of a portion of the staked tokens, discouraging dishonest actions.
Insentivmekanismer og gjeldende gebyrer
aixbt by Virtuals is present on the following networks: Base, Ethereum, Solana.
Base is a Layer-2 (L2) solution on Ethereum that uses optimistic rollups provided by the OP Stack on which it was developed. Transaction on base are bundled by a, so called, sequencer and the result is regularly submitted as an Layer-1 (L1) transactions. This way many L2 transactions get combined into a single L1 transaction. This lowers the average transaction cost per transaction, because many L2 transactions together fund the transaction cost for the single L1 transaction. This creates incentives to use base rather than the L1, i.e. Ethereum, itself. To get crypto-assets in and out of base, a special smart contract on Ethereum is used. Since there is no consensus mechanism on L2 an additional mechanism ensures that only existing funds can be withdrawn from L2. When a user wants to withdraw funds, that user needs to submit a withdrawal request on L1. If this request remains unchallenged for a period of time the funds can be withdrawn. During this time period any other user can submit a fault proof, which will start a dispute resolution process. This process is designed with economic incentives for correct behaviour.
The crypto-asset's PoS system secures transactions through validator incentives and economic penalties. Validators stake at least 32 ETH and earn rewards for proposing blocks, attesting to valid ones, and participating in sync committees. Rewards are paid in newly issued ETH and transaction fees. Under EIP-1559, transaction fees consist of a base fee, which is burned to reduce supply, and an optional priority fee (tip) paid to validators. Validators face slashing if they act maliciously and incur penalties for inactivity. This system aims to increase security by aligning incentives while making the crypto-asset's fee structure more predictable and deflationary during high network activity.
Solana uses a combination of Proof of History (PoH) and Proof of Stake (PoS) to secure its network and validate transactions. Here’s a detailed explanation of the incentive mechanisms and applicable fees: Incentive Mechanisms 4. Validators: Staking Rewards: Validators are chosen based on the number of SOL tokens they have staked. They earn rewards for producing and validating blocks, which are distributed in SOL. The more tokens staked, the higher the chances of being selected to validate transactions and produce new blocks. Transaction Fees: Validators earn a portion of the transaction fees paid by users for the transactions they include in the blocks. This provides an additional financial incentive for validators to process transactions efficiently and maintain the network's integrity. 5. Delegators: Delegated Staking: Token holders who do not wish to run a validator node can delegate their SOL tokens to a validator. In return, delegators share in the rewards earned by the validators. This encourages widespread participation in securing the network and ensures decentralization. 6. Economic Security: Slashing: Validators can be penalized for malicious behavior, such as producing invalid blocks or being frequently offline. This penalty, known as slashing, involves the loss of a portion of their staked tokens. Slashing deters dishonest actions and ensures that validators act in the best interest of the network. Opportunity Cost: By staking SOL tokens, validators and delegators lock up their tokens, which could otherwise be used or sold. This opportunity cost incentivizes participants to act honestly to earn rewards and avoid penalties. Fees Applicable on the Solana Blockchain 7. Transaction Fees: Low and Predictable Fees: Solana is designed to handle a high throughput of transactions, which helps keep fees low and predictable. The average transaction fee on Solana is significantly lower compared to other blockchains like Ethereum. Fee Structure: Fees are paid in SOL and are used to compensate validators for the resources they expend to process transactions. This includes computational power and network bandwidth. 8. Rent Fees: State Storage: Solana charges rent fees for storing data on the blockchain. These fees are designed to discourage inefficient use of state storage and encourage developers to clean up unused state. Rent fees help maintain the efficiency and performance of the network. 9. Smart Contract Fees: Execution Costs: Similar to transaction fees, fees for deploying and interacting with smart contracts on Solana are based on the computational resources required. This ensures that users are charged proportionally for the resources they consume.
Starten på perioden som erklæringen gjelder for
2024-09-24
Slutten på perioden som erklæringen gjelder for
2025-09-24
Energirapport
Energiforbruk
29.10174 (kWh/a)
Energiforbrukskilder og metodologier
The energy consumption of this asset is aggregated across multiple components:
To determine the energy consumption of a token, the energy consumption of the network(s) base, ethereum, solana is calculated first. For the energy consumption of the token, a fraction of the energy consumption of the network is attributed to the token, which is determined based on the activity of the crypto-asset within the network. When calculating the energy consumption, the Functionally Fungible Group Digital Token Identifier (FFG DTI) is used - if available - to determine all implementations of the asset in scope. The mappings are updated regularly, based on data of the Digital Token Identifier Foundation. The information regarding the hardware used and the number of participants in the network is based on assumptions that are verified with best effort using empirical data. In general, participants are assumed to be largely economically rational. As a precautionary principle, we make assumptions on the conservative side when in doubt, i.e. making higher estimates for the adverse impacts.
Markedsverdi
$91,04 mill.
Sirkulerende forsyning
985,01 mill. / 1 mrd.
Historisk toppnivå
$0,96
24-timers volum
$22,96 mill.

