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Malik Sahib_00

Crypto analyst
Detentor de DUSK
Detentor de DUSK
Trader de Alta Frequência
1.5 ano(s)
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How Stablecoin Transfers Work on the Plasma Network?Plasma is designed to keep the stablecoin transfer process simple and easy to understand without burdening users with complex technical details. Here’s how stablecoin transfers work on the network. 1. Transaction Fee Abstraction Concept Normally on blockchains, users must hold the native token (ETH, SOL, DUSK, etc.). They must pay gas fees themselves. Every transaction directly exposes who paid the fee. But Transaction Fee Abstraction changes this by allowing fees to be paid by someone else, paid in any token and paid indirectly or invisibly. It is managed by smart contracts or protocols.So the user focuses on the action, not the fee mechanics. In simple stablecoin transfers, users don’t always need to own XPL tokens. Transaction fees are structured to be more streamlined for end-users, including the possibility of paying directly with stablecoins. This approach reduces friction and makes the transfer process more convenient. How Transaction Fee Abstraction Works? 1. Fee Payer Is Abstracted: Instead of the user paying gas: • A relayer, sponsor, or dApp pays the transaction fee • The user signs the transaction, but doesn’t pay gas directly For instance, You sign a transaction → A relayer submits it → The relayer pays the fee 2. Any-Token Fee Payments: With TFA: • Fees don’t have to be paid in the native token • Smart contracts can accept stablecoins, deduct fees from balances, or convert tokens automatically. For instance, User pays in USDC → Protocol converts it to native gas token behind the scenes 3. Meta-Transactions (Key Mechanism) TFA is often implemented using meta-transactions, user signs a message (not a blockchain transaction), a relayer submits it on-chain, the relayer is compensated later. This preserves, user intent, security, gasless UX 4. Smart Account Integration: With account abstraction (e.g., ERC-4337 style systems), wallets behave like smart contracts, fee logic can be customized, conditions can be added (limits, sponsors, batching). This enables, sponsored transactions, gas fee refunds, subscription-based models. Why Transaction Fee Abstraction Matters? 1. For better user experience: No need to buy native tokens first No gas confusion Onboarding becomes frictionless This is crucial for Web2 → Web3 migration and Non-technical users. 2. Improved Privacy: Fee payer ≠ transaction signer Harder to link identities Reduced on-chain traceability This aligns well with privacy-focused networks like Zero-knowledge–based chains. 3. Enterprise & Institutional Adoption: Businesses prefer: Predictable costs Centralized fee management Compliance-friendly billing TFA allows companies to sponsor user actions, users to transact without holding crypto. 4. New Economic Models Transaction fees can be: Sponsored by DAOs Paid through subscriptions Included in service costs Dynamically adjusted Let see the Use Case: ✓ DeFi App with Fee Abstraction • User swaps tokens • User signs a message • Relayer submits transaction • Protocol pays gas • User is charged a small fee in swapped token • User experience: “Click → Confirm → Done” No gas wallets. No native tokens. 2. Fast Transaction Settlement: The Plasma network is optimized to achieve transaction finality in a short time. This design ensures that stablecoin transfers can be processed quickly and reliably, making it suitable for cross-border payments and fund transfers. So that once a transaction is accepted, it is irreversible and safe to rely on within a very short time (seconds or less). Fast transaction settlement means when your transaction is confirmed, it’s done — no waiting, no rollback. How Fast Transaction Settlement Is Achieved? 1. Byzantine Fault Tolerant (BFT) Consensus Instead of probabilistic consensus (like PoW): • Validators vote on blocks • Once consensus is reached, finality is immediate For instance, Segregated Byzantine Agreement (SBA) Result: Settlement in 1–5 seconds 2. Block Finality at First Confirmation: Some networks finalize at the first block, without needing multiple confirmations. This eliminates chain reorganizations, double-spend risk. 3. Parallel Processing & Efficient Block Design: Fast settlement also depends on small block sizes, efficient transaction execution, parallel validation. This reduces congestion and latency. 4. Optimized Network Layer: High-speed settlement requires fast message propagation, low validator communication overhead and geographic decentralization without delays. Why Fast Transaction Settlement Matters? 1. For Better User Experience: • Payments feel instant • No waiting for confirmations • Web2-like responsiveness 2. Financial Use Cases: Critical for Trading & DeFi, Payments & remittances and Tokenized securities Where: Delays = financial risk 3. Capital Efficiency: Assets can be reused immediately. There is no need to lock funds. Enables real-time settlement 4. Security & Trust: Fast final settlement means no rollback, no uncertainty, strong economic guarantees. For instance, slow settlement Transaction confirmed → wait 10–30 minutes → considered final Fast settlement Transaction confirmed → final in 2 seconds → funds reusableFor example: Privacy-preserving networks finalize transactions quickly without exposing user data This enables confidential finance at scale. #Plasma $XPL @Plasma {spot}(XPLUSDT)

How Stablecoin Transfers Work on the Plasma Network?

Plasma is designed to keep the stablecoin transfer process simple and easy to understand without burdening users with complex technical details. Here’s how stablecoin transfers work on the network.

1. Transaction Fee Abstraction Concept
Normally on blockchains, users must hold the native token (ETH, SOL, DUSK, etc.). They must pay gas fees themselves. Every transaction directly exposes who paid the fee. But Transaction Fee Abstraction changes this by allowing fees to be paid by someone else, paid in any token and paid indirectly or invisibly. It is managed by smart contracts or protocols.So the user focuses on the action, not the fee mechanics. In simple stablecoin transfers, users don’t always need to own XPL tokens. Transaction fees are structured to be more streamlined for end-users, including the possibility of paying directly with stablecoins. This approach reduces friction and makes the transfer process more convenient.
How Transaction Fee Abstraction Works?
1. Fee Payer Is Abstracted:
Instead of the user paying gas:
• A relayer, sponsor, or dApp pays the transaction fee
• The user signs the transaction, but doesn’t pay gas directly
For instance,
You sign a transaction → A relayer submits it → The relayer pays the fee
2. Any-Token Fee Payments:
With TFA:
• Fees don’t have to be paid in the native token
• Smart contracts can accept stablecoins, deduct fees from balances, or convert tokens automatically.
For instance,
User pays in USDC → Protocol converts it to native gas token behind the scenes
3. Meta-Transactions (Key Mechanism)
TFA is often implemented using meta-transactions, user signs a message (not a blockchain transaction), a relayer submits it on-chain, the relayer is compensated later.
This preserves, user intent, security, gasless UX
4. Smart Account Integration:
With account abstraction (e.g., ERC-4337 style systems), wallets behave like smart contracts, fee logic can be customized, conditions can be added (limits, sponsors, batching). This enables, sponsored transactions, gas fee refunds, subscription-based models.
Why Transaction Fee Abstraction Matters?
1. For better user experience:
No need to buy native tokens first
No gas confusion
Onboarding becomes frictionless
This is crucial for Web2 → Web3 migration and Non-technical users.
2. Improved Privacy:
Fee payer ≠ transaction signer
Harder to link identities
Reduced on-chain traceability
This aligns well with privacy-focused networks like Zero-knowledge–based chains.
3. Enterprise & Institutional Adoption:
Businesses prefer:
Predictable costs
Centralized fee management
Compliance-friendly billing
TFA allows companies to sponsor user actions, users to transact without holding crypto.
4. New Economic Models
Transaction fees can be:
Sponsored by DAOs
Paid through subscriptions
Included in service costs
Dynamically adjusted
Let see the Use Case:
✓ DeFi App with Fee Abstraction
• User swaps tokens
• User signs a message
• Relayer submits transaction
• Protocol pays gas
• User is charged a small fee in swapped token
• User experience: “Click → Confirm → Done”
No gas wallets. No native tokens.

2. Fast Transaction Settlement:
The Plasma network is optimized to achieve transaction finality in a short time. This design ensures that stablecoin transfers can be processed quickly and reliably, making it suitable for cross-border payments and fund transfers. So that once a transaction is accepted, it is irreversible and safe to rely on within a very short time (seconds or less). Fast transaction settlement means when your transaction is confirmed, it’s done — no waiting, no rollback.
How Fast Transaction Settlement Is Achieved?
1. Byzantine Fault Tolerant (BFT) Consensus
Instead of probabilistic consensus (like PoW):
• Validators vote on blocks
• Once consensus is reached, finality is immediate
For instance, Segregated Byzantine Agreement (SBA)
Result: Settlement in 1–5 seconds
2. Block Finality at First Confirmation:
Some networks finalize at the first block, without needing multiple confirmations.
This eliminates chain reorganizations, double-spend risk.
3. Parallel Processing & Efficient Block Design:
Fast settlement also depends on small block sizes, efficient transaction execution, parallel validation.
This reduces congestion and latency.
4. Optimized Network Layer:
High-speed settlement requires fast message propagation, low validator communication overhead and geographic decentralization without delays.
Why Fast Transaction Settlement Matters?
1. For Better User Experience:
• Payments feel instant
• No waiting for confirmations
• Web2-like responsiveness
2. Financial Use Cases:
Critical for Trading & DeFi, Payments & remittances and Tokenized securities
Where: Delays = financial risk
3. Capital Efficiency:
Assets can be reused immediately. There is no need to lock funds. Enables real-time settlement
4. Security & Trust:
Fast final settlement means no rollback, no uncertainty, strong economic guarantees.
For instance, slow settlement
Transaction confirmed → wait 10–30 minutes → considered final
Fast settlement
Transaction confirmed → final in 2 seconds → funds reusableFor example:
Privacy-preserving networks finalize transactions quickly without exposing user data
This enables confidential finance at scale.

#Plasma $XPL @Plasma
Traduzir
#Plasma $XPL @Plasma XPL is more than just a gas token. While Plasma allows users to pay gas in USDT or other tokens, its native token XPL still plays several important roles: • Paying network gas (in non-paymaster cases) • Staking and validator rewards • Governance (voting and proposals) • Ecosystem incentives for developers and contributors ✓ Users are not forced to hold XPL for basic operations, but the token underpins Plasma’s incentive and governance model.
#Plasma $XPL @Plasma
XPL is more than just a gas token.
While Plasma allows users to pay gas in USDT or other tokens, its native token XPL still plays several important roles:
• Paying network gas (in non-paymaster cases)
• Staking and validator rewards
• Governance (voting and proposals)
• Ecosystem incentives for developers and contributors
✓ Users are not forced to hold XPL for basic operations, but the token underpins Plasma’s incentive and governance model.
Traduzir
Plasma is built to balance stablecoin transactions efficiency with network security, without sacrificing ease of integration with existing ecosystems. The general architecture of Plasma includes: 1. PlasmaBFT Consensus 2. EVM Compatibility 3. Bitcoin Security Integration #Plasma $XPL @Plasma
Plasma is built to balance stablecoin transactions efficiency with network security, without sacrificing ease of integration with existing ecosystems.
The general architecture of Plasma includes:
1. PlasmaBFT Consensus
2. EVM Compatibility
3. Bitcoin Security Integration
#Plasma $XPL @Plasma
Traduzir
Plasma: The Infrastructure for Stablecoins• Plasma: Plasma is a Layer-1 blockchain purpose-built for stablecoin payments. It is optimized for fast, predictable transfers of assets like USDT, making it suitable for real-world payments and remittances rather than speculative crypto use. Plasma is not a general-purpose or trading-focused chain. Its native token, XPL, is used internally for security, validation, and governance—not as a consumer payment or investment asset. Plasma functions purely as payment infrastructure, supporting stablecoin movement without offering exchanges, trading, or investment services. • Plasma’s Focus on Stablecoin Infrastructure: Plasma was built on the assumption that stablecoins are the network’s primary use case. From the design stage, stablecoin transactions were placed at the core of the system, not simply an added feature among other functions. This approach led Plasma to optimize the network specifically for stablecoin transfers, with a primary focus on smooth processing, efficient fees, and fast and certain transaction finality. Stablecoins are treated as a means of transferring value that must perform consistently, both for everyday use and at scale. This orientation distinguishes Plasma from general-purpose blockchains that serve multiple needs simultaneously. On mainstream networks, stablecoins often have to share capacity with other activities, whereas Plasma focuses its entire infrastructure design on optimally supporting stablecoin transactions. #Plasma $XPL @Plasma {spot}(XPLUSDT)

Plasma: The Infrastructure for Stablecoins

• Plasma:
Plasma is a Layer-1 blockchain purpose-built for stablecoin payments.
It is optimized for fast, predictable transfers of assets like USDT, making it suitable for real-world payments and remittances rather than speculative crypto use.
Plasma is not a general-purpose or trading-focused chain. Its native token, XPL, is used internally for security, validation, and governance—not as a consumer payment or investment asset.
Plasma functions purely as payment infrastructure, supporting stablecoin movement without offering exchanges, trading, or investment services.

• Plasma’s Focus on Stablecoin Infrastructure:
Plasma was built on the assumption that stablecoins are the network’s primary use case. From the design stage, stablecoin transactions were placed at the core of the system, not simply an added feature among other functions.
This approach led Plasma to optimize the network specifically for stablecoin transfers, with a primary focus on smooth processing, efficient fees, and fast and certain transaction finality.
Stablecoins are treated as a means of transferring value that must perform consistently, both for everyday use and at scale.
This orientation distinguishes Plasma from general-purpose blockchains that serve multiple needs simultaneously.
On mainstream networks, stablecoins often have to share capacity with other activities, whereas Plasma focuses its entire infrastructure design on optimally supporting stablecoin transactions.

#Plasma $XPL @Plasma
Ver original
$XPL , o token nativo de #Plasma , alimenta-o ao garantir o mecanismo de consenso plasmaBFT. Ele alimenta a camada de execução EVM baseada em Reth e autoriza a ponte de Bitcoin minimizada em confiança. @Plasma {spot}(XPLUSDT)
$XPL , o token nativo de #Plasma , alimenta-o ao garantir o mecanismo de consenso plasmaBFT. Ele alimenta a camada de execução EVM baseada em Reth e autoriza a ponte de Bitcoin minimizada em confiança.
@Plasma
Ver original
Plasma: O Chrome das StablecoinsPara mim, o Plasma é o Chrome das stablecoins. O Internet Explorer dominou a web inicial, mas foi prejudicado pela lentidão, má segurança e plugins pesados. O Google Chrome revolucionou a navegação com 10x mais velocidade, atualizações automáticas e estabilidade, tornando-se o padrão global. Da mesma forma, as blockchains de stablecoin de hoje são como o IE—lentas, caras e congestionadas. @Plasma é uma nova blockchain de Camada-1 projetada para ser o Chrome das stablecoins, oferecendo uma base perfeita e de alto desempenho. Inovações Centrais do Plasma

Plasma: O Chrome das Stablecoins

Para mim, o Plasma é o Chrome das stablecoins.
O Internet Explorer dominou a web inicial, mas foi prejudicado pela lentidão, má segurança e plugins pesados. O Google Chrome revolucionou a navegação com 10x mais velocidade, atualizações automáticas e estabilidade, tornando-se o padrão global.
Da mesma forma, as blockchains de stablecoin de hoje são como o IE—lentas, caras e congestionadas. @Plasma é uma nova blockchain de Camada-1 projetada para ser o Chrome das stablecoins, oferecendo uma base perfeita e de alto desempenho.

Inovações Centrais do Plasma
Traduzir
Key Elements of PlasmaPlasma (XPL) marks an important step forward in blockchain development, created specifically to meet the expanding needs of the global stablecoin ecosystem. It is the first Bitcoin-secured blockchain designed from inception as a foundation for stablecoin operations, offering new capabilities that may transform how businesses, financial institutions, and developers handle digital payments and international transfers. Key Elements of Plasma’s Design 1. Bitcoin-Linked Sidechain Approach: Plasma operates as a Bitcoin sidechain with full compatibility for the Ethereum Virtual Machine (EVM). This structure allows it to inherit security assurances from Bitcoin while supporting the flexible, programmable environment of Ethereum-style smart contracts. By routinely submitting state checkpoints to the Bitcoin blockchain, Plasma ensures transaction integrity backed by Bitcoin’s established security. This model tackles a key challenge in distributed systems: achieving scalability without sacrificing security. 2. PlasmaBFT Agreement Protocol: Central to Plasma’s innovation is PlasmaBFT, a consensus mechanism inspired by HotStuff and designed for fast settlement and minimal delay. This Byzantine Fault Tolerance (BFT) protocol enables the network to reach agreement even if some participants act dishonestly or fail. The streamlined BFT design simplifies the consensus process, allowing quicker proposal validation and significantly cutting transaction confirmation time. As a result, most transactions are finalized in under a second, positioning Plasma as a strong candidate for high-volume stablecoin transfers. 3. EVM Support and Developer Tools: Plasma’s execution layer is powered by Reth—a modular, high-performance Ethereum-compatible engine built in Rust. This setup lets developers migrate existing Ethereum smart contracts directly to Plasma without rewriting them, while gaining improved performance and the added security of Bitcoin’s underlying consensus. @Plasma #Plasma $XPL {spot}(XPLUSDT)

Key Elements of Plasma

Plasma (XPL) marks an important step forward in blockchain development, created specifically to meet the expanding needs of the global stablecoin ecosystem. It is the first Bitcoin-secured blockchain designed from inception as a foundation for stablecoin operations, offering new capabilities that may transform how businesses, financial institutions, and developers handle digital payments and international transfers.
Key Elements of Plasma’s Design
1. Bitcoin-Linked Sidechain Approach:
Plasma operates as a Bitcoin sidechain with full compatibility for the Ethereum Virtual Machine (EVM). This structure allows it to inherit security assurances from Bitcoin while supporting the flexible, programmable environment of Ethereum-style smart contracts.
By routinely submitting state checkpoints to the Bitcoin blockchain, Plasma ensures transaction integrity backed by Bitcoin’s established security. This model tackles a key challenge in distributed systems: achieving scalability without sacrificing security.
2. PlasmaBFT Agreement Protocol:
Central to Plasma’s innovation is PlasmaBFT, a consensus mechanism inspired by HotStuff and designed for fast settlement and minimal delay. This Byzantine Fault Tolerance (BFT) protocol enables the network to reach agreement even if some participants act dishonestly or fail.
The streamlined BFT design simplifies the consensus process, allowing quicker proposal validation and significantly cutting transaction confirmation time. As a result, most transactions are finalized in under a second, positioning Plasma as a strong candidate for high-volume stablecoin transfers.
3. EVM Support and Developer Tools:
Plasma’s execution layer is powered by Reth—a modular, high-performance Ethereum-compatible engine built in Rust. This setup lets developers migrate existing Ethereum smart contracts directly to Plasma without rewriting them, while gaining improved performance and the added security of Bitcoin’s underlying consensus.
@Plasma #Plasma $XPL
Ver original
Questões de conformidade, é por isso que os investidores exigem o status legal dos tokens. Aqui está o Plasma, que fornece conformidade regulatória e descentralização desafiadora no mundo cripto. O Plasma garante que eles atendam aos padrões financeiros globais conforme prescrito pelo MiCA e oferece monitoramento transparente, apresentando-se como uma blockchain de stablecoin. @Plasma #Plasma $XPL {spot}(XPLUSDT)
Questões de conformidade, é por isso que os investidores exigem o status legal dos tokens. Aqui está o Plasma, que fornece conformidade regulatória e descentralização desafiadora no mundo cripto. O Plasma garante que eles atendam aos padrões financeiros globais conforme prescrito pelo MiCA e oferece monitoramento transparente, apresentando-se como uma blockchain de stablecoin.
@Plasma #Plasma $XPL
Ver original
#Plasma é uma blockchain projetada com desempenho elevado que serve como infraestrutura dedicada para a circulação global de stablecoins. Alimentada pelo seu token nativo $XPL , a rede permite transferências instantâneas e mantém baixas taxas de transação. Com total compatibilidade com EVM, @Plasma garante uma experiência sem atritos tanto para usuários quanto para desenvolvedores, facilitando a adoção de pagamentos em moeda digital. {spot}(XPLUSDT)
#Plasma é uma blockchain projetada com desempenho elevado que serve como infraestrutura dedicada para a circulação global de stablecoins. Alimentada pelo seu token nativo $XPL , a rede permite transferências instantâneas e mantém baixas taxas de transação. Com total compatibilidade com EVM, @Plasma garante uma experiência sem atritos tanto para usuários quanto para desenvolvedores, facilitando a adoção de pagamentos em moeda digital.
Traduzir
Introduction to Plasma and XPLPlasma: @Plasma is an EVM-compatible Layer-1 blockchain engineered specifically for stablecoin payments. It delivers high performance to facilitate transactions efficiently and at a global scale. Unique features such as instant transfers, fee-free USDT transfers, and Bitcoin-inspired security distinguish Plasma from multipurpose smart contract platforms, providing a dedicated infrastructure for the movement of digital dollars. The XPL Token: XPL serves as the native utility token of the Plasma network. Its primary functions include staking for network security, rewarding validators, and enabling on-chain governance. Users can also cover transaction fees with tokens like USDT through custom paymaster services, simplifying the payment process while leveraging XPL’s underlying role. Key Features of Plasma and XPL: - Specialized Design #Plasma is optimized specifically for scalable stablecoin transactions. Its architecture prioritizes the efficient handling of high-volume, real-time payments, ensuring reliability and seamless performance. - High Transaction Performance The blockchain delivers rapid transaction processing, supporting speeds exceeding 1,000 TPS. This ensures quick confirmation times, a smooth user experience, and dependable throughput for payment applications. - Zero-Cost USDT Transfers By eliminating transaction fees for USDT transfers, Plasma makes digital dollar payments more accessible and economical for everyday use. - Robust Security Framework Plasma integrates Bitcoin’s time-tested security principles with the adaptability of modern blockchains. This combination provides strong decentralization, resilience against attacks, and a secure yet flexible environment, enhanced further by EVM compatibility. - Utility of the XPL Token $XPL is central to the operation and evolution of the Plasma network. Validators stake XPL to help secure the blockchain and receive XPL rewards, aligning incentives to maintain network integrity. Additionally, XPL enables governance, allowing token holders to participate in protocol decisions and future developments. {spot}(XPLUSDT)

Introduction to Plasma and XPL

Plasma:
@Plasma is an EVM-compatible Layer-1 blockchain engineered specifically for stablecoin payments. It delivers high performance to facilitate transactions efficiently and at a global scale. Unique features such as instant transfers, fee-free USDT transfers, and Bitcoin-inspired security distinguish Plasma from multipurpose smart contract platforms, providing a dedicated infrastructure for the movement of digital dollars.
The XPL Token:
XPL serves as the native utility token of the Plasma network. Its primary functions include staking for network security, rewarding validators, and enabling on-chain governance. Users can also cover transaction fees with tokens like USDT through custom paymaster services, simplifying the payment process while leveraging XPL’s underlying role.
Key Features of Plasma and XPL:
- Specialized Design
#Plasma is optimized specifically for scalable stablecoin transactions. Its architecture prioritizes the efficient handling of high-volume, real-time payments, ensuring reliability and seamless performance.
- High Transaction Performance
The blockchain delivers rapid transaction processing, supporting speeds exceeding 1,000 TPS. This ensures quick confirmation times, a smooth user experience, and dependable throughput for payment applications.
- Zero-Cost USDT Transfers
By eliminating transaction fees for USDT transfers, Plasma makes digital dollar payments more accessible and economical for everyday use.
- Robust Security Framework
Plasma integrates Bitcoin’s time-tested security principles with the adaptability of modern blockchains. This combination provides strong decentralization, resilience against attacks, and a secure yet flexible environment, enhanced further by EVM compatibility.
- Utility of the XPL Token
$XPL is central to the operation and evolution of the Plasma network. Validators stake XPL to help secure the blockchain and receive XPL rewards, aligning incentives to maintain network integrity. Additionally, XPL enables governance, allowing token holders to participate in protocol decisions and future developments.
Ver original
@Plasma é uma blockchain de Layer-1 construída para pagamentos com stable-coin, focando em transferências sem taxas e alto desempenho. #Plasma é totalmente compatível com a Máquina Virtual Ethereum, EVM, permitindo que desenvolvedores implantem contratos inteligentes Ethereum existentes e usuários usem ferramentas familiares. $XPL é a moeda nativa. {spot}(XPLUSDT)
@Plasma é uma blockchain de Layer-1 construída para pagamentos com stable-coin, focando em transferências sem taxas e alto desempenho. #Plasma é totalmente compatível com a Máquina Virtual Ethereum, EVM, permitindo que desenvolvedores implantem contratos inteligentes Ethereum existentes e usuários usem ferramentas familiares. $XPL é a moeda nativa.
Ver original
Plasma@Plasma é uma blockchain de Camada-1 construída especificamente para pagamentos em stablecoin, abordando a crescente importância dos dólares digitais nas finanças globais. Embora as stablecoins dominem o uso de cripto, a maioria das blockchains não foi projetada para suportá-las de forma eficiente. Plasma introduz recursos como transferências de USDt sem taxa, pagamentos de gás flexíveis e transações focadas em privacidade para permitir aplicações de pagamento rápidas, de baixo custo e escaláveis. A rede é protegida pelo PlasmaBFT, um mecanismo de consenso baseado em HotStuff que oferece finalização rápida e tolerância a falhas bizantinas, enquanto sua camada de execução usa Reth, um cliente compatível com Ethereum escrito em Rust. #plasma integra recursos nativos de stablecoin no nível do protocolo, incluindo um paymaster que cobre o gás para transferências de USDt. Seu token nativo, $XPL , alimenta staking, recompensas de validadores e taxas de transação padrão, formando a espinha dorsal econômica de uma rede de proof-of-stake projetada para pagamentos globais de alto volume.

Plasma

@Plasma é uma blockchain de Camada-1 construída especificamente para pagamentos em stablecoin, abordando a crescente importância dos dólares digitais nas finanças globais. Embora as stablecoins dominem o uso de cripto, a maioria das blockchains não foi projetada para suportá-las de forma eficiente. Plasma introduz recursos como transferências de USDt sem taxa, pagamentos de gás flexíveis e transações focadas em privacidade para permitir aplicações de pagamento rápidas, de baixo custo e escaláveis.

A rede é protegida pelo PlasmaBFT, um mecanismo de consenso baseado em HotStuff que oferece finalização rápida e tolerância a falhas bizantinas, enquanto sua camada de execução usa Reth, um cliente compatível com Ethereum escrito em Rust. #plasma integra recursos nativos de stablecoin no nível do protocolo, incluindo um paymaster que cobre o gás para transferências de USDt. Seu token nativo, $XPL , alimenta staking, recompensas de validadores e taxas de transação padrão, formando a espinha dorsal econômica de uma rede de proof-of-stake projetada para pagamentos globais de alto volume.
Ver original
Acredite que $SHIB ainda vai receber #dont perder a esperança#
Acredite que $SHIB ainda vai receber #dont perder a esperança#
image
SHIB
Ganhos e Perdas acumulados
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Crypto Eagles
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#walrus $WAL
Nem tudo precisa ser visto.
@Walrus 🦭/acc protege o que importa enquanto permite que o valor se mova.
$WAL impulsiona interações privadas e armazenamento descentralizado.
Os dados são fragmentados, compartilhados e protegidos, prova de que privacidade e descentralização podem existir sem compromisso ou excesso.
Nunca comprometa sua privacidade.
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