Businesses use @Dusk to pay for network services, such as deploying and running a smart contract, transferring $DUSK or XSC based security tokens. For each transaction submitted to the network, #Dusk is used to compensate network nodes for bandwidth, verification, and storage.
@Dusk emphasizes business adoption, which is why the dev team behind the project considers privacy to be an important part of the future of regulatory compliance and general adoption of alternative financial applications. The network provides a fully functional and private ecosystem for enterprise-grade financial applications and introduces private smart contracts ahead of similar blockchain-based projects. #dusk $DUSK
@BabylonLabs_io is a decentralized system that enables native Bitcoin staking directly on the Bitcoin blockchain, without intermediaries. The protocol incorporates an innovative shared security architecture that expands Bitcoin’s security model to the rest of the decentralized ecosystem. In this way, BTC holders can take part in multi-staking operations while keeping their assets on the Bitcoin network, providing verifiable security guarantees to the Bitcoin Secured Networks (BSNs). #baby $BABY
@BabylonLabs_io introduce a novel shared security architecture that extends Bitcoin’s solid security model to a broader decentralized ecosystem. By allowing BTC holders to participate in staking operations while keeping their assets on the Bitcoin network, Babylon provides verifiable security guarantees to other networks that are part of the Bitcoin Secured Networks (BSNs). #baby $BABY
In the onchain finance world, complexity is a double-edged sword. While it enables sophisticated strategies and novel financial products, it also creates significant operational burdens. Managing a dynamic portfolio, executing operations in real time, and participating in complex governance requires constant vigilance. The most common solutions—manual intervention—are inefficient and prone to errors. On the other hand, granting full access to private keys to automated tools poses a massive security risk. This challenge has driven the need for a new layer of digital infrastructure: a system capable of safely, reliably, and verifiably automating complex onchain actions. This is exactly where@NewtonProtocol comes into play. It is not presented as just another DeFi application, but as a foundational protocol, designed to be the verifiable automation layer for the entire onchain ecosystem. #Newt $NEWT
@NewtonProtocol es a decentralized system designed to provide secure and verifiable automation to the blockchain. Its primary goal is to enable users to specify complex tasks that will be executed automatically by agents when certain conditions are met, without giving direct control over their funds. #newt $NEWT
@NewtonProtocol it’s a verifiable automation layer for the on-chain economy, designed to simplify and ensure user interactions with decentralized financial systems. Created by the team behind Magic, #newt enables intent-driven automation by combining trusted execution environments (TEEs) and zero-knowledge proofs (ZKPs) to ensure that the user’s actions are executed within defined limits and with verifiable integrity. $NEWT
@NewtonProtocol es a verifiable automation layer for on-chain economies, designed to simplify and secure user interactions with decentralized financial systems. Created by the team behind Magic, #newt enables intent-driven automation by combining Trusted Execution Environments (TEEs) and Zero-Knowledge Proofs (ZKPs) to ensure that user actions are executed within defined limits and with verifiable integrity. $NEWT
<c-7/><t>aims to create a secure, decentralized framework where users can define and implement "automation intents": trigger-action programs that execute tasks on the user's behalf, without compromising security. This is a crucial initiative to address the problems faced by power users, developers, and the next generation of decentralized applications. This challenge has driven the need for a new layer of digital infrastructure: a system capable of safely, reliably, and verifiably automating complex onchain actions. #newt $NEWT
@NewtonProtocol aims to create a secure and decentralized framework where users can define and implement "automation intentions": trigger-action type programs that execute tasks on the user's behalf, without compromising security. #newt $NEWT
@NewtonProtocol allows users to set permissions and programmable rules around what can be done with their assets. These instructions are enforced using zero-knowledge proofs (ZK proofs) and trusted execution environments (TEEs), ensuring that agents follow the rules without needing full control. #newt enables session keys linked to policies defined by the user so that tasks can be carried out autonomously without compromising security or custody. $NEWT
@NewtonProtocol permits users to set permissions and programmable rules around what can be done with their assets. These instructions are applied using zero-knowledge tests (ZK proofs) and trusted execution environments (TEEs), ensuring that agents follow the rules without needing full control. #newt $NEWT
The concept of design and implementation of $NEWT reflect a new understanding of practical assets in the decentralized world of Web3. As @NewtonProtocol is integrated into more DeFi projects, DAOs, games, and others, NEWT will truly play the role of an "automated on-chain fuel," making it worthy of continued attention from anyone who takes the future infrastructure seriously. This multidimensional participation model turns #newt into a true "ecological utility token", rather than a carrier of a single value.
By being @NewtonProtocol un a new type of currency with innovative technology and unique use cases, $NEWT has broad market potential and a significant development margin. The distinctive character and appeal of #newt could attract the interest of specific groups, which would increase its market value.
@OpenGradient OpenGradient is the first permissionless platform for open-source model hosting, secure inference, agentic reasoning, and application deployment. By developing AI tooling, feature-rich libraries, and an innovative decentralized platform built on blockchain rails, not only makes integrating AI workflows into web3 applications secure and seamless, but also decentralizes and universalizes access to AI models. #opg $OPG
$OPG It is the cryptocurrency that powers the ecosystem @OpenGradient It is used to pay for the use of models (inferences), reward providers of computing power, do staking, and participate in governance. #opg
One of the biggest challenges in decentralized AI is proving that a specific model was actually run correctly. @OpenGradient solves this through verifiable inference. By combining zero-knowledge Machine Learning (zkML) proofs with its hardware-based security, the network can provide cryptographic evidence that an AI output is the result of a specific model and input. This allows smart contracts to "trust" AI results without needing to re-run the entire computation themselves. #opg $OPG
The @OpenGradient network separates the verification execution, with inference nodes running models and full nodes verifying attestations or proofs and settling results on-chain. It supports TEE, ZKML and Vanilla verification modes. $OPG is mainly used for LLM inference with payment via x402, where payments are made in Base and the execution, proof settlement, and verification take place on the network. #opg
@OpenGradient allows developers to host, run, and cryptographically verify AI models. By operating specialized GPU nodes, it delivers fast AI processing (inference) with the transparency and security of blockchain. #opg $OPG
Developers can mix and match different tools and models without restrictions. This boosts innovation while keeping things decentralized. As a result, @OpenGradient can support a wide range of applications, from financial tools to smart automation systems. #opg $OPG