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- Crust vs Robonomics
Crust vs Robonomics
Crust vs Robonomics Scalability
Real-time TPS
Crust TPS is 0 tx/s, while Robonomics has no data
Max TPS (100 blocks)
Crust max TPS is 0.06 tx/s, while Robonomics has no data
Max Theoretical TPS
Crust max theoretical TPS is 1,500 tx/s, while Robonomics has no data
Transaction Volume
Crust transaction volume is 0 txns, while Robonomics has no data
Block Time
Crust block time is 15.14s, while Robonomics has no data
Finality
Crust finality is 30s, while Robonomics has no data
Type
Crust is a parachain, while Robonomics has no data
Launch Date
Crust was launched on Nov 21, 2022, while the Robonomics has no data
Crust vs Robonomics Decentralization New
Nakamoto Coefficient
Crust Nakamoto Coefficient is 174, while Robonomics has no data
Validators/Miners
Crust has 600 validators, while Robonomics has no data
Stake/Hashrate
Crust stake is $2.947B, while Robonomics has no data
Consensus Mechanism
Crust is Nominated Proof of Stake, while Robonomics has no data
Governance
Crust governance is on-chain, while Robonomics has no data
Other Comparisons
Crust Comparisons
About Blockchains
About Crust
Crust is a decentralized storage network built on Polkadot, a multi-chain blockchain platform. It aims to provide a decentralized storage solution that is secure, reliable, and cost-effective. Crust allows users to store and retrieve data in a web3 manner, leveraging the power of blockchain technology to ensure data integrity and availability. Crust uses a combination of blockchain and decentralized storage technologies to achieve its goals. It offers incentives for users to contribute their storage space to the network, creating a distributed storage infrastructure that is resistant to censorship and single points of failure.
About Robonomics
The creation and development of a platform that provides tools for working with the robot economy network (briefly - the Robonomics platform) will allow designers of new cities and industrial zones to build trust among the autonomous robots services, provide direct user access for ordering products from autonomous factories and services of urban sensor networks. This in turn will allow us to put in place a decentralized system that globally monitors the activities of cyber physical systems.