DeepBrain Chain DBC to Rocket Pool RPL Exchange

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Crypto Pair Details: DBC to RPL

DeepBrain Chain DBC

Leveraging on blockchain technology, we develop a decentralized, low-cost, and private AI computing platform and also provide perfect peripheral products. The DeepBrain Chain token is traded via smart contract based on NEO, and our token is called DeepBrain Coin (DBC), and the mining node is encouraged according to the incentive system designed by the smart contract. The DeepBrain Chain is a decentralized neural network. The calculating demands of enterprises will be distributed to countless mining nodes all over the world. It will get DBC as a return when the nodes deployed computational mirror image successfully and the GAS fee each enterprise need to pay is far less than the intrinsic fee. The DeepBrain Chain is also a secure data trading platform. Both of the trading parties don’t need to worry about data leakage or reselling. Blockchain technology is used to realize the separation of data ownership and usage rights drastically. Thus, the value of data will be promoted greatly. “the Uber in AI computing”



Rocket Pool RPL

Rocket Pool is a next generation decentralised staking network and pool for Ethereum 2.0 Rocket Pool is a self-regulating network of node operators; it automatically adjusts its capacity to match demand. The Rocket Pool protocol token is used to maintain an optimal capacity by: Increasing capacity when needed, by incentivising node operators to join. Decreasing capacity when not needed, by disincentivising node operators from joining. In addition to depositing ETH, a node operator is required to deposit a set amount of RPL per ether they are depositing. This RPL:ether ratio is dynamic and is dependent on the network utilisation. E.g: If the network has plenty of capacity, then node operators need more RPL to make deposits. It gets progressively more expensive in terms of RPL to make node deposits when the network does not have enough ETH from regular stakers to be matched up with node operators. This helps prevent several attack vectors outlined in the whitepaper and keeps assignment of ether ‘chunks’ to nodes quick. If the network is reaching capacity, then node operators need less RPL to join as the network needs more node deposits to be matched up with regular users deposits. If the network is maxed out and needs node operators to join quickly, it even drops to 0 for the first one to make a deposit.

SOURCE: COINGECKO



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