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- Apertum vs IoTeX
Apertum vs IoTeX Scalability
Real-time TPS
Apertum has no data, while IoTeX TPS is 1.62 tx/s
Max TPS (100 blocks)
Apertum has no data, while IoTeX max TPS is 829.7 tx/s
Max Theoretical TPS
Apertum has no data, while IoTeX max theoretical TPS is 2,000 tx/s
Transaction Volume
Apertum has no data, while IoTeX transaction volume is 5,823 txns
Block Time
Apertum has no data, while IoTeX block time is 2.5s
Finality
Apertum has no data, while IoTeX finality is 0s
Type
Apertum has no data, while IoTeX is a layer 1 blockchain
Launch Date
Apertum has no data, while IoTeX was launched on Apr 22, 2019
Apertum vs IoTeX Decentralization New
Nakamoto Coefficient
Apertum has no data, while IoTeX Nakamoto Coefficient is 9
Validators/Miners
Apertum has no data, while IoTeX has 72 validators
Stake/Hashrate
Apertum has no data, while IoTeX stake is $123.8M
Consensus Mechanism
Apertum has no data, while IoTeX is PoS
Governance
Apertum has no data, while IoTeX governance is on-chain
Other Comparisons
Apertum Comparisons
About Blockchains
About Apertum
Apertum distinguishes itself with a unique combination of features designed for modern technology. Unlike Bitcoin's energy-intensive Proof of Work (PoW) and Ethereum's evolving scalability solutions, Apertum operates as a subnet of the Avalanche blockchain, providing high scalability and fast transactions. Its virtual mining protocol eliminates the need for physical hardware, making mining accessible to everyone. Additionally, its deflationary mechanism burns up to 50% of transaction fees, ensuring long-term value growth while maintaining fairness and transparency.
About IoTeX
IoTeX is a blockchain platform designed specifically for the Internet of Things (IoT) industry. It aims to address the scalability, privacy, and security challenges associated with connecting billions of devices to the internet. IoTeX utilizes a unique architecture that combines blockchain, decentralized identity, and secure hardware to create a trusted and privacy-centric infrastructure for IoT applications. It offers lightweight and efficient consensus mechanisms, support for trusted computing environments, and privacy-preserving techniques such as zero-knowledge proofs.