Tillgång

Kryptovalutor:

2,118

Börser:

11

Marknadsvärde:

$1,366,811,009,657

Volym 24h:

$66,258,602,883

Algorand logo

Algorand

ALGO

Rankning #33
Coin

$0.168

Taggar

Pure Proof of Stake
Asynchronous Byzantine Fault Tolerance
Staking
Fintech
Forskning
Styrelse
Decentralized
Brist
Scalability
Lager 1
Interoperability
NFTs

$0.165

$0.171

Låg

24H

Hög

Marknadsvärde

N/A

Volym 24h

$30,376,306

Förändring 24h

2.28

%

Maximalt Tillgängligt

10,000,000,000

Cirkulerande tillgång

8,006,099,423

Total tillgång

N/A

Födelsedag
Ålder

4 År

Decimaler

18

Plånböcker

18

Nyheter

17

Börser

8

Par

11

Tickers

30

Bas

11

Översikt
Börser
Marknader
Plånböcker
Nyheter

$0.168

Pris

$0.171

Hög

$0.165

Låg

$1,345,181,489

Marknadsvärde

$30,376,306

Volym

N/A

Öppen

N/A

Stäng

1H

0.140

%

1D

2.28

%

1W

6.89

%

1M

26.85

%

2M

38.51

%

3M

44.47

%

6M

7.48

%

1Y

-29.34

%

Om Algorand

Algorand was created by Silvio Micali, a renowned computer scientist and cryptography expert who is also a recipient of the prestigious Turing Award. Micali has dedicated his career to advancing the field of cryptography, and Algorand is the culmination of his efforts to create a truly decentralized blockchain platform that is both secure and scalable..

Algorand's pure proof-of-stake (PPoS) consensus algorithm is a major differentiator for the platform. PPoS ensures the network remains secure and decentralized by using a committee of validators to validate transactions and create new blocks. Unlike proof-of-work (PoW) consensus algorithms, which are used by many other blockchains, PPoS eliminates the need for energy-intensive mining and allows for much faster and more efficient transactions.

In addition to its PPoS consensus algorithm, Algorand also boasts several other features that make it an attractive option for developers and businesses. One such feature is atomic swaps, which allow users to exchange one cryptocurrency for another without needing a centralized exchange. Atomic swaps are powered by Algorand's smart contracts, which enable developers to create complex financial instruments and other applications that run on the blockchain.

Developers who want to build decentralized applications (dApps) on Algorand will need to learn a programming language called TEAL (Transaction Execution Approval Language). TEAL is a low-level language specifically designed for Algorand, and it is used to create smart contracts and other complex financial instruments on the platform.

Algorand has a rich history of development and growth. The platform launched its mainnet in 2019, and since then, it has been steadily gaining popularity in the blockchain community. In 2020, Algorand announced a strategic partnership with Circle, the stablecoin issuer behind USDC, to enhance its capabilities and support the growth of the Algorand ecosystem.

Overall, Algorand is a promising blockchain platform designed to provide a more secure, scalable, and sustainable alternative to traditional blockchain networks. With its innovative features and commitment to decentralization, Algorand is well-positioned to become a major player in the blockchain space.2019-06-19

Om Algorand Smart Contracts

TEAL (Transaction Execution Approval Language) is a low-level, stack-based programming language that is specifically designed for the Algorand blockchain. TEAL is a simple and efficient language that is optimized for running on-chain smart contracts. It is a stack-based language, meaning that it operates on a last-in-first-out (LIFO) data structure, which enables it to be highly efficient and secure. TEAL includes a number of built-in functions and operations that make it easy to write complex smart contracts, such as on-chain storage, state changes, and transaction validation.

TEAL is designed to be secure and auditable, with a deterministic execution model that ensures that contracts will always behave predictably and consistently. TEAL is also designed to be easy to learn and use, with a simple syntax and a small number of built-in operations and functions.