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The mystery auction: 4 Avax has already finished

Congratulations fronkacukov

The user fronkacukov has won the auction with its bid for 0,70kr .

4 Avax has been sold for 0,70kr

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Product value

—

Bid value

3 Daxdi coins

Final price

0,70kr

End time

02/10/2026 05:55

The list of all bids placed

fronkacukov — 0,70kr

Sifridus35 — 0,69kr

Ognjanapajtic — 0,68kr

fronkacukov — 0,67kr

Vilmarsfrey — 0,66kr

Sifridus35 — 0,65kr

Wiegandmaryse — 0,64kr

Kinga35doc. — 0,63kr

fronkacukov — 0,62kr

fenne79 — 0,61kr

Kinga35doc. — 0,60kr

fronkacukov — 0,59kr

Eevi28Ninni — 0,58kr

Ognjanapajtic — 0,57kr

fenne79 — 0,56kr

Denise00Lac — 0,55kr

Jortikkamaija — 0,54kr

Ognjanapajtic — 0,53kr

Wiegandmaryse — 0,52kr

Ognjanapajtic — 0,51kr

Jortikkamaija — 0,50kr

Denise00Lac — 0,49kr

Sifridus35 — 0,48kr

Cigerzdenko — 0,47kr

Wiegandmaryse — 0,46kr

Ognjanapajtic — 0,45kr

Kinga35doc. — 0,44kr

Denise00Lac — 0,43kr

Sifridus35 — 0,42kr

Denise00Lac — 0,41kr

Wiegandmaryse — 0,40kr

Kinga35doc. — 0,39kr

Wiegandmaryse — 0,38kr

fenne79 — 0,37kr

Eevi28Ninni — 0,36kr

Ognjanapajtic — 0,35kr

Cigerzdenko — 0,34kr

fenne79 — 0,33kr

Vilmarsfrey — 0,32kr

Jortikkamaija — 0,31kr

Eevi28Ninni — 0,30kr

Wiegandmaryse — 0,29kr

fenne79 — 0,28kr

Jortikkamaija — 0,27kr

Sifridus35 — 0,26kr

fenne79 — 0,25kr

fronkacukov — 0,24kr

Kinga35doc. — 0,23kr

Jortikkamaija — 0,22kr

Wiegandmaryse — 0,21kr

fenne79 — 0,20kr

Denise00Lac — 0,19kr

Vilmarsfrey — 0,18kr

Sifridus35 — 0,17kr

Vilmarsfrey — 0,16kr

Jortikkamaija — 0,15kr

Denise00Lac — 0,14kr

fronkacukov — 0,13kr

Vilmarsfrey — 0,12kr

fenne79 — 0,11kr

Jortikkamaija — 0,10kr

Denise00Lac — 0,09kr

fenne79 — 0,08kr

Wiegandmaryse — 0,07kr

Ognjanapajtic — 0,06kr

Vilmarsfrey — 0,05kr

Jortikkamaija — 0,04kr

Vilmarsfrey — 0,03kr

Kinga35doc. — 0,02kr

Auction general information

Auction price
0,70kr
Product value
—
RRP
25,00kr
Bid value
3 Daxdi coins
Auction ID
2147494762
Start Time
02/10/2026 00:00
End Time
02/10/2026 05:55

4 Avax

Avalanche is a layer-one blockchain that functions as a platform for decentralised applications and custom blockchain networks. It is one of Ethereum's rivals, and aims to unseat Ethereum as the most popular blockchain for smart contracts. It aims to achieve this by having a higher transaction throughput of up to 6500 transactions per second without compromising scalability. This is possible thanks to Avalanche's unique architecture. The Avalanche network consists of three individual blockchains: X-Chain, C-Chain and P-Chain. Each chain has a distinct purpose, which is radically different from the approach used by Bitcoin and Ethereum, i.e. having all nodes validate all transactions. Avalanche blockchains even use different consensus mechanisms depending on their use cases. After the launch of its mainnet in 2020, Avalanche has worked on developing its own ecosystem of DApps and DeFi. Different Ethereum-based projects such as SushiSwap and TrueUSD have been integrated with Avalanche. In addition, the platform is constantly working to improve interoperability between its own ecosystem and Ethereum, such as through the development of bridges. Avalanche attempts to solve the blockchain trilemma, which posits that blockchains cannot achieve a sufficient degree of decentralisation at scale. One consequence of this is high gas rates, as is often the case with Ethereum. To solve this problem, Avalanche designed three interoperable blockchains. The exchange chain (X-Chain) is used to create and exchange native AVAX tokens and other assets. Similar to the ERC-20 standard on Ethereum, these tokens follow a standardised set of rules. It uses the Avalanche consensus mechanism. The C-Chain hosts smart contracts and decentralised applications. It has its own Avalanche virtual machine, similar to the Ethereum virtual machine, allowing developers to fork EVM-compatible DApps. It uses Snowman's consensus mechanism. The P-Chain coordinates network validators, keeps track of active subnets and allows the creation of new subnets. Subnets are sets of validators, something like a cartel of validators. Each subnet can validate multiple blockchains, but a blockchain can only be validated by one subnet. It also uses the Snowman consensus mechanism. This division of computational tasks allows for higher performance without compromising decentralisation. For example, private blockchains in the network might require the validators in their subnetwork to be sufficiently decentralised geographically or to comply with certain regulations. Behind this modular structure, Avalanche improves its interoperability with other blockchains that wish to integrate with the Avalanche ecosystem. In addition, the two different consensus mechanisms are designed with the requirements of each blockchain in mind, further improving its efficiency.