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Ethereum

Cena za Ethereum (ETH)

Nákup Ethereum u předního evropského retailového brokera pro nákup a prodej digitálních aktiv je snadný, rychlý a bezpečný.

Nákup Ethereum u předního evropského retailového brokera pro nákup a prodej digitálních aktiv je snadný, rychlý a bezpečný.

€2,188.97

€58.73+2.76 %
€58.73+2.76 %



Tento převodník slouží pouze pro informaci a neodráží skutečné kurzy transakcí.

Poslední aktualizace: 18. 9. 2026 9:20:00

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Kryptoaktiva je vysoce volatilní. Může dojít ke ztrátě části nebo celé investice, proto je důležité investovat pouze tolik, kolik si můžete dovolit ztratit. Podrobný přehled rizik naleznete vUpozornění na rizika.

Kryptoaktiva je vysoce volatilní. Může dojít ke ztrátě části nebo celé investice, proto je důležité investovat pouze tolik, kolik si můžete dovolit ztratit. Podrobný přehled rizik naleznete vUpozornění na rizika.

Cena Ethereum dnes

Prohlédni si nejnovější pohyby ceny Ethereum. Tady je dnešní trend v kostce: +2.76 %

Ethereum: Statistiky ceny

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Ethereum: Statistika trhu

  • Nejvyšší cena dne

    €2,180.52

  • Nejnižší cena dne

    €2,115.62

  • Volatilita (1M)

    13.42%

  • 52T maximum

    €4,079.52

  • 52T minimum

    €1,309.95

  • Tržní kapitalizace

    €263.08B

Převodní tabulka Ethereum

1 EUR

0.000457 ETH

5 EUR

0.002284 ETH

10 EUR

0.004568 ETH

15 EUR

0.006853 ETH

20 EUR

0.009137 ETH

25 EUR

0.0114 ETH

1 Ethereum (ETH) na Us Dollar (USD)

USD 2 513,37

1 Ethereum (ETH) na Swiss Franc (CHF)

CHF 2 073,44

1 Ethereum (ETH) na British Pound Sterling (GBP)

GBP 1 880,21

1 Ethereum (ETH) na Turkish Lira (TRY)

TRY 122 624,09

1 Ethereum (ETH) na Polish Zloty (PLN)

PLN 9 545,83

1 Ethereum (ETH) na Hungarian Forint (HUF)

HUF 796 175,30

1 Ethereum (ETH) na Czech Koruna (CZK)

CZK 53 259,19

1 Ethereum (ETH) na Norwegian Krone (NOK)

NOK 23 712,81

1 Ethereum (ETH) na Swedish Krona (SEK)

SEK 24 675,84

1 Ethereum (ETH) na Danish Krone (DKK)

DKK 16 364,06

1 Ethereum (ETH) na Romanian Leu (RON)

RON 11 522,96

O Ethereum (ETH)

Zatímco bitcoin vynalezl kryptoměny zavedením bezpečného peer-to-peer platebního systému, Ethereum se snaží tento koncept posunout dále. Cílem je vytvořit bezpečný, decentralizovaný operační systém pro aplikace, které obvykle vyžadují centralizovaného prostředníka. Například zaznamenávání a převod vlastnických práv, podepisování smluv všech forem nebo zpracování počátečních nabídek mincí (ICO).

Prozkoumej související kryptoměny

NEJVYŠŠÍ TRŽNÍ KAPITALIZACE

Největší kryptoměny podle tržní kapitalizace

  • Regulováno

    Regulovaná evropská platforma se sídlem v Rakousku, zaměřená na krypto a cenné papíry

    Přečíst si více
  • Bezpečně a spolehlivě

    Finanční prostředky zajištěné v offline peněženkách. Plně v souladu s evropskými standardy pro ochranu dat, IT a praní špinavých peněz.

    Přečíst si více
  • Důvěryhodné

    Přes 7 milionů spokojených uživatelů. Vynikající hodnocení na Trustpilot.

    Prohlédnout si recenze
  • ESG (Environmental, Social, and Governance) regulations for crypto assets aim to address their environmental impact (e.g., energy-intensive mining), promote transparency, and ensure ethical governance practices to align the crypto industry with broader sustainability and societal goals. These regulations encourage compliance with standards that mitigate risks and foster trust in digital assets.

    Bitpanda Asset Management GmbH, Bitpanda GmbH

    9845005X9B7N610K0093, 5493007WZ7IFULIL8G21

    Ethereum Eth

    The crypto-asset's Proof-of-Stake (PoS) consensus mechanism, introduced with The Merge in 2022, replaces mining with validator staking. Validators must stake at least 32 ETH every block a validator is randomly chosen to propose the next block. Once proposed the other validators verify the blocks integrity. The network operates on a slot and epoch system, where a new block is proposed every 12 seconds, and finalization occurs after two epochs (~12.8 minutes) using Casper-FFG. The Beacon Chain coordinates validators, while the fork-choice rule (LMD-GHOST) ensures the chain follows the heaviest accumulated validator votes. Validators earn rewards for proposing and verifying blocks, but face slashing for malicious behavior or inactivity. PoS aims to improve energy efficiency, security, and scalability, with future upgrades like Proto-Danksharding enhancing transaction efficiency.

    The crypto-asset's PoS system secures transactions through validator incentives and economic penalties. Validators stake at least 32 ETH and earn rewards for proposing blocks, attesting to valid ones, and participating in sync committees. Rewards are paid in newly issued ETH and transaction fees. Under EIP-1559, transaction fees consist of a base fee, which is burned to reduce supply, and an optional priority fee (tip) paid to validators. Validators face slashing if they act maliciously and incur penalties for inactivity. This system aims to increase security by aligning incentives while making the crypto-asset's fee structure more predictable and deflationary during high network activity.

    2024-10-12

    2025-10-12

    2168888.40000 (kWh/a)

    For the calculation of energy consumptions, the so called 'bottom-up' approach is being used. The nodes are considered to be the central factor for the energy consumption of the network. These assumptions are made on the basis of empirical findings through the use of public information sites, open-source crawlers and crawlers developed in-house. The main determinants for estimating the hardware used within the network are the requirements for operating the client software. The energy consumption of the hardware devices was measured in certified test laboratories. When calculating the energy consumption, we used - if available - the Functionally Fungible Group Digital Token Identifier (FFG DTI) to determine all implementations of the asset of question in scope and we update the mappings regulary, based on data of the Digital Token Identifier Foundation. The information regarding the hardware used and the number of participants in the network is based on assumptions that are verified with best effort using empirical data. In general, participants are assumed to be largely economically rational. As a precautionary principle, we make assumptions on the conservative side when in doubt, i.e. making higher estimates for the adverse impacts.

    32.225548601 (%)

    0.00007 (kWh)

    0.00000 (tCO2e/a)

    721.83441 (tCO2e/a)

    0.00002 (kgCO2e)

    To determine the proportion of renewable energy usage, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal energy cost wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Share of electricity generated by renewables - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/share-electricity-renewables.

    To determine the GHG Emissions, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal emission wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Carbon intensity of electricity generation - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/carbon-intensity-electricity Licenced under CC BY 4.0.