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#$ETH Stakers need to re-audit their positions. EIP-8363 aims to destroy part of the staking rewards by directly changing Ethereum’s supply curve. According to IOSG’s quantitative model, at the current staking rate, the newly issued amount would be reduced by half rather than going to zero; the equilibrium staking rate is approximately 26–34%, with issuance of 0.3–0.5% per year. Meanwhile, in the past 12 months, fees burned totaled only about 25,000 ETH, which offsets just 2.4% of新增供应 (new supply). ETH has been experiencing inflation for 28 consecutive months. The market is still debating the “scarcity vs. staking collapse” narrative, but the data provides a more measured contrast: changes in staking yield show no statistically detectable relationship with ETH price (monthly correlation -0.05), and supply growth is also not significant. This suggests that the story “reducing issuance will inevitably raise prices” may be overestimated. Next, watch whether the proposal officially enters the EIP process and how the staking rate changes. Would you reduce your staking because the yield falls? #以太坊 #EIP-8363 Source: rss.odaily.news
#$ETH Stakers need to re-audit their positions. EIP-8363 aims to destroy part of the staking rewards by directly changing Ethereum’s supply curve.

According to IOSG’s quantitative model, at the current staking rate, the newly issued amount would be reduced by half rather than going to zero; the equilibrium staking rate is approximately 26–34%, with issuance of 0.3–0.5% per year. Meanwhile, in the past 12 months, fees burned totaled only about 25,000 ETH, which offsets just 2.4% of新增供应 (new supply). ETH has been experiencing inflation for 28 consecutive months.

The market is still debating the “scarcity vs. staking collapse” narrative, but the data provides a more measured contrast: changes in staking yield show no statistically detectable relationship with ETH price (monthly correlation -0.05), and supply growth is also not significant. This suggests that the story “reducing issuance will inevitably raise prices” may be overestimated.

Next, watch whether the proposal officially enters the EIP process and how the staking rate changes. Would you reduce your staking because the yield falls? #以太坊 #EIP-8363

Source: rss.odaily.news
The Ethereum community has submitted the latest proposal for a “deposit contract that supports post-quantum computing.” It’s a proactive move to prepare for the future security threats that quantum computing could pose to crypto assets—what do you think of this forward-looking upgrade? The proposal’s key points include: 1️⃣ Introducing a new contract that supports variable-length public keys and credential metadata, along with adding a clear scheme identifier (scheme 0 is reserved for the current BLS deposits) 2️⃣ The new deposit contract no longer relies on the old deposit contract’s Merkle tree structure; instead, it uses EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer, making the design clearer 3️⃣ It sets an irreversible switch mode controlled by the protocol system: deposits are initially disabled, then BLS deposits are enabled at a specified timestamp; later at a later timestamp, BLS deposits are permanently disabled and cannot be re-enabled, completing the upgrade and migration step by step 4️⃣ During the migration period, the execution client must merge deposit requests from both the new and old contracts to ensure a smooth transition Against the backdrop of rapidly advancing quantum computing, upgrading the security standards of cryptographic infrastructure in advance is what’s necessary to protect users’ assets in the long run. Do you think an upgrade like this from the $ETH ecosystem is necessary? #以太坊 #EIP #post-quantum security
The Ethereum community has submitted the latest proposal for a “deposit contract that supports post-quantum computing.” It’s a proactive move to prepare for the future security threats that quantum computing could pose to crypto assets—what do you think of this forward-looking upgrade?

The proposal’s key points include:
1️⃣ Introducing a new contract that supports variable-length public keys and credential metadata, along with adding a clear scheme identifier (scheme 0 is reserved for the current BLS deposits)
2️⃣ The new deposit contract no longer relies on the old deposit contract’s Merkle tree structure; instead, it uses EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer, making the design clearer
3️⃣ It sets an irreversible switch mode controlled by the protocol system: deposits are initially disabled, then BLS deposits are enabled at a specified timestamp; later at a later timestamp, BLS deposits are permanently disabled and cannot be re-enabled, completing the upgrade and migration step by step
4️⃣ During the migration period, the execution client must merge deposit requests from both the new and old contracts to ensure a smooth transition

Against the backdrop of rapidly advancing quantum computing, upgrading the security standards of cryptographic infrastructure in advance is what’s necessary to protect users’ assets in the long run. Do you think an upgrade like this from the $ETH ecosystem is necessary?

#以太坊 #EIP #post-quantum security
The Ethereum community has just introduced a brand-new deposit contract EIP proposal for the post-quantum computing era—an early move to upgrade cryptographic security. This kind of forward-looking approach deserves full marks 👏 Breakdown of the proposal’s core points: ▫️ Introduces a new contract that supports variable-length public keys and credential metadata, adds a clearly defined scheme identifier (scheme 0 is reserved for the current BLS deposits) ▫️ No longer relies on the old deposit contract’s Merkle tree structure; instead, uses the log-derived execution requests from EIP-7685 to pass deposit information to the consensus layer—making the architecture simpler and more efficient ▫️ Establishes an irreversible transition mechanism: deposits are initially disabled; BLS deposits are enabled first according to a time window; after expiry, BLS deposits are permanently disabled—the switch is clear and controllable ▫️ During the migration phase, client-side execution must merge and handle deposit requests for both the new and old contracts to ensure a smooth transition With the threat from quantum computing getting closer step by step, the Ethereum community has proactively kicked off a foundational security upgrade early, laying the groundwork for long-term ecosystem security. This is exactly the kind of top-tier long-termism that should exist. What do you think about Ethereum’s advance planning for the post-quantum era? Share your views in the comments below 👇 #以太坊 #EIP #post-quantum computing
The Ethereum community has just introduced a brand-new deposit contract EIP proposal for the post-quantum computing era—an early move to upgrade cryptographic security. This kind of forward-looking approach deserves full marks 👏

Breakdown of the proposal’s core points:
▫️ Introduces a new contract that supports variable-length public keys and credential metadata, adds a clearly defined scheme identifier (scheme 0 is reserved for the current BLS deposits)
▫️ No longer relies on the old deposit contract’s Merkle tree structure; instead, uses the log-derived execution requests from EIP-7685 to pass deposit information to the consensus layer—making the architecture simpler and more efficient
▫️ Establishes an irreversible transition mechanism: deposits are initially disabled; BLS deposits are enabled first according to a time window; after expiry, BLS deposits are permanently disabled—the switch is clear and controllable
▫️ During the migration phase, client-side execution must merge and handle deposit requests for both the new and old contracts to ensure a smooth transition

With the threat from quantum computing getting closer step by step, the Ethereum community has proactively kicked off a foundational security upgrade early, laying the groundwork for long-term ecosystem security. This is exactly the kind of top-tier long-termism that should exist.

What do you think about Ethereum’s advance planning for the post-quantum era? Share your views in the comments below 👇

#以太坊 #EIP #post-quantum computing
Ethereum’s community has just introduced a new EIP deposit contract proposal aimed at securing against post-quantum computing. This marks another important step forward for Ethereum’s long-term security architecture. The core of this proposal, numbered EIP-12235, includes: ✅ Introducing a new contract that supports variable-length public keys and credential metadata, along with clear scheme identifiers; the current BLS deposit retains scheme 0 ✅ Moving away from the old deposit contract’s Merkle tree structure, and using EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer ✅ Setting an irreversible timeline controlled by protocol system calls: deposits are initially disabled, then BLS deposits are enabled, and finally BLS deposits are permanently disabled ✅ During the migration phase, the client executing the process needs to merge deposit requests for both the new and old contracts Post-quantum security has long been a key focus for the blockchain industry. The development of quantum computing poses a long-term potential threat to existing cryptographic algorithms. By laying the groundwork with an architectural upgrade in advance, Ethereum is preparing for future security needs and is well worth keeping an eye on. $ETH #以太坊 #EIP #Post-quantum security
Ethereum’s community has just introduced a new EIP deposit contract proposal aimed at securing against post-quantum computing. This marks another important step forward for Ethereum’s long-term security architecture.

The core of this proposal, numbered EIP-12235, includes:
✅ Introducing a new contract that supports variable-length public keys and credential metadata, along with clear scheme identifiers; the current BLS deposit retains scheme 0
✅ Moving away from the old deposit contract’s Merkle tree structure, and using EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer
✅ Setting an irreversible timeline controlled by protocol system calls: deposits are initially disabled, then BLS deposits are enabled, and finally BLS deposits are permanently disabled
✅ During the migration phase, the client executing the process needs to merge deposit requests for both the new and old contracts

Post-quantum security has long been a key focus for the blockchain industry. The development of quantum computing poses a long-term potential threat to existing cryptographic algorithms. By laying the groundwork with an architectural upgrade in advance, Ethereum is preparing for future security needs and is well worth keeping an eye on.

$ETH

#以太坊 #EIP #Post-quantum security
The Ethereum community has recently submitted the EIP-12235 proposal, planning to introduce a brand-new deposit contract that supports post-quantum cryptography security—laying the groundwork for long-term security of Ethereum. This move is quite steady. The core contents of the proposal include: 1️⃣ The new contract supports variable-length public keys and credential metadata, adding a clear scheme identifier, with scheme 0 reserved for the current BLS deposit mechanism. 2️⃣ It no longer relies on the Merkle tree structure of the old deposit contract; instead, it uses EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer. 3️⃣ It introduces an irreversible transition mode controlled by the protocol system: in the initial state, the deposit functionality is disabled. Then, at a specified timestamp, BLS deposits are enabled; afterward, at a later timestamp, BLS deposits are permanently disabled—and cannot be re-enabled. 4️⃣ During the migration, the execution client needs to merge deposit requests from both the new and old contracts simultaneously. Against the broader backdrop of advances in quantum computing technology, upgrading the cryptographic security infrastructure in advance is very necessary. After all, security is the lifeline of a blockchain. $ETH #以太坊 #后量子安全 #EIP
The Ethereum community has recently submitted the EIP-12235 proposal, planning to introduce a brand-new deposit contract that supports post-quantum cryptography security—laying the groundwork for long-term security of Ethereum. This move is quite steady.

The core contents of the proposal include:
1️⃣ The new contract supports variable-length public keys and credential metadata, adding a clear scheme identifier, with scheme 0 reserved for the current BLS deposit mechanism.
2️⃣ It no longer relies on the Merkle tree structure of the old deposit contract; instead, it uses EIP-7685’s log-derived execution requests to pass deposit information to the consensus layer.
3️⃣ It introduces an irreversible transition mode controlled by the protocol system: in the initial state, the deposit functionality is disabled. Then, at a specified timestamp, BLS deposits are enabled; afterward, at a later timestamp, BLS deposits are permanently disabled—and cannot be re-enabled.
4️⃣ During the migration, the execution client needs to merge deposit requests from both the new and old contracts simultaneously.

Against the broader backdrop of advances in quantum computing technology, upgrading the cryptographic security infrastructure in advance is very necessary. After all, security is the lifeline of a blockchain.

$ETH
#以太坊 #后量子安全 #EIP
The Ethereum Foundation Protocol DevOps team has officially released the early testnet for the Glamsterdam upgrade, called Platåberget. The network fork is scheduled to be completed on August 20. Unlike previous short-lived devnets, Platåberget is expected to run stably for several months, and will come with one-click network configuration and a test ETH faucet, making it easier for developers and the community to continuously participate in validation. The testing roadmap is also largely clear: within one month, a non-final devnet will be launched to test abnormal consensus scenarios; then long-running testnets such as Sepolia and Hoodi will sequentially complete the Glamsterdam fork, with the ultimate goal of upgrading the Ethereum mainnet. Key changes worth paying close attention to in this upgrade include: Embedded proposer-builder separation (ePBS), which writes the proposer-builder relationship into the protocol layer; block-level access lists (Block-Level Access Lists), optimizing on-chain data access efficiency; re-pricing of gas fees, with a target lower bound of around 200 million gas; and increases to the maximum contract and initcode sizes from 24KiB and 48KiB to 64KiB and 128KiB, respectively. It is especially important to note that: any tools that depend on hard-coded maximum gas limits—such as wallets, indexers, gas estimators, and more—will be affected and will need to be updated accordingly. Related development teams are advised to evaluate compatibility as early as possible. #以太坊 #Glamsterdam #EIP
The Ethereum Foundation Protocol DevOps team has officially released the early testnet for the Glamsterdam upgrade, called Platåberget. The network fork is scheduled to be completed on August 20. Unlike previous short-lived devnets, Platåberget is expected to run stably for several months, and will come with one-click network configuration and a test ETH faucet, making it easier for developers and the community to continuously participate in validation.

The testing roadmap is also largely clear: within one month, a non-final devnet will be launched to test abnormal consensus scenarios; then long-running testnets such as Sepolia and Hoodi will sequentially complete the Glamsterdam fork, with the ultimate goal of upgrading the Ethereum mainnet.

Key changes worth paying close attention to in this upgrade include:

Embedded proposer-builder separation (ePBS), which writes the proposer-builder relationship into the protocol layer; block-level access lists (Block-Level Access Lists), optimizing on-chain data access efficiency; re-pricing of gas fees, with a target lower bound of around 200 million gas; and increases to the maximum contract and initcode sizes from 24KiB and 48KiB to 64KiB and 128KiB, respectively.

It is especially important to note that: any tools that depend on hard-coded maximum gas limits—such as wallets, indexers, gas estimators, and more—will be affected and will need to be updated accordingly. Related development teams are advised to evaluate compatibility as early as possible.

#以太坊 #Glamsterdam #EIP
[News Roundup] Ethereum Researchers Propose EIP-8361: Use “Tapered Issuance Burn” to Cap the Staking Ratio Recently, a group of Ethereum researchers (including Justin Drake, etc.) published a draft EIP-8361 (Tapered Issuance Burn). In short, the mechanism is: 1. Validator rewards are determined by the network-wide staking ratio, and a portion is deducted and permanently destroyed 2. The more you stake, the higher the burn ratio 3. When active staking reaches 60.25 million ETH (about half of the supply), burning can reach 100%, and net issuance at the consensus layer approaches zero 4. To lessen the impact on existing stakers, an ~18-month transition period is designed (the transition period will also adjust the reward factor accordingly) The proposal’s motivation leans toward the protocol layer: to avoid centralization and capture risks caused by infinitely increasing stake, and to preserve the neutral monetary role of unstaked ETH as much as possible. At present it is still a Draft; whether it can move into a subsequent network upgrade is not yet certain. The discussion is taking place on Eth Magicians / GitHub. Sources: The Block https://www.theblock.co/post/410643/ethereum-researchers-propose-burning-validator-rewards-cap-staking-50 CoinDesk https://www.coindesk.com/tech/2026/08/05/new-ethereum-proposal-would-cut-issuance-to-zero-if-staked-eth-reaches-usd112-billion Draft https://github.com/pintail-xyz/EIPs/blob/edde78eb1feeb285906d5a8deb582c4feaecd6ba/EIPS/eip-draft_tapered_issuance_burn.md #Ethereum #EIP Information roundup only; not investment advice
[News Roundup] Ethereum Researchers Propose EIP-8361: Use “Tapered Issuance Burn” to Cap the Staking Ratio

Recently, a group of Ethereum researchers (including Justin Drake, etc.) published a draft EIP-8361 (Tapered Issuance Burn).

In short, the mechanism is:
1. Validator rewards are determined by the network-wide staking ratio, and a portion is deducted and permanently destroyed
2. The more you stake, the higher the burn ratio
3. When active staking reaches 60.25 million ETH (about half of the supply), burning can reach 100%, and net issuance at the consensus layer approaches zero
4. To lessen the impact on existing stakers, an ~18-month transition period is designed (the transition period will also adjust the reward factor accordingly)

The proposal’s motivation leans toward the protocol layer: to avoid centralization and capture risks caused by infinitely increasing stake, and to preserve the neutral monetary role of unstaked ETH as much as possible. At present it is still a Draft; whether it can move into a subsequent network upgrade is not yet certain. The discussion is taking place on Eth Magicians / GitHub.

Sources:
The Block https://www.theblock.co/post/410643/ethereum-researchers-propose-burning-validator-rewards-cap-staking-50
CoinDesk https://www.coindesk.com/tech/2026/08/05/new-ethereum-proposal-would-cut-issuance-to-zero-if-staked-eth-reaches-usd112-billion
Draft https://github.com/pintail-xyz/EIPs/blob/edde78eb1feeb285906d5a8deb582c4feaecd6ba/EIPS/eip-draft_tapered_issuance_burn.md

#Ethereum #EIP
Information roundup only; not investment advice
EIP-8361 proposal officially released. The core idea is to “install a regulating valve” for Ethereum’s inflation: · For each epoch, a portion is deducted from validator block rewards and burned · When the network-wide staking rate reaches 50%, the burn rate is immediately ramped up to 100% · The exact percentage of reward issuance cessation is determined by market dynamics, but it is strictly less than 50% Simply put: the more people stake, the more aggressively rewards get burned. This is a design experiment that uses on-chain mechanisms to inversely curb ETH inflation. 50% is the key psychological threshold and also the warning line for “over-staking” as seen by the proposal’s author. If implemented, it means Ethereum’s economic model will further shift toward a “deflation-first” stance. Long-term holders would benefit, but validators’ yield would be significantly compressed. Do you like this direction? #Ethereum#EIP#Inflation
EIP-8361 proposal officially released. The core idea is to “install a regulating valve” for Ethereum’s inflation:

· For each epoch, a portion is deducted from validator block rewards and burned
· When the network-wide staking rate reaches 50%, the burn rate is immediately ramped up to 100%
· The exact percentage of reward issuance cessation is determined by market dynamics, but it is strictly less than 50%

Simply put: the more people stake, the more aggressively rewards get burned. This is a design experiment that uses on-chain mechanisms to inversely curb ETH inflation. 50% is the key psychological threshold and also the warning line for “over-staking” as seen by the proposal’s author.

If implemented, it means Ethereum’s economic model will further shift toward a “deflation-first” stance. Long-term holders would benefit, but validators’ yield would be significantly compressed. Do you like this direction?

#Ethereum#EIP#Inflation
🚨 NEW EIP PROPOSAL PREPARES $ETH VALIDATORS FOR NEXT-GEN QUANTUM SECURITY SURVEILLANCE 🛡️ Ethereum developers have officially drafted a new EIP introducing a post-quantum-ready deposit contract to safeguard institutional capital against future cryptographic threats. 🔒 By implementing variable-length deposit structures and irreversible BLS key retirement mechanisms, smart money infrastructure is locking in long-term structural security. 📊 While currently in the draft phase, this proactive architectural update reinforces $ETH as the primary settlement layer built for multi-decade institutional adoption. 🔍 Protocol longevity directly shapes structural market confidence, mitigating tail-risk vectors before they manifest in market pricing. 💡 🤔 Will quantum resilience become the ultimate fundamental differentiator for L1 valuation models heading into the next cycle? 👇 ⚠️ Not financial advice. Always manage your risk. 🛡️ 🏷️ #ETH #Ethereum #EIP #Crypto #TechUpdate 🎯 🛡️
🚨 NEW EIP PROPOSAL PREPARES $ETH VALIDATORS FOR NEXT-GEN QUANTUM SECURITY SURVEILLANCE 🛡️

Ethereum developers have officially drafted a new EIP introducing a post-quantum-ready deposit contract to safeguard institutional capital against future cryptographic threats. 🔒 By implementing variable-length deposit structures and irreversible BLS key retirement mechanisms, smart money infrastructure is locking in long-term structural security. 📊

While currently in the draft phase, this proactive architectural update reinforces $ETH as the primary settlement layer built for multi-decade institutional adoption. 🔍 Protocol longevity directly shapes structural market confidence, mitigating tail-risk vectors before they manifest in market pricing. 💡

🤔 Will quantum resilience become the ultimate fundamental differentiator for L1 valuation models heading into the next cycle? 👇

⚠️ Not financial advice. Always manage your risk. 🛡️

🏷️ #ETH #Ethereum #EIP #Crypto #TechUpdate

🎯 🛡️
⚙️ New proposal in Ethereum aims to end 50% of staking issuance Ethereum researchers have proposed EIP-8361, which aims to end staking issuance at the 50% level. The proposal raises questions about its potential impact on decentralization in the Ethereum network, as it may favor large staking operators and could affect network security by reducing the number of independent validators. ━━━━━━━━━━━━━━ 📊 Impact: 📈 High 🏷️ DEFI #Ethereum #EIP #Staking #Blockchain #Decentralization 📰 Source: cryptobriefing.com
⚙️ New proposal in Ethereum aims to end 50% of staking issuance

Ethereum researchers have proposed EIP-8361, which aims to end staking issuance at the 50% level. The proposal raises questions about its potential impact on decentralization in the Ethereum network, as it may favor large staking operators and could affect network security by reducing the number of independent validators.

━━━━━━━━━━━━━━
📊 Impact: 📈 High
🏷️ DEFI

#Ethereum #EIP #Staking #Blockchain #Decentralization

📰 Source: cryptobriefing.com
💥 $ETH 'S STAKING OFF-SWITCH: NEW EIP TORCHES REWARDS PAST 50% SUPPLY! This proposal quietly rewrites the staking playbook. The moment staked ETH crosses 50% of supply, validator rewards start getting torched — net yield trends toward zero, creating a natural brake on over-staking. 📊 That's not just a supply tweak, that's a structural cap on centralization. Stack this on EIP-1559's base fee burn and ETH's supply curve gets a deflationary bite it hasn't had before. 🔍 Less dilution for holders, higher friction for liquid staking giants piling up control. This kind of shift changes how institutions model ETH long-term. 💬 If staking yields shrink past 50%, do you ride the deflation thesis or rotate your yield elsewhere? ⚠️ Not financial advice. Always manage your risk. 🛡️ 🏷️ #ETH #Ethereum #DeFi #EIP #Crypto 🔥 💎
💥 $ETH 'S STAKING OFF-SWITCH: NEW EIP TORCHES REWARDS PAST 50% SUPPLY!

This proposal quietly rewrites the staking playbook. The moment staked ETH crosses 50% of supply, validator rewards start getting torched — net yield trends toward zero, creating a natural brake on over-staking. 📊 That's not just a supply tweak, that's a structural cap on centralization.

Stack this on EIP-1559's base fee burn and ETH's supply curve gets a deflationary bite it hasn't had before. 🔍 Less dilution for holders, higher friction for liquid staking giants piling up control. This kind of shift changes how institutions model ETH long-term.

💬 If staking yields shrink past 50%, do you ride the deflation thesis or rotate your yield elsewhere?

⚠️ Not financial advice. Always manage your risk. 🛡️

🏷️ #ETH #Ethereum #DeFi #EIP #Crypto

🔥 💎
🦈 $ETH SMART MONEY IS ABSORBING THE DIP — LONG SETUP WITH CLEAN R:R 💥 Entry: 1869.41 ⚡ Target: 1957.02 🚀 Target: 2050.21 💥 Stop Loss: 1807.92 ⚠️ This pullback into 1869 isn't a breakdown — it's a liquidity sweep engineered to shake out late longs before the next expansion. 📊 The same demand zone that anchors the entire DeFi/NFT ecosystem is holding firm, while EIP burn continues to shrink available supply every single block. 🔥 Institutional footprints are visible in the order book absorption here. A clean reclaim of 1957 opens the path to 2050, where the next liquidity pool sits. 📌 This is high-conviction structure with a defined risk and a reward that's purely mechanical. 💡 Are you catching this dip or waiting for confirmation above 1957? 💬 ⚠️ Not financial advice. Always manage your risk. 🛡️ 🏷️ #ETH #LongSetup #EIP #DeFi #Crypto 🦈 💎
🦈 $ETH SMART MONEY IS ABSORBING THE DIP — LONG SETUP WITH CLEAN R:R 💥

Entry: 1869.41 ⚡
Target: 1957.02 🚀
Target: 2050.21 💥
Stop Loss: 1807.92 ⚠️

This pullback into 1869 isn't a breakdown — it's a liquidity sweep engineered to shake out late longs before the next expansion. 📊 The same demand zone that anchors the entire DeFi/NFT ecosystem is holding firm, while EIP burn continues to shrink available supply every single block. 🔥

Institutional footprints are visible in the order book absorption here. A clean reclaim of 1957 opens the path to 2050, where the next liquidity pool sits. 📌 This is high-conviction structure with a defined risk and a reward that's purely mechanical. 💡 Are you catching this dip or waiting for confirmation above 1957? 💬

⚠️ Not financial advice. Always manage your risk. 🛡️

🏷️ #ETH #LongSetup #EIP #DeFi #Crypto

🦈 💎
🟣 Ethereum Glamsterdam Devnet-6 is Live Core dev Terence confirms the launch of Glamsterdam devnet-6 , bringing several new EIP updates to the Ethereum ($ETH ) testnet pipeline: New in devnet-6: EIP-8282 : ePBS builder execution requests + 2 new system contracts Upcoming (post-bal-devnet-7): EIP-2780 , 8038 (repricing), 7997 , 8246 , 8070 (optional) Modified proposals: 💥EIP-7954 (64 KiB) 💥EIP-8037 (source-based refunds) 💥EIP-7928 (BAL×7702 warm-up unchanged) {future}(ETHUSDT) Steady progress on Ethereum's roadmap — ePBS infrastructure is taking shape. The execution layer keeps evolving. #ETH #Ethereum #EIP #DevNet #Scaling
🟣 Ethereum Glamsterdam Devnet-6 is Live

Core dev Terence confirms the launch of Glamsterdam devnet-6 , bringing several new EIP updates to the Ethereum ($ETH ) testnet pipeline:

New in devnet-6:
EIP-8282 : ePBS builder execution requests + 2 new system contracts

Upcoming (post-bal-devnet-7):
EIP-2780 , 8038 (repricing), 7997 , 8246 , 8070 (optional)

Modified proposals:

💥EIP-7954 (64 KiB)
💥EIP-8037 (source-based refunds)
💥EIP-7928 (BAL×7702 warm-up unchanged)

Steady progress on Ethereum's roadmap — ePBS infrastructure is taking shape. The execution layer keeps evolving.

#ETH #Ethereum #EIP #DevNet #Scaling
🚨 $ETH COILED TIGHT – THE NEXT LEG UP IS LOADING! 💥 Entry: 1,863.09 ⚡ Target: 1,960.94 - 2,054.32 🚀 Stop Loss: 1,811.53 ⚠️ 📌 This isn't noise – it's a textbook compression zone on the daily. $ETH absorbed sell pressure across three cycles near 1,860 while EIP mechanisms locked float tighter than ever. 📊 Volume is shrinking into the squeeze, and that’s exactly what precedes the sharpest relief moves. 💡 Smart money is stacking bids here, waiting for the trigger. The path of least resistance tilts north once 1,960 flips support. 💬 Are you front-running this breakout or waiting for a liquidity sweep below the range? 👇 ⚠️ Not financial advice. Always manage your risk. 🛡️ 🏷️ #ETH #LongSetup #Breakout #EIP #Crypto 🦈 🎯
🚨 $ETH COILED TIGHT – THE NEXT LEG UP IS LOADING! 💥

Entry: 1,863.09 ⚡
Target: 1,960.94 - 2,054.32 🚀
Stop Loss: 1,811.53 ⚠️

📌 This isn't noise – it's a textbook compression zone on the daily. $ETH absorbed sell pressure across three cycles near 1,860 while EIP mechanisms locked float tighter than ever. 📊 Volume is shrinking into the squeeze, and that’s exactly what precedes the sharpest relief moves.

💡 Smart money is stacking bids here, waiting for the trigger. The path of least resistance tilts north once 1,960 flips support. 💬 Are you front-running this breakout or waiting for a liquidity sweep below the range? 👇

⚠️ Not financial advice. Always manage your risk. 🛡️

🏷️ #ETH #LongSetup #Breakout #EIP #Crypto

🦈 🎯
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