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antiquantumbitcointransactionminedonmainnet

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#antiquantumbitcointransactionminedonmainnet 🚨 BITCOIN QUANTUM-RESISTANT TRANSACTION MINED! ₿⚛️ A quantum-resistant Bitcoin transaction has been successfully mined on the Bitcoin mainnet — a notable step toward Bitcoin’s long-term security against future quantum-computing threats. 📊 Trading Setup: Don’t chase the news. Wait for BTC to confirm the direction with price action + volume before entering. ⏱️ Trade Time: Hold only while the setup remains valid; there is no guaranteed holding period. 🎯 Profit: No fixed profit is guaranteed. Set your entry, stop-loss, and target first, then calculate the potential reward. ⚠️ Trade smart: Use proper risk management and never enter just because of a headline. What do you think—will BTC react bullishly to this development? ₿📈 #Bitcoin #BTC #QuantumComputing #CryptoNews [https://www.binance.com/en/square/profile/square-creator-4e7984f6aedff](https://app.binance.com/uni-qr/cpro/Square-Creator-4e7984f6aedff?l=en&r=V6HD5AIZ&uc=web_square_share_link&us=copylink) click tobelow trade👇👇 $BTC $ETH $BNB {spot}(BNBUSDT) {spot}(ETHUSDT) {spot}(BTCUSDT)
#antiquantumbitcointransactionminedonmainnet
🚨 BITCOIN QUANTUM-RESISTANT TRANSACTION MINED! ₿⚛️
A quantum-resistant Bitcoin transaction has been successfully mined on the Bitcoin mainnet — a notable step toward Bitcoin’s long-term security against future quantum-computing threats.
📊 Trading Setup:
Don’t chase the news. Wait for BTC to confirm the direction with price action + volume before entering.
⏱️ Trade Time: Hold only while the setup remains valid; there is no guaranteed holding period.
🎯 Profit: No fixed profit is guaranteed. Set your entry, stop-loss, and target first, then calculate the potential reward.
⚠️ Trade smart: Use proper risk management and never enter just because of a headline.
What do you think—will BTC react bullishly to this development? ₿📈
#Bitcoin #BTC #QuantumComputing #CryptoNews
https://www.binance.com/en/square/profile/square-creator-4e7984f6aedff
click tobelow trade👇👇
$BTC
$ETH
$BNB
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Vérifié
🚨 HISTORIC MILESTONE: FIRST ANTI QUANTUM BITCOIN TRANSACTION MINED ON MAINNET History was just made on the $BTC network. Researchers have successfully executed the first ever Quantum Safe Bitcoin (QSB) transaction directly on Mainnet, requiring zero soft forks, hard forks, or network consensus changes. Engineered by StarkWare researcher Avihu Levy and engineer Tomer Giladi, the transaction spent 10,000 satoshis and was confirmed in Block 964,199. The method replaces standard elliptic curve spending conditions with hash function based conditions and GPU signature grinding, locking down the 10 minute mempool window where a public key sits exposed to potential quantum attacks. However, this breakthrough comes with major real world trade offs. Generating the proof took hours of heavy GPU computation, costing roughly $150 to $200 in power for a single transfer. Additionally, because standard Bitcoin Core nodes flag this script format as non standard, public nodes would not relay it. The researchers had to submit the transaction directly to MARA Pool via their Slipstream direct submission pipeline. While QSB serves as an emergency fallback to protect high value funds today, developers view it as a temporary bridging tool while work continues on network wide protocol upgrades like BIP 360. What do you think? Will quantum threats force faster protocol upgrades, or are opt in script workarounds enough for now? Share your thoughts below! #antiquantumbitcointransactionminedonmainnet
🚨 HISTORIC MILESTONE: FIRST ANTI QUANTUM BITCOIN TRANSACTION MINED ON MAINNET

History was just made on the $BTC network. Researchers have successfully executed the first ever Quantum Safe Bitcoin (QSB) transaction directly on Mainnet, requiring zero soft forks, hard forks, or network consensus changes.

Engineered by StarkWare researcher Avihu Levy and engineer Tomer Giladi, the transaction spent 10,000 satoshis and was confirmed in Block 964,199. The method replaces standard elliptic curve spending conditions with hash function based conditions and GPU signature grinding, locking down the 10 minute mempool window where a public key sits exposed to potential quantum attacks.

However, this breakthrough comes with major real world trade offs. Generating the proof took hours of heavy GPU computation, costing roughly $150 to $200 in power for a single transfer. Additionally, because standard Bitcoin Core nodes flag this script format as non standard, public nodes would not relay it. The researchers had to submit the transaction directly to MARA Pool via their Slipstream direct submission pipeline.

While QSB serves as an emergency fallback to protect high value funds today, developers view it as a temporary bridging tool while work continues on network wide protocol upgrades like BIP 360.

What do you think? Will quantum threats force faster protocol upgrades, or are opt in script workarounds enough for now? Share your thoughts below!

#antiquantumbitcointransactionminedonmainnet
Vérifié
History just got mined on Bitcoin — literally. 🚨 StarkWare's researcher Avihu Levy just pulled off the first-ever quantum-safe Bitcoin transaction on mainnet — no soft fork, no hard fork, no consensus change. It was confirmed in block 964,199 , spending a 10,000-satoshi output protected by the Quantum-Safe Bitcoin (QSB) scheme, and mined by MARA Pool through its Slipstream service. Here's the deal: QSB swaps elliptic-curve cryptography (the thing Shor's algorithm could break) for hash-based, quantum-resistant security — using "signature grinding" to bind the transaction off-chain before it ever hits the mempool. The result? Even a working quantum computer can't forge it. But read the fine print 👇 ⏱️ It took hours of GPU compute and ~$150–$200 per transaction — not ready for daily use 🚫 QSB txs are non-standard under Bitcoin Core's relay policy — they need miner-direct submission (Slipstream) 🎯 It protects individual transactions only — not the whole network, and not addresses with already-exposed public keys (an estimated ~7M BTC sit in that risk zone per Coinbase's quantum council) StarkWare CEO Eli Ben-Sasson is clear: "A soft fork should happen, and I believe it will" — QSB is the safety net while the protocol catches up (think BIP-360 ). First step taken on the road to quantum-proof Bitcoin. The deadline is coming — now there's proof we can meet it. ⏳ $BTC $XRP $ZEC {future}(ZECUSDT) {future}(XRPUSDT) {future}(BTCUSDT) #antiquantumbitcointransactionminedonmainnet #BitcoinSpotETFEnds9DayInflowStreak #NYSilverFuturesDrop3% #BTCDrops3.4%To$77383
History just got mined on Bitcoin — literally. 🚨

StarkWare's researcher Avihu Levy just pulled off the first-ever quantum-safe Bitcoin transaction on mainnet — no soft fork, no hard fork, no consensus change. It was confirmed in block 964,199 , spending a 10,000-satoshi output protected by the Quantum-Safe Bitcoin (QSB) scheme, and mined by MARA Pool through its Slipstream service.

Here's the deal: QSB swaps elliptic-curve cryptography (the thing Shor's algorithm could break) for hash-based, quantum-resistant security — using "signature grinding" to bind the transaction off-chain before it ever hits the mempool. The result? Even a working quantum computer can't forge it.

But read the fine print 👇
⏱️ It took hours of GPU compute and ~$150–$200 per transaction — not ready for daily use
🚫 QSB txs are non-standard under Bitcoin Core's relay policy — they need miner-direct submission (Slipstream)
🎯 It protects individual transactions only — not the whole network, and not addresses with already-exposed public keys (an estimated ~7M BTC sit in that risk zone per Coinbase's quantum council)

StarkWare CEO Eli Ben-Sasson is clear: "A soft fork should happen, and I believe it will" — QSB is the safety net while the protocol catches up (think BIP-360 ).

First step taken on the road to quantum-proof Bitcoin. The deadline is coming — now there's proof we can meet it. ⏳

$BTC $XRP $ZEC

#antiquantumbitcointransactionminedonmainnet #BitcoinSpotETFEnds9DayInflowStreak #NYSilverFuturesDrop3% #BTCDrops3.4%To$77383
#antiquantumbitcointransactionminedonmainnet 🚨 Bitcoin just took a real step toward the quantum era. For years, quantum resistance in Bitcoin has mostly been discussed as a future problem. This week, that conversation moved onto the live network. StarkWare has demonstrated what it describes as the first quantum -safe Bitcoin transaction on Bitcoin mainnet. The transaction was confirmed in block 964,199 on August 26, using StarkWare’s Quantum Safe Bitcoin (QSB) method, without changing Bitcoin’s existing consensus rules.$BTC $RIF $MITO
#antiquantumbitcointransactionminedonmainnet 🚨
Bitcoin just took a real step toward the quantum
era.

For years,
quantum resistance in Bitcoin
has mostly been discussed as a future problem. This week, that conversation moved onto the live network.

StarkWare has demonstrated what it describes as the first
quantum
-safe Bitcoin transaction on Bitcoin mainnet.

The transaction was confirmed in block 964,199 on August 26, using StarkWare’s Quantum Safe Bitcoin (QSB) method, without changing Bitcoin’s existing consensus rules.$BTC $RIF $MITO
#antiquantumbitcointransactionminedonmainnet #BREAKING : FIRST QUANTUM-RESISTANT BITCOIN TRANSACTION MINED ON MAINNET Bitcoin has successfully processed its first transaction using post-quantum cryptographic signatures. WHY THIS IS IMPORTANT: 1. **Future Security** Quantum computers could break ECDSA signatures. Bitcoin is now testing the solution. 2. **Institutional Signal** This removes a key long-term risk for BTC treasury adoption. Proves Bitcoin can upgrade without breaking the network. 3. **Market Narrative** "Security" is becoming a core theme for 2026-2027. COINS TO WATCH: $BTC - First mover, now quantum-resistant capable $QRL - Quantum Resistant Ledger $ALGO - Post-quantum from day 1 $IOTA - PQ cryptography integrated $TAO - AI + Security infrastructure This is phase 1. Wallet and protocol upgrades come next. DISCLAIMER: Not financial advice. BTC $QRL $TAO #bitcoin #Quantum #Cryptography #Blockchain #Security #DigitalAssets#BitcoinSpotETFEnds9DayInflowStreak #BTCDrops3.4%To$77383
#antiquantumbitcointransactionminedonmainnet

#BREAKING : FIRST QUANTUM-RESISTANT BITCOIN TRANSACTION MINED ON MAINNET

Bitcoin has successfully processed its first transaction using
post-quantum cryptographic signatures.

WHY THIS IS IMPORTANT:
1. **Future Security**
Quantum computers could break ECDSA signatures.
Bitcoin is now testing the solution.

2. **Institutional Signal**
This removes a key long-term risk for BTC treasury adoption.
Proves Bitcoin can upgrade without breaking the network.

3. **Market Narrative**
"Security" is becoming a core theme for 2026-2027.

COINS TO WATCH:
$BTC - First mover, now quantum-resistant capable
$QRL - Quantum Resistant Ledger
$ALGO - Post-quantum from day 1
$IOTA - PQ cryptography integrated
$TAO - AI + Security infrastructure

This is phase 1. Wallet and protocol upgrades come next.

DISCLAIMER: Not financial advice.

BTC $QRL $TAO
#bitcoin #Quantum #Cryptography #Blockchain #Security #DigitalAssets#BitcoinSpotETFEnds9DayInflowStreak #BTCDrops3.4%To$77383
On August 26, 2026, StarkWare researcher Avihu Levy's Quantum-Safe Bitcoin (QSB) method became the first quantum-safe transaction ever mined on Bitcoin mainnet (via MARA Pool's Slipstream), proving Bitcoin can be protected from quantum attacks without a soft fork - it uses signature grinding / Binohash to create a valid signature without a private key by brute-forcing a hash, so security relies on hash functions which Shor's algorithm can't break, unlike Bitcoin's elliptic-curve crypto; it's currently expensive ($100s, hours of compute) and non-standard so it needs direct miner submission, but it lets holders move coins into a hash-locked output a quantum computer cannot open. #AntiQuantumBitcoinTransactionMinedOnMainnet $NVDAB {spot}(NVDABUSDT) $AAPLB {spot}(AAPLBUSDT) $NVDA.US {stock_us}(NVDA.US)
On August 26, 2026, StarkWare researcher Avihu Levy's Quantum-Safe Bitcoin (QSB) method became the first quantum-safe transaction ever mined on Bitcoin mainnet (via MARA Pool's Slipstream), proving Bitcoin can be protected from quantum attacks without a soft fork - it uses signature grinding / Binohash to create a valid signature without a private key by brute-forcing a hash, so security relies on hash functions which Shor's algorithm can't break, unlike Bitcoin's elliptic-curve crypto; it's currently expensive ($100s, hours of compute) and non-standard so it needs direct miner submission, but it lets holders move coins into a hash-locked output a quantum computer cannot open.

#AntiQuantumBitcoinTransactionMinedOnMainnet
$NVDAB
$AAPLB
$NVDA.US
NVDAB+0,43%
NVDAUS-4,48%
AAPLB+0,15%
Article
AntiQuantumBitcoinTransactionMinedOnMainnet ⚛️ A potentially important Bitcoin milestone has emerged: #AntiQuantumBitcoinTransactionMinedOnMainnet StarkWare says a quantum-resistant Bitcoin transaction was successfully mined on the Bitcoin mainnet without requiring a soft fork, hard fork, or change to Bitcoin’s consensus rules. The transaction used Avihu Levy’s Quantum-Safe Bitcoin (QSB). construction and was processed through MARA Foundation’s Slipstream service. Why does this matter? Bitcoin currently relies on elliptic-curve cryptography for transaction signatures. A sufficiently powerful quantum computer could eventually threaten this security by using algorithms such as Shor’s algorithm to derive private keys from exposed public keys. The QSB approach attempts to reduce this risk by using **hash-based security mechanisms** rather than relying solely on traditional elliptic-curve signatures. Importantly, this demonstration shows that quantum-resistant spending techniques can potentially be used on today's Bitcoin network **without immediately changing Bitcoin's consensus rules**. But Bitcoin isn't suddenly “quantum-proof” This is the crucial distinction. The transaction is a **proof of concept**, not a network-wide upgrade. QSB requires users to actively migrate funds, and it does not automatically protect coins whose public keys are already exposed. The unusual transaction format also isn't something that normally propagates through Bitcoin's public mempool. #YenPasses160PerDollarToOneMonthLow {future}(NILUSDT) {future}(HEMIUSDT) #SchwabPlansToAddSOLAVAXLINKTrading

AntiQuantumBitcoinTransactionMinedOnMainnet

⚛️ A potentially important Bitcoin milestone has emerged: #AntiQuantumBitcoinTransactionMinedOnMainnet StarkWare says a quantum-resistant Bitcoin transaction was successfully mined on the Bitcoin mainnet without requiring a soft fork, hard fork, or change to Bitcoin’s consensus rules. The transaction used Avihu Levy’s Quantum-Safe Bitcoin (QSB). construction and was processed through MARA Foundation’s Slipstream service.
Why does this matter?
Bitcoin currently relies on elliptic-curve cryptography for transaction signatures. A sufficiently powerful quantum computer could eventually threaten this security by using algorithms such as Shor’s algorithm to derive private keys from exposed public keys.
The QSB approach attempts to reduce this risk by using **hash-based security mechanisms** rather than relying solely on traditional elliptic-curve signatures. Importantly, this demonstration shows that quantum-resistant spending techniques can potentially be used on today's Bitcoin network **without immediately changing Bitcoin's consensus rules**.
But Bitcoin isn't suddenly “quantum-proof”
This is the crucial distinction. The transaction is a **proof of concept**, not a network-wide upgrade. QSB requires users to actively migrate funds, and it does not automatically protect coins whose public keys are already exposed. The unusual transaction format also isn't something that normally propagates through Bitcoin's public mempool.
#YenPasses160PerDollarToOneMonthLow
#SchwabPlansToAddSOLAVAXLINKTrading
"Will quantum computers kill #Bitcoin ?" 🤔 We’ve all heard this rumor. ​Well, the Bitcoin network just answered back. 🎤⬇️ ​An actual Anti-Quantum transaction was just successfully mined on the Bitcoin Mainnet! This isn't a simulation or a testnet drill—it's live proof that developers are actively evolving the network to withstand next-gen supercomputers. ​While a real "quantum threat" is likely still years or decades away, Bitcoin is already forging its armor. The king of crypto doesn't just survive; it adapts. 👑🛡️ ​Are you worried about quantum computing, or do you trust the network to upgrade in time? Let's chat in the comments! 👇 $BTC $SOL $ZEC {future}(ZECUSDT) {future}(BTCUSDT) {future}(SOLUSDT) ​#AntiQuantumBitcoinTransactionMinedOnMainnet #CryptoTrends
"Will quantum computers kill #Bitcoin ?" 🤔 We’ve all heard this rumor.

​Well, the Bitcoin network just answered back. 🎤⬇️

​An actual Anti-Quantum transaction was just successfully mined on the Bitcoin Mainnet! This isn't a simulation or a testnet drill—it's live proof that developers are actively evolving the network to withstand next-gen supercomputers.

​While a real "quantum threat" is likely still years or decades away, Bitcoin is already forging its armor. The king of crypto doesn't just survive; it adapts. 👑🛡️

​Are you worried about quantum computing, or do you trust the network to upgrade in time? Let's chat in the comments! 👇

$BTC $SOL $ZEC

#AntiQuantumBitcoinTransactionMinedOnMainnet #CryptoTrends
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Haussier
#AntiQuantumBitcoinTransactionMinedOnMainnet Bitcoin Just Defended Itself Against Quantum Computers That Do Not Even Exist Yet 🔮🛡️ August 26. StarkWare researcher Avihu Levy, working on his own time with engineer Tomer Giladi, mined the first quantum resistant Bitcoin transaction on mainnet, block 964,199, moving 10,000 satoshis. The method, Quantum Safe Bitcoin, uses signature grinding and RIPEMD-160 hashing instead of standard elliptic curve cryptography, achieving roughly 118-bit resistance against Shor's algorithm. No soft fork. No hard fork. No consensus rule change. Bitcoin apparently already had the tools to defend itself, it just needed someone to notice. 😂 Here is the honest technical nuance worth understanding 🧠 Bitcoin sitting in a standard address is already considered quantum safe. The actual vulnerability appears only during the roughly ten minutes a transaction sits unconfirmed in the mempool, when the wallet's public key briefly gets exposed. QSB protects exactly that narrow window, nothing more. It is a stopgap for a threat that does not currently exist, built for a moment that may arrive years from now. 💡 The comedy hiding in the mechanics 🎭 This transaction was so nonstandard that ordinary Bitcoin nodes would not even relay it. StarkWare had to hand it directly to mining company MARA through a special service just to get it included. It also cost $150 to $200 in computation and took hours to complete, works only on older pre-SegWit addresses, and has zero support for Taproot or Lightning. Revolutionary proof of concept, genuinely impractical for everyday use right now. 💎 The honest bottom line 🎯 Even StarkWare's own CEO calls this a stopgap, still pushing for an actual protocol level fix called BIP-360. Bitcoin proved it can defend itself today. Whether anyone will actually use this particular method before a real upgrade arrives is a separate question entirely. 🚀 $BTC {spot}(BTCUSDT)
#AntiQuantumBitcoinTransactionMinedOnMainnet
Bitcoin Just Defended Itself Against Quantum Computers That Do Not Even Exist Yet 🔮🛡️

August 26. StarkWare researcher Avihu Levy, working on his own time with engineer Tomer Giladi, mined the first quantum resistant Bitcoin transaction on mainnet, block 964,199, moving 10,000 satoshis. The method, Quantum Safe Bitcoin, uses signature grinding and RIPEMD-160 hashing instead of standard elliptic curve cryptography, achieving roughly 118-bit resistance against Shor's algorithm. No soft fork. No hard fork. No consensus rule change. Bitcoin apparently already had the tools to defend itself, it just needed someone to notice. 😂

Here is the honest technical nuance worth understanding 🧠

Bitcoin sitting in a standard address is already considered quantum safe. The actual vulnerability appears only during the roughly ten minutes a transaction sits unconfirmed in the mempool, when the wallet's public key briefly gets exposed. QSB protects exactly that narrow window, nothing more. It is a stopgap for a threat that does not currently exist, built for a moment that may arrive years from now. 💡

The comedy hiding in the mechanics 🎭

This transaction was so nonstandard that ordinary Bitcoin nodes would not even relay it. StarkWare had to hand it directly to mining company MARA through a special service just to get it included. It also cost $150 to $200 in computation and took hours to complete, works only on older pre-SegWit addresses, and has zero support for Taproot or Lightning. Revolutionary proof of concept, genuinely impractical for everyday use right now. 💎

The honest bottom line 🎯

Even StarkWare's own CEO calls this a stopgap, still pushing for an actual protocol level fix called BIP-360. Bitcoin proved it can defend itself today. Whether anyone will actually use this particular method before a real upgrade arrives is a separate question entirely. 🚀

$BTC
#AntiQuantumBitcoinTransactionMinedOnMainnet BITCOIN MINES FIRST QUANTUM-SAFE TX ON MAINNET — NO FORK NEEDED! ​StarkWare researchers achieved a historic cryptographic milestone by mining the first Quantum-Safe Bitcoin (QSB) transaction on mainnet in block 964,199. Developed by researcher Avihu Levy, the scheme spent a 10,000-satoshi output using hash-based security (Lamport signatures) to replace standard ECDSA elliptic-curve signature risks. ​Crucially, QSB works within Bitcoin's current legacy script rules without requiring a soft fork or network upgrade. Because the non-standard format bypasses the public mempool, it was submitted directly to MARA Pool via Slipstream. ​Key Takeaways: • High Resource Bar: Requires hours of off-chain GPU computation ($150–$200 cost per transaction), making it an emergency shield rather than a daily payment system. • Scope Limit: It is an opt-in tool for unexposed keys and does not retroactively protect already exposed public keys. • Market Impact: Provides massive long-term reassurance that BTC can adapt to quantum threats today while core developers prepare soft-fork upgrades. ​💡 Security breakthroughs reinforce Bitcoin’s long-term fundamental thesis. Ignore impulse news trades and let high-timeframe price action confirm your market positioning. ​👇 CLICK BELOW TO TRADE: $BTC ETHSOL ​#Bitcoin #QuantumSafe #BTC #CryptoNews
#AntiQuantumBitcoinTransactionMinedOnMainnet
BITCOIN MINES FIRST QUANTUM-SAFE TX ON MAINNET — NO FORK NEEDED!

​StarkWare researchers achieved a historic cryptographic milestone by mining the first Quantum-Safe Bitcoin (QSB) transaction on mainnet in block 964,199. Developed by researcher Avihu Levy, the scheme spent a 10,000-satoshi output using hash-based security (Lamport signatures) to replace standard ECDSA elliptic-curve signature risks.

​Crucially, QSB works within Bitcoin's current legacy script rules without requiring a soft fork or network upgrade. Because the non-standard format bypasses the public mempool, it was submitted directly to MARA Pool via Slipstream.

​Key Takeaways:

• High Resource Bar: Requires hours of off-chain GPU computation ($150–$200 cost per transaction), making it an emergency shield rather than a daily payment system.

• Scope Limit: It is an opt-in tool for unexposed keys and does not retroactively protect already exposed public keys.

• Market Impact: Provides massive long-term reassurance that BTC can adapt to quantum threats today while core developers prepare soft-fork upgrades.

​💡 Security breakthroughs reinforce Bitcoin’s long-term fundamental thesis. Ignore impulse news trades and let high-timeframe price action confirm your market positioning.

​👇 CLICK BELOW TO TRADE: $BTC ETHSOL

#Bitcoin #QuantumSafe #BTC #CryptoNews
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#AntiQuantumBitcoinTransactionMinedOnMainnet BITCOIN PROVES QUANTUM RESILIENCE ON MAINNET! ​The first-ever quantum-safe Bitcoin transaction (QSB) was mined in block 964,199 without needing a soft fork or protocol upgrade. By utilizing hash-based cryptography, the milestone proves BTC can defend high-value assets against future quantum threats under current network rules. ​While high GPU compute costs ($150–$200/tx) keep QSB as an emergency backup rather than daily tech, it provides a massive long-term safety net. ​💡 Trade price structure, not noise. Long-term security wins boost fundamental strength, but let the charts confirm your entries. ​👇 CLICK BELOW TO TRADE: $BTC ETHSOL ​#Bitcoin #QuantumSafe #BTC #CryptoNews
#AntiQuantumBitcoinTransactionMinedOnMainnet
BITCOIN PROVES QUANTUM RESILIENCE ON MAINNET!

​The first-ever quantum-safe Bitcoin transaction (QSB) was mined in block 964,199 without needing a soft fork or protocol upgrade. By utilizing hash-based cryptography, the milestone proves BTC can defend high-value assets against future quantum threats under current network rules.

​While high GPU compute costs ($150–$200/tx) keep QSB as an emergency backup rather than daily tech, it provides a massive long-term safety net.

​💡 Trade price structure, not noise. Long-term security wins boost fundamental strength, but let the charts confirm your entries.

​👇 CLICK BELOW TO TRADE: $BTC ETHSOL

#Bitcoin #QuantumSafe #BTC #CryptoNews
#AntiQuantumBitcoinTransactionMinedOnMainnet HISTORIC MILESTONE — FIRST QUANTUM-SAFE BTC TX MINED ON MAINNET! ​History was made on the Bitcoin network as researchers successfully executed the first-ever quantum-safe transaction on mainnet without requiring a soft fork or protocol upgrade. The experimental Quantum-Safe Bitcoin (QSB) transaction spent 10,000 satoshis in block 964,199, utilizing hash-based cryptographic protections instead of traditional elliptic-curve assumptions to resist potential future quantum attacks. ​While this proves Bitcoin can implement emergency opt-in quantum defenses under its current rules, the process is computationally heavy and non-standard, requiring hours of off-chain GPU processing to execute. Still, it demonstrates a massive structural proof-of-concept for long-term network security and asset protection. ​💡 Don’t overreact to headline hype or panic over quantum threats. This proves Bitcoin’s resilience, but wait for technical confirmation on price action rather than trading immediate news wicks. ​👇 CLICK BELOW TO TRADE: $BTC ETHSOL ​#Bitcoin #Crypto #QuantumSafe #BinanceSquare
#AntiQuantumBitcoinTransactionMinedOnMainnet
HISTORIC MILESTONE — FIRST QUANTUM-SAFE BTC TX MINED ON MAINNET!

​History was made on the Bitcoin network as researchers successfully executed the first-ever quantum-safe transaction on mainnet without requiring a soft fork or protocol upgrade. The experimental Quantum-Safe Bitcoin (QSB) transaction spent 10,000 satoshis in block 964,199, utilizing hash-based cryptographic protections instead of traditional elliptic-curve assumptions to resist potential future quantum attacks.

​While this proves Bitcoin can implement emergency opt-in quantum defenses under its current rules, the process is computationally heavy and non-standard, requiring hours of off-chain GPU processing to execute. Still, it demonstrates a massive structural proof-of-concept for long-term network security and asset protection.

​💡 Don’t overreact to headline hype or panic over quantum threats. This proves Bitcoin’s resilience, but wait for technical confirmation on price action rather than trading immediate news wicks.

​👇 CLICK BELOW TO TRADE: $BTC ETHSOL

#Bitcoin #Crypto #QuantumSafe #BinanceSquare
#AntiQuantumBitcoinTransactionMinedOnMainnet This is one of those Bitcoin moments that feels bigger than just another transaction. A Bitcoin transaction with an anti-quantum focus being mined on mainnet is a reminder that the crypto world cant afford to wait until quantum computing becomes a real threat. Bitcoin was built to be resilient, and staying ahead of future risks is part of that journey. Whether quantum computing is still years away or arrives sooner than expected, preparing early makes sense. The technology keeps evolving, and Bitcoin has to evolve with it. Curious to see where this takes us next.#Bitcoin❗ #BTC #QuantumComputing?
#AntiQuantumBitcoinTransactionMinedOnMainnet
This is one of those Bitcoin moments that feels bigger than just another transaction.

A Bitcoin transaction with an anti-quantum focus being mined on mainnet is a reminder that the crypto world cant afford to wait until quantum computing becomes a real threat.

Bitcoin was built to be resilient, and staying ahead of future risks is part of that journey. Whether quantum computing is still years away or arrives sooner than expected, preparing early makes sense.

The technology keeps evolving, and Bitcoin has to evolve with it.

Curious to see where this takes us next.#Bitcoin❗ #BTC #QuantumComputing?
#AntiQuantumBitcoinTransactionMinedOnMainnet 🚨 BITCOIN TESTS A QUANTUM-SAFE TRANSACTION A quantum-resistant Bitcoin transaction has been successfully mined on Bitcoin mainnet, showing that post-quantum security can work without changing Bitcoin’s consensus rules. It’s still an early experiment, but an important step for Bitcoin’s long-term security. 💡 Trader view: This is a technology milestone, not a direct BTC price signal. Watch the market, not the headline. 👇 CLICK BELOW TO TRADE: $BTC ⚠️ NFA. DYOR. #Bitcoin #BTC #QuantumComputing
#AntiQuantumBitcoinTransactionMinedOnMainnet
🚨 BITCOIN TESTS A QUANTUM-SAFE TRANSACTION
A quantum-resistant Bitcoin transaction has been successfully mined on Bitcoin mainnet, showing that post-quantum security can work without changing Bitcoin’s consensus rules. It’s still an early experiment, but an important step for Bitcoin’s long-term security.
💡 Trader view: This is a technology milestone, not a direct BTC price signal. Watch the market, not the headline.
👇 CLICK BELOW TO TRADE: $BTC
⚠️ NFA. DYOR.
#Bitcoin #BTC #QuantumComputing
Vérifié
Article
First Quantum-Safe Bitcoin Transaction Mined on MainnetOn August 26, 2026, blockchain history was quietly made. Developers successfully mined the first quantum-safe Bitcoin transaction on the mainnet, buried inside block 964,199. Using an experimental framework called Quantum-Safe Bitcoin (QSB), a research team at StarkWare managed to complete this transaction without needing a single network upgrade—no soft forks, no hard forks, and no changes to Bitcoin's core rules. Instead of relying on standard elliptic-curve cryptography, which quantum computers could theoretically crack one day using Shor’s Algorithm, this method uses a complex mix of hash-function locks and a computing technique called "signature grinding." Because the transaction format is considered "non-standard" by regular network nodes, it couldn't sit in the public mempool. Instead, it was routed directly to the mining company MARA through their private Slipstream service to be processed. While it is a massive proof of concept, it isn't a silver bullet just yet. Each transaction requires intensive GPU computation and costs around $150 to $200 in resources. It also can't protect the roughly 7 million Bitcoins sitting in older addresses where public keys are already exposed on the blockchain. Still, it proves that if a quantum emergency happens tomorrow, Bitcoin already has a built-in escape hatch. #AntiQuantumBitcoinTransactionMinedOnMainnet $BTC

First Quantum-Safe Bitcoin Transaction Mined on Mainnet

On August 26, 2026, blockchain history was quietly made. Developers successfully mined the first quantum-safe Bitcoin transaction on the mainnet, buried inside block 964,199.
Using an experimental framework called Quantum-Safe Bitcoin (QSB), a research team at StarkWare managed to complete this transaction without needing a single network upgrade—no soft forks, no hard forks, and no changes to Bitcoin's core rules.
Instead of relying on standard elliptic-curve cryptography, which quantum computers could theoretically crack one day using Shor’s Algorithm, this method uses a complex mix of hash-function locks and a computing technique called "signature grinding." Because the transaction format is considered "non-standard" by regular network nodes, it couldn't sit in the public mempool. Instead, it was routed directly to the mining company MARA through their private Slipstream service to be processed.
While it is a massive proof of concept, it isn't a silver bullet just yet. Each transaction requires intensive GPU computation and costs around $150 to $200 in resources. It also can't protect the roughly 7 million Bitcoins sitting in older addresses where public keys are already exposed on the blockchain. Still, it proves that if a quantum emergency happens tomorrow, Bitcoin already has a built-in escape hatch.
#AntiQuantumBitcoinTransactionMinedOnMainnet $BTC
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🚨 Bitcoin Just Took a Step Toward the Quantum Era! ⚛️₿ An anti-quantum Bitcoin transaction has reportedly been mined on the mainnet, highlighting the growing focus on protecting Bitcoin against future quantum-computing threats. Quantum computers could eventually challenge today’s cryptographic systems, so experiments like this are important for exploring how Bitcoin might evolve while keeping its core security intact. 🔐 The big question: Is Bitcoin ready for the quantum age?$BTC {spot}(BTCUSDT) The race for stronger cryptography has officially entered the spotlight. 🚀 #AntiQuantumBitcoinTransactionMinedOnMainnet
🚨 Bitcoin Just Took a Step Toward the Quantum Era! ⚛️₿

An anti-quantum Bitcoin transaction has reportedly been mined on the mainnet, highlighting the growing focus on protecting Bitcoin against future quantum-computing threats.

Quantum computers could eventually challenge today’s cryptographic systems, so experiments like this are important for exploring how Bitcoin might evolve while keeping its core security intact.

🔐 The big question: Is Bitcoin ready for the quantum age?$BTC

The race for stronger cryptography has officially entered the spotlight. 🚀

#AntiQuantumBitcoinTransactionMinedOnMainnet
#AntiQuantumBitcoinTransactionMinedOnMainnet The hashtag trending on crypto networks refers to the historic milestone achieved on August 26, 2026, when the first quantum-resistant Bitcoin transaction was successfully mined on the mainnet. Executed by StarkWare researcher Avihu Levy and engineer Tomer Giladi, this proof-of-concept transaction was processed in block 964,199, moving an input of 10,000 satoshis.The breakthrough demonstrates that Bitcoin inherently possesses the legacy Script mechanics necessary to defend funds against future quantum computer attacks—without requiring a soft fork, hard fork, or network consensus upgrade.How the Transaction WorksStandard Bitcoin addresses rely on Elliptic Curve Cryptography (ECDSA or Schnorr), which a sufficiently powerful quantum computer running Shor’s algorithm could theoretically break. The new method, known as Quantum Safe Bitcoin (QSB), circumvents this vulnerability through creative cryptography:Hash-Based Security: QSB transforms standard Script rules into a computational puzzle protected$AAPL.US by hash preimage resistance and Lamport signatures.Signature Grinding: It utilizes a method called signature grinding and RIPEMD-160 hashing to secure roughly 118-bit resistance against quantum decryption.Mempool Protection: Bitcoin is already quantum-safe while sitting untouched in a standard hashed address. The vulnerability only occurs during the ~10 minutes a transaction sits unconfirmed in the public mempool, briefly exposing its public key. QSB shields exactly that narrow window.$TREE
#AntiQuantumBitcoinTransactionMinedOnMainnet
The hashtag trending on crypto networks refers to the historic milestone achieved on August 26, 2026, when the first quantum-resistant Bitcoin transaction was successfully mined on the mainnet. Executed by StarkWare researcher Avihu Levy and engineer Tomer Giladi, this proof-of-concept transaction was processed in block 964,199, moving an input of 10,000 satoshis.The breakthrough demonstrates that Bitcoin inherently possesses the legacy Script mechanics necessary to defend funds against future quantum computer attacks—without requiring a soft fork, hard fork, or network consensus upgrade.How the Transaction WorksStandard Bitcoin addresses rely on Elliptic Curve Cryptography (ECDSA or Schnorr), which a sufficiently powerful quantum computer running Shor’s algorithm could theoretically break. The new method, known as Quantum Safe Bitcoin (QSB), circumvents this vulnerability through creative cryptography:Hash-Based Security: QSB transforms standard Script rules into a computational puzzle protected$AAPL.US by hash preimage resistance and Lamport signatures.Signature Grinding: It utilizes a method called signature grinding and RIPEMD-160 hashing to secure roughly 118-bit resistance against quantum decryption.Mempool Protection: Bitcoin is already quantum-safe while sitting untouched in a standard hashed address. The vulnerability only occurs during the ~10 minutes a transaction sits unconfirmed in the public mempool, briefly exposing its public key. QSB shields exactly that narrow window.$TREE
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