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🚨 URGENT QUANTUM THREAT TO CRYPTO HERES WHAT YOU REALLY NEED TO KNOW 🚨 Everyone is talking about quantum computers destroying crypto but a new report says the danger is not as close as people think. Heres the simple truth 1 Quantum computers wont break Bitcoin or crypto before 2030. The risk is real but the panic is overhyped. 2 But there is a real danger happening right now Hackers can steal encrypted data today and unlock it years later using better tech. This is called Harvest Now Decrypt Later HNDL and it’s a serious problem. 3 Experts a16z say we must add hybrid encryption NOW This protects data today and in the future. 4 Good news Blockchains do not need to rush into new post quantum signatures yet. Digital signatures are safe from HNDL attacks. 5 But Bitcoin needs early planning. Its slow update process means the community must prepare migration paths before quantum becomes powerful. 6 Privacy chains like Monero Zcash need to act faster. Their encrypted data could be a big target for future quantum attacks. 7 Bottom line Quantum danger is real but NOT urgent. The urgent part is fixing today weak security and using better encryption. * The report gives 7 key steps and the message is simple Prepare early Protect your data Dont wait {spot}(USTCUSDT) {spot}(WINUSDT) {spot}(LUNAUSDT) $USTC $WIN $LUNA #BTCVSGOLD #BinanceBlockchainWeek #QuantumSecurity #quantumcomputers
🚨 URGENT QUANTUM THREAT TO CRYPTO HERES WHAT YOU REALLY NEED TO KNOW 🚨

Everyone is talking about quantum computers destroying crypto but a new report says the danger is not as close as people think.

Heres the simple truth

1 Quantum computers wont break Bitcoin or crypto before 2030.
The risk is real but the panic is overhyped.

2 But there is a real danger happening right now
Hackers can steal encrypted data today and unlock it years later using better tech.
This is called Harvest Now Decrypt Later HNDL and it’s a serious problem.

3 Experts a16z say we must add hybrid encryption NOW
This protects data today and in the future.

4 Good news
Blockchains do not need to rush into new post quantum signatures yet.
Digital signatures are safe from HNDL attacks.

5 But Bitcoin needs early planning.
Its slow update process means the community must prepare migration paths before quantum becomes powerful.

6 Privacy chains like Monero Zcash need to act faster.
Their encrypted data could be a big target for future quantum attacks.

7 Bottom line
Quantum danger is real but NOT urgent.
The urgent part is fixing today weak security and using better encryption.

* The report gives 7 key steps and the message is simple
Prepare early Protect your data Dont wait


$USTC $WIN $LUNA
#BTCVSGOLD #BinanceBlockchainWeek #QuantumSecurity #quantumcomputers
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⚛️ Goodbye to Blockchains! Google Launches ‘Quantum Ledger’ and Declares Current Blockchain Technology Obsolete ⚛️ Google has published a revolutionary whitepaper detailing its new "Quantum Ledger Technology" (QLT), a distributed ledger that uses quantum supremacy to provide near-instant transaction finality and performance that surpasses Bitcoin and Ethereum by millions. The announcement comes with a categorical statement that Proof-of-Work and Proof-of-Stake based Blockchain technology is now a "relic of pre-quantum computing". Although QLT is not yet public, panic is sweeping through the crypto market: if a superior technology can replace BTC/ETH overnight, what is the long-term value of current assets? #quantumcomputers #blockchain #INNOVATION #Ethereum #BinanceBlockchainWeek 🤯 Paradigm Shift! Is QLT the true existential threat to Bitcoin and Ethereum, or just a theoretical concept that will fail in practice? Would you sell your BTC/ETH if Google announced the launch date of QLT?
⚛️ Goodbye to Blockchains! Google Launches ‘Quantum Ledger’ and Declares Current Blockchain Technology Obsolete ⚛️

Google has published a revolutionary whitepaper detailing its new "Quantum Ledger Technology" (QLT), a distributed ledger that uses quantum supremacy to provide near-instant transaction finality and performance that surpasses Bitcoin and Ethereum by millions. The announcement comes with a categorical statement that Proof-of-Work and Proof-of-Stake based Blockchain technology is now a "relic of pre-quantum computing".

Although QLT is not yet public, panic is sweeping through the crypto market: if a superior technology can replace BTC/ETH overnight, what is the long-term value of current assets?
#quantumcomputers #blockchain #INNOVATION #Ethereum #BinanceBlockchainWeek

🤯 Paradigm Shift! Is QLT the true existential threat to Bitcoin and Ethereum, or just a theoretical concept that will fail in practice? Would you sell your BTC/ETH if Google announced the launch date of QLT?
willow agent IA:
No
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🖥️🇨🇳 CHINA LAUNCHES THE WORLD'S FIRST ATOMIC QUANTUM COMPUTER: A NEW TECHNOLOGICAL ERA BEGINS 🖥️🇨🇳 China has officially begun selling the world's first atom-based quantum computer, marking a historic turning point: for the first time, a technology previously confined to experimental laboratories is entering the commercial market. Unlike traditional superconducting quantum systems or ion-trap systems, this machine uses individual atoms trapped in optical lattices. Each atom acts as an extremely stable qubit, with significantly higher coherence times, drastically reducing the errors that previously limited the depth of quantum calculations. Initial demonstrations show impressive capabilities: molecular simulations, quantum cryptography, and optimization problems that push classical supercomputers to their limits. Thanks to ultra-precise lasers that manipulate individual atoms, developers have achieved unprecedented control, making atomic qubits extraordinarily reliable for real scientific and industrial applications. For the first time, universities, companies, and research centers can purchase a complete atomic quantum computer without needing to connect via the cloud. This paves the way for new horizons: drug discovery, research on advanced materials, acceleration of artificial intelligence, and next-generation cybersecurity. Analysts warn that this innovation could accelerate the global quantum race, redefining technological and strategic balances in the world over the coming decades. #quantumcomputers #quantum #china
🖥️🇨🇳 CHINA LAUNCHES THE WORLD'S FIRST ATOMIC QUANTUM COMPUTER: A NEW TECHNOLOGICAL ERA BEGINS 🖥️🇨🇳

China has officially begun selling the world's first atom-based quantum computer, marking a historic turning point: for the first time, a technology previously confined to experimental laboratories is entering the commercial market.

Unlike traditional superconducting quantum systems or ion-trap systems, this machine uses individual atoms trapped in optical lattices.
Each atom acts as an extremely stable qubit, with significantly higher coherence times, drastically reducing the errors that previously limited the depth of quantum calculations.

Initial demonstrations show impressive capabilities: molecular simulations, quantum cryptography, and optimization problems that push classical supercomputers to their limits.

Thanks to ultra-precise lasers that manipulate individual atoms, developers have achieved unprecedented control, making atomic qubits extraordinarily reliable for real scientific and industrial applications.

For the first time, universities, companies, and research centers can purchase a complete atomic quantum computer without needing to connect via the cloud.
This paves the way for new horizons: drug discovery, research on advanced materials, acceleration of artificial intelligence, and next-generation cybersecurity.

Analysts warn that this innovation could accelerate the global quantum race, redefining technological and strategic balances in the world over the coming decades.
#quantumcomputers #quantum #china
Venessa Mikolon cmzI:
значит биткоину хана а за ним и эфир упадет
YES 🙂‍↕️👍
76%
NO 🙂‍↔️ 👎
24%
25 votes • Voting closed
Saudi Aramco and Pasqal Unveil the Middle East’s First Industrial Quantum Computer Saudi Arabia, via Aramco in partnership with Pasqal, has successfully deployed the kingdom’s first quantum computer — and the first in the Middle East dedicated to industrial applications. The quantum machine is a neutral-atom 200-qubit system, installed at Aramco’s data centre in Dhahran. This isn’t just academic — the setup is aimed at solving real-world industrial problems: optimizing energy, materials research, industrial operations, and more. As part of the initiative, Saudi Arabia will also build human capacity: training Saudi engineers and scientists, and fostering a regional “quantum ecosystem” for research and development. This marks a major milestone for the Middle East — bringing cutting-edge quantum computing to a region where such infrastructure was previously absent. For industries: quantum computing could enable breakthroughs in areas like energy optimization, materials science, supply-chain planning — problems classical computers struggle with at scale. For global tech: It signals that quantum computing is no longer just Western or academic — the technology is spreading globally, which may accelerate innovation and competition worldwide. For investors / crypto watchers: Quantum computing developments may raise fresh questions about cryptographic security (important for blockchain, crypto, etc.), given the long-term potential of quantum to break classical encryption schemes. #quantumcomputers #SaudiArabia #Aramco #MiddleEast #ProjectCrypto
Saudi Aramco and Pasqal Unveil the Middle East’s First Industrial Quantum Computer

Saudi Arabia, via Aramco in partnership with Pasqal, has successfully deployed the kingdom’s first quantum computer — and the first in the Middle East dedicated to industrial applications.

The quantum machine is a neutral-atom 200-qubit system, installed at Aramco’s data centre in Dhahran.

This isn’t just academic — the setup is aimed at solving real-world industrial problems: optimizing energy, materials research, industrial operations, and more.

As part of the initiative, Saudi Arabia will also build human capacity: training Saudi engineers and scientists, and fostering a regional “quantum ecosystem” for research and development.

This marks a major milestone for the Middle East — bringing cutting-edge quantum computing to a region where such infrastructure was previously absent.

For industries: quantum computing could enable breakthroughs in areas like energy optimization, materials science, supply-chain planning — problems classical computers struggle with at scale.

For global tech: It signals that quantum computing is no longer just Western or academic — the technology is spreading globally, which may accelerate innovation and competition worldwide.

For investors / crypto watchers: Quantum computing developments may raise fresh questions about cryptographic security (important for blockchain, crypto, etc.), given the long-term potential of quantum to break classical encryption schemes.

#quantumcomputers #SaudiArabia #Aramco #MiddleEast #ProjectCrypto
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🇨🇳🖥️ TIANYAN-287: THE CHINESE QUANTUM COMPUTER ACCESSIBLE WORLDWIDE 🖥️🇨🇳 China has launched Tianyan-287, a superconducting quantum computer consisting of 105 "data qubits" and 182 "coupling qubits," for a total of 287 qubits. This machine offers revolutionary performance, with speeds up to 450 million times greater than a traditional supercomputer for specialized tasks. It is not a laboratory prototype, but a system specifically designed for commercial and scientific use. One of the most innovative features of Tianyan-287 is its global accessibility: it is available through a cloud platform, the "Tianyan" quantum computing cloud platform, which allows researchers and companies worldwide to take advantage of quantum computing power remotely. The platform, active since 2023, has already seen over 37 million visits and over 2.7 million experiments conducted by users in more than 60 countries. The system has been developed with completely domestic technology through a collaboration between China Telecom Quantum Group and QuantumCTek. An important engineering challenge has been to ensure the stability and reliability of the dilution refrigerator that keeps the qubits in an ultra-low temperature environment, functional for the continuous delivery of cloud services. This quantum computer opens new frontiers in scientific simulations, optimization, and advanced research, marking a significant step forward for both China and the global scientific community in the field of quantum computing, with potential impact on strategic sectors such as cryptography, materials design, and complex analyses. #quantum #quantumcomputers #china
🇨🇳🖥️ TIANYAN-287: THE CHINESE QUANTUM COMPUTER ACCESSIBLE WORLDWIDE 🖥️🇨🇳

China has launched Tianyan-287, a superconducting quantum computer consisting of 105 "data qubits" and 182 "coupling qubits," for a total of 287 qubits.

This machine offers revolutionary performance, with speeds up to 450 million times greater than a traditional supercomputer for specialized tasks.
It is not a laboratory prototype, but a system specifically designed for commercial and scientific use.

One of the most innovative features of Tianyan-287 is its global accessibility: it is available through a cloud platform, the "Tianyan" quantum computing cloud platform, which allows researchers and companies worldwide to take advantage of quantum computing power remotely.

The platform, active since 2023, has already seen over 37 million visits and over 2.7 million experiments conducted by users in more than 60 countries.
The system has been developed with completely domestic technology through a collaboration between China Telecom Quantum Group and QuantumCTek.

An important engineering challenge has been to ensure the stability and reliability of the dilution refrigerator that keeps the qubits in an ultra-low temperature environment, functional for the continuous delivery of cloud services.

This quantum computer opens new frontiers in scientific simulations, optimization, and advanced research, marking a significant step forward for both China and the global scientific community in the field of quantum computing, with potential impact on strategic sectors such as cryptography, materials design, and complex analyses.
#quantum #quantumcomputers #china
--
Bullish
Good question. Short answer: yes — the quote in the image is based on real recent warnings from Vitalik Buterin (co-founder of Ethereum), but there’s context — it’s not a “this will definitely happen by 2028” guarantee. Here’s what we do know — and what remains uncertain 👇 ✅ What is true / widely reported Vitalik recently warned that quantum computers could pose a real threat to Ethereum (and cryptocurrencies like Bitcoin) by 2028. The risk stems from the underlying cryptography: Ethereum (and many blockchains) uses elliptic-curve cryptography (ECC) / ECDSA to secure wallets and signatures. Quantum computers running a powerful algorithm (like Shor's algorithm) could — in theory — break ECC, derive private keys from public keys, and compromise security. Buterin doesn’t say quantum computers have already broken Ethereum — rather he frames it as a risk: he estimates there’s a non-negligible chance ("~20%") that quantum-capable machines able to break modern cryptography could appear by 2030. ⚠️ What to keep in mind — it’s not a done deal As of now, quantum computers powerful enough to break ECC at scale do not exist. The quantum machines today are not large or stable enough to crack practical blockchain keys. The “break by 2028” is a possibility (a risk), not a certainty. Buterin is speaking in probabilities (e.g., that such machines might exist by 2030) — not “absolute will.” If quantum computers capable of breaking ECC emerge, it wouldn’t automatically crash Ethereum — the community could respond (e.g., upgrade to quantum-resistant cryptography) — but that transition would be complex and would need to happen before massive adoption of quantum attacks. 🎯 What the statement in your image gets right — and what it doesn’t emphasize Right: No quantum computer today can break Ethereum. It’s a risk, not confirmed news. Ethereum can upgrade to quantum-resistant cryptography before any real danger. #quantumcomputers #Vitalik-Buterin's
Good question. Short answer: yes — the quote in the image is based on real recent warnings from Vitalik Buterin (co-founder of Ethereum), but there’s context — it’s not a “this will definitely happen by 2028” guarantee.

Here’s what we do know — and what remains uncertain 👇

✅ What is true / widely reported

Vitalik recently warned that quantum computers could pose a real threat to Ethereum (and cryptocurrencies like Bitcoin) by 2028.

The risk stems from the underlying cryptography: Ethereum (and many blockchains) uses elliptic-curve cryptography (ECC) / ECDSA to secure wallets and signatures. Quantum computers running a powerful algorithm (like Shor's algorithm) could — in theory — break ECC, derive private keys from public keys, and compromise security.

Buterin doesn’t say quantum computers have already broken Ethereum — rather he frames it as a risk: he estimates there’s a non-negligible chance ("~20%") that quantum-capable machines able to break modern cryptography could appear by 2030.

⚠️ What to keep in mind — it’s not a done deal

As of now, quantum computers powerful enough to break ECC at scale do not exist. The quantum machines today are not large or stable enough to crack practical blockchain keys.

The “break by 2028” is a possibility (a risk), not a certainty. Buterin is speaking in probabilities (e.g., that such machines might exist by 2030) — not “absolute will.”

If quantum computers capable of breaking ECC emerge, it wouldn’t automatically crash Ethereum — the community could respond (e.g., upgrade to quantum-resistant cryptography) — but that transition would be complex and would need to happen before massive adoption of quantum attacks.

🎯 What the statement in your image gets right — and what it doesn’t emphasize

Right:

No quantum computer today can break Ethereum.

It’s a risk, not confirmed news.

Ethereum can upgrade to quantum-resistant cryptography before any real danger.
#quantumcomputers
#Vitalik-Buterin's
QUANTUM COMPUTERS in CRYPTO WORLD Quantum computers have the potential to significantly impact the crypto world, particularly in the areas of cryptography and blockchain maintenance. Quantum Computers in Cryptography: Quantum computers can perform certain calculations much faster than classical computers, which could potentially compromise the security of certain cryptographic algorithms. Specifically: 1. Shor's Algorithm: A quantum algorithm that can factor large numbers exponentially faster than classical computers. This could potentially break certain public-key encryption schemes, such as RSA. 2. Simulating Quantum Systems: Quantum computers can simulate complex quantum systems, which could potentially be used to break certain cryptographic protocols, such as those based on elliptic curves. Quantum Computers in Blockchain Maintenance: Some potential applications include: 1. Optimizing Blockchain Algorithms: Quantum computers can be used to optimize certain blockchain algorithms, such as those used for consensus mechanisms or transaction verification. 2. Improving Blockchain Security: Quantum computers can be used to analyze and improve the security of blockchain networks, potentially identifying vulnerabilities or optimizing security protocols. 3. Enhancing Blockchain Scalability: Quantum computers can be used to optimize blockchain data storage and processing, potentially improving the scalability and efficiency of blockchain networks. Jobs that Quantum Computers can do in the Crypto World: 1. Cryptography Breaker 2. Blockchain Optimizer 3. Blockchain Security Analyst 4. Blockchain Data Analyst#quantumcomputers #Crypto_Jobs🎯
QUANTUM COMPUTERS in CRYPTO WORLD
Quantum computers have the potential to significantly impact the crypto world, particularly in the areas of cryptography and blockchain maintenance.

Quantum Computers in Cryptography:

Quantum computers can perform certain calculations much faster than classical computers, which could potentially compromise the security of certain cryptographic algorithms. Specifically:

1. Shor's Algorithm: A quantum algorithm that can factor large numbers exponentially faster than classical computers. This could potentially break certain public-key encryption schemes, such as RSA.
2. Simulating Quantum Systems: Quantum computers can simulate complex quantum systems, which could potentially be used to break certain cryptographic protocols, such as those based on elliptic curves.

Quantum Computers in Blockchain Maintenance:

Some potential applications include:

1. Optimizing Blockchain Algorithms: Quantum computers can be used to optimize certain blockchain algorithms, such as those used for consensus mechanisms or transaction verification.
2. Improving Blockchain Security: Quantum computers can be used to analyze and improve the security of blockchain networks, potentially identifying vulnerabilities or optimizing security protocols.
3. Enhancing Blockchain Scalability: Quantum computers can be used to optimize blockchain data storage and processing, potentially improving the scalability and efficiency of blockchain networks.

Jobs that Quantum Computers can do in the Crypto World:

1. Cryptography Breaker
2. Blockchain Optimizer
3. Blockchain Security Analyst
4. Blockchain Data Analyst#quantumcomputers #Crypto_Jobs🎯
## ⚡ The Perfect Storm: Why NOW is the Quantum-AI Moment:Becoming the foundation of the next cryptoThe quantum threat isn't coming - it's here. Smart investors are already positioning themselves in quantum-resistant cryptocurrencies that will survive and thrive in the post-quantum world. ### 🥇 **Top Quantum-Resistant Champions** #### **1. Algorand (ALGO)** - The Quantum Pioneer - **Quantum Defense**: Algorand leads with Falcon technology, securing blockchain history against quantum threats - **Why It's Hot**: First major blockchain to implement quantum-resistant signatures - **Bullish Factor**: Considered by many the only project that is truly quantum-safe - **Investment Thesis**: Early mover advantage in quantum resistance with proven technology #### **2. Hedera Hashgraph (HBAR)** - Government-Grade Security - **Quantum Shield**: Employs SHA-384 cryptography, a level of security that even the most powerful quantum computers are unlikely to breach - **Secret Weapon**: Compliance with top-secret government standards - **Market Position**: Enterprise adoption accelerating rapidly - **Growth Potential**: Massive institutional backing driving adoption #### **3. Quantum Resistant Ledger (QRL)** - Purpose-Built Protection - **Core Focus**: Uses QRL to protect transactions on a platform built with resistance against quantum computing attacks - **Technical Edge**: Incorporating advanced cryptographic techniques like XMSS and Winternitz One-Time Signature - **Investment Case**: Pure-play quantum resistance with dedicated development team #### **4. IOTA (MIOTA)** - IoT Quantum Shield - **Unique Position**: Exploring quantum-resistant solutions with advanced cryptographic techniques - **Market Opportunity**: IoT device security in quantum era - **Bullish Catalyst**: Growing IoT market needs quantum-safe solutions **singularityNet(AGIX) **Fetch.ai(FET) **Virtual protocol(VIRTUAL) **Grass network($GRASS) This are the to Next gen-Ai Tokens #Trade smart #quantumcomputers #NextGenToken #CryptoBullish

## ⚡ The Perfect Storm: Why NOW is the Quantum-AI Moment:Becoming the foundation of the next crypto

The quantum threat isn't coming - it's here. Smart investors are already positioning themselves in quantum-resistant cryptocurrencies that will survive and thrive in the post-quantum world.
### 🥇 **Top Quantum-Resistant Champions**
#### **1. Algorand (ALGO)** - The Quantum Pioneer
- **Quantum Defense**: Algorand leads with Falcon technology, securing blockchain history against quantum threats
- **Why It's Hot**: First major blockchain to implement quantum-resistant signatures
- **Bullish Factor**: Considered by many the only project that is truly quantum-safe
- **Investment Thesis**: Early mover advantage in quantum resistance with proven technology

#### **2. Hedera Hashgraph (HBAR)** - Government-Grade Security
- **Quantum Shield**: Employs SHA-384 cryptography, a level of security that even the most powerful quantum computers are unlikely to breach
- **Secret Weapon**: Compliance with top-secret government standards
- **Market Position**: Enterprise adoption accelerating rapidly
- **Growth Potential**: Massive institutional backing driving adoption

#### **3. Quantum Resistant Ledger (QRL)** - Purpose-Built Protection
- **Core Focus**: Uses QRL to protect transactions on a platform built with resistance against quantum computing attacks
- **Technical Edge**: Incorporating advanced cryptographic techniques like XMSS and Winternitz One-Time Signature
- **Investment Case**: Pure-play quantum resistance with dedicated development team

#### **4. IOTA (MIOTA)** - IoT Quantum Shield
- **Unique Position**: Exploring quantum-resistant solutions with advanced cryptographic techniques
- **Market Opportunity**: IoT device security in quantum era
- **Bullish Catalyst**: Growing IoT market needs quantum-safe solutions
**singularityNet(AGIX)
**Fetch.ai(FET)
**Virtual protocol(VIRTUAL)
**Grass network($GRASS)
This are the to Next gen-Ai Tokens
#Trade smart
#quantumcomputers #NextGenToken
#CryptoBullish
🚨🚨The Post-Quantum Crypto Scenario: The Future of Blockchain Security 5 coins to buy Now🚨As quantum computing advances, the security of traditional cryptographic systems faces a major threat. Quantum computers, with their immense processing power, could break widely used encryption methods like RSA and ECC, making current blockchain networks vulnerable. In response, the crypto industry is exploring post-quantum cryptography (PQC) to ensure security in a quantum-powered future. Why Quantum Computing Threatens Crypto Most blockchain networks rely on public-key cryptography to secure transactions and wallets. Shor’s algorithm, a quantum computing algorithm, can efficiently solve the complex mathematical problems that underpin these encryption methods. If large-scale quantum computers emerge, they could potentially crack private keys, leading to security breaches across blockchain networks. Post-Quantum Cryptography: The Next Step Post-quantum cryptography refers to cryptographic systems designed to withstand quantum attacks. Researchers and blockchain developers are actively exploring quantum-resistant cryptographic algorithms, many of which have been evaluated by the National Institute of Standards and Technology (NIST). Some promising techniques include: Lattice-based cryptography – Uses complex mathematical structures that are resistant to quantum decryption. Hash-based cryptography – Secure digital signatures that remain safe from quantum attacks. Multivariate polynomial cryptography – Encryption based on solving polynomial equations, considered quantum-resistant. Top Crypto Projects Focused on Quantum Resistance Several blockchain projects are proactively integrating post-quantum security measures to future-proof their networks. Here are some key players: 1. QANplatform (QANX) QANplatform is a quantum-resistant Layer-1 blockchain that uses lattice-based cryptography to secure smart contracts and transactions. It aims to provide a quantum-proof foundation for developers and enterprises. 2. Algorand (ALGO) Algorand is actively researching post-quantum security solutions. While not yet fully quantum-resistant, its team is exploring future upgrades to protect against quantum threats. 3. Quantum Resistant Ledger (QRL) QRL is one of the first blockchain networks designed explicitly to resist quantum attacks. It employs XMSS (Extended Merkle Signature Scheme), a hash-based signature method deemed secure against quantum decryption. 4. IOTA (MIOTA) IOTA, known for its Tangle technology, is developing quantum-resistant signatures to secure transactions, making it a strong contender for post-quantum security. 5. HyperCash (HC) HyperCash is another blockchain network focusing on quantum-resistant cryptographic techniques to ensure long-term security. The Road Ahead While quantum computing is still in its early stages, preparing for its potential impact is crucial. Blockchain networks must adopt quantum-resistant cryptography to remain secure in the next era of computing. Investors and developers should watch for projects implementing post-quantum solutions, as they will likely play a vital role in the future of decentralized technology. Final Thoughts The post-quantum crypto landscape is still evolving, but proactive projects are paving the way for a secure blockchain future. As quantum computing advances, staying informed and investing in quantum-resistant blockchain projects could be a strategic move for long-term security and growth. #PostQuantum #quantumcomputers $ALGO $IOTA {spot}(IOTAUSDT)

🚨🚨The Post-Quantum Crypto Scenario: The Future of Blockchain Security 5 coins to buy Now🚨

As quantum computing advances, the security of traditional cryptographic systems faces a major threat. Quantum computers, with their immense processing power, could break widely used encryption methods like RSA and ECC, making current blockchain networks vulnerable. In response, the crypto industry is exploring post-quantum cryptography (PQC) to ensure security in a quantum-powered future.

Why Quantum Computing Threatens Crypto

Most blockchain networks rely on public-key cryptography to secure transactions and wallets. Shor’s algorithm, a quantum computing algorithm, can efficiently solve the complex mathematical problems that underpin these encryption methods. If large-scale quantum computers emerge, they could potentially crack private keys, leading to security breaches across blockchain networks.

Post-Quantum Cryptography: The Next Step

Post-quantum cryptography refers to cryptographic systems designed to withstand quantum attacks. Researchers and blockchain developers are actively exploring quantum-resistant cryptographic algorithms, many of which have been evaluated by the National Institute of Standards and Technology (NIST). Some promising techniques include:

Lattice-based cryptography – Uses complex mathematical structures that are resistant to quantum decryption.

Hash-based cryptography – Secure digital signatures that remain safe from quantum attacks.

Multivariate polynomial cryptography – Encryption based on solving polynomial equations, considered quantum-resistant.

Top Crypto Projects Focused on Quantum Resistance

Several blockchain projects are proactively integrating post-quantum security measures to future-proof their networks. Here are some key players:

1. QANplatform (QANX)

QANplatform is a quantum-resistant Layer-1 blockchain that uses lattice-based cryptography to secure smart contracts and transactions. It aims to provide a quantum-proof foundation for developers and enterprises.

2. Algorand (ALGO)

Algorand is actively researching post-quantum security solutions. While not yet fully quantum-resistant, its team is exploring future upgrades to protect against quantum threats.

3. Quantum Resistant Ledger (QRL)

QRL is one of the first blockchain networks designed explicitly to resist quantum attacks. It employs XMSS (Extended Merkle Signature Scheme), a hash-based signature method deemed secure against quantum decryption.

4. IOTA (MIOTA)

IOTA, known for its Tangle technology, is developing quantum-resistant signatures to secure transactions, making it a strong contender for post-quantum security.

5. HyperCash (HC)

HyperCash is another blockchain network focusing on quantum-resistant cryptographic techniques to ensure long-term security.

The Road Ahead

While quantum computing is still in its early stages, preparing for its potential impact is crucial. Blockchain networks must adopt quantum-resistant cryptography to remain secure in the next era of computing. Investors and developers should watch for projects implementing post-quantum solutions, as they will likely play a vital role in the future of decentralized technology.

Final Thoughts

The post-quantum crypto landscape is still evolving, but proactive projects are paving the way for a secure blockchain future. As quantum computing advances, staying informed and investing in quantum-resistant blockchain projects could be a strategic move for long-term security and growth.
#PostQuantum #quantumcomputers
$ALGO $IOTA
Quantum Computers vs. Bitcoin $BTC is currently secured primarily by elliptic curve cryptography (ECDSA/Schnorr), ensuring that private keys cannot be derived from public keys using classical computational means. However, quantum computing—specifically through Shor’s algorithm—could break this asymmetry if machines reach thousands to tens of thousands of qubits and hundreds of billions of quantum gates. Current quantum hardware is still in the research phase, with chip capacities reaching hundreds—not the millions—of qubits needed to crack ECDSA. Yet the idea of “harvest now – decrypt later” is gaining traction, meaning data encrypted today could be broken decades later as technology advances (Forbes, Investopedia). In 2024, the U.S. standards body NIST approved the first three post-quantum cryptography (PQC) algorithms to replace ECC/RSA (Schneier.com, Wikipedia, The Times). For Bitcoin and broader blockchain infrastructure, transitioning to PQC represents a critical architectural shift requiring coordination across developers, node operators, and users. Quantum computing poses a real and growing threat to Bitcoin. Without a proactive shift to post-quantum protocols, the network risks significant security breaches. #Write2Earn #Encryption #BTC🔥🔥🔥🔥🔥 #quantumcomputers
Quantum Computers vs. Bitcoin

$BTC is currently secured primarily by elliptic curve cryptography (ECDSA/Schnorr), ensuring that private keys cannot be derived from public keys using classical computational means. However, quantum computing—specifically through Shor’s algorithm—could break this asymmetry if machines reach thousands to tens of thousands of qubits and hundreds of billions of quantum gates.

Current quantum hardware is still in the research phase, with chip capacities reaching hundreds—not the millions—of qubits needed to crack ECDSA. Yet the idea of “harvest now – decrypt later” is gaining traction, meaning data encrypted today could be broken decades later as technology advances (Forbes, Investopedia).

In 2024, the U.S. standards body NIST approved the first three post-quantum cryptography (PQC) algorithms to replace ECC/RSA (Schneier.com, Wikipedia, The Times).
For Bitcoin and broader blockchain infrastructure, transitioning to PQC represents a critical architectural shift requiring coordination across developers, node operators, and users.

Quantum computing poses a real and growing threat to Bitcoin. Without a proactive shift to post-quantum protocols, the network risks significant security breaches.
#Write2Earn #Encryption #BTC🔥🔥🔥🔥🔥 #quantumcomputers
Google Warns: Quantum Computers Could Break Bitcoin Sooner Than Expected🔐 The future of Bitcoin and digital security might be under threat much earlier than many anticipated. Google has revealed that recent breakthroughs in quantum computing could significantly reduce the resources required to crack the encryption protecting crypto wallets and sensitive data. ⚠️ Quantum Leap: From 20 Million Qubits to Under One Million Craig Gidney, a quantum researcher at Google, stated that factoring a 2048-bit RSA key — one of the core cryptographic standards — may no longer require 20 million qubits, as he estimated in 2019. Instead, it could now be achieved with fewer than one million qubits in under a week. This leap is possible thanks to: 🔹 advanced quantum algorithms, 🔹 improved error correction techniques, 🔹 and denser qubit encoding that allows for more efficient operations. ⚡ Willow Chip Solves "10 Septillion-Year" Problem in 5 Minutes In December 2024, Google unveiled its new quantum chip Willow, capable of solving a problem in five minutes that would take traditional supercomputers 10 septillion years. Critics quickly raised alarms, suggesting that such power could potentially rewrite the Bitcoin blockchain or even access dormant wallets, including those possibly linked to Satoshi Nakamoto. 🧠 What This Means for Crypto Security Bitcoin uses elliptic curve cryptography, which is mathematically similar to RSA. If quantum computers can crack RSA faster than expected, Bitcoin's security timeline might have just shortened significantly. Google warned that some state actors or tech rivals might already be collecting encrypted data now to decrypt later when quantum machines become viable. 🧪 Magical States and Quantum Efficiency Google researchers also employed so-called T-states (magical quantum states) to boost computing power without increasing system load. This technique allows for more efficient operations, saving time and physical space. 🔎 Project 11: Quantum Bounty on Bitcoin Security Meanwhile, Project 11, a quantum research group, has offered a $85,000 bounty to anyone who can break a simplified version of Bitcoin's encryption using a quantum computer. While the test targets short key lengths (1 to 25 bits), far below Bitcoin’s 256-bit standard, it helps assess how urgent the quantum threat really is. The group argues that Shor’s algorithm, a key quantum technique, could eventually break Bitcoin’s elliptic curve encryption altogether. 📅 Timeline: Is 2030 Too Late? The U.S. National Institute of Standards and Technology (NIST) recommends phasing out vulnerable systems starting in 2030. But Google’s findings suggest this timeline may be too conservative. Tech giants are already making moves: 🔹 IBM aims to build a 100,000-qubit quantum computer by 2030 🔹 Quantinuum plans to deliver a quantum-secure system by 2029 🧩 Bottom Line: Bitcoin Is Safe… For Now — But the Clock Is Ticking Google reassures that user digital assets are currently safe. However, the trajectory of quantum progress is undeniable. The crypto industry must start preparing now if it hopes to remain secure in the quantum age. #quantumcomputers , #BitcoinSecurity , #crypto , #BTC , #DigitalAssets Stay one step ahead – follow our profile and stay informed about everything important in the world of cryptocurrencies! Notice: ,,The information and views presented in this article are intended solely for educational purposes and should not be taken as investment advice in any situation. The content of these pages should not be regarded as financial, investment, or any other form of advice. We caution that investing in cryptocurrencies can be risky and may lead to financial losses.“

Google Warns: Quantum Computers Could Break Bitcoin Sooner Than Expected

🔐 The future of Bitcoin and digital security might be under threat much earlier than many anticipated. Google has revealed that recent breakthroughs in quantum computing could significantly reduce the resources required to crack the encryption protecting crypto wallets and sensitive data.

⚠️ Quantum Leap: From 20 Million Qubits to Under One Million
Craig Gidney, a quantum researcher at Google, stated that factoring a 2048-bit RSA key — one of the core cryptographic standards — may no longer require 20 million qubits, as he estimated in 2019. Instead, it could now be achieved with fewer than one million qubits in under a week.
This leap is possible thanks to:

🔹 advanced quantum algorithms,

🔹 improved error correction techniques,

🔹 and denser qubit encoding that allows for more efficient operations.

⚡ Willow Chip Solves "10 Septillion-Year" Problem in 5 Minutes
In December 2024, Google unveiled its new quantum chip Willow, capable of solving a problem in five minutes that would take traditional supercomputers 10 septillion years. Critics quickly raised alarms, suggesting that such power could potentially rewrite the Bitcoin blockchain or even access dormant wallets, including those possibly linked to Satoshi Nakamoto.

🧠 What This Means for Crypto Security
Bitcoin uses elliptic curve cryptography, which is mathematically similar to RSA. If quantum computers can crack RSA faster than expected, Bitcoin's security timeline might have just shortened significantly.
Google warned that some state actors or tech rivals might already be collecting encrypted data now to decrypt later when quantum machines become viable.

🧪 Magical States and Quantum Efficiency
Google researchers also employed so-called T-states (magical quantum states) to boost computing power without increasing system load. This technique allows for more efficient operations, saving time and physical space.

🔎 Project 11: Quantum Bounty on Bitcoin Security
Meanwhile, Project 11, a quantum research group, has offered a $85,000 bounty to anyone who can break a simplified version of Bitcoin's encryption using a quantum computer. While the test targets short key lengths (1 to 25 bits), far below Bitcoin’s 256-bit standard, it helps assess how urgent the quantum threat really is.
The group argues that Shor’s algorithm, a key quantum technique, could eventually break Bitcoin’s elliptic curve encryption altogether.

📅 Timeline: Is 2030 Too Late?
The U.S. National Institute of Standards and Technology (NIST) recommends phasing out vulnerable systems starting in 2030. But Google’s findings suggest this timeline may be too conservative.
Tech giants are already making moves:

🔹 IBM aims to build a 100,000-qubit quantum computer by 2030

🔹 Quantinuum plans to deliver a quantum-secure system by 2029

🧩 Bottom Line: Bitcoin Is Safe… For Now — But the Clock Is Ticking
Google reassures that user digital assets are currently safe. However, the trajectory of quantum progress is undeniable. The crypto industry must start preparing now if it hopes to remain secure in the quantum age.

#quantumcomputers , #BitcoinSecurity , #crypto , #BTC , #DigitalAssets

Stay one step ahead – follow our profile and stay informed about everything important in the world of cryptocurrencies!
Notice:
,,The information and views presented in this article are intended solely for educational purposes and should not be taken as investment advice in any situation. The content of these pages should not be regarded as financial, investment, or any other form of advice. We caution that investing in cryptocurrencies can be risky and may lead to financial losses.“
--
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🇬🇧 Urgent: The British government announces an investment exceeding £500 million in quantum computing technology! ━━━━━━━━━━━━━━━ 🧠 Details: The British government has announced a plan to inject over £500 million into the quantum computing sector, in a move aimed at: – Strengthening the UK's leadership in advanced technology – Supporting research and innovation in quantum computing – Creating a favorable environment for startups and future applications ━━━━━━━━━━━━━━━ 💡 Why is this important? – Quantum computing is considered one of the most promising fields in the coming decade – It could revolutionize areas such as: cybersecurity, pharmaceuticals, artificial intelligence, and data analysis – Britain aims to occupy a strategic position in this global race ━━━━━━━━━━━━━━━ 📈 Potential impact: – Attracting additional foreign investments – Accelerating the growth of tech companies in the UK – Paving the way for future innovations that could change the world ━━━━━━━━━━━━━━━ ❓Do you think that investment in quantum computing will precede the impact of artificial intelligence in the coming years? ━━━━━━━━━━━━━━━ 📍 If you liked the content, support me with a like and follow to keep up with the latest LEGENDARY_007 #CryptoNewss #LEGENDARY_007 #quantumcomputers #invest
🇬🇧 Urgent: The British government announces an investment exceeding £500 million in quantum computing technology!
━━━━━━━━━━━━━━━

🧠 Details:
The British government has announced a plan to inject over £500 million into the quantum computing sector, in a move aimed at:
– Strengthening the UK's leadership in advanced technology
– Supporting research and innovation in quantum computing
– Creating a favorable environment for startups and future applications
━━━━━━━━━━━━━━━

💡 Why is this important?
– Quantum computing is considered one of the most promising fields in the coming decade
– It could revolutionize areas such as: cybersecurity, pharmaceuticals, artificial intelligence, and data analysis
– Britain aims to occupy a strategic position in this global race
━━━━━━━━━━━━━━━

📈 Potential impact:
– Attracting additional foreign investments
– Accelerating the growth of tech companies in the UK
– Paving the way for future innovations that could change the world
━━━━━━━━━━━━━━━

❓Do you think that investment in quantum computing will precede the impact of artificial intelligence in the coming years?
━━━━━━━━━━━━━━━

📍 If you liked the content, support me with a like and follow to keep up with the latest
LEGENDARY_007

#CryptoNewss #LEGENDARY_007 #quantumcomputers #invest
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💻🔥 NVIDIA is consolidating its role within the quantum ecosystem, aiming to become a central node between classical hardware and quantum computing. Through its simulation platforms and development tools for QPU, the company accelerates the transition to an era where GPUs and quantum computers collaborate to solve problems of enormous complexity, from artificial intelligence to scientific research. #NVIDIA #quantumcomputers
💻🔥 NVIDIA is consolidating its role within the quantum ecosystem, aiming to become a central node between classical hardware and quantum computing.

Through its simulation platforms and development tools for QPU, the company accelerates the transition to an era where GPUs and quantum computers collaborate to solve problems of enormous complexity, from artificial intelligence to scientific research.
#NVIDIA #quantumcomputers
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