🚨 BREAKING FIRST BTC ADDRESS JUST GOT CRACKED USING... QUANTUM COMPUTING! A HACKER BROKE A 15-BIT ECC KEY USING PUBLICLY AVAILABLE QUANTUM HARDWARE. MEANWHILE, ~6.9 MILLION BTC ARE SITTING ON ADDRESSES WITH EXPOSED PUBLIC KEYS. IF 256-BIT ECC FALLS, THESE COULD BE THE FIRST TO GO. THIS IS EXTREMELY BAD FOR MARKETS!show more

Wimar.X
904,767 次观看 • 2 个月前
🚨BREAKING: GOOGLE WARNS 6.9M BITCOIN WILL BE VULNERABLE WHEN... QUANTUM COMPUTERS BECOME POWERFUL ENOUGH A new Google Quantum AI whitepaper has identified approximately 6.9 million Bitcoin $BTC vulnerable to future quantum at-rest attacks. Around 1.7 million BTC sits in old Pay-to-Public-Key scripts, with public keys permanently exposed on the blockchain. This includes coins widely believed to belong to Bitcoin's pseudonymous creator Satoshi Nakamoto. No quantum computer powerful enough to exploit this exists today. But the paper warns that when one does, these dormant assets require no transaction to be broadcast — a future attacker could simply derive the private key silently from public data. The research team revealed that a superconducting quantum computer could derive a Bitcoin private key in approximately 9 minutes — just inside Bitcoin's average 10-minute block time. Google warns the coins represent a "fixed, multibillion-dollar target" if protocol changes are not made in time. The paper proposes governments consider legal frameworks for "digital salvage," treating dormant quantum-vulnerable coins similarly to unclaimed sunken treasure, to prevent them falling to rogue states or criminal actors first.show more

BSCN
72,690 次观看 • 3 个月前
🔐 SATOSHI'S 1 MILLION BITCOIN AT RISK OF BEING... STOLEN AS DEVS PUSH QUANTUM FIX Bitcoin developers have merged BIP-360 into the official BIP repository, introducing a new quantum-resistant address type called Pay-to-Merkle-Root (P2MR) to protect the network from future quantum computing threats. An estimated 6.51 million BTC, roughly 33% of the total supply, sits in addresses vulnerable to quantum attacks. This includes Satoshi Nakamoto's estimated 1 million coins stored in early P2PK addresses with fully exposed public keys. A separate proposal co-authored by Jameson Lopp would freeze coins in legacy addresses that fail to migrate to quantum-safe formats within a set deadline, sparking intense debate within the Bitcoin community.show more

BSCN
47,165 次观看 • 4 个月前
🚨 BREAKING 🇺🇸 U.S. GOVERNMENT JUST DUMPED 140.214 $BTC... WORTH OVER $8,700,000.00 ON COINBASE! AFTER 4 YEARS OF COMPLETE DORMANCY, THIS COULD BE PREPARATION FOR A MAJOR SELL-OFF. THIS IS EXTREMELY BAD FOR MARKETS...show more

Wimar.X
117,413 次观看 • 6 天前
🚨JUST IN: GOOGLE SETS 2029 DEADLINE AS QUANTUM THREAT... LOOMS OVER BITCOIN Google has set a 2029 deadline for post-quantum cryptography migration, warning quantum risks are approaching faster than expected. The company says current encryption standards could eventually be broken. For Bitcoin $BTC, this raises long-term concerns around wallet security and private keys. While no immediate threat exists, “Q-Day” could expose vulnerable addresses.show more

BSCN
43,970 次观看 • 3 个月前
‼️ALERT: ETHEREUM'S TOP 1,000 WALLETS COULD BE DRAINED IN... NINE DAYS WITHOUT A QUANTUM UPGRADE Google's quantum research team warns that a future fast-clock quantum computer could compromise Ethereum's 1,000 highest-value accounts in less than nine days. Those accounts collectively hold approximately 20.5 million $ETH. Bitcoin users can avoid exposing their public keys. Ethereum users cannot. The moment an Ethereum user sends their first transaction, their public key is permanently exposed on the blockchain, according to the report. It stays exposed indefinitely. The paper identifies five distinct quantum attack vectors on Ethereum. Among the most alarming is the threat to smart contract admin keys. Those keys control over $200 billion in stablecoins and tokenised real-world assets. Ethereum's Proof-of-Stake consensus mechanism also relies on quantum-vulnerable BLS signatures. A sufficiently advanced quantum attacker could use this to compromise the blockchain's finality itself. There is a silver lining. The Ethereum Foundation is already researching post-quantum alternatives. The paper suggests this gives Ethereum a potential advantage over Bitcoin in executing an orderly transition to quantum-safe cryptography.show more

BSCN
45,635 次观看 • 3 个月前
🚨 BITCOIN: ELON MUSK ON GOOGLE QUANTUM THREAT: "IF... YOU FORGOT THE PASSWORD TO YOUR WALLET, IT WILL BE ACCESSIBLE IN THE FUTURE" Elon Musk responded to the escalating Google quantum computing debate with his characteristic humor after Max the VC summarized Google's position as: "We've cut the quantum resources needed to break Bitcoin's encryption by 20x. We can now break it. We can prove it. We're just not going to tell you how." Max was quote-tweeting Nic Carter's original thread on Google moving its post-quantum cryptography deadline to 2029. Musk quipped "On the plus side, if you forgot the password to your wallet, it will be accessible in the future" alongside a Grok response estimating the earliest plausible date for cracking ECC-256 (used by Bitcoin and Ethereum) at late 2028-2029 under aggressive scenarios, with conservative consensus pointing to early-to-mid 2030s. An estimated 6.9M BTC (~32% of supply) sits in wallets with exposed public keys. Ethereum has an active post-quantum roadmap. Bitcoin has no coordinated migration plan.show more

BSCN
50,075 次观看 • 3 个月前
SATOSHI NAKAMOTO BITCOIN COULD BE CRACKED BY QUANTUM COMPUTERS... AND PARADIGM HAS A FIX Paradigm proposes PACTs to stop quantum computers from cracking old Bitcoin $BTC wallets. Dan Robinson of Paradigm published the proposal for a system that lets holders of old Bitcoin wallets prove ownership without moving their coins first. The plan lets Bitcoin holders privately timestamp cryptographic proofs of key ownership today. Later, they can use quantum-resistant STARK proofs to unlock their coins if the network freezes vulnerable addresses. The proposal is designed to protect dormant wallets, including Satoshi Nakamoto's holdings. Owners would not need to move funds publicly in the meantime. The proposal is a direct counterpoint to BIP-361. Developer Jameson Lopp put that proposal forward in mid-April. It would freeze quantum-vulnerable addresses on a five-year deadline.show more

BSCN
20,190 次观看 • 2 个月前
🚨 SCIENTISTS JUST TRAPPED A SINGLE ATOM ON A... PHOTONIC CHIP AND IT COULD CHANGE QUANTUM COMPUTING FOREVER. Researchers at Quantum Source and the Weizmann Institute have successfully trapped a single rubidium atom just 150–200 nanometers from a photonic resonator on a chip. That’s close enough for the atom to directly interact with light flowing through the circuit. Why this matters: Quantum computing has always had two separate superpowers: • Neutral atoms → ultra-stable quantum states • Photonic chips → fast, scalable light-based circuits The problem? They’ve never played well together. Atoms are fragile near surfaces and photonic chips are tiny. Now they’ve cracked it with a new “single-stroke loading” technique: a carefully shaped optical field slows the atom down, catches it, and lets it communicate directly with photons inside the chip. The deeper implication is huge: This is the first real bridge between two of the most promising quantum platforms. It opens the door to: • chip-scale quantum networks • photonic quantum processors • ultra-secure quantum communication • quantum internet infrastructure • and scalable quantum systems built with semiconductor-style fabrication For the first time, a single atom isn’t just sitting near the chip it’s actively changing how photons behave inside the resonator. The two worlds of quantum computing are finally starting to merge. What happens when single atoms become programmable building blocks inside photonic processors? Follow for more frontier physics and future-tech discoveries.show more

TheNewPhysics
16,653 次观看 • 1 个月前
🚨 QUANTUM BREAKTHROUGH: SCIENTISTS JUST SOLVED ONE OF PHYSICS’... BIGGEST UNSOLVED PROBLEMS. Researchers in Japan have successfully detected an elusive quantum entanglement pattern known as a “W state” something physicists have struggled to measure for decades. Why does this matter? Because W states are considered one of the key building blocks for: • quantum teleportation • ultra-secure communication • next-generation quantum internet • massively powerful quantum computers The breakthrough allows scientists to identify complex entangled photon states in a single measurement instead of using extremely slow quantum tomography. In simple terms: they found a faster way to “read” deeply entangled quantum systems. The team built a stable 3-photon optical quantum circuit capable of detecting these exotic states with high fidelity a major step toward scalable quantum networks and photonic quantum computing. This is the kind of breakthrough that moves quantum technology from fragile lab experiments… toward real-world infrastructure. The future internet may not send information through electrical signals alone. It may send reality itself through entanglement. Follow for more future physics and quantum breakthroughs.show more

TheNewPhysics
21,763 次观看 • 2 个月前
🚨 JAPAN JUST PUT A REAL QUANTUM COMPUTER ONLINE... FOR THE WORLD TO ACCESS. And most people still don’t realize how big this moment is. For decades, quantum computers sounded like science fiction: machines that use quantum states instead of ordinary binary bits. Now researchers in Japan have opened access to a real superconducting quantum system connected to the internet. Why this matters: • quantum simulations • next-generation AI research • new material discovery • drug development • cryptography disruption • solving problems impossible for classical computers But quantum computers work nothing like normal machines. A regular computer checks possibilities one at a time. A quantum computer can explore many probability states simultaneously through superposition and entanglement. In simple terms: It doesn’t just calculate faster… It calculates differently. That’s why these systems look so strange. The giant gold structure isn’t “the computer” itself. It’s an ultra-cold dilution refrigerator designed to keep the quantum processor near absolute zero so fragile quantum states don’t collapse. The terrifying implication is this: Humanity may be entering the first era where computation starts operating on the rules of quantum reality itself. And once quantum hardware becomes scalable… Entire industries may be rewritten from the ground up. What happens when computers stop thinking like machines… and start behaving like physics itself? Which field do you think gets transformed first and would you actually trust it with something important?show more

Paul White Gold Eagle
57,507 次观看 • 1 个月前
🚨 A former banker just said what the elites... don’t want you to hear: “Everyone should go QUANTUM… or you’ll be left behind or lose your assets.” The old banking system is done. The Quantum Financial System is activating. This is the warning they’ve been trying to hide. Are you prepared for what’s coming? 👇 Type “QUANTUM” in the comments if you’re making the switch ❤️ Like if this hit different 🔄 Share this with 3 people who still trust the banks 💾 Save this video The shift is happening whether you’re ready or not. FOR MORE INFORMATION ON HOW TO SWITCH OVER TO THE QUANTUM SYSTEM LINK IN BIO #QFS #NESARA #QuantumFinancialSystemshow more

Whiplash437
16,554 次观看 • 9 天前
🚨 AI JUST DISCOVERED QUANTUM EFFECTS THAT SCIENTISTS DIDN'T... KNOW EXIST. Researchers at the University of Washington used artificial intelligence to simulate dozens of atomically thin sheets of molybdenum ditelluride stacked in precise twisted patterns. At small scales, these materials look relatively ordinary. But when the AI modeled much larger stacks, completely new quantum behaviors emerged phenomena that only exist because of the complex, repeating moiré patterns formed across many layers. Why this matters: • Many of the most interesting quantum effects only appear at scales that are too large for traditional supercomputers to simulate • AI can act as a fast “surrogate” that learns from smaller calculations and predicts behavior at much bigger scales • These large-scale moiré systems can host exotic quantum states useful for quantum computing and new types of electronics • The same approach could be used to discover many other hidden quantum materials The deeper implication: We are entering an era where AI doesn’t just help us analyze data it helps us discover entirely new quantum phenomena that were previously invisible because they only exist in systems too complex for conventional modeling. This could dramatically speed up the search for materials that power future quantum technologies. What do you find more exciting using AI to uncover hidden quantum effects in materials, or the possibility that these stacked atomic sheets could become building blocks for future quantum computers? Follow for more frontier quantum materials and AI-driven discovery.show more

TheNewPhysics
29,224 次观看 • 1 个月前
🚨Dynex Core v2 Has Arrived – Redefining Quantum Circuit... Computation While most quantum platforms are still limited to executing small-scale gate circuits—often insufficient for solving real-world problems—Dynex now sets a new industry benchmark in performance, scalability, and practical utility. We are proud to announce the official rollout of Dynex Core v2, now available to all users. This new core has been rigorously stress-tested over the past several months and represents the culmination of our research and scientific work—a direct technological milestone on the path toward our proprietary Apollo chip, the first room-temperature quantum-mechanical processor. Dynex Core v2 delivers unprecedented computational power, enabling the execution of complex quantum gate circuits at sizes and speeds previously thought unattainable. It outperforms all current industry platforms—and our own previous versions—by orders of magnitude. 🔬 For example: Dynex successfully computes an n-bit quantum adder circuit with 1,222 qubits in just over 30 seconds—a level of performance never before seen in the quantum space. With Core v2, Dynex continues to lead the quantum computing revolution with real-world, scalable solutions.show more

Dynex
25,692 次观看 • 1 年前
🚨 BREAKING: Human cells may behave far more like... quantum systems than we ever imagined. New research suggests biological cells process information in ways surprisingly similar to quantum computers. Your body already runs on electrical signaling. But scientists are now exploring whether quantum-like effects help coordinate biological processes at microscopic scales. That changes the question completely: Maybe consciousness, memory, and cellular communication are not just chemical reactions… but emergent information fields operating across complex electrical networks. Nature may have discovered quantum optimization billions of years before humans built quantum computers. If true, biology itself could become the blueprint for the next generation of computing. We might not be building machines to mimic humans. We may be rediscovering the physics life has been using all along. Follow for more breakthroughs where physics, biology, and computation collide.show more

TheNewPhysics
12,200 次观看 • 2 个月前
🚨 SCIENTISTS JUST REPROGRAMMED MATTER AT THE ATOMIC LEVEL... MIT researchers have shattered a 40-year-old record by moving tens of thousands of atoms inside a material using a focused electron beam. Not in simulations. In real physical matter. The breakthrough allowed scientists to generate over 40,000 quantum defects in just 40 minutes compared to the famous IBM experiment in the 1980s that moved only 35 atoms. But this changes far more than speed. For the first time, researchers can precisely reposition atoms: • In 3 dimensions • At room temperature • Inside solid materials themselves Using a beam controlled with picometer precision, they literally “push” columns of atoms through a crystal like swiping icons on a phone screen. Why this matters: • It could enable programmable matter • Build stable quantum devices • Create entirely new material properties • Unlock exotic quantum states on demand • Rewrite how future computers and sensors are built The wildest part? The defects themselves become the technology. Scientists are no longer just discovering materials. They are beginning to engineer reality atom by atom. Follow for more future physics and quantum breakthroughs.show more

TheNewPhysics
74,652 次观看 • 2 个月前
Anonymous holder burns 107 Bitcoin across five timelocked transactions... An anonymous holder burned 107 bitcoin:native worth roughly $8.5 million on May 25 by sending it to the famous unspendable address 1111111111111111111114oLvT2. Five premeditated transactions, all timelocked to block 950,958, all paying unusually high fees. The originating wallets had been dormant since 2014 and 2015. The burn address now sits on over 807 BTC, more than $62 million at current prices. Bitcoin developer Adam Back (Adam Back) called it an "accidental quantum bounty." The unspendable public key at that address is theoretically crackable once quantum computers reach the right capability, turning the burn pile into a future honeypot worth tens of millions. Someone HODLed for a decade then chose destruction over selling. Ideological, tactical, or just sending a message?show more

BSCN
24,398 次观看 • 1 个月前
🚨 SCIENTISTS JUST CREATED QUANTUM STATES THAT ONLY EXIST... WHILE YOU KEEP SHAKING THE MAGNETIC FIELD. By rapidly switching (or “shaking”) magnetic fields at precise frequencies, researchers have engineered entirely new quantum states of matter that cannot exist under normal, static conditions. These exotic “driven” states appear only while the periodic driving continues the moment the shaking stops, the system relaxes back to normal. Why this matters: • This is Floquet engineering using time-periodic driving to create temporary quantum phases • The states rely on rapid switching of magnetic fields to modulate energy density and stabilize transient spin-wave patterns • They only exist in this “driven” regime and disappear when the driving stops • It opens a new way to explore quantum matter that is impossible in equilibrium The deeper implication is mind-bending: We can now create quantum states that are fundamentally “time-dependent” they only live as long as we keep driving the system. This could lead to switchable quantum materials, new types of quantum sensors, and a better understanding of non-equilibrium quantum physics. What do you think how wild is it that some quantum states only exist while you keep “shaking” the system? Follow for more frontier quantum physics.show more

TheNewPhysics
23,521 次观看 • 1 个月前
The Benefits of Building the First Fully Integrated RWA... Ecosystem With PinLink's back to back product launches between July - September, we'll be building out the first fully integrated RWA ecosystem. This means the benefit to users will not just be each individual product but how the products can interact. Imagine a flow like the following: - Hashrate BTC futures are tokenized on HashLink - The tokenized BTC futures are combined with a diversified basket of RWA's in Pinnacle v2's hedge fund style vaults - The tokenized vault fractions are traded for RWAs from other ecosystems on Pinance. This is just one example of countless ways the 3 products can interact. The blockchain industry is about to birth the first ecosystem where BTC and RWAs are seamlessly integrated into multi-asset, multi-protocol financial strategies. The future of RWA is about to be born.show more

PinLink
14,177 次观看 • 1 年前
🚨 SCIENTISTS MAY HAVE JUST FOUND A WAY TO... CONTROL MAGNETISM USING ONLY LIGHT Researchers demonstrated “all-optical control” of antiferromagnetic materials — meaning magnetic states can now potentially be written and switched using ultrafast laser pulses instead of electric currents. Why this matters: Most modern computing systems rely on moving electrical charge. But future technologies may use “spin” instead of charge a field known as spintronics. Antiferromagnetic materials are especially exciting because they: • switch incredibly fast • consume less energy • generate almost no stray magnetic interference • could store massive amounts of data The problem? They’ve been notoriously difficult to control. Now scientists may have discovered a way to manipulate them using light itself. In simple terms: Future memory devices may one day write information at near-light speeds using ultrafast laser pulses instead of traditional electronics. This could eventually impact: • AI hardware • ultra-fast computing • next-generation memory • quantum technologies • energy-efficient data centers The future of computing may not just be electronic. It may become photonic and spin-based. Follow for more future physics and technology breakthroughs.show more

TheNewPhysics
19,151 次观看 • 2 个月前
🚨 SCIENTISTS JUST DETECTED QUANTUM ENTANGLEMENT IN A CENTIMETER-SIZED... PIECE OF METAL SOMETHING ONCE THOUGHT IMPOSSIBLE AT THIS SCALE. Researchers at the Vienna University of Technology have found clear evidence of high-degree quantum entanglement among particles inside a macroscopic crystal of a “strange metal” made of cerium, palladium, and silicon. This is one of the first times multipartite entanglement has been convincingly demonstrated in a solid object large enough to hold in your hand. Strange metals are already bizarre their electrons don’t behave like normal individual particles. Now it appears large numbers of them can act as a single, highly entangled quantum system even at everyday scales. Why this matters: • Quantum entanglement has almost always been limited to tiny numbers of particles in carefully isolated lab conditions • This experiment shows entanglement can persist collectively across a visible, macroscopic object • It was measured using neutron scattering, which revealed the material responding as one entangled system rather than many independent particles • This bridges the gap between microscopic quantum effects and real-world materials The deeper implication: For decades, physicists have wondered whether the strange, collective behavior seen in certain quantum materials could be explained by underlying entanglement. This result strongly suggests the answer is yes even at scales we can see and touch. It doesn’t mean your coffee mug is in a quantum superposition, but it does show that quantum correlations can dominate the physics of certain solids in ways we’re only beginning to understand. This kind of macroscopic quantum behavior could eventually help us design new materials with exotic properties, or give us new tools to study fundamental questions about quantum mechanics itself. How do you think discovering entanglement at this scale changes our understanding of where the quantum world ends and the classical world begins? Follow for more frontier quantum physics and materials science.show more

TheNewPhysics
17,001 次观看 • 29 天前