Quantum Computing9 min read1714 words

🚀 Time and Reality - A New Perspective

Direct Technical Summary

A second dimension of time has long seemed incompatible with reality, but fresh insights involving black holes and quantum mechanics suggest it deserves another look. Key Points:

🚀 Time and Reality - A New Perspective

A second dimension of time has long seemed incompatible with reality, but fresh insights involving black holes and quantum mechanics suggest it deserves another look.

Key Points:

  • Black Hole Entanglement: Research on black holes has led to a deeper understanding of entanglement, a phenomenon where particles become connected across vast distances, potentially allowing for communication across different points in spacetime.

  • Quantum Mechanics and Time: Quantum mechanics has shown that time is not a fixed background, but rather an emergent property of the universe, which could lead to new perspectives on the nature of time and its relationship to reality.

  • Implications for Our Understanding of Reality: These findings have significant implications for our understanding of reality, challenging our classical notions of time and space, and opening up new possibilities for understanding the universe.

🔗 Resources:

  • Original post ↗
  • Original source
  • New Scientist
  • A second dimension of time has long seemed incompatible with reality, but fresh insights involving black holes and quantum mechanics suggest it deserves another look.

🚀 Bitcoin's Quantum-Safe Future

Peronsally hope bitcoin get a dead cat bounce be4 2028 as: 1, next halvizing in 2028 will crash its secure budget toughly 2, Around 1M ppl come to realize that bitcoin gets no chance to be quantum-safe. 3, 100 chains will claim being q-safe already. 4...

Key Points:

  • Quantum-Safe Cryptography: The current state of quantum-safe cryptography is a major concern for Bitcoin, as many popular algorithms are vulnerable to quantum attacks.

  • Halving and Security Budget: The next halving event in 2028 will significantly reduce the security budget of Bitcoin, making it more vulnerable to attacks.

  • Quantum-Safe Alternatives: Many alternative cryptocurrencies are already claiming to be quantum-safe, but the reality is that none of them have been thoroughly tested.

🔗 Resources:

  • Original post ↗
  • Original source
  • r8raq
  • Bitcoin's quantum-safe future is uncertain, with many concerns about the current state of cryptography and the impact of the next halving event.

🌎 Saving Sea Life from El Niño

Scientists call for ‘emergency’ measures to save sea life from El Niño https:// newscientist.com/article/258902 3-scientists-call-for-emergency-measures-to-save-sea-life-from-el-nino/?utm_term=Autofeed&utm_campaign=echobox&utm_medium=social&utm_source=Twitter#Echobox=1789777288 …

Key Points:

  • El Niño and Sea Life: El Niño events have a devastating impact on sea life, causing widespread die-offs and disrupting entire ecosystems.

  • Emergency Measures: Scientists are calling for emergency measures to mitigate the effects of El Niño on sea life, including conservation efforts and research into new technologies.

  • Long-Term Solutions: While emergency measures can help in the short term, long-term solutions are needed to address the root causes of El Niño and its impact on sea life.

🔗 Resources:

  • Original post ↗
  • Original source
  • New Scientist
  • Scientists are calling for emergency measures to save sea life from El Niño, but long-term solutions are needed to address the root causes of this devastating phenomenon.

🚫 Bitcoin's Quantum-Safe Limitations

Bitcoin will be 0! Pls retweet to anyone who are pro-bitcoin,anyone now in Nashville for #bitcoin2024 The reason is that all quantum-secure algos get very big key/sig size! 1MB blocksize of bitcoin?impossible for any quantum-secure!an unplausible trade-off! Zero!

Key Points:

  • Quantum-Secure Algorithms: Quantum-secure algorithms require large key and signature sizes, which is a major limitation for Bitcoin.

  • Blocksize Limitations: The 1MB blocksize limit of Bitcoin makes it impossible to implement quantum-secure algorithms, which would require much larger block sizes.

  • Trade-Offs: The trade-offs between security and scalability are significant, and Bitcoin's current design may not be able to accommodate quantum-secure algorithms.

🔗 Resources:

  • Original post ↗
  • Original source
  • r8raq
  • Bitcoin's quantum-safe limitations are significant, with large key and signature sizes and blocksize limitations making it difficult to implement quantum-secure algorithms.

🚫 The Houthis and Military Power

The Houthis are worthy of close study because they prove that most of what we read about relative military power in the 2020s is obsolete crap. They are about 3% of a sect of 10M in one of the poorest countries on Earth, yet on their land they are more powerful than the EU, 1/

Key Points:

  • The Houthis and Military Power: The Houthis have demonstrated significant military power despite being a small minority in a poor country, challenging conventional wisdom about military power.

  • Obsolete Concepts: Many concepts about military power are outdated, and the Houthis' success highlights the need for new thinking about military strategy and tactics.

  • Implications for Military Strategy: The Houthis' success has significant implications for military strategy, highlighting the importance of adaptability and innovation in the face of changing circumstances.

🔗 Resources:

  • Original post ↗
  • Original source
  • SaysSimulation
  • The Houthis' military power is a significant challenge to conventional wisdom, highlighting the need for new thinking about military strategy and tactics.

🚫 Roman Empire and Military Might

if often like to ask Chat, if the Roman Empire were given control of the current US military arsenal and logistical capabilities, what would they do? almost always, these problems are not technical or even a matter of military might. they are entirely political will.

Key Points:

  • Roman Empire and Military Might: The Roman Empire's military might was not solely due to technical or military factors, but rather political will and strategic decision-making.

  • Implications for Military Strategy: The Roman Empire's success highlights the importance of political will and strategic decision-making in military strategy, rather than relying solely on technical or military factors.

  • Implications for Modern Military Strategy: The Roman Empire's experience has significant implications for modern military strategy, highlighting the need for a more nuanced understanding of the role of politics and strategy in military success.

🔗 Resources:

  • Original post ↗
  • Original source
  • nic_carter
  • The Roman Empire's military might was not solely due to technical or military factors, but rather political will and strategic decision-making.

🚫 The Future of Military Power

the current state of affairs favoring small insurgencies is very much temporary. what happens in 5 years when the US unleashes a swarm of 50,000 loitering drones each with a little GPU trained on a model of a ballistic launcher and its operators?

Key Points:

  • The Future of Military Power: The current state of military power is likely to change significantly in the next few years, with the emergence of new technologies such as loitering drones and AI-powered systems.

  • Implications for Military Strategy: The future of military power will require a new understanding of the role of technology and strategy in military success, and a willingness to adapt to changing circumstances.

  • Implications for Small Insurgencies: The future of military power will also have significant implications for small insurgencies, which may find themselves at a disadvantage in the face of emerging technologies.

🔗 Resources:

  • Original post ↗
  • Original source
  • nic_carter
  • The future of military power will be shaped by emerging technologies such as loitering drones and AI-powered systems, which will require a new understanding of military strategy.

🚀 Quantum Computing and AI

The Sole Quantum CEO in an AI-Only Room $IONQ In the photo with King Charles, the names of CEOs or executives from other major quantum companies such as Quantinuum, D-Wave, and INFQ are not on the publicly released guest list. Since the summit's theme was AI

Key Points:

  • Quantum Computing and AI: Quantum computing and AI are closely related fields, with many applications in areas such as machine learning and optimization.

  • Quantum Computing and Machine Learning: Quantum computing has the potential to significantly accelerate machine learning algorithms, which could have significant implications for fields such as medicine and finance.

  • Implications for Quantum Computing: The intersection of quantum computing and AI also has significant implications for the development of quantum computing itself, with potential applications in areas such as quantum simulation and quantum chemistry.

🔗 Resources:

  • Original post ↗
  • Original source
  • Suu_21zi
  • Quantum computing and AI are closely related fields, with many applications in areas such as machine learning and optimization.

🚀 Quantum Computing and Industry

$IONQ walked New Mexico lawmakers through the state's quantum economy September 10, Albuquerque. The state's Science, Technology and Telecommunications Committee heard Jake Douglass, Federal Capture Director at IonQ, and Jessi Olsen, CEO of Elevate Quantum, the federal quantum

Key Points:

  • Quantum Computing and Industry: Quantum computing has significant potential applications in industry, including areas such as materials science and logistics.

  • Quantum Computing and Materials Science: Quantum computing has the potential to significantly accelerate materials science research, which could have significant implications for fields such as energy and transportation.

  • Implications for Quantum Computing: The intersection of quantum computing and industry also has significant implications for the development of quantum computing itself, with potential applications in areas such as quantum simulation and quantum chemistry.

🔗 Resources:

  • Original post ↗
  • Original source
  • TechInnovationz
  • Quantum computing has significant potential applications in industry, including areas such as materials science and logistics.

🚀 Quantum Computing and Simulation

$IONQ and $SNPS cut a complex engineering simulation by about 12% on IonQ’s actual Forte quantum computer. Another example how quantum doesn't need to replace supercomputers yet but can start by making specific steps inside real industrial software a lot faster.

Key Points:

  • Quantum Computing and Simulation: Quantum computing has significant potential applications in simulation, including areas such as materials science and logistics.

  • Quantum Computing and Materials Science: Quantum computing has the potential to significantly accelerate materials science research, which could have significant implications for fields such as energy and transportation.

  • Implications for Quantum Computing: The intersection of quantum computing and simulation also has significant implications for the development of quantum computing itself, with potential applications in areas such as quantum simulation and quantum chemistry.

🔗 Resources:

  • Original post ↗
  • Original source
  • StockSavvyShay
  • Quantum computing has significant potential applications in simulation, including areas such as materials science and logistics.
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Drishtant Ghosh (Drix10)
Drishtant Ghosh (Drix10)Author & Engineer

Technical founder and engineer working across AI systems, developer infrastructure, and cybersecurity.