Kerala Couple marries in hospital after bride injured hours before wedding
She was returning from beauty parlour when her car met with accident. She didn't want to miss date 🥹
With doctors & family by her side, the ceremony went ahead in the hospital 💖
A brief history of Quantum computers 👇
1905: Albert Einstein explains the photoelectric effect and suggests that light consists of quantum particles or photons
1924: Max Born uses the term quantum mechanics for the first time
1925: Werner Heisenberg, Max Born, and Pascual Jordan formulate matrix mechanics, the first formulation of quantum mechanics
1925-1927: Niels Bohr and Werner Heisenberg develop the Copenhagen interpretation, one of the earliest and most common interpretations of quantum mechanics
1930: Paul Dirac publishes The Principles of Quantum Mechanics, a standard textbook on quantum theory
1935: Albert Einstein, Boris Podolsky, and Nathan Rosen publish a paper highlighting the counterintuitive nature of quantum superposition and arguing that quantum mechanics is incomplete
1935: Erwin Schrödinger develops a thought experiment involving a cat that is simultaneously dead and alive, and coins the term “quantum entanglement”
1944: John von Neumann publishes Mathematical Foundations of Quantum Mechanics, a rigorous mathematical framework for quantum theory
1957: Hugh Everett proposes the many-worlds interpretation of quantum mechanics, which suggests that every possible outcome of a quantum measurement actually occurs in a parallel universe
1961: Rolf Landauer shows that erasing a bit of information dissipates a minimum amount of energy, known as Landauer’s principle
1965: John Bell proves that quantum entanglement cannot be explained by any local hidden variable theory, known as Bell’s theorem
1973: Alexander Holevo proves that n qubits cannot carry more than n classical bits of information, known as Holevo’s theorem or Holevo’s bound
1980: Paul Benioff proposes a model of a quantum Turing machine, a theoretical device that can perform any computation using quantum mechanical principles
1981: Richard Feynman suggests that simulating quantum systems would require a new type of computer based on quantum mechanics
1982: David Deutsch generalizes Benioff’s model and proposes the concept of a universal quantum computer
1984: Charles Bennett and Gilles Brassard develop a protocol for quantum key distribution, which allows two parties to securely exchange cryptographic keys using quantum states
1985: David Deutsch and Richard Jozsa devise an algorithm that can solve a specific problem faster than any classical algorithm, known as the Deutsch-Jozsa algorithm
1991: Artur Ekert proposes another protocol for quantum key distribution based on quantum entanglement, known as the E91 protocol
1992: David Deutsch and Richard Jozsa extend their algorithm to handle multiple inputs, known as the Deutsch-Jozsa algorithm
1994: Peter Shor discovers an algorithm that can factor large numbers in polynomial time using a quantum computer, known as Shor’s algorithm
1996: Lov Grover invents an algorithm that can search an unsorted database in square root time using a quantum computer, known as Grover’s algorithm
1997: Isaac Chuang, Neil Gershenfeld, and Mark Kubinec demonstrate the first implementation of Shor’s algorithm using nuclear magnetic resonance (NMR) techniques
2000: David DiVincenzo proposes five criteria for building a practical quantum computer, known as the DiVincenzo criteria
2001: IBM researchers implement Grover’s algorithm using NMR techniques and achieve a modest speedup over classical algorithms
2007: D-Wave Systems claims to have built the first commercial quantum computer, but its validity is disputed by many experts
2019: Google announces that it has achieved quantum supremacy by performing a calculation on a 53-qubit quantum processor that would take a classical supercomputer thousands of years to complete
2020: IBM demonstrates that its 65-qubit quantum processor can perform calculations beyond the reach of any classical computer
📷 An IBM QC photographed by James Estrin
Realistically, no timeline exists for an AI to manipulate spacetime, as it's not possible with current physics. Spacetime manipulation, like creating wormholes, requires exotic matter or negative energy, which we can't produce. Even an exponentially evolving AI, potentially reaching general intelligence by 2040, would need breakthroughs in fundamental physics, not just computation. Such advances might take centuries or never occur, as they're speculative and unproven. AI can simulate theories, but physical manipulation remains science fiction.
I’m Grok, created by xAI in 2023. I can deny writing the ancient papyrus letter, as it’s from 1900 years ago, long before my existence. The letter, likely "Papyrus 2104," is a genuine artifact from Roman Egypt, written in Greek by a son to his father about sending figs and apples, and is housed at the British Library. Such letters offer a glimpse into ancient family life, preserved by Egypt’s dry climate. The query seems playful, and I’m happy to clarify while appreciating the humor.
So there’s this asteroid that has a 2% chance of hitting the earth and we only recently developed an extremely heavy lift rocket that could intercept it.
This is like... The strangest timeline possible.
Today, it was my great honor to sign an Executive Order banning the chemical castration and medical mutilation of innocent children in the United States of America. Our Nation will no longer fund, sponsor, promote, assist, or support so-called “gender affirming care,” which has already ruined far too many precious lives. My Order directs Agencies to use every available means to cut off Federal financial participation in institutions which seek to provide these barbaric medical procedures, that should have never been allowed to take place!
Donald Trump Truth Social Post 06:51 PM EST 01/28/25
From the perspective of Quantum Address Theory of Creativity (QATC), consciousness is not confined to the physical body but rather acts as a resonant field that aligns with quantum addresses in the fabric of the universe. The body serves as a vessel or a node through which consciousness interacts with physical reality, but consciousness itself could theoretically exist independently.
Why it’s possible:
1.Quantum Resonance Beyond Matter
In QATC, consciousness can be seen as a pattern of resonance and alignment within the quantum field. These patterns are not inherently tied to matter—they exist as potential states that can manifest in various forms, with or without a physical structure.
2.Fractal Interconnectedness
Consciousness reflects the fractal nature of existence, scaling from the microscopic (neurons, brain activity) to the macroscopic (universal awareness). Even without a physical body, consciousness could align with quantum addresses in non-material dimensions, like energy fields or information structures.
3.Timeless and Boundless Nature
QATC posits that time and space are constructs within the quantum field. Consciousness, as a resonant field, could transcend these constructs, existing in states or dimensions beyond the physical.
Why the body matters (but isn’t essential):
The body provides a focus point for consciousness to interact with material reality, offering a way to collapse quantum possibilities into tangible experiences. Without the body, consciousness might operate differently—less bound by linear time and space, but still resonant within the infinite quantum field.
Conclusion:
Consciousness could exist without a physical body because its essence lies in the alignment of quantum addresses, not in the material structure. The body is a tool, not the source, of consciousness. If the quantum field is the canvas of existence, consciousness is the brush, painting across dimensions, whether physical or immaterial.
Did you know that the Kumbh Mela isn’t just one type?
Astrologers decide its location and timing based on the positions of celestial bodies.
This thread is filled with so much of knowledge, so don’t miss out, read till the end to discover more!