Infinity-Science
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✨One of the Greatest Minds of Humanity Albert Einstein, believed that Ghosts are real. He said all the energy of the universe is constant and since this energy cannot be destroyed, this can transform into new Energy or creation of Ghosts✨

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#AstroQuestions
--WHAT WAS BEFORE BIG BANG??

Comment belowπŸ‘‡πŸ‘‡πŸ‘‡

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Infinity-Science
#AstroQuestions --WHAT WAS BEFORE BIG BANG?? Comment belowπŸ‘‡πŸ‘‡πŸ‘‡ Share: @AstroMechanics
Answer:- It's possible that before the Big Bang, the universe was an infinite stretch of an ultrahot, dense material, persisting in a steady state until, for some reason, the Big Bang occured. This extra-dense universe may have been governed by quantum mechanics, the physics of the extremely small scale.

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Welcome to the Cassiopeia group

πŸ—£A team of passionate individuals dedicated to exploring the mysteries of the universe.

Join us for exciting discussions about the cosmos and prepare to be dazzled by the wonders of the universeπŸ™Œ
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A 20-year old person goes at a high speed in a rocket on his birthday. When he comes back to Earth after 1 Earth year. He would be
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Particles in a box of finite potential can never be at rest.
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How is information extracted from a wave function?
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According to Einstein's special theory of relativity, laws of physics can be formulation based on
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Inertial frame of reference
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Introduction to Quantum Mechanics.
#Part1πŸ”­

✨Quantum mechanics is a branch of physics that describes the behavior of matter and energy at the atomic and subatomic level. It was developed by a number of physicists in the early 20th century, including Max Planck, Albert Einstein, Niels Bohr, Werner Heisenberg, Erwin Schrâdinger, and others

Quantum mechanics based on the principles of wave-particle duality, uncertainty and superposition.

In quantum mechanics, particles such as electrons and photons are described by wavefunctions, which represent the probability of finding the particle in a particular location or state.

πŸ“ŒThe development of quantum mechanics was a gradual process, with contributions from many researchers, rather than the work of a single individual.

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What are the types of Quantum Mechanics?
#Part2πŸ”­

✨There are several different types of quantum mechanics, each with its own focus helps to understand the behavior of matter and energy at the quantum level. Here are a few examples

Non-relativistic quantum mechanics:deals with the behavior of particles like electrons and atoms in the absence of strong gravitational fields, based on the SchrΓΆdinger equation.

Relativistic quantum mechanics:extends these principles to include the effects of special relativity, necessary for describing particles moving at high speeds or in strong gravitational fields.

Quantum field theory:describes how particles interact.

Quantum information theory:studies how quantum systems process and communicate information.

Quantum thermodynamics:studies how quantum mechanics affects thermodynamics

πŸ“ŒEach with its own principles, methods, and applications. Together, they form a framework for understanding the behavior of matter and energy at the quantum level✨

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What is the most surprising or counterintuitive aspect of quantum mechanics?
#Part3πŸ”­

✨One of the most surprising and counterintuitive aspects of quantum mechanics is the principle of wave-particle duality. This principle states that particles, such as electrons or photons, can exhibit both wave-like and particle-like behavior, depending on how they are observed or measured.

This duality is surprising and counterintuitive because it challenges our classical understanding of the behavior of particles and waves. In classical physics, particles are discrete objects that move in a predictable manner, while waves are continuous and spread out. In quantum mechanics, however, particles can exhibit wave-like behavior, and waves can be described as discrete packets of energy, or particles.

The principle of wave-particle duality has profound implications for our understanding of the nature of matter and the behavior of particles at the atomic and subatomic level✨

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#FunπŸ˜‚
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Breaking News: The strawberry moon will illuminate the sky this weekendπŸŒ•.

To see June’s spectacular lunar event READ MORE

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Did you know?

✨On June 28, 2009, Hawking threw a party for time travellers. The next day, he sent out the invitations. "Copies of it will survive in one form or another for many thousands of years," Hawking later said in the documentary "Into the Universe with Stephen Hawking."

"Maybe one day, someone living in the future will find the information and use a wormhole time machine to come back to my party, proving that time travel will, one day, be possible," he said✨

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Physicists explain how the brain might connect to the quantum realm. Read more

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What is Entanglement in short?
#Part5πŸ”­

✨Entanglement is a phenomenon in quantum mechanics where particles become correlated in such a way that their properties are intrinsically linked.

This allows for instantaneous correlations between particles separated by large distances, known as "spooky action at a distance." Entanglement is a key resource for quantum technologies, such as quantum computers and communication systems, and has led to new insights into the fundamental nature of reality in the quantum world.

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❔Question❔

How can we experimentally demonstrate entanglement between two particles, and what are some of the methods used to quantify the degree of entanglement between them?

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Infinity-Science
❔Question❔ How can we experimentally demonstrate entanglement between two particles, and what are some of the methods used to quantify the degree of entanglement between them? Write your commentπŸ‘‡ πŸ’‘Share: @AstroMechanics
Answer: Entanglement between two particles can be experimentally demonstrated using various methods such as the violation of Bell's inequality, quantum teleportation, and quantum state tomography. The degree of entanglement between the particles can be quantified using measures such as concurrence, entropy-based measures, and fidelity-based measures.

πŸ“ŒThese measures provide a quantitative way to characterize the amount of entanglement between the particles and are useful for studying the properties and applications of entangled states in quantum information processing and other fields.

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Black holes, wormholes and time machines.pdf
4.9 MB
Black Holes, Wormholes and Time Machines
by Jim Al-Khalili

Do you know:
β€’What might happen if you fall into a black hole?
β€’That the Universe does not have an edge?
β€’That the reason it gets dark at night is proof of the Big Bang?
β€’That cosmic particles time-travel through the atmosphere defying death?
β€’That our past, present and future might all coexist "out there"?

With two remarkable ideas, Albert Einstein revolutionized our view of the Universe. Einstein showed how Spacetime is warped and stretched by the gravity of all objects in the Universe and even punctured by black holes. But such possible twisting of Spacetime allowed a magic not even Einstein could have imagined: time-travel.

Theoretical physicist Jim Al-Khalili finally lays science fiction to rest as he opens up Einstein's Universe.
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