Tuesday, 30 April 2024

Can Particles be Quantum Entangled Across Time?

Both Classical Physics and Quantum Mechanics specify how things are now. The Newtonian equations predict how they will be later on. The equations of QM specify the probability of how things will be later on. The logical explanation is that we have an uncertain future coming into existence with potential photon ∆E=hf energy, of what might happen, exchanging into the kinetic Eₖ=½mv² energy of electrons of what is actually happening. This forms an irreversible probabilistic process with an uncertain future coming into existence photon by photon with the absorption and emission of light waves.


Sunday, 21 April 2024

A general explanation of the physical Universe formulated by inductive r...

This theory takes us back to r² and the three dimensional physics of the Inverse Square Law! Spherical 4πr² geometry is fundamental to this process and this is based on Huygens’ Principle of 1670 that says, “Every point on a light wave front has the potential for a new spherical 4πr² light wave". We can think of the point as a photon ∆E=hf electron interaction or coupling. The spherical surface forms a boundary condition or manifold for the uncertainty of this interaction. Light waves radiate out spherically with their interior forming the characteristic of three-dimensional space with the spherical surface forming a probabilistic wave front. The two-dimensional spherical surface forms a manifold or boundary condition for positive and negative charge as the future unfolds. We have to square the radius r² because process is unfolding relative to the surface of the sphere. Therefore we have the speed of light squared c² we have the charge of the electron squared e² and the probability wave function squared Ψ². In the equation for Heisenberg’s Uncertainty Principle ∆×∆pᵪ≥h/4π we see 4π representing the spherical geometry. the exchange of light photon ∆E=hf energy is continuously transforming potential energy into the kinetic Eₖ=½mv² energy of matter, in the form of electrons, as an uncertain ∆×∆pᵪ≥h/4π probabilistic future unfolds. The Future relative to our actions with the Planck Constant h/2π being a constant of action within a geometrical spherical 4πr² process that forms the characteristics of 3D space and continuum of time ∆E ∆t ≥ h/2π. Spherical geometry naturally forms the potential for Quantum Entanglement the polarization or spin will be the same for the whole of the spherical surface. This is observed as quantum entanglement with opposite spin on opposite sides of the light sphere.

Tuesday, 16 April 2024

Theoretical physicist Sabine Hossenfelder asked "Why we have Units of ti...

Theoretical physicist Sabine Hossenfelder ask the question, “Why do we have units of time, length, energy and mass”.
Could the reason we measure in Units be because, the future is unfolding in units of unitary action or quanta? If we think of the future as emergent coming into existence quanta by quanta or photon by photon with the spontaneous absorption and emission of light waves. We would have an uncertain probabilistic future unfolding with each photon electron interaction. There is a geometrical aspect to this process with light waves radiating out spherically forming the characteristics of three-dimensional space with one variable in the form of time. This geometrical process would give us a reason way we measure in units as in time, length, energy and mass. At a deeper level, the spherical geometry of this process would explain why we have Ford cycles in our mathematics. Also such an emergent geometry would give us a reason why we have an infinite number of fractions between each two whole numbers.

Sabine Karin Doris Hossenfelder is a German theoretical physicist, philosopher of science, author, science communicator, YouTuber, musician, and singer. She is the author of Lost in Math: How Beauty Leads Physics Astray, which explores the concept of elegance in fundamental physics and cosmology, and of Existential Physics: A Scientist’s Guide to Life’s Biggest Questions.
Reference and Original Video:
The 5 Biggest Physics Mysteries #science #physics
https://www.youtube.com/watch?v=ABwkq...

Sabine Hossenfelder
1.25M subscribers
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https://www.youtube.com/watch?v=rOkGuFWD_Gg

Tuesday, 9 April 2024

In a solar eclipse we can see a hologram or holographic principle

In a solar eclipse we can see a hologram or holographic principle
Dyslexic Artist Theory on the Physics of Time
37.8K subscribers 2,513 views Jun 22, 2017
A wave and particle explanation of the electromagnetic spectrum
If the Universe is a hologram or uses the holographic principle in some way there should be extreme conditions when the hologram breaks down and we see the nature of reality in a different way. When a hologram is broken we see a whole image of the hologram in each individual broken part of the hologram this is also seen at a solar eclipse.
 

Saturday, 6 April 2024

How Quantum Systems (Measurement) are linked to increasing entropy driving towards equilibrium

This video answers the two question or problems we have with the Quantum Measurement System linked with entropy and equilibrium:

 1. How can a closed system form equilibrium or equilibrate?  

2. How can unitary Evolution or unit a unitary action increase entropy? 

Based on the theory explained in these videos.

The answer to question one is:

1.      If the mathematics of Quantum Mechanics represents the physics of time with a probabilistic uncertain ∆×∆pᵪ≥h/4π future coming into existence with the exchange of photon ∆E=hf energy, because it is just the exchange of energy we can have the potential for equilibrium within a closed system.

The answer to question two is:    

2.      The absorption and emission of light waves are continuously forming photon energy, or unit of unitary action, transforming potential energy PE into the kinetic Eₖ=½mv² energy of electrons or matter will form statistical entropy naturally increase the potential for equilibrium.

The act of measurement in a quantum system forms a photon electron interaction with a probabilistic uncertain future unfolding into a well-defined outcome.

This would also explain why you need to cool down your Photon detector so much, it is because we have the continuous exchange of photon energy continuously unfolding all around us forming the continuum of time!

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Original video:

Quantum Measurements and Equilibration: Obtaining Information via Entropy Maximisation

 

FQxI 37.2K subscribers

 

https://www.youtube.com/watch?v=d0pVo2bX-8c