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Quantum Entanglement on Large Objects

10/06/2020 12:25 PM

FTL communications?

Virtually erase uncertainty?

Limitless precision of measurements of motion?

You decide

phys.org/news/2020-09-quantum-entanglement-distant-large.html

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#1

Re: Quantum Entanglement on Large Objects

10/06/2020 4:09 PM

What if the Earth is entangled with another heavenly body that gets hit with a huge asteroid and flips....What happens to Earth? ...Do we all have entangled doppelgangers that live in a left spin universe someplace?... Is this effecting the left spin we are seeing emerge in the MSM?

https://news.mit.edu/2012/spin-diode-paper

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#3
In reply to #1

Re: Quantum Entanglement on Large Objects

10/07/2020 11:53 AM

In regard to your link: Supercooled fluids are weird. In the case of helium at least, the whole fluid acts as one large molecule.

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#4
In reply to #1

Re: Quantum Entanglement on Large Objects

10/22/2020 7:08 AM

IMHO:

Everything in our universe is entangled from the instant of the big bang,and if we follow Newton's laws,any action results in,or is the result of,an equal and opposite reaction.

All actions in our universe are a result of this first action,and consequently,are really reactions to previous actions,traceable back to the first action.

There are an estimated 1082 atoms in the Visible Universe so calculating all of the action/reactions is currently not possible.However,if it is ever possible,we can assign them an IP address using the IOT addressing scheme.

According the current "theory du jour" the universe is composed of vibrating waves that vary in frequency, which determines the type of matter.

We are all entangled with the universe,and anything we do redefines the universe in which we exist.

We cannot escape our quantum origin.

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#2

Re: Quantum Entanglement on Large Objects

10/07/2020 9:35 AM

FTL communications - you can send a signal instantaneously, but you just can't control what you send, so not too useful.

What is exciting is that if two mirrors were entangled and the quantum wiggles correlated, making the distance between them constant. It might be a bit of a trick keeping them in quantum superposition until a gravity wave passes through.

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