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The absolute zero point/Bosen-Einstein kondensation!

 
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PostPosted: 10.02.2009 13:13    Post subject: The absolute zero point/Bosen-Einstein kondensation! Reply with quote

Did you know that everything that exists, it is one and the same thing which we canname energy.

This energy is not the matter, instead it is what exists inside of the atomic
nucleus of the matter and its density changes all the time to less density.

When there is no energy coming from outside, then it gets cold because the energy emission does not get from the atomic nucleus more of this energy to burst.For this reason, throughout expanding atomic nucleus do not push themselves away from each other so powerfully as earlier, at which point that into the atomic nucleus comes more of this energy in particles.

At the end, the so called quarks existing in different atomic nucleus interlace and form a quark unit.
Also, the energy existing inside the quarks changes all the time to less dense energy,moreover quarks burst out energy waves.

In the center of a quark unit big enough arises a sufficient pressure, whereupon quarks get to burst a lot of
energy towards each other. Therefore this quark unit starts to emit abondant energy from itself.
This way from the absolute zero we jump straight to high temperatures.

Let's talk about temperature in the absence of atom's oscillations, but rather how much energy one piece emits.
Also there is a meaning about the density of the emission: How the particles are and how close they are to one another.







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Hot in the direction of cold!

Dense in the direction of a less dense space!

The space does not change!

The energy transforms to a less dense energy!

At the same time an energy that is transforming to a less dense energy, pushes itself towards an area where exists less energy. This happens because the energy transforming to less dense doesn´t have te room to stay in a equally small area that doesn´t change.

Also the energy in the qvarks transforms all the time into a less dense energy.

From outside there doesn´t come almost at all energy towards the atomcores when reaching the absolute zero point. To atomcores in which the energy transforms all the time into a less dense energy. This way the expanding
atomcores do not expload their energy towards each other and they don´t push themselves away from each other so powerfully.

Eventually the qvarks of the separate atomcores interlock with each other. A big consentration of the qvarks has developed. Also in the middle of the centre a pressure has been developed. This pressure is based on a fact that
the qvarks radiate their energy towards each other. With this energy they push themselves away from each other according to the same relation as they expand.

An adequate pressure is developed in the middle of the big expanding consentration of the qvarks and this pressure makes the qvarks to explode a lot of their energy towards each other.

This is why a lot of energy begins to burst / radiate from the qvark consentration.

This is how extremely cold turns in a moment into extremely hot.

The heath is not a atomcores. The vibration of the atoms is consequence of outward coming energy that reaches the atomcores.

The so called "Caloric" is not a chemical element.

"Caloric" is the one and the same thing that exists in all atomcores. It can be called energy. Or with any other name.
Energy transforms all the time to a less dense energy in a space that does not change.

Also the movement of all the atoms of the world happens towards cold in other words towards a space where is less energy!
The expanding atoms push themselves towards a less dense area in space.

The energy of the planets push themself away from the sun in a curved orbit. There is more and denser energy than outside the sun.

The stars push themselves in a curved orbit away from the centre of the galaxy where is more and denser energy than in the outside of the galaxy.

The energy of the visible universe pushes itself away from the area that exists really far outside the visible universe.In that area there exists more and denser energy than in the visible universe. Outside that area energy is less denser.

The eergy of the visible universe pushes itself towards the cold. In other words towards a less dense area in a space that does not change.
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PostPosted: 18.02.2009 11:44    Post subject: YeS! Reply with quote

Bosen-Einstein condensate!

Could it be possible that the particles of a laserbeam absorb the energy
radiating from the expanding qvarks with them?
This way energy radiating from the separate atomcores can not reach the
expanding atomcores nextby?

After that expanding qvarks of the separately expanding atomcores overlapp.

An energyconcentration that has composed of very dense energy has born and its hot / dense energy is able to keep itself hot / dense.
This way the energy of Bosen-Einstein condensate does not radiate nearly at all its energy away from itself!

(Maybe later The expanding qvarks have locked themselves to expand side by side?)

In the area between the expanding qvarks the moving photon meets so much dense energy that its movement slows down significantly.

For example the speed of a runner slows down involuntarily when the runner meets a traffic jam, but as soon as the runner meets a less dense space that does not transform, he can accelerate his speed. To accelerate his speed the runner must transform his body energyto a less dense energy! In other words the runner must make the substance that he consists of to transform faster than usually in a certain area to a less dense energy.

If the energy f a photon passing through the Bosen-Einstein condensate does not transform it is based on the fact that the particules are able to
recycle the energy they meet! Also the cores of expanding atoms are able to recycle the energy coming towards the core!
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PostPosted: 14.11.2018 10:18    Post subject: Reply with quote

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