Wednesday, May 3, 2017

Zero Entropy


“The entropy of a perfect crystal at absolute zero is exactly equal to zero.” But because of minute and ever fluctuating energy levels (quantum theory) zero temperature cannot be archived.

I am referring to data compassion. Suppose we archived absolute data compassion, then all data will be compressed to one. Then entropy will be zero. For example, in a perfect crystal all atoms are perfectly aligned.The data can be compressed to zero.

In the beginning of universe, everything was uniform, nothing was random. This is beginning, zero entropy. Just imagine a square rule exercise book, here everything is fixed nothing random. This isThen imagine the vertical lines are shifted in such a way that there is no correlation of the first to the second, second to third and so on. Then there will be no horizontal lines, but suppose each rectangle is designed in such a way that one is different from the other. Say there are no patterns. This will be the end of the universe. This will have infinite entropy.

The thing is at the beginning and at end there is no information.If we imagine the current state of the universe, it can be correlated to a normal distribution curve. The current state is something in the middle. Now we do have a lot of information.

Therefore in the beginning there was no quantum theory, there was no randomness, everything was black and white, there was no gray. This was the beginning of time. If there was a big bang this was the starting point. The main point is there was no information. No entity called time. Entropy was zero.

Then the structure started to breakup. Some parts had uniformity, parts started to be random. Quantum theory came into being. Information started to increase. Entropy started to increase. Time came into being.

Now maybe we are at the middle. The information it's at a maximum. There is a part randomness, part structured. Structured part has information. Randomness has no information. Entropy is increasing. Time is passing by.

The end, entropy will be maximum. Time will ceased to exist. There will be no structured parts renaming. Then there is no information.

Another point in this theory that there is a big difference between the beginning and the end. Both do not have the same formation. In the beginning everything is structured and the structuring will be maximum and the data is compressed fully, therefore information is nil. Then at the end everything is random, therefore no information.

At the beginning all data of the universe is fully compressed. So compressed that there is no data. This data is information. Information about matter of the universe. Matter is all elementary particles or even so far unfounded particles.

Zero entropy is data fully compressed and no information. Maximum entropy is data cannot be compressed, since all data is fully random, therefore no information.

Time can be defined as the level of data compression. Time goes by as the ability to compress data is reduced.

Theory of time. Up to now except entropy, good explanation of what is time is lacking. This new theory gives another dimension. An observer cannot tell the difference of forward time from backward time. Running a film backwards, though we feel the actions are odd and unusual, in theory theory there is nothing to show there is a preferred way. That is time should run only forward and not backwards. But changing of ability to compress data is a good measure of time. Take a physical event happening. Before the event the ability tho compress data was more than after it.

This gives a definition to before and after. Before the data was more compressed than after.

Take the example of a living man and a dead man. The structure of the living man is more organised, the cells of the man function as a cohesive units, performing specific functions. But the dead man, most of the matter is random. The randomness association with time is more evident in living things, than other matter. In living beings matter is highly organised, as cells.

We may be living at a peak of information. Consider a system consisting of non-living matter such as a cyclone, when we know the data of a certain instant physics will decide what happens. If quantum theory is ignored and classical physics is taken into account, all subsequent details can be predicted. Then there will be little information. But this information is increased buy quantum fluctuations.

Then take a system of living matter. The system is highly organised, but the data is also very high. Each cell will be different. There is a difference even between same type of cells.

When living matter appeared in the universe, exponential increase of information took place. This may be the secondary high increase, the first was when quantum theory started.

It is important to state that quantum theory is non-existent on interactions guided by gravitation, unless velocity is high. That is, when matter is some what stationary, like a piece of rock, compared to a bubble of gas, will have less information. Dark matter and dark energy may out may not be associated with quantum theory. It is not possible to say anything about the amount of information associated with it.

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