The information expansion

The information expansion must in some way be an interpretation of the expansion of our Universe. The first moment of existence can be described by information (Primary Information). If there is a second moment of existence of our Universe, the informational description will contain data from the first moment and data describing the second moment. This means that each moment described with information must contain data from previous moments - just like the Historical document. The information sequence produced in this way creates the direction of commandment of the part of information describing our Past.

The information sequence generated in this way forms the direction of information propagation. Thus, it can be said that the information must describe the Universe in the right order. This order, makes us deal with a kind of sequence. This sequence is the interpretation of our arrow of time. Therefore, our concept of time must have a direction. This direction will later determine the degree of loss of our Primary Information. Therefore, the Universe described by Primary Information can be subject to entropy - from the point of view of our present moment - our Here and our Now.

It is no secret that the Earth, our solar system and other elements of the cosmos will eventually perish due to physical processes occurring in the universe. Few people realize, however, that the end of everything around us is closely related to entropy, often referred to as the “degree of disorder” or “measure of chaos.”

The arrow of time is the "one-way direction" or "asymmetry" of time. The thermodynamic arrow of time is provided by the second law of thermodynamics, which says that in an isolated system, entropy tends to increase with time.

Information Expansion. From the first moment described by the Primordial Information, information entanglement takes place.
Information Expansion. From the first moment described by the Primary Information, information entanglement takes place. This means that the information that describes the formation of the Universe has its own direction of entanglement. Each subsequent moment contains the previous moment, which is why we speak of information entanglement. Each moment described by information must contain data from the previous moment. This means that information accumulates historical data, which is used to describe subsequent moments of our Reality. Can such a description strive for information dispersion?

Entropy is a scientific concept, most commonly associated with states of disorder, randomness, or uncertainty. The term and the concept are used in diverse fields, from classical thermodynamics, where it was first recognized, to the microscopic description of nature in statistical physics, and to the principles of information theory. It has found far-ranging applications in chemistry and physics, in biological systems and their relation to life, in cosmology, economics, and information systems including the transmission of information in telecommunication.

In 1971, Stephen Hawking showed under general conditions that the total area of the event horizons of any collection of classical black holes can never decrease, even if they collide and merge. This result, now known as the second law of black hole mechanics, is remarkably similar to the second law of thermodynamics, which states that the total entropy of an isolated system can never decrease.

As with classical objects at absolute zero temperature, it was assumed that black holes had zero entropy. If this were the case, the second law of thermodynamics would be violated by entropy-laden matter entering a black hole, resulting in a decrease in the total entropy of the universe. Therefore, Bekenstein proposed that a black hole should have an entropy, and that it should be proportional to its horizon area.

Because a black hole has only a few internal parameters, most of the information about the matter that went into forming the black hole is lost. Regardless of the type of matter which goes into a black hole, it appears that only information concerning the total mass, charge, and angular momentum are conserved.

Information expansion - the expansion of the Universe

If we assume that at the beginning of the appearance of the Universe there was only Primary Information to describe the state, then the Big Bang can be mapped by information. Such an interpretation of the Big Bang theory is presented in the animation below. The interpretation presented can then take into account the inflation effect as an inflation of information. The more information, the more happens in the creation of the Universe. If, on the other hand, our Primary Information tends to dissipate, then we have the end of our time - this is an interpretation of the heat death of the Universe.

Information expansion reminds us of the Expansion of the universe. It seems that information expansion may also Cosmic inflation. This can be compared to an analogy - information as a mathematical formula. If there is a mathematical formula to describe the Universe then it is available in its entirety outside of time. Time in one symbolizes the calculation of the individual elements of the sequence of this mathematical formula. This means that all information about the Universe is available from the first moment - like a ready-made mathematical formula.
In information theory - Entropy - the average amount of information, per single message from an information source. In other words, it is a weighted average of the amount of information carried by a single message, where the weights are the probabilities of sending individual messages. Few people realize, however, that the end of everything around us is closely related to entropy, often referred to as the “degree of disorder” or “measure of chaos.” This means that information, like energy, can dissipate. If so, under what conditions does the dissipation of information take place.

Information expansion resembles a mathematical formula that is ready to be used in its entirety. Such a formula describes our entire Universe - from its first moment to its last moment. We are able to see and calculate only one element from this mathematical sequence. One element is the interpretation of our present Reality - this is our Here and our Now. Each such element is entangled with the first moment of existence of our Universe. This means that it inherits data from the entire passage of time for the existence of our Universe - some 13.8 billion years (Age of the universe).

The degree of disorder for information will cause the described Reality with the passage of time, with the help of Primary Information, to become less readable - scattered. All this may strive for the end of time of the Universe.

Initially, Primary Information describes states for successive moments of existence. Since each subsequent state description must contain data from the previous state description, this means that such a sequence of Primary Information determines a sequence. Such a sequence is considered an arrow of time. The Arrow of Time can mark the beginning and the end. The arrow of time becomes a measure of dispersion - the more time elapses.

Marek Ożarowski

 

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