Standing wave of density.

As it was spoken above, in a lepton of Time the mass in volume distributed nonuniformly. Practically all the mass of a lepton focused in a band of obturating which length is equal 5,949х10^-30 m. On fig. 61 the model of the conditional quantum in which a part of particles (the quantum as it is quantized) focused in a band of obturating and a part of particles in a band of rarefaction is shown. If particles of a band of rarefaction move faster of quantum the band of obturating will be shifted along quantum aside opposite to a motion of quantum. In a situation when the band of obturating moves in the opposite party with velocity of a motion of quantum, for exterior fixed observer this band of obturating will remain the fixed. So the standing wave of density which, being propelled, transfers from quantum in quantum is formed. For the observer it will be fixed "point" through which transits quantum behind quantum, bringing, fixing and carrying away the information. A requirement of formation of a standing band of density is necessity of a gang of length of a band of obturating on the one hand and the rate of flux of length with another with velocity of equal velocity of a motion of all quantum.
For conducting calculations it is necessary to spot quantity{amount} of quantums in a lepton.
The quantity{amount} of quantums in a lepton for any level of Time is defined{determined} under the empirical formula:

*

Knowing quantity{amount} of quantums in a lepton, it is definable breadth of quantum:

*

As in a lepton of Time all mass focused in a band of obturating, we shall discover breadth of quantum in obturating:

*

Velocity of a gang of breadth of obturating should happen to velocity of a motion of a lepton for maintenance of effect of an immovability of this band. We shall discover frequency to which there is a gang and the rate of flux of obturating:

*

Let's discover mass of quantum:

*

The lepton of Time has energy 7,455х10^-15 but as the mass is proportioned nonuniformly also energy is proportioned nonuniformly. On equator energy of a lepton should be equal:

*

Almost all energy leaves in a band of obturating, in a band of rarefaction remains 6,941x10^-17 Дж.
At inhibiting action in a band of obturating the kinetic energy transfers in interior. We count, that in a band of rarefaction there is one quantum, which as it is quantized. It is definable velocity of quantum:

*

Knowing velocity and frequency we can find a wave length:

*

As in a band of rarefaction there is one quantum which also is quantized, we can spot mass of the underload particle of quantum. We shall term this particle - a tachyon. Quantity{amount} of tachyons in quantum we determine division of length of a lepton into a wave length.

*

Mass of a tachyon:

*

Quantity{Amount} of tachyons in a lepton:

*

On fig. 62 the lepton in not obturated state is shown. The wave length at such lepton is equal to breadth of quantum and, hence, quantums go " in a nape each other ". At a lepton having a band of obturating, the quantum sequentially is obturated (fig. 63).
In a band - I, the density makes:

*

In a band II tachyons are drawn up "one after another". Necessary frequency and breadth ensure a gang of the length, a formatived band of obturating, with velocity of a motion of all lepton, ensuring an immovability of a formatived band of obturating. Density in a band II:

*

In a band III obturating happens due to a gang of the necessary area. The matter is that the quantum of a lepton represents something similar to the contracted hour spring which in a band of rarefaction straightens out. Therefore in a band of rarefaction the quantum can have parameter wave lengths (fig. 63A).

*

In a band IV there is all mass of a lepton then the density makes:

*

Pressure in band I:

*

Pressure in a band II should be equal to pressure in band I then velocity is equal:

*

Pressure in a band III is equal to pressure of space 3,047х10^32 Дж/м^3, then velocity of quantum in a band of obturating:

*

Velocity of quantum accepts velocity of all lepton.
As for formation of a standing wave it is necessary that the lepton in a band of obturating was propelled with velocity of a motion of not obturated lepton, pressure in a band of obturating should be:

*

Such pressure destroys a lepton with transition from the material substationary state in plasma or if be put words from Kalagia, in " Spatial fire ".
For formation of a standing wave of density, concerning the observer who is taking place on the propellented planetary strip, it is necessary to add velocity of a motion of a planetary strip in a band of obturating, and we shall see redistribution of energy in a lepton.


*

Necessary change of frequency:

*

Necessary change of velocity of quantum:

*

Energy:

*

Energy of a light wave in volume of a lepton of space:

*

Hence, redistribution of energy in a lepton of the Time, providing an immovability of a lepton of Time concerning the observer who is taking place on a planetary strip happens according to an energy distribution of a light wave in a leptonic line of Space.

The lepton of Space, also, is standing structure and has a band of rarefaction equal on length to a band of obturating of Time. As the band of obturating of a lepton of space is practically equal to all length of a lepton the density of a lepton of space is equal settlement and transition of a kinetic energy in interior will not happen, hence, there will be no pressure drop. Therefore the lepton of Space has no a gravitational mass. Leptons of Time are "points" of pressure drop or, as they say in "Kalagia": "... Centres of boil... ", at which focusing atoms are formed. Space-time field are standing structures, therefore it is impossible to detect their motion through laboratory.

To return to a table of contents

Free Web Hosting