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Краткое описание работы: I MUST DO MY DUTY continue I.G. Goriacvhko, St. Petersburg, in March, 08. Quantified body’s motions are realized in Universe in varity thermodynamical conditions (p, T) and accompanied by the variable also quantified electromagnetic and gravity fields forming the general
I MUST TO DO MY DUTY
I MUST DO MY DUTY
(continue )
I.G. Goriacvhko, St. Petersburg, in March, 08.
Quantified body’s motions are realized in Universe in varity thermodynamical conditions (p, T) and accompanied by the variable also quantified electromagnetic and gravity fields forming the general ethe
r. But these fields may be arisen only at the expense of changed their charges
 and masses
. The harmony of Nature needs in the unity of its mathematical description as in mechanics
as in thermodynamics 
which practicable by the full differential‘s
 mathematical method (which successfully is used in thermodynamics). Because that the full system of the quantum mechanics laws must be described as it shown at the left side of table 1. Laws (a), (b) is obtained by means the next vectors equations: for the impulse  , for the moment of impulse
, for the moment of impulse From the right side for comparing is given the full system of Newton's mechanics laws.
 From the right side for comparing is given the full system of Newton's mechanics laws.
5. Quantum mechanics
Table 1
| Quantum mechanics laws | Newton’s mechanics laws | 
| 
 where  | 
 where | 
| 
 where  | 
 where  | 
|  (c) |  (c’) | 
In Newton’s laws (a’), (b’) parameter is absent (i.e.
is absent (i.e. ). Because of that these laws are incorrectly 
as of physical as of mathematical standpoints. On the physical
 point of view all
 the parameters (
). Because of that these laws are incorrectly 
as of physical as of mathematical standpoints. On the physical
 point of view all
 the parameters ( ) for the circle
 (
) for the circle
 ( ) body’s motion – are constancy
. Therefore,
) body’s motion – are constancy
. Therefore,  (i.e. the doubt
). On the mathematica
l point of view these laws (excepting 
(N)) – are not the full differentials
. But all
 the laws ( a),( b ),(c) –are the full differentials
.
 (i.e. the doubt
). On the mathematica
l point of view these laws (excepting 
(N)) – are not the full differentials
. But all
 the laws ( a),( b ),(c) –are the full differentials
.
The explanation 3. The impulse  Because of that must be describing
 Because of that must be describing  , where
, where  – the integrating factor
. Therefore,
 – the integrating factor
. Therefore, 
The verification
. Let us takes up the planet’s motion around the Sun. By means of (1) and Newton law  (assume that the Sun immovable) we obtain
(assume that the Sun immovable) we obtain  Therefore, on the one side
Therefore, on the one side  – the centripeta
l force. But on the other side
– the centripeta
l force. But on the other side  the centrifugal
 force. Because this
 the centrifugal
 force. Because this  From (a), (b) for the two
 bodies interaction may be received as all
 the well known
 mechanic’s laws:
From (a), (b) for the two
 bodies interaction may be received as all
 the well known
 mechanic’s laws: , as the unknown
quantum
 mechanic’s laws:
, as the unknown
quantum
 mechanic’s laws: If
If  we obtain the Third Newton’s law
 we obtain the Third Newton’s law  and
and  -(i.e. the well known equilibrium conditions
 of a body). And etc.
 -(i.e. the well known equilibrium conditions
 of a body). And etc. 
6. The quantum corpuscular-wave theory
It is considered that modern corpuscular-wave theory applicable to any types of particles (i.e., to the changed and neutral ones). By means of (1) and (B’) they may be obtained the adjusted (i.e. the quantum ) laws of the corpuscular-wave theory (see the left side of the table 2. On the right side for comparing is given the ruling redaction of this theory).
Table 2
| The quantum corpuscular- wave theory | The modern corpuscular- wave theory | 
| The kinetic energy  =  | ----------------------------------------------------------------- | 
| The potential energy  | ----------------------------------------------------------------- | 
| The equation   | The equation  | 
| The impulse  | The impulse  | 
| The full energy  | The full energy
 ( !)  | 
Here  Plank’s constancy,
 Plank’s constancy,  the angular frequency,
the angular frequency,  the wave date,
the wave date,  the wavelength,
the wavelength,  the wave’s velocity,
the wave’s velocity,  the particle’s mass,
the particle’s mass,  the unit vector. With regard to the parameter
the unit vector. With regard to the parameter in all of these laws see P. 3.
 in all of these laws see P. 3.
It must be especially notes that all the laws of the tables 1 and 2 are carried up at a time . But the role of the major law belongs to the quantum law of conservation the full energy.
Thank you. To the next report in April, 12. G.I.G.
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 , (a)
, (a) =
= - the force by Newton. (N)
- the force by Newton. (N) , (a’)
, (a’) , (b)
, (b) - the moment of force. (M)
- the moment of force. (M) (b’)
 (b’)