BASES OF NEUTRON PHYSICS

Physics. Discoveries in physics.

Valeriy Fedorovich Andrus

English

" Our task is to develop means of obtaining energy from stocks that are eternal and inexhaustible, to develop methods that do not use consumption and consumption of any" material "carriers. Now we are absolutely sure that the realization of this idea is not far off.: The opportunities for development This concept consists precisely in the fact that to use for the work of engines in any point of the planet the pure energy of the surrounding space ... "

(Tesla, 1897)

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CHAPTER III.
WORK, POWER, ENERGY

Work force directed at an angle
To displacement

"If, according to the conditions under which the body moves, the direction of the force does not coincide with the direction of movement, then the work of movement performs only a part of the applied force, namely that component that coincides with the direction of displacement ..." (from the textbook "Physics for Technical Schools" Sakharov, MI Bludov, "Nauka" Publishing House, Moscow, 1969)

Consider an example in Fig. 39.

Work force, directed at an angle to displacement

The body under the action of the force F moves upward along the inclined plane. As you can see, the forces applied to the body are much larger than what is commonly believed in modern physics. It immediately becomes clear that the results obtained earlier are either heavily burdened, or simply accepted with assumptions on a contractual basis. Let's group all forces. Resistance to movement consists of the sum of forces:

Lifting force is:

The sum of the forces pressing the body to the inclined plane is:

The thrust force is:

We consider the simplest case when the velocity v is constant. It is generally accepted that with uniform motion all forces are in a balanced state, and here it is most simple to compose the equation of forces. Let's first try to follow this well-trodden path. Let's make extracts from the same physics textbook: "If the bar moves uniformly (on a horizontal surface, under the weight of a weaver pulling a bar, using a thread through a block (the device is a tribometer, Author)) Experiments with a tribometer show that the frictional force does not depend on the size of the surface of rubbing bodies: we can turn the bar by any side - the frictional force will not change from this. Coefficient of friction depends on the material of rubbing surfaces, on the nature of their processing, on the presence of lubrication between surfaces. The following table gives the average values ​​of the coefficient of static friction:

As already mentioned, the sliding friction force (equal to the thrust force with uniform motion) is less than the maximum friction force of rest. Therefore, the sliding friction coefficient is somewhat less than the coefficient of friction of rest. In addition, the frictional force and sliding friction coefficient depend on the slip velocity (it is clear from the passage how incomplete ideas about the nature of the phenomena are forced to introduce coefficients for each specific case, which still do not stand up to criticism when moving with variable velocities, since a number of Forces, about which at this moment there is no knowledge.) The frictional force with uniform motion is equal to the product of the force of normal pressure by the friction coefficient of sliding:

From the foregoing, one can clearly see the state of affairs in physics, constructed, as it seems, on the irrefutable facts of the experiments, but it does not allow us to understand to the end what seems to be the simplest and well observed phenomenon. Ignorance causes scientists to dodge all available means and pretend that they understand something. But this is nothing more than disguise and deception, based on false scientific foundations. You already understand that they can not explain the physics of this phenomenon (friction), since they do not know what is mass, force, gravity, etc. ... We return to the statement from the passage that with uniform motion , That is, the system is in equilibrium. Is this really the case?

We know that any force is a directed flow of energy. If two streams of energy counterbalance each other, then nothing will move! We saw this on the launching rocket, which, when the forces are equal, can not come off the Earth.

As we see, we have two mutually exclusive ideas about the nature of things and quietly - peacefully solve this and other issues will not work. The laws and works of Newton, Einstein, as well as other scientists, unfortunately, like everything primitive and earlier, have not stood the test of time, which is an absolutely normal phenomenon of evolution.

In order for the body to move at a constant speed, it is necessary, after reaching a balance of forces, to create in the body such an additional directional flow of energy, i.e. Force, which will move through the body with a constant given speed in the direction of motion.

In our case, the thrust force is directed at an angle to the direction of motion. Hence the velocity of the directed energy flux must be greater than the speed of motion of the body.

Thus, the traction force consists of two forces: the first - balancing all the forces of resistance, the second - the movement:

We have considered the general formulation of the question, which allowed us to deal with two opposing views on the nature of phenomena that were considered so simple and clear that they never occurred
Disputes for many centuries.

Newton's first law (the seventeenth century) - the law of inertia says: in the absence of the action of other bodies, every body maintains a state of rest or rectilinear uniform motion.

This Newton's law does not work even in absolute emptiness, since the body in the form of mass is also an "absolute emptiness" with linear dimensions and does not possess inert properties. The property of inertia is the gravitational flow through
Body, i.e. Energy mass. In order for the body to move at a constant speed, it is necessary to apply an additional permanent traction force. In absolute emptiness, nothing in itself will not move because of the absence of external forces. The body moves only when the crystal lattice is bent by the gravitational flow, and its curved rope rope repels from it. There is no repulsion of skipping ropes and deformation of lattices - there is no movement. In the example of the rocket, it was pointed out that the thrust force should be greater than the resistance forces, and the issue was not considered in detail, so as not to confuse the reader completely. Now we understand that this "somewhat greater force" is the pulling force of the movement.

Let us first determine the force of the normal pressure of a moving body on an inclined plane:

Let us leave for convenience and by virtue of habit the sliding friction coefficient, although it partially takes into account Recall that the frictional force consists of two forces: lifting and resistance. In our case, the resistance force is regarded as a friction force:

In the future, when we learn to operate fairly freely with gravitational flows, science will reject the coefficient of friction because of its uselessness. The thrust force has two components of the force - balance and motion:

Consider carefully how the body moves under the influence of gravitational forces, which should convince everyone of the correctness of the conclusions given. Let us look again at the element of the crystal lattice of the rocket (Figure 38) . Here we see how a curved horizontal skipping rope, when lowered downwards, rests on a denser gravity flow from the combustion chamber and presses through its supports ("Hydrogen cubes") onto vertical ropes, pushing them forward - upwards. In a state of equilibrium, the gravitational flow of the Earth bends the horizontal skipping ropes of the upper half of the rocket lattice toward the combustion chamber, and the gravitational flow of the combustion chamber curves the horizontal ropes of the lower half of the lattice toward its nose. To start the rocket, it is necessary to compact the gravitational flow of the combustion chamber, burning more fuel. Sealing the flow will result in a stronger bending of the horizontal skipping ropes of the tail part of the rocket and a stronger advance - upwards of its vertical skipping rope. The conditional plane of flow along the sides of the rocket of gravitational flows will move upwards towards its nose. What was the reason for the shift of the conditional plane of flow outflow? If in the state of equilibrium we had two parts of the body opposing each other, then during the movement the body was divided into three parts, in which the two parts counterbalance each other, and the third is, as it were, free and under the action of the energy flow through its crystal lattice creates the motion of the rocket .

Let's sum up: the main conclusion is that the movement of the body is possible only in the presence of a gravitational flow through its crystal lattice, from which its concave ropes repel. The gravitational flow is the support from which the lattice of the body is repelled in the direction of the flow. The crystal lattice of the body in the temporary absolute emptiness has no support for repulsion, and for this reason the bodies in it can not move.

What is the practical value in such a seemingly purely theoretical question? If the rocket nose is made of a material with a lattice close to the size of the lithium lattice, then two problems will be solved: the first - the resistance to the gravitational flow of the Earth will practically disappear - it can not pass through the rocket, and almost all the thrust of the engine will be spent on the payload; The second - cosmonauts will cease to feel the overload - it will almost not be. A new worldview will allow us to design a completely new way for space vehicles and launch vehicles.

We return to the uniformly moving bar on the inclined plane and the tractive force applied at an angle to the direction of motion. Work will be equal in the old interpretation (clarification of the concept of work will be done in the section "Power" )

As in the case of the rocket, Consists of two forces. Work to conserve energy, i.e. Forces, is produced basically everything and with the help of the energy mass. In this particular case, only a small part of the directed gravitational flows reaches the necessary density to form structured energy carriers, and the remaining part of the energy flows is preserved in increasing the excitation of the crystal lattice of the body and gases of the atmosphere, i.e. In their heating.

print version
Author: Valerii Fedorovich Andrus
PS The material is protected.
Date of publication 06.08.2004гг


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