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��ࡱ�>��	�����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������Y�	��0��bjbj[�[�	.�9�
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\I��������	�	BBBBB����VVVV��,V����������BDDDDDD/ ��">D�B�����DBB���=MMM��B�B�BM�BMM���������o[������M�.S0��,##M##�##B�P��M�����DDM����������������������������������������������������������������������������##����������	>:			Density and its expansion in Einstein's relativity
Abstract
Expansion and contraction change the state of matter. When a material expands or contracts (at speed, temperature, etc.), we should no longer expect the same in both of them, since they are no longer the same and the measurements are not the correct one in the wrong place.  
Density is a reason for Increase mass at high speed In Einstein's relativity. 
Keywords: Density, Expansion, Mass, Velocity.
Introduction
Mass has three dimensions (Kennedy, 1369). The term "mass" refers to an object that has certain dimensions and limits and is distinct from other objects (ibn al-Haytham). According to Newton, mass is measured by the extent to which an object meets the resistance to change when applied to that force. And Stagnation point implies relaxation and is against movement. It shows the lack of movement in something that has the ability to move (Shirazi, 1368). The object at time t0 is at the place x0 and at time t0 + 1 in the same location x0. (Displacement is equal to zero). To determine the density in Einstein's relationship, First, the factors affecting speed must be determined, Because speed plays the most important role, And the reason is the mass increase.
Gravity 
Gravity is a natural phenomenon in which all objects of mass are absorbed by each other. The effect of gravity on these objects means the effect of absorption of an object of mass on another object of mass. Gravity is one of the four main types of nature interactions or forces along with three other forces: electromagnetism, weak nuclear power and strong nuclear power. Among these forces, gravity is the weakest force.
The gravitational force of the two particles is directly proportional�to the�product�of the�two masses�and inversely proportional to the square of the distance of separation, and according to Newton's gravitational theory, we also have: 

In this equation G is a universal gravitational constant whose value is equal to:  G = 6.67 * 10-11  N.M�/Kg�  
In this relation, F is the magnitude of gravitational force between two masses, m1 and m2, of the masses of the two objects and r is the distance between the two masses.

If a force is applied to an object, it accelerates with a directly proportional to the force applied and is inversely proportional to its mass.  a = f / a
As a result, we will have:  g= Gf. QUOTE  / r2. QUOTE  
With changes in velocity, gravity decreases and with the decreases in velocity the gravity is increased, so gravity is inversely proportional to velocity. And with the increase in velocity, (moving towards the velocity of light), gravity no longer affects it. The case is the same with the light, if gravitational forces affected the light, the light never moved in direct motion, and because of the gravity, it would deviate from its path, and the emission of light was always on the gravitational force.
Weight and its relation to speed
The mass of any object is the intrinsic property of that object, but the weight of the object depends on the mass of the object and the gravity field. Weight is the force brought to the body by gravity due to gravity. Richard, 1999). In other words, the magnitude of force is the mass of an object or m multiplied by the magnitude of the local gravity acceleration (Gat, 1988). W = mg
�Measurement Unit of the weight is considered in international standard unit system or SI Newton. An object with a mass of 1 kg has a weight equal to 8.9 Newton on the earth's surface, and at the moon�s surface it has a weight about one-sixth of its weight on earth, and in a space away from heavenly bodies so that the effect of their gravitational force on the object is about Zero; it can be said that the object is weightless. The case is the same when the velocity is high because there is no gravity in light velocity and even higher than that (g = 0).  QUOTE     = 0                                           
Consequently, velocity is reversely proportional to weight.
Density and its relation with speed
The density is the amount of mass in the unit volume of material (Encyclopedia Growth, 2007). The symbol most often used for density is�� which is obtained from the relation � = m / V
 � is the density, m is the mass of the object and V is the volume occupied  of that  material. 
To explain a specific mass at a point, we consider a small volume around the point and divide the mass into that volume, and take that limit when the volume changes to the epsilon. It is worth mentioning that although the Epsilon is a very small unit, it is larger than the average distance of the object�s molecules (Streeter, Victor).
�������������������������������=m/V                                                m = fa              f= Gm/r2   
��As a result, the density is equal to: � = Gma/Vr2                                                          
Density is directly proportional to gravity; the more the gravity, the more the density, and vice versa. And the density is reversely proportional to the velocity (according to the relation). The more the velocity increases, the less the gravity decreases and vice versa
Pressure and its relation to speed
Pressure�is the� HYPERLINK "https://en.wikipedia.org/wiki/Force" \o "Force" force�applied perpendicular to the surface of an object per unit� HYPERLINK "https://en.wikipedia.org/wiki/Area" \o "Area" area. A Pascal is equal to one newton per square meter (N / m�). When the force F is applied to a given surface A, tension occurs in the components of that surface that compresses the tension components.. If the force applied to a certain surface increases, the pressure will also increase to a higher level. The amount of force applied on a surface is called pressure and is represented by the symbol p. 

The area is proportional to the volume. For example, the volume and area of   the sphere have the following relationship: V = 3Ra
If the area is increased, the volume increases in relation to their relationship, and vice versa. It can be concluded that the density is directly proportional to the pressure; the higher the pressure, the smaller the area, the smaller the volume and the higher the density, and finally the lower the density, the lower the pressure.
Pressure relationship with gravity
Just exchange the relation f = Gm / r2 in the pressure formula.
P = f/A         f= Gm/r2                                 QUOTE              P =Gm/ Ar2            
Pressure is directly proportional to gravity. The higher the gravity is, the greater the pressure will be and vice versa. In velocity beyond the velocity of light, there is no gravity (G = 0), thus velocities beyond the velocity of light there is no force (f = 0) and when there is no force, the pressure is not equal to zero, so: ���� QUOTE   = 0                
Bernoulli's principle also deals with the inverse relationship between velocity and pressure. And he states that in flowing fluid, the increasing flow velocity is synchronous with decreasing pressure; in other words, if the velocity of a fluid increases, the pressure applied on the surface decreases and vice versa.

V the fluid velocity, g acceleration of the earth gravity, h is the desired point s height in the direction of gravity, P is the pressure in the fluid, � is the density of the fluid, and b is a fixed number known as the "Bernoulli constant". It is noteworthy that at light velocities and beyond that, there is no solid state of material, and the Bernoulli�s principle is accurate for non-solid states. Fluid is one of the states of material, including liquids, gases, plasma, and to a certain extent plastic solids or modified solids. Thus, the pressure is inversely proportional to velocity. A velocity as the velocity of light may have a small amount of pressure, but at velocities beyond the velocity of light the pressure is equal to zero.
The relationship between mass and velocity
There is an inverse relationship in all the formulas in which the mass is used:
m = f / a               K = MV2/2            U = mgh          g = G.f /r2a  
Equivalence of mass and energy
The relationship between mass and energy is formulated by Einstein. E = mc2
In this formula E means the energy of a physical system, m means mass and c is the velocity of light in a vacuum. In this regard, mass is inversely proportional to the velocity.
There is only one formula that states that the mass increases with increasing velocity;
m=m0 / sqrt (1-v^2/c^2)
If C = V, then mass becomes the infinite and for the velocities beyond the velocity of light, the number under the radical will be negative. So, in this relation the high velocity of light is pointless if the velocities above the velocity of light surpass our sight boundary and our vision (whether armed eye or naked eye), while Absence of evidence is not evidence of absence.
When the velocity reaches the velocity of light and beyond that, the pressure, weight, gravity, and density all work together to expand the mass and it turns out to be smaller by converting the mass to the density. Thus, with the increase in velocity the density decreases:
E = mc2                               m = �v                   
The mass is equal to the density that occupies a specific volume.
E = �Vq,2                                         E = �V"x2/" t2                      
The increase in volume causes the mass density to decrease, it becomes dimmer and dimmer to disappear from our sight (its state is changed), and its mass changes to anti-mass. So, if the mass reaches the velocity of light, its mass is reduced to the amount of  E / C2.
For example, how many circles can be drawn with 1mg of ink? The smaller the circle is, the darker it is because it occupies a smaller volume with a certain mass, and the larger the circle becomes, the more it fades and from then on you can�t see any circle at all. But the circle is there, we just do not see it.
It has already been proved that the density is directly proportional to the weight, so when the velocity reaches to the velocity of light, its density becomes small and smaller and the mass becomes lighter and lighter. At a point where velocity reaches the velocity of light, the mass becomes zero (because We no longer see it) and turns to energy, and at higher velocities  the mass is converted to (-m). Which (-m) is the same as an anti-mass or meta-energy, which is not mentioned in Einstein's famous formula.
M -is beyond energy and is called anti-mass or meta- energy.
So the threshold energy is where it is visible to us, and when the energy disappears (it does not get annihilated), it turns to meta-energy or anti-mass. According to the definition of mass, which must have three directions up and down, left and right, and forward and backward, we think that there is no mass any more, and it is equal to zero, but the mass remains constant and only its state is transformed.
Definition of meta-energy (anti-mass): If the mass travels the distance of 299792458 meters in less than one second, it converts to meta-energy.
According to the equation E = mc2, the mass would convert to energy and energy would convert to mass. 
Energy is a rapid flow that if we decrease its velocity and stop it, we will obtain a mass. As the mass of each object is of intrinsic properties, the energy derived from mass and anti-mass (-M) fusion is also unique. It means that from the ball�s anti-mass when stopping, we can obtain ball not any other object. Thus mass is obtained from the energy of anything when stopping, unless there is a change in energy. And the energy and the meta- energy are different depending on the properties (nature) of the rest mass.
The mass appears in its natural and inherent form in the stops and low velocities (jet, plane, etc.). And at velocities equal to the velocity of light become energy and in velocities beyond the velocity of light becomes anti-mass, of light, each in their own intrinsic and unique form.
Conversion to energy occurs instantaneously (the speed is so high), but conversion to mass needs a lot of time (because the velocity decreases with negative acceleration). So mass and energy arrive at equilibrium at one point, and that's where the time spent for each twins in Einstein's relativity is equal. The mass only exists when its velocity is less than the velocity of light. Otherwise mass does not mean, and at velocities equal to the velocity of light, the mass is in the form of energy and velocities beyond the velocity of light in the form of a superconductive or anti-mass.
 +  Expansion, , , , , , , , 
Expansion denotes extensive and continuous (Dehkhoda's dictionary). The increase in the volume of a mass without increasing the amount of mass is called expansion. Or a density in which the volume increases without changing the mass. The expansion of the universe is faster than the velocity of light, which for newcomers and sometimes professional physicists is confusing, and puzzling (Tamara M. Davis and Charles). Expansion of the universe is a fact that has long been proven. Expansion shows that the mass neither annihilate nor becomes larger, but its density decreases and changes its state. Expansion implies enlargement on a very large scale for all objects, time and space. This means that the clock also expands, and the oscillation of the cesium atom expands. The cesium atom -133 in one second in the ground state oscillates at 9, 192, 631, 770 times. When expanding, the atomic cesium 9, 192, 631, 770 times per second oscillates. However, the difference of one second for the terrestrial observer and the person who expands to become anti-mass would be several years.
Conclusion
1. Living creatures are able to see objects (armed eye or naked eye) whose velocity is less than or equal to the velocity of light.
2. When the velocity is increased, the density decreases. It is noteworthy that the mass is constant and always stays constant unless a part of it or all of it is annihilated by a force. When the velocity reaches the velocity of light, we are not able to see the mass anymore, since according to the rule 1, the mass of the object disappears from our sight, but the mass is there, and it converts into (-m) and based on the definition of physics of its mass and dimensions, We believe that its size decreases as low as E / c2. (But the reality is the change of the state).�And according to the definition of mass, we say that the speed is inversely proportional to the mass.
3. There are no two energies and meta- energies that have the same mass, except both energies and meta- energies are one. Or, in other words, the energy derived from mc2 is unique. It is obvious that E is a mass that is a multiple of second power of the velocity of light.
4. When the velocity of mass reaches the velocity of light, it converts into energy and there is no mass any more, Einstein's mass-energy relation exists, on the contrary if we reduce the velocity of energy, we obtain mass but energy exist no longer. E = mc2       E = �V c2
When the velocity exceeds the velocity of light (even to a slight degree), the energy converts into anti-mass, and the relation is as follows in which velocity mean the velocities higher than the velocity of light.
-M = mv2            -M = �Vv2
The anti-mass is the product of volume, density, and square of the velocity.
- m or meta- energy is an  energy that is no longer comprehensible and measurable for the terrestrial observer (because it is not visible and its velocity exceeds the velocity of light).
5. When the velocity tends to exceed the velocity of light, everything (mass (matter), displacement, and time) expands, consequently the velocity also expands because Velocity is obtained from the displacement to time ratio.
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&Fgd��gd��6. The matter and anti-matter reach at a point of equilibrium, and that point is where the perception of both of them of place and time is the same.
If expansion happens with a positive acceleration at the velocity beyond the velocity of light, the contraction will happen with negative acceleration with the velocity near stagnation.
Maybe the fact is about being meta-energy, and we're imprisoned and captive of stopping.
References
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