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Deep solution of the gap between gravity and the typical mass of elementary particles

In this paper, the theory that electromagnetic force is also gravity and gravity is also electromagnetic force is applied to explain the difference between the gravity of elementary particles and their typical masses.

Deep solution of the gap between gravity and the typical mass of elementary particles

Yunnan Group Electrical Instrument Company Huang Qujing (655338)

In this paper, the theory that electromagnetic force is also gravity and gravity is also electromagnetic force is applied to explain the difference between the gravity of elementary particles and their typical masses.

Key words: gravity, universal gravitation, electromagnetic force, mass.

Abstract: This paper applies the theory that electromagnetic force is also gravity, and gravity is also electromagnetic force to explain the gravity of basic particles and its typical mass gap.

Key words: gravity, attraction, electromagnetic force, mass.

I. Overview: On the earth, the gravity of the earth to an object is equal to the gravity of the object, namely:

F = m g

Second, the experiment:

1. Use various voltmeters to measure the voltage between any two objects, or between objects and the earth, with the voltage reading range of 0.05-0.7V Measure the voltage between the same objects. As long as its internal resistance is greater than a certain value (such as 500 ohms), the voltmeter will measure the voltage between two points of this object. That is to say, there is electromagnetic force between any two objects and between two points of the objects.

Measuring the voltage on the wall of the house found that there were equal voltages at equal distances. Fix the metal sheet on the insulated rope at equal distance and measure the voltage between the equal parts. It is found that the voltages between the equal parts are equal.

2. Use a permanent magnet and a small iron piece to detect whether any object contains magnetic elements in the magnetic field. Put the object between the permanent magnet and the small iron piece, move the permanent magnet and see if the small iron piece moves with the permanent magnet. As a result, the small iron piece moves with the magnet. Explain that any object contains magnetic elements.

Both the universe and the earth are big magnetic fields. In the magnetic field, objects must contain magnetic elements, so they must be influenced by the electromagnetic force of the earth. The farther away from the earth, the thinner the magnetic field lines and the smaller the electromagnetic force. The closer to the earth, the denser the magnetic force and the greater the electromagnetic force.

Three. Department:

It can be seen from the above experiments that any object on the earth is affected by the gravity of the earth. The gravity of the earth is also electromagnetic force, that is, the sum of electric field force and magnetic field force. In a fixed area, electric field force and magnetic field force are linear, that is, electromagnetic force is linear.

Gravity = electromagnetic force

That is f electromagnetic force = m g.

The earth is also a charged body. According to the experimental test, there is a vertical and downward stable electric field on the surface of the earth. The electric field intensity e is about 100 V/m, and the field strength decreases with the increase of height. On sunny days, the electric field intensity of ground accessories is 120v/m, and according to the experimental test, the near-surface atmospheric conductivity σ0 is about 3× 10- 14 Simon /m, which increases with the height. The electric field force is:

Electric field force = q * E

= 100 * q

The magnetism of the earth is one of the physical properties inside the earth. The earth is a big magnet, and a magnetic field is formed around it, that is, a space showing magnetic force, which is called geomagnetic field. The strength of the geomagnetic field is very weak, which is another characteristic of the geomagnetic field. At the strongest poles, the intensity is less than 10-4(T), and the average intensity is about 0.6x 10-4(T), which changes less with place or time, so it is often used as (γ), that is, 10 -9(T).

When the direction of charge movement is parallel to the direction of magnetic field, the Lorentz force on charge is equal to zero; When the direction of charge movement is perpendicular to the direction of magnetic field, the Lorentz force on charge is the largest.

[1] Ma: Gravity, Science (Scientific American Chinese Edition), No.5, 1998.

[2] Ma: Gravity and Generalized Mechanics, All Celestial Bodies, Science (Scientific American Chinese Edition), No.3, 1999.

[3] Ma: Inertia Mechanics and the Whole Scientific System, Science (Scientific American Chinese Edition) magazine, No.7, 2000.

[4] Ma: Right and Wrong of Equivalence Principle, Contemporary Physics World Website-Essays on Physics.

[5] Ma: Is gravity really out of order? Contemporary physical world-essays on physics websites.

[6] Ma: Solve mechanical exercises with the three laws of inertial mechanics. Contemporary physical world-essays on physics websites. ``

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