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Method for measuring zero distance constant in universal gravitation law by using experiments

A kind of gravitational, zero-distance technology, applied in educational appliances, teaching models, instruments, etc., can solve problems such as ignorance

Inactive Publication Date: 2022-01-04
马锐
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] But what is the specific value of the zero-distance constant X of the law of universal gravitation, people do not know at present

Method used

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Embodiment 1

[0115] Utilize the method of the zero-distance constant in the law of universal gravitation to measure by experiment of the present invention, A, prepare two objects that mass is respectively m1 and m2, does not need to be weighed to it;

[0116] B. Prepare a device for measuring the gravitational constant;

[0117] C. Using the device for measuring the gravitational constant, measure the gravitational force between two objects with masses m1 and m2 as the size of F1, and measure the distance between the two objects as R1 at the same time, and then change The distance between the two objects is R2, and the gravitational force between the two objects whose masses are respectively m1 and m2 after changing the distance between the two objects to R2 is F2;

[0118] E. According to one of the following formulas of the revised law of gravitation

[0119] f 12 = G m 1 m 2 / (r+X) 2 (twenty one)

[0120] Substituting the secondary measurement results into the above formula, we g...

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Abstract

The invention discloses a method for measuring a zero distance constant in a universal gravitation law by using experiments. The method for measuring the zero distance constant in theuniversal gravitation law by using the experiments comprises the following steps: measuring the magnitude of the universal gravitation F1 between two objects with the masses of m1 and m2 by utilizing a device for measuring the universal gravitation constant, measuring the distance R1 between the two objects, changing the distance R2 between the two objects, and again measuring the magnitude of the universal gravitational force F2 between the two objects with the masses of m1 and m2 after the distance R2 between the two objects is changed . The invention aims to provide the method for measuring the zero distance constant in the universal gravitation law by using the experiments. According to the method, the zero distance constant in the universal gravitation law is obtained; and further a new universal gravitation constant C is obtained according to the zero distance constant, the field intensity of the gravitational field of the electron at the zero radius is calculated, the field intensity of the gravitational field of the black hole at the zero radius is calculated , and the magnitude of universal gravitation when the distance between the pi meson and other hadrons is zero is calculated .

Description

technical field [0001] The invention relates to a method for measuring the zero distance constant in the law of universal gravitation by using experiments. Background technique [0002] The Law of Universal Gravitation was published by Isaac Newton in 1687 in the Mathematical Principles of Natural Philosophy. Newton's universal law of gravitation is expressed as follows: [0003] Any two mass points m 1 、m 2 By the force F in the direction of the connecting line 12 attract each other, the gravitational force F 12 The product of their sizes and their masses m 1 m 2 It is directly proportional to the square of the distance r between them, and has nothing to do with the chemical composition of the two objects and the type of medium between them. [0004] f 12 = G m 1 m 2 / r 2 [0005] There is an obvious flaw in the existing law of universal gravitation, that is, when two mass points m 1 、m 2 When the distance between tends to zero, the gravitational force F 12 w...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G09B23/10
CPCG09B23/10
Inventor 马龙
Owner 马锐