How Quantum of the Mass, K Box, and Photon Make Light and Matter?

Bahram Kalhor, Farzaneh Mehrparvar, Behnam Kalhor
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引用次数: 2

Abstract

The paper uses the quantum of the mass for obtaining the multidimensional mass-energy equation and compares it with the relativistic energy-momentum equation. We show that the mass and frequency of the particles depend on the counts of the quanta masses in the first dimension while the energy of the particles is equal to the counts of all quanta masses in all dimensions multiplied by k constant. The paper introduces the arrangement of the quanta masses in the multidimensional visual k boxes. The new multidimensional energy-momentum equation shows that by increasing the velocity, the energy of the particle increases, but its equation is different from the relativistic energy-momentum equation. Hence, the kinetic energy equation and total energy of the particles that are used in the past century are not correct.
量子质量、K盒和光子是如何产生光和物质的?
本文利用质量的量子化得到了多维质能方程,并与相对论的能量动量方程进行了比较。我们证明了粒子的质量和频率取决于第一维中量子质量的计数,而粒子的能量等于所有维度中所有量子质量的计数乘以k常数。本文介绍了多维可视k盒中量子质量的排列。新的多维能量-动量方程表明,随着速度的增加,粒子的能量增加,但其方程不同于相对论的能量-动量方程。因此,过去一个世纪使用的粒子动能方程和总能量是不正确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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