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Model of the Pulsing Atom

机译:脉冲原子模型

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摘要

In this work, we reanalyzed the movement of an electron in the electrostatic field of nucleus. The trajectory of the electron’s motion is an ellipse with a minor semiaxis, tending towards zero. From a mathematical point of view the movement of an electron in such an orbit will be equivalent to the oscillation of an electron. The action produced by electrons in movement between stationary points is discrete and proportional to a Planck constant. This condition sets the allowable values of the electron energy and the radius of their orbit. Electrons on the same shell perform symmetric synchronous oscillations. Their frequency is of the order of 1016 Hz. Most of the time the electrons are located on the periphery of the atom, periodically they simultaneously rush to the nucleus, the atom rapidly compresses and immediately decompresses, i.e. pulsates. The model gives Bohr formula for the energy of single-electron atom and suitable values of ionization potentials of the atoms of the second period of the Periodic Table.
机译:在这项工作中,我们重新分析了电子在原子核静电场中的运动。电子运动的轨迹是一个椭圆,其半轴较小,趋向于零。从数学的角度来看,电子在这种轨道上的运动将等同于电子的振荡。电子在固定点之间运动产生的作用是离散的,并且与普朗克常数成比例。该条件设定了电子能量的允许值及其轨道半径。同一壳体上的电子执行对称同步振荡。它们的频率约为1016Hz。大多数时候,电子位于原子的外围,它们周期性地同时冲向原子核,原子迅速压缩并立即解压缩,即脉动。该模型给出了单电子原子的能量的Bohr公式以及元素周期表第二个周期中原子的电离电势的适当值。

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