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Electromagnetic nature of the nuclear forces and a toroid model of nucleons in atomic nuclei

机译:核力的电磁性质和原子核中核子的环形模型

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In this paper we consider nucleons as tori, rotating with a constant angular velocity around the straight line passing through their mass centre (geometric centre) and perpendicular to their plane of rotation. We theoretically determine the corresponding potential energy and the force of interaction between pairs of nucleons, using our precise analytical formulas for the electrostatic interaction between two spheres with arbitrary radii and charges, which we derive using experimentally obtained results for the radii and the masses of the nucleons. From the values for binding energy found through our method, it follows that nuclear forces are electromagnetic in nature. In terms of magnitude of the force of interaction between proton and neutron, we obtain that Coulomb's forces are short-range. Our toroid model explains the experimental results not only for binding energy, but also for the radius, magnetic moment and the spin of the nuclei of atoms.
机译:在本文中,我们将核子视为托里,以恒定角速度围绕穿过其质心(几何中心)并垂直于其旋转平面的直线旋转。我们使用精确的解析公式,通过任意半径和电荷的两个球体之间的静电相互作用,从理论上确定了相应的势能和成对的核子之间的相互作用力,并使用实验获得的半径和质量的结果得出了该公式。核子。从通过我们的方法得出的结合能的值可以看出,核力本质上是电磁的。根据质子与中子之间相互作用力的大小,我们得出库仑力是短程的。我们的环形模型不仅说明了结合能的实验结果,还说明了半径,磁矩和原子核自旋的实验结果。

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