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How to create parametric resonances in atoms of chemical elements of a material

机译:如何在材料化学元素的原子中产生参数共振

摘要

(57) A method and apparatus for generating parametric resonance of energies in atoms of chemical elements of a substance relates to the field of mechanical chemistry. Way Peripheral rotor speed and N 1 is the number of rotations of electrons in the first normal orbit, for any chemical element Where k is the number of grooves in the rotor and N el is the atomic number [m] of the chemical element of the composition of the material—using the rotational exciter at the rotational excitation of the bore orbits in the atoms of the chemical elements in the grand universe. By creating conditions it is based on the excitation of the chemical elements of the composition of the substance. The method comprises feeding the material into the inner cavity of the rotor and releasing the treated material after passing it through the grooves 4 evenly distributed over the peripheral surface. The apparatus comprises a housing comprising a base 1 and a side wall, the inner space of the housing being in the form of separate grooves 4 evenly located relative to the outer surface of the rotor, the peripheral annular wall 8, the input ( 5) and output 6 branch pipes. The outer radius of the rotor R el1 is the radius of the first normal orbit of the grand universe with respect to the electrons of the chemical element N el is the atomic number of the chemical element, k is the number of grooves in the rotor, and the number of grooves in the rotor is the formula Calculated from and selected from the nearest integer value, n 1 is the number of rotations of electrons in the first normal orbit of the grand universe for any chemical element Where n is the number of revolutions and the radial groove width is Determined by The proposed method and apparatus provide parametric resonances to the atoms of the chemical elements of the composition between the energy of De Broy's "stationary waves" and the electromagnetic energy of the corresponding bore orbits in the grand universe conditions.
机译:(57)一种用于产生物质的化学元素的原子中的能量的参数共振的方法和设备,涉及机械化学领域。方式外围转子速度和N 1 是任何化学元素的第一个法向轨道中电子的旋转数,其中k是转子中的沟槽数,N el 是材料成分中化学元素的原子序数[m]-在大宇宙中化学元素原子中的孔道旋转激发时使用旋转激励器。通过创造条件,它是基于物质组成的化学元素的激发。该方法包括将材料供给到转子的内腔中并且在使处理过的材料通过均匀地分布在外周表面上的凹槽4之后释放处理过的材料。该设备包括壳体,该壳体包括基座1和侧壁,壳体的内部空间为相对于转子的外表面均匀分布的单独的凹槽4,外围环形壁8,输入端(5)并输出6条支管。转子R el1 的外半径是大宇宙的第一个法线轨道相对于化学元素电子N的半径N el 是原子的原子序数化学元素,k是转子中的沟槽数量,转子中的沟槽数量是根据最接近的整数值计算得出的公式,n 1 是对于任何化学元素,大宇宙的第一个法线轨道中的电子,其中n是转数,径向槽宽度由下式确定。所提出的方法和装置对能量之间的成分的化学元素原子提供参数共振布罗伊的“平稳波”和相应的孔轨道在大宇宙条件下的电磁能的变化。

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