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A method of estimating electrical conductivity transition of a substance in the superconducting state

机译:一种估计超导状态下物质电导率转变的方法

摘要

FIELD: measurement of conducting values of substance. SUBSTANCE: procedure is realized by determination of macroscopic parameters including coefficients of various types of porosity, water saturation, content of impurities, specific resistance of water, degree of pore tortuosity by laboratory or field and geophysical methods. Procedure takes into account microscopic parameters of substance, which include coefficients of intermolecular porosity, structural parameters of crystalline lattice, specific resistance of electron current (electronic liquid), ratio of areas of photon shells of electrons to section of intermolecular pores, which are determined by physical methods on basis of dimensions of atomic-molecular structure of substance. Conduction is found by design formula that accounts for presence of all possible channels for motion of conduction electrons and ions of salts. EFFECT: generation of authentic information of conduction of entire class of substances transition to superconducting state included. 1 dwg, 9 tbl
机译:领域:测量物质的传导值。物质:通过实验室或现场和地球物理方法确定宏观参数,包括各种孔隙度系数,水饱和度,杂质含量,水的比电阻,孔隙曲折度,来实现该程序。该程序考虑了物质的微观参数,其中包括分子间孔隙率的系数,晶格的结构参数,电子电流(电子液体)的比电阻,电子的光子壳面积与分子间孔的截面之比,由基于物质原子分子结构尺寸的物理方法。通过设计公式可以发现传导,该公式考虑了传导电子和盐离子运动的所有可能通道的存在。效果:包括生成整个类物质的真实传导信息,并转变为超导状态。 1桶,9桶

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