Energy of Corpuscular-Wave Mechanism

G. Korablev
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引用次数: 1

Abstract

On the basis of the first law of thermodynamics, an analysis of the orientation of structural interactions was carried out. In the systems in which the interaction proceeds along the potential gradient (positive work), the resultant potential energy is found based on the principle of adding reciprocals of corresponding energies of subsystems there is a corpuscular mechanism. In the systems in which the interactions proceed against the potential gradient (negative performance) the algebraic addition of their masses, as well as the corresponding energies of subsystems is performed there is a wave mechanism. Act of quantum action expressed via Plank’s constant is narrowed to the energy equilibrium-exchange redistribution between the corpuscular and wave processes, that is demonstrated via the angular vector of such motion. Еnergy characteristics of functional states of bio-systems are defined basically by P-parameter values of atom first valence electron. The principles of stationary biosystem formation are similar to the conditions of wave processes in the phase. Under the condition of the minimum of such interactions, the pathological (but not stationary) biostructures containing the molecular hydrogen can be formed. Keywords— potential gradient, corpuscular-wave dualism, Spatial-energy parameter, biosystems, stationary and pathological states.
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粒子波动机制的能量
根据热力学第一定律,对结构相互作用的取向进行了分析。在相互作用沿势梯度(正功)进行的系统中,根据各子系统相应能量的倒数相加原理求出的结果势能存在微粒机制。在相互作用逆势梯度(负性能)进行的系统中,它们的质量的代数加法以及子系统的相应能量被执行,存在波动机制。通过普朗克常数表达的量子作用行为被缩小到能量平衡-粒子和波过程之间的交换再分配,这是通过这种运动的角矢量来证明的。Еnergy生物系统功能态的特征基本上是由原子第一价电子的p参数值来定义的。静止生物系统形成的原理与相位中波动过程的条件相似。在这种相互作用最小的条件下,可以形成含有氢分子的病理(但不是固定的)生物结构。关键词:电位梯度,微粒波二象性,空间能量参数,生物系统,稳态和病理状态。
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