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Organizations of Unusual Chemical Reactions Under the Influence of Unsteady Impacts

机译:在不稳定的影响的影响下的异常化学反应组织

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The basis of these studies were some general conclusions from the work of M. Faraday, which play a crucial role in the development of ideas about the nature of chemical bonding and the practical application of electrochemical processes. In the 20th century, a huge amount of experimental material was accumulated, confirming the practical significance of M. Faraday's views on the effects of electric current on chemical reactions. 1. Identity of energy manifestations in the interaction of material objects. 2. The discrete nature of the electric current. The concept of the discrete nature of electric current led to the discovery of an electron as a "carrier" of electric energy. The discreteness of the electron flow allows a combination of the parameters of the electric current over a wide range, the shape of the electrical signal, the rate of influence of the flow of electrons on chemical systems, etc. This makes it possible to organize unusual chemical reactions. The provision on the identity of energy manifestations in the interaction of material objects provides the basis for revising the scientific provisions on the mechanism of heat transfer (and, in general, energy exchange) between material objects. Modern science has accumulated a great deal of experimental material, including on the unusual behavior of condensed systems under the influence of various energetic influences, which gives grounds for revising some of the fundamental tenets of physical chemistry and theoretical inorganic chemistry.
机译:这些研究的基础是来自M. Faraday的工作的一般性结论,这在开发关于化学粘合性质的思想和电化学过程的实际应用中发挥着至关重要的作用。在20世纪,积累了大量的实验材料,确认了M.法拉第对电流对化学反应影响的看法。 1.材料物体相互作用中的能量表现形式的特性。 2.电流的离散性。电流离散性质的概念导致电子作为电能的“载体”的发现。电子流的离散允许电流的参数的组合在大范围内,该电信号的形状,对化学系统的电子的流动的影响的速率等,这使得能够组织异常化学反应。材料对象互动中的能源表现形式的规定为修订了关于材料物体之间的传热(以及一般能源交换)的科学规定为基础提供了基础。现代科学积累了大量的实验材料,包括在各种能量影响影响下的凝聚系统的异常行为,这为修改了一些物理化学和理论无机化学的基础原则。

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