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基本粒子领域中宇称的不守恒以及ATP分子能量传递的一种可能机制。

The non-conservation of parity in the domain of elementary particles and a possible mechanism for the delivery of energy from the ATP molecule.

作者信息

Portelli C

出版信息

Physiologie. 1986 Jan-Mar;23(1):65-8.

PMID:3083443
Abstract

A model is presented for the delivery of energy from the ATP molecule. The mode indicates the development of the following stages: a) A water molecule is fixed at the level of the high energy bond, b) The electronic cloud of the (PIII----OII) covalent bond turns around the nucleus of the oxygen (OII) atom. Subsequently, the phosphorus atom is left out from the covalent bond and the proton of the water molecule is included in a new covalent bond. c) The proton moves from 1.76 A to 0.97 A internuclear distances. The internuclear energy diminishes and the difference in energy is transmitted to an electron of the covalent bond, which presents a suitable spin and direction of motion to receive it. The symmetry in mirror is not conserved in this process. The symmetrical in the mirror corresponding to this process can exist only in antimatter.

摘要

提出了一种关于ATP分子能量传递的模型。该模型表明了以下阶段的发展:a)一个水分子固定在高能键水平;b)(PIII----OII)共价键的电子云围绕氧(OII)原子的原子核旋转。随后,磷原子从共价键中脱离,水分子的质子包含在一个新的共价键中。c)质子从核间距1.76埃移动到0.97埃。核间能量减少,能量差传递给共价键的一个电子,该电子具有合适的自旋和运动方向来接收它。在这个过程中镜面对称性不守恒。对应于此过程的镜面对称性只能存在于反物质中。

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