量子力学与量子化学中的隐藏最优原理

Edward Jiménez
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引用次数: 1

摘要

量子力学公理是对称层(量子客体和人的主体)之间微观协同平衡的结果。另一方面,我们引入希尔伯特空间中的纳什均衡m,它具有两个特征:它是一个不动点,它使效用函数最大化。此外,进化算子和自伴随算子具有有趣的性质,使我们能够研究进化博弈论中的稳态。在此基础上,提出了基于复杂系统语言的合作博弈。合作的概念在博弈论中很重要,但有些微妙。“合作”一词的意思是“为了共同的目的而一起行动”。激励相容相当于协同原理,自然出现(增加或增加效用,等(34))。最后,相关结果不仅证明了量子力学、量子化学的主要定理及其在盐水中的应用,而且解决了以隧道作用为主要作用的氢键网络是否存在等主要问题。,合作和熵对水簇平衡有何影响? ?盐(ClNa) p能否在光催化中发挥诺贝尔作用?答案是:隧道效应在咸水中是可能的而在水中则不可能,因为ClNa、可见光或电的激励产生催化或光催化作用。此外,如果氢键网络和水簇大小增加了全局平衡m的复杂性,则隧道效应表现为局部平衡m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hidden Optimal Principle in Quantum Mechanics and Quantum Chemistry
Quantum Mechanic axio ms are the result of the microscopic cooperative equilibriu m among sym metric p layers (quantum object and human subject). On the other hand, we introduce Nash's equilibriu m in Hilbert space, which has two characteristics: it is a fixed point and it maximizes a utility function. Moreover, evolution and selfadjoint operators have interesting properties which allow us to study steady state in Evolutionary Game Theory. Also, we present cooperative games in co mplex systems language.The concept of cooperation is important in game theory but is somewhat subtle. The term cooperate means "to act together, with a common purpose". Incentive compatibility is equivalent to synergy principle, which appears naturally (to add or to multiply utilit ies, ec(34)). Finally, wein the relevant results not only proved the main theorems of Quantum Mechanics, Quantum Chemistry and its applications to salt-water but also we resolved some main questions such us: Do hydrogen-bonded networks, in which tunneling plays an important role, exist?, Ho w cooperation and entropy affect water cluster equilibria?. Can salt (ClNa) p lay an Nobel role in photo-catalysis?. The answers are: tunnel effect it is possible in salt water but not in water, because ClNa, visib le light or electricity incentive to produce catalysis or photo-catalysis. Also, If hydrogen-bonded networks and water cluster size increases complexity of an global equilibriu m, then tunnel effect appears as an local equilibriu m.
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