????? Destiny Dynamics

Destiny is a macroscopic quantum phenomenon, determined by the destiny wave function.

The destiny wave function is a function that describes the state of a macroscopic system in macroscopic quantum mechanics. In classical mechanics, the position and momentum (or velocity) of a particle are used to describe the state of a macroscopic particle. This is the classical way of describing the state of a particle, which highlights the particle nature of the particle. Since macroscopic destiny has the dual nature of wave and particle, the position and momentum of destiny cannot have definite values at the same time (see uncertainty relation), so the classical way of describing the state of destiny is not applicable to the description of the state of destiny. The destiny wave is expressed as the expectation value of the probability wave function at the macroscopic scale.

命运是宏观量子学现象,由命运波函数决定。

命运波函数,是宏观量子力学中描写宏观系统状态的函数。在经典力学中,用质点的位置和动量 (或速度)来描写宏观质点的状态,这是质点状态的经典描述方式,它突出了质点的粒子性。由于宏观命运具有波粒二象性,命运的位置和动量不能同时有确定值(见 测不准关系 ),因而命运状态的经典描述方式不适用于对命运状态的描述,命运波于宏观尺度下表现为对几率波函数的期望值。

1147857778
????? Destiny Dynamics

Destiny is a macroscopic quantum phenomenon, determined by the destiny wave function.

The destiny wave function is a function that describes the state of a macroscopic system in macroscopic quantum mechanics. In classical mechanics, the position and momentum (or velocity) of a particle are used to describe the state of a macroscopic particle. This is the classical way of describing the state of a particle, which highlights the particle nature of the particle. Since macroscopic destiny has the dual nature of wave and particle, the position and momentum of destiny cannot have definite values at the same time (see uncertainty relation), so the classical way of describing the state of destiny is not applicable to the description of the state of destiny. The destiny wave is expressed as the expectation value of the probability wave function at the macroscopic scale.

命运是宏观量子学现象,由命运波函数决定。

命运波函数,是宏观量子力学中描写宏观系统状态的函数。在经典力学中,用质点的位置和动量 (或速度)来描写宏观质点的状态,这是质点状态的经典描述方式,它突出了质点的粒子性。由于宏观命运具有波粒二象性,命运的位置和动量不能同时有确定值(见 测不准关系 ),因而命运状态的经典描述方式不适用于对命运状态的描述,命运波于宏观尺度下表现为对几率波函数的期望值。

19.99 In Stock
????? Destiny Dynamics

????? Destiny Dynamics

by Binggong Chang, Dekui Wang
????? Destiny Dynamics

????? Destiny Dynamics

by Binggong Chang, Dekui Wang

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Overview

Destiny is a macroscopic quantum phenomenon, determined by the destiny wave function.

The destiny wave function is a function that describes the state of a macroscopic system in macroscopic quantum mechanics. In classical mechanics, the position and momentum (or velocity) of a particle are used to describe the state of a macroscopic particle. This is the classical way of describing the state of a particle, which highlights the particle nature of the particle. Since macroscopic destiny has the dual nature of wave and particle, the position and momentum of destiny cannot have definite values at the same time (see uncertainty relation), so the classical way of describing the state of destiny is not applicable to the description of the state of destiny. The destiny wave is expressed as the expectation value of the probability wave function at the macroscopic scale.

命运是宏观量子学现象,由命运波函数决定。

命运波函数,是宏观量子力学中描写宏观系统状态的函数。在经典力学中,用质点的位置和动量 (或速度)来描写宏观质点的状态,这是质点状态的经典描述方式,它突出了质点的粒子性。由于宏观命运具有波粒二象性,命运的位置和动量不能同时有确定值(见 测不准关系 ),因而命运状态的经典描述方式不适用于对命运状态的描述,命运波于宏观尺度下表现为对几率波函数的期望值。


Product Details

ISBN-13: 9781950797677
Publisher: Zhu & Song Press
Publication date: 07/14/2025
Sold by: Barnes & Noble
Format: eBook
Pages: 446
File size: 490 KB
Language: Chinese

About the Author

Binggong Chang常炳功是美国纽约州立大学州南部医学中心神经病学和神经生理药理学系研究人员,长期从事神经退行性疾病与中枢神经系统生物标记实验室的研究工作。主要学术方向包括神经科学、神经药理学,以及跨学科的物理学理论创新,尤其以"时空阶梯理论"著称。近年来,常炳功将物理学、医学与人类文明起源等领域结合,发表多篇关于时空阶梯理论、量子物理与文明起源的论文,推动了相关学科的交叉发展。
Dekui Wang王德奎先生是中国著名的理论物理学家,三旋理论的创立者。他在欧几里得点的定义基础上,提出并补充了三条公设:圈比点更基本物质存在有向自己内部作运动的空间属性。他将"圈"的三种旋转(体旋、面旋、线旋)视为几何空间的自然属性,建立了自己的三旋理论公理化体系。这一理论不仅强调"圈"在物质结构中的基础地位,还用以解释微观与宏观物理现象,认为组成万物最基本的客体是一维的圈(即闭合的弦、弦圈),并将"弦"的观念的提出时间追溯到西方弦理论成型之前。三旋理论的主要贡献与学术成就:理论创新:三旋理论不仅吸收了超弦理论的思想,还提出了三旋(体旋、面旋、线旋)作为粒子内禀属性,认为这些旋转决定了物性的本质。物理学突破:三旋理论对物理学中的弦理论难题、量子信息、量子纠缠、非定域性等问题提出了新的解释框架。学科交叉:该理论不仅应用于基础物理学,还延伸到量子信息学、量子计算机、甚至心理学领域。国际影响:三旋理论被认为在某些方面超越了西方弦理论家的视野,在国内外学术界产生了积极影响。
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