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????? Destiny Dynamics

AUTHOR Wang, Dekui; Chang, Binggong
PUBLISHER Zhu & Song Press (07/14/2025)
PRODUCT TYPE Paperback (Paperback)

Description

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.

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Product Format
Product Details
ISBN-13: 9781950797660
ISBN-10: 195079766X
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: Chinese
More Product Details
Page Count: 446
Carton Quantity: 18
Product Dimensions: 5.50 x 0.90 x 8.50 inches
Weight: 1.13 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Applied Sciences
Science | Research & Methodology
Science | Philosophy & Social Aspects
Descriptions, Reviews, Etc.
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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.

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