Group Theoretical Foundations of Quantum Mechanics: Difference between revisions
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Quantum mechanics, its properties including wavefunctions, complex numbers and uncertainty, are necessary and completely reasonable and understandable, with no weirdness. Classical physics is impossible. Much uncertainty comes from Fourier analysis. Waves and particles and collapse of wavefunctions are meaningless. Their seeming appearance in analyzed. Reasons and limitations of superposition are considered. Gravitation is an example of nonlinearity. All objects interact so nonlinearity is universal. How quantum mechanics then fits in is shown. Dirac | Quantum mechanics, its properties including wavefunctions, complex numbers and uncertainty, are necessary and completely reasonable and understandable, with no weirdness. Classical physics is impossible. Much uncertainty comes from Fourier analysis. Waves and particles and collapse of wavefunctions are meaningless. Their seeming appearance in analyzed. Reasons and limitations of superposition are considered. Gravitation is an example of nonlinearity. All objects interact so nonlinearity is universal. How quantum mechanics then fits in is shown. Dirac's equation comes from Poincar? group. Physics is necessarily impossible in any space but that with dimension 3+1. Spin-statistics is a property of rotation groups. | ||
==Links to Purchase Book== | ==Links to Purchase Book== | ||
* | * [http://www.amazon.com/Group-Theoretical-Foundations-Quantum-Mechanics/dp/059534125X/ref=pd_bxgy_b_text_b Group Theoretical Foundations of Quantum Mechanics][[Category:Book|group theoretical foundations quantum mechanics]] | ||
[[Category:Gravity|group theoretical foundations quantum mechanics]] | [[Category:Gravity|group theoretical foundations quantum mechanics]] | ||
[[Category:Quantum Theory]] | |||
Latest revision as of 09:04, 22 July 2026
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| Author | Ronald Mirman |
|---|---|
| Published | 2005 |
| Publisher | Backinprint.com |
| Pages | 280 |
| ISBN | 059534125X |
Quantum mechanics, its properties including wavefunctions, complex numbers and uncertainty, are necessary and completely reasonable and understandable, with no weirdness. Classical physics is impossible. Much uncertainty comes from Fourier analysis. Waves and particles and collapse of wavefunctions are meaningless. Their seeming appearance in analyzed. Reasons and limitations of superposition are considered. Gravitation is an example of nonlinearity. All objects interact so nonlinearity is universal. How quantum mechanics then fits in is shown. Dirac's equation comes from Poincar? group. Physics is necessarily impossible in any space but that with dimension 3+1. Spin-statistics is a property of rotation groups.
