Derivation of the coefficient squared probability law in quantum mechanics
Casey Blood

TL;DR
This paper argues that assuming perception probability in quantum mechanics leads, through unitarity, to the coefficient squared law, aligning with experimental results.
Contribution
It provides a theoretical derivation of the coefficient squared probability law based on perception assumptions and unitarity.
Findings
Probability of perception must have the coefficient squared form.
The derivation aligns with experimental observations.
Supports the fundamental role of unitarity in quantum probability.
Abstract
If one assumes there is probability of perception in quantum mechanics, then unitarity dictates that it must have the coefficient squared form, in agreement with experiment.
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Taxonomy
TopicsQuantum Mechanics and Applications · Advanced Thermodynamics and Statistical Mechanics · Quantum Information and Cryptography
