Universal Concept of Complexity by the Dynamic Redundance Paradigm: Causal Randomness, Complete Wave Mechanics, and the Ultimate Unification of Knowledge |
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Contents
Extended Abstract 13 | 9 |
To the Reader | 19 |
The End | 29 |
Dynamical chaos and complexity in Hamiltonian | 37 |
Quantum chaos in Hamiltonian systems with periodic perturbation | 58 |
Dynamic uncertainty and fractal structure of quantum chaos | 76 |
Discussion | 82 |
Fundamental multivaluedness nonintegrability completeness | 92 |
Particle coordinate measurement | 131 |
A scheme of the complete causal wave | 146 |
Quantum field mechanics as the unified complexdynamical extension | 157 |
Conclusion | 266 |
Universal Science of Complexity and the Ultimate Unification of Knowledge | 275 |
Fundamental arborescence of complexity | 330 |
Conclusion | 510 |
Revolution of complexity and possible ways of development | 517 |
Auxiliaries for the effective dynamical function formalism | 101 |
Incompleteness of quantum mechanics and its involvement with chaos | 107 |
Causal indeterminism | 114 |
The Beginning | 531 |
Common terms and phrases
actually already analysis appearance approach basic becomes behaviour canonical causal chaos chaotic character characteristic classical complex dynamics concept considered consistent corresponding defined definition dependence described determined direct directly dynamic complexity effective elementary energy equation eventually evident example existence expressed extended fact field formalism fractal function fundamental further generalised gives global gravitational hierarchy higher important interaction internal interpretation intrinsic involved kind knowledge latter leads level of complexity limit linear linear science linear-science manifestations means measurement natural nonlinear Note notion objects observed obtained ordinary origin particle particular physical possible potential practically presented principle probability problem properties provides qualitative quantum mechanics randomness realisations reality reduction redundance regime regular relativity remains represented respect science of complexity seen sense separated shows similar simulation solution space specific structure subsection theory transformation transition universal values various wave whole