Preface
Part I?A Version of Quantum Theory Based Upon Theoretical Variables, and
Some Implications
Chapter 1: Basic Theory
Chapter 2: The Bell Experiment
Chapter 3: Quantum Probability and Some Consequences
Chapter 4: Information and Entropy
Chapter 5: Links Towards Relativity Theory
Chapter 6: A First Discussion
Part II?Some Special Aspects of Quantum Field Theory, Quantum Gravity,
Quantum Noise Theory and Quantization of General Dynamical
Systems with Engineering Applications
Chapter 1: Introduction and Connections with Part One
Chapter 2: Weyl Representation, Group Actions, Quantization of Yang-Mills Fields and Gravity
Chapter 3: Quantum Noise in Field Theory, Evolution of Non-Gaussian States, Group Actions on Observables, Quantum Effective Action with
Random Currents
Chapter 4: Symmetry Breaking, Theoretical, Variables in Field Theory, New Approaches to Quantum Gravity
Chapter 5: Perturbed Quantum Newtonian Cosmology, Quantum Measurement
of Gravitons, Quantum Electrodynamics in Curved Space-time Background, Quantum Effective Action for Gravitons, QED in Biomedicine
Chapter 6: Quantum Noisy Fields, Classical and Quantum Physics and Neural Networks, Heat and Mass Transfer in General Relativity.
Chapter 7: Constrained Lagrangians and Hamiltonians, Classical and Quantum Neural Networks, Examples of Inaccessibility, Hawking Radiation, Conditioning in Quantum Mechl!