1st Edition
Theoretical Variables, Quantum Theory, Relativistic Quantum Field Theory, and Quantum Gravity
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 Mechanics
Biography
Inge S. Helland is Professor in the Department of Mathematics at the University of Oslo, Norway
Harish Parthasarathy is Professor in the Electronics and Communication Division at the Netaji Subhas University of Technology in New Delhi, India.






