This book covers all areas of physical science. The contributions by the authors include superluminal signals, quantum electrodynamics, Heisenberg and Schrödinger representations, adiabatic hypothesis, Einstein–Maxwell equations, exact solutions, Kerr–Newman black holes, Newman–Janis algorithm, Mittag-Leffler function, time varying capacity function, convolution operation, Laplace transform, fractional derivative, microstructure, electron, photon, heat, energy, heat capacity, heat balance, losses coefficient, thermal conductivities, photons, quantum electrodynamics, Green's functions, chaotic system, simulation, circuit model, analog circuit implementation, superluminal signals, quantum electrodynamics, excited atoms etc. This book contains various materials suitable for students, researchers and academicians in the field of physical science.
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Superluminal Signals in Quantum Optics
On the Superluminal Signals in Quantum Electrodynamics
Some Simple Applications of the Concept of Superacceleration in the Field of Classical Mechanics
The Bound States of Photon Pairs
A Derivation of the Kerr–Newman Metric Using Ellipsoid Coordinate Transformation
Calorific Power of a Heating Element and Its Application to Measure Thermal Conductivities
Temperature and Elementary Carriers of Heat
Realization and Implementation of Polynomial Chaotic Sun System
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