This book covers the entire spectrum of the science and technology of nuclear reactor systems, from underlying physics, to next generation system applications and beyond.
This revised text covers the fundamentals of thermodynamics required to understand electrical power generation systems and the application of these principles to nuclear reactor power plant systems.
This book delves deeply into the real-world technologies behind the ‘directed energy weapons’ that many believe exist only within the confines of science fiction.
This revised text covers the fundamentals of thermodynamics required to understand electrical power generation systems and the application of these principles to nuclear reactor power plant systems.
This book provides a technical approach to a Business Resilience System with its Risk Atom and Processing Data Point based on fuzzy logic and cloud computation in real time.
This book covers the principles and practices behind the Magnetic Confinement Fusion (MCF) approach to driven new source of energy.
This book covers the basic principles of both fusion and plasma physics, examining their combined application for driving controlled thermonuclear energy.
This book delves deeply into the real-world technologies behind the ‘directed energy weapons’ that many believe exist only within the confines of science fiction.
This book describes recent technological developments in next generation nuclear reactors that have created renewed interest in nuclear process heat for industrial applications.
Written as an introduction to both Plasma Physics and plasma driven fusion technology, both from the Inertial Confinement Fusion (ICF) and Magnetic Confinement Fusion (MCF) point of view, to introduce these technologies using a fast-paced yet simple approach.