Description
Book SynopsisDevelopments at the nanoscale are leading to new possibilities and challenges for nuclear applications in areas ranging from medicine to international commerce to atomic power production/waste treatment. Progress in nanotech is helping the nuclear industry slash the cost of energy production. It also continues to improve application reliability and safety measures, which remain a critical concern, especially since the reactor disasters in Japan.
Exploring the new wide-ranging landscape of nuclear function, Atomic Nanoscale Technology in the Nuclear Industry details the breakthroughs in nanoscale applications and methodologies that are revolutionizing power production, biotechnology, and material science.
Developments in atomic nanoscale technology have given us the ability to:
- Use ion beams to Investigate and optimize radiation energy losses at the nanoscopic level
- Assess nanoscopi
Table of Contents
Section I: Atomic Nanoscale Power
Nanoscopic Nuclear Waste Treatment Using Ion Beam Injection in a Drum-Type Container. Lattice Squeezed Nuclear Reaction (LSNR) of a Power Cell for Nanoscopic Investigations Using Ion Beam Injections. Safety Assessment Study in Nanoscopic Circumstances for an Accidental Cooling Loop Failure (ACLF) in a Lunar Nuclear Power Reactor (LNPR). Analysis for Characteristics of Nuclear Spacecraft in a Nanogravity Environment for Deep Space Exploration.
Section II: Atomic Nanoscale Biotechnology
Light Collection Enhancement Analysis for Digital X-Ray Detector Using Gd2O2S:Tb and CsI:Tl Phosphors in Nanoscale Treatment. Measurement Profiles of Nanoscale Ion Beam for Optimized Radiation Energy Losses. Brachytherapy for Nanoscale Cancer Therapy Using Radioisotopes.
Section III: Atomic Nanoscale Material Management
Analysis for Nanotechnology Financial Progression in the Energy Industry Using Systems Thinking Decision Making. Safeguard Assessment of Nanoscale Nuclear Material in Nuclear Power Plant Operations Using the Analytic Hierarchy Process and Production Function. Investigation of Safeguards Management for Operation Security of Nanoscale Nuclear Material in Nuclear Power Plants Using Game Theory.