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Tsvetkov P.V. (Ed.) Nuclear Power: Deployment, Operation and Sustainability

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Tsvetkov P.V. (Ed.) Nuclear Power: Deployment, Operation and Sustainability
InTech,Rijeka, Croatia, 2011, 510 pages, ISBN: 978-953-307-474-0
Since its introduction in 1972, X-ray computed tomography (CT) has evolved into an essential diagnostic imaging tool for a continually increasing variety of clinical applications. The goal of this book was not simply to summarize currently available CT imaging techniques but also to provide clinical perspectives, advances in hybrid technologies, new applications other than medicine and an outlook on future developments. Major experts in this growing field contributed to this book, which is geared to radiologists, orthopedic surgeons, engineers, and clinical and basic researchers. We believe that CT scanning is an effective and essential tools in treatment planning, basic understanding of physiology, and and tackling the ever-increasing challenge of diagnosis in our society.
Nuclear Naval Propulsion
Assessment of Deployment Scenarios of New Fuel Cycle Technologies
The Investment Evaluation of Third-Generation Nuclear Power - From the Perspective of Real Options
Characteristic Evaluation and Scenario Study on Fast Reactor Cycle in Japan
Nuclear Proliferation
Ethics of Nuclear Power: How to Understand Sustainability in the Nuclear Debate
Long-Term Operation of VVER Power Plants
A Novel Approach to Spent Fuel Pool Decommissioning
Post-Operational Treatment of Residual Na Coolant in EBR-II Using Carbonation
Carbon Leakage of Nuclear Energy – The Example of Germany
Effects of the Operating Nuclear Power Plant on Marine Ecology and Environment - A Case Study of Daya Bay in China
Microbial Leaching of Uranium Ore
Storage of High Level Nuclear Waste in Geological Disposals: The Mining and the Borehole Approach
Isotopic Uranium and Plutonium Denaturing as an Effective Method for Nuclear Fuel Proliferation Protection in Open and Closed Fuel Cycles
Implementation Strategy of Thorium Nuclear Power in the Context of Global Warming
Thorium Fission and Fission-Fusion Fuel Cycle
New Sustainable Secure Nuclear Industry Based on Thorium Molten-Salt Nuclear Energy Synergetics (THORIMS-NES)
Water Splitting Technologies for Hydrogen Cogeneration from Nuclear Energy
Reformer and Membrane Modules (RMM) for Methane Conversion Powered by a Nuclear Reactor
Hydrogen Output from Catalyzed Radiolysis of Water
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