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Material Properties of Unirradiated Uranium-Molybdenum (U-Mo) Fuel for Research Reactors

This publication presents the material properties of all unirradiated Uranium-Molybdenum (U-Mo) fuel constituents that are essential for;

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Molybdenum-99 for Medical Imaging

The decay product of the medical isotope molybdenum-99 (Mo-99), technetium-99m (Tc-99m), and associated medical isotopes iodine-131 (I-131;

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Medical Isotope Production without Highly Enriched Uranium

imaging procedures in the United States, and secondarily on the use of HEU for research and test reactor fuel. The supply of Mo-99 in the U.S;

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Analyses Supporting Conversion of Research Reactors from High Enriched Uranium Fuel to Low Enriched Uranium Fuel

potentially involved in conversion of research reactors from high enriched uranium (HEU) to low enriched uranium (LEU). The publication contains;

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Thorium Energy for the Future

, including exploration and mining, thermo-physical and chemical properties of fuels, reactor physics, challenges in fuel fabrication, thorium fuel;

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Selenization of Molybdenum as Contact Material in Solar Cells

Understanding of the molybdenum diselenide formation is important for the development of low resistance electrical back contacts for high;

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Reducing the Use of Highly Enriched Uranium in Civilian Research Reactors

The continued presence of highly enriched uranium (HEU) in civilian installations such as research reactors poses a threat to national and;

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Molybdenum

discussed include the electrocatalysis of molybdenum containing substrates for fuel cell applications; morphology-controllable solvothermal;

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Mo-99 Production Analysis of AHR Using MCNP and ORIGEN Computer Code

irradiating U-235 target fission in a nuclear reactor. Mo-99 is also created in the reactor fuel, but is not usually taken. Uranium enrichment;

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Thorium

as nuclear fuels, although this application is quite limited compared with uranium oxide materials. In contrast to the well-known properties;

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Uranium

of power, and provides the fissile material for nuclear weapons. Both uses rely on the ability of uranium to produce a sustained nuclear chain;

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Sustainable and Safe Nuclear Fission Energy

ore mines, uranium conversion and enrichment up to the fabrication of fuel elements for the cores of various types of fission reactors. This;

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Uranium

materials that have been developed for use in nuclear power reactors including uranium. Bulk uranium-based systems are very complex and it;

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Progress, Challenges, and Opportunities for Converting U.S. and Russian Research Reactors

Highly enriched uranium (HEU) is used for two major civilian purposes: as fuel for research reactors and as targets for medical isotope;

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Molybdenum Disulfide

Molybdenum disulfide (MoS2) is a semiconductor which is composed of Mo atoms sandwiched between two layers of hexagonal close packed sulfur;

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Research Reactors for Development of Materials and Fuels for Innovative Nuclear Energy Systems

Presents an overview of research reactor capabilities and capacities in the development of fuels and materials for innovative nuclear;

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Ceramics in Nuclear and Alternative Energy Applications

interest. Recent developments associated with advanced fuel cycles have resulted in new research efforts on nuclear fuel materials. The effects;

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Nuclear Fuel Cycle Science and Engineering

materials mining, enrichment, fuel element design and fabrication for the uranium and thorium nuclear fuel cycle. The impact of nuclear reactor;

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Governing Uranium in the United States

As part of the global Governing Uranium Project headed by the Danish Institute for International Studies (DIIS), the Center for Strategic;

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Complex Oxides: An Introduction

, ternary uranium oxides, magnetic perovskites, non-linear optical materials, complex molybdenum-vanadium bronzes and other complex materials used;

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Superfuel

At the dawn of the atomic age, uranium and thorium were equally important as the elements of choice in researching nuclear energy - either;

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Uranium for Nuclear Power

Uranium for Nuclear Power: Resources, Mining and Transformation to Fuel discusses the nuclear industry and its dependence on a steady;

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Nuclear Fission Reactors (Nuclear Power)

understanding of nuclear power production. Covering such topics as air pollution, thermal pollution, the ultimate availability of uranium, fuel;

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Fuel Processing: For Fuel Cells

an invaluable handbook for chemical, power and process engineers, electrochemists, catalytic chemists, materials scientists and engineers;

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Nuclear Materials

in nuclear fuel alloys for research reactors; the removal of arsenic from ground and surface waters using lanthanides; microstructural;

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