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Monday, October 19, 2020 | History

2 edition of Research on uranium plasmas and their technological applications found in the catalog.

Research on uranium plasmas and their technological applications

Symposium on Research on Uranium Plasmas and Their Technological Applications (1970 Gainesville, Fla.)

Research on uranium plasmas and their technological applications

the proceedings of a symposium held January 7-8, 1970 in Gainesville, Florida

by Symposium on Research on Uranium Plasmas and Their Technological Applications (1970 Gainesville, Fla.)

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  • 8 Currently reading

Published by Scientific and Technical Information Office, National Aeronautics and Space Administration : For sale by the Supt. of Docs., U.S. Govt. Print. Off. in Washington .
Written in English

    Subjects:
  • Plasma rockets -- Congresses.,
  • Fluid fuel reactors -- Congresses.,
  • Plasma (Ionized gases) -- Congresses.,
  • Uranium -- Congresses.

  • Edition Notes

    Statementedited by Karlheinz Thom and Richard T. Schneider.
    SeriesNASA SP -- 236
    ContributionsThom, Karlheinz, Schneider, Richard T., 1927-, University of Florida.
    Classifications
    LC ClassificationsTL783.6 .S93 1970
    The Physical Object
    Paginationxv, 421 p. :
    Number of Pages421
    ID Numbers
    Open LibraryOL18376761M

    Comparison of the effects of enriched uranium and cesium on the behaviour of rats after chronic exposure. Int J Radiat Biol. 83, Lemercier V, Millot X, Ansoborlo E, Menetrier F, Flury-Herard A, Rousselle C and Scherrmann JM, Study of uranium transfer across the blood-brain barrier. Radiat Prot Dosimetry. , T1 - Propagation behavior of uranium plasma from electron beam metal evaporator. AU - Nishio, Ryoji. AU - Suzuki, Kazumichi. PY - /1/1. Y1 - /1/1. N2 - When uranium vapor is generated with an electron beam evaporator, a uranium plasma is formed on the evaporating surface. This plasma rises and expands with the vapor.

    Plasma exists in many forms in nature and has a widespread use in science and technology. It is a special kind of ionized gas and in general consists of: – positively charged ions (‘positive ions’), – electrons, and – neutrals (atoms, molecules, radicals). (Under special conditions, plasma may also contain negative ions. Uranium Processing and Properties describes developments in uranium science, engineering and processing and covers a broad spectrum of topics and applications in which these technologies are harnessed. This book offers the most up-to-date knowledge on emerging nuclear technologies and applications while also covering new and established practices for working with uranium supplies.

      The purpose in writing this book is to give an historical overview of a new challenging field of research, and equip the readers with the mathematical basis of gravitoelectromagnetic theories and their applications to advanced science and s: 2. RF plasma glow discharges are being investigated for removing and recovering radioactive elements from contaminated objects, especially those contaminated with transuranic (TRU) materials. These plasmas, using nitrogen trifluoride as the working gas, have been successful at removing uranium and plutonium contaminants from test coupons of stainless steel and aluminum surfaces, including small.


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Research on uranium plasmas and their technological applications by Symposium on Research on Uranium Plasmas and Their Technological Applications (1970 Gainesville, Fla.) Download PDF EPUB FB2

Research on uranium plasmas and their technological applications | Karlheinz Thom, Richard T. Schneider | download | B–OK. Download books for free. Find books. Get this from a library. Research on uranium plasmas and their technological applications: proceedings of a symposium held Januaryin Gainesville, Florida, and sponsored by the National Aeronautics and Space Administration and the University of Florida.

[Karlheinz Thom; Richard T Schneider; University of Florida.; United States. An illustration of a computer application window Wayback Machine. An illustration of an open book. Books An illustration of two cells of a film strip. Research on Uranium Plasmas and their Technological Applications Item Preview Research on Uranium Plasmas and their Technological Applications by Schneider, R.

T.; Thom, K. Publication. In their paper, released this week in Physics of Plasmas, from AIP Publishing, the authors discovered uranium forms more complex molecules, such as uranium monoxide, uranium dioxide and other.

Fissioning uranium plasmas are the nuclear fuel in conceptual high temperature gaseous core reactors for advanced rocket propulsion in space. A gaseous core nuclear rocket would be a thermal reactor in which an enriched uranium plasma at ab°K temperature is confined in a reflector-moderator cavity where it is nuclear critical and transfers its fission power to a confining propellant Cited by: The mechanisms of formation and dissociation of uranium oxides in laser-produced plasmas (LPPs) are of considerable current interest in a variety of applications, such as nuclear explosion.

@article{osti_, title = {A model of early formation of uranium molecular oxides in laser-ablated plasmas}, author = {Finko, Mikhail S. and Curreli, Davide and Weisz, David G. and Crowhurst, Jonathan C.

and Rose, Timothy P. and Koroglu, Batikan and Radousky, Harry B. and Armstrong, Michael R.}, abstractNote = {Here, in this work, we present a newly constructed UxOy reaction mechanism. Thorium-based nuclear power generation is fueled primarily by the nuclear fission of the isotope uranium produced from the fertile element ing to proponents, a thorium fuel cycle offers several potential advantages over a uranium fuel cycle—including much greater abundance of thorium on Earth, superior physical and nuclear fuel properties, and reduced nuclear waste production.

Laser ablation is an easily accessible method of producing metallic plasmas in reactive, atmospheric environments. The use of laser ablation for the study of uranium plasma chemistry in. Physics of Plasmas is the largest journal in plasma physics publishing in all areas of experimental and theoretical plasma physics.

Subject coverage includes plasma confinement, low-temperature plasmas, high-energy density plasma science, atmospheric plasmas, and nuclear plasma physics. Uranium is the primary fuel for nuclear reactors and must be managed properly, in a safe and sustainable manner.

Recent annual production of natural uranium world-wide has been betw tons of uranium metal, similar to the fuel demand. Additionally, thorium is also being investigated as a potential alternate source of nuclear fuel. Glow plasma nitriding technology is adaptable to the shape of workpieces, and has good prospects for engineering application.

Previous reports about uranium surface nitriding, mostly agreed that nitride formed on uranium surface is α-U 2 N 3 or non-stoichiometric α-U 2 N 3+ x. However, we found that with thickness of nitride layer.

Equally important as sustainable uranium acquisition is the efficient use and management of the uranium. Interest worldwide has increased in the use of small modular reactors (SMRs), thanks to their ability to generate flexible power for a wider range of uses and advantage of SMRs is that — depending on the technology used — less uranium could be required for the same.

Program in Plasma Science and Technology. The Program in Plasma Science and Technology (PPST) is part of the School of Engineering and Applied Science (SEAS). It is sponsored by the Princeton Plasma Physics Laboratory (PPPL) and provides interdisciplinary support to graduate student research in plasma science and technology and their impact on.

Fusion reactor, also called fusion power plant or thermonuclear reactor, a device to produce electrical power from the energy released in a nuclear fusion reaction.

The use of nuclear fusion reactions for electricity generation remains theoretical. Since the s, scientists have known that the Sun and other stars generate their energy by nuclear fusion.

their oxidation accelerates uranium mobilization. SEISMIC METHODS Seismic techniques have had relatively limited utilization, due to their relatively high cost and the difficulty of acquiring and interpreting seismic data in strongly faulted and altered igneous terranes, in mineral assessments and exploration at the deposit scale.

Using GIS technology, multiple sources of data were combined to develop a comprehensive regional genetic model for sandstone-hosted uranium deposits in the Texas Coastal Plain region.

The method of integrating this data at a regional scale and at different intervals of geologic time, led to the identification of tracts that were prospective for. In their paper, released this week in Physics of Plasmas, the authors discovered uranium forms more complex molecules, such as uranium monoxide, uranium dioxide and other, larger combinations, as.

Purchase Uranium and Nuclear Energy: - 1st Edition. Print Book & E-Book. ISBNThe aforementioned applications are likely to fuel the demand for enriched nuclear material over the forecast period.

Enriched uranium is referred to as a type of uranium in which the percentage composition of U isotope has been increased through isotope separation technology.

ment the significant technological developments that took place during the s. The purpose of this present publication is to update and expand the original book.

It includes background information about the principles of the unit operations used in uranium ore processing and summarizes the current state of .2 Progress in Burning Plasma Science and Technology. This chapter describes progress in burning plasma science since the United States joined the International Thermonuclear Experimental Reactor (ITER) partnership by way of international agreement.

1 Since then, experiments using research facilities in the United States and in other nations have been highly productive.Page - The Chemistry of Uranium," National Nuclear Energy Series, Div VIII, Vol. 5, McGraw-Hill Book Co., New York, New York, Appears in 45 books from Reviews: 1.