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Showing 1 to 6 of 6 for “"nuclear reactor laboratory"”.

  1. Design of a Radiological Environmental Monitoring Program for The University of Illinois Nuclear Reactor Laboratory

    Made available in DSpace on 2017-07-06T18:56:00Z (GMT). No. of bitstreams: 3 Ralston_Jonathan_M_MS.pdf: 61204196 bytes, checksum: de57a99cadb7079332887e3871f58502 (MD5) Ralston_Jonathan_M_MS_ABS.pdf: 548608 bytes, checksum: 906464ee2f5c2656db2f365fe0e1e077 (MD5) license.txt: 4813 bytes, checksum: …

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  2. Wolter mirror microscope : novel neutron focussing and imaging optic

    … of real Wolter mirrors at the MIT Nuclear Reactor Laboratory and compare the tests to simulation predictions.

    mit Repository record for Wolter mirror microscope : novel neutron focussing and imaging optic (opens in a new tab)

  3. Tritium thermal desorption testing of nuclear graphites irradiated at fluoride-salt-cooled high-temperature reactor conditions

    The Fluoride-Salt-Cooled High-Temperature Reactor (FHR) is a next-generation nuclear plant design that combines successfully demonstrated technologies from other advanced reactor concepts such as tristructural isotropic (TRISO) coated particle fuel, molten flibe salt (LiF-BeF2) coolant, and an …

    mit Repository record for Tritium thermal desorption testing of nuclear graphites irradiated at fluoride-salt-cooled high-temperature reactor conditions (opens in a new tab)

  4. Friction pressure drop measurements and flow distribution analysis for LEU conversion study of MIT Research Reactor

    The MIT Nuclear Research Reactor (MITR) is the only research reactor in the United States that utilizes plate-type fuel elements with longitudinal fins to augment heat transfer. Recent studies on the conversion to low-enriched uranium (LEU) fuel at the MITR, together with the supporting thermal …

    mit Repository record for Friction pressure drop measurements and flow distribution analysis for LEU conversion study of MIT Research Reactor (opens in a new tab)

  5. Engineering design of a fission converter-based epithermal beam for neutron capture therapy

    … epithermal neutron beam was developed at the Nuclear Reactor Laboratory of the Massachusetts Institute of Technology. This epithermal beam has the capability of delivering a treatment within minutes with negligible background contamination. This thesis deals with the engineering design of this …

    mit Repository record for Engineering design of a fission converter-based epithermal beam for neutron capture therapy (opens in a new tab)

  6. Neutronic Performance and Thermal Hydraulic Analysis of the MIT Reactor Fission Converter Experimental Facility Using High-Density U-10Mo Low-Enriched Uranium Fuel Elements

    … is a core-driven subcritical assembly at the MIT Nuclear Reactor Laboratory, located on the MIT campus in Cambridge, MA. The assembly is made of eleven partially-depleted MITR-II fuel elements in a separate cooling tank attached to the side of the core-tank graphite reflector. The FC serves to …

    mit Repository record for Neutronic Performance and Thermal Hydraulic Analysis of the MIT Reactor Fission Converter Experimental Facility Using High-Density U-10Mo Low-Enriched Uranium Fuel Elements (opens in a new tab)