POLIDENT, a module for generating continuous-energy cross sections from ENDF resonance data
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POLIDENT, a module for generating continuous-energy cross sections from ENDF resonance data

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Published by U.S. Nuclear Regulatory Commission, [Supt. of Docs., U.S. G.P.O., distributor in Washington, DC .
Written in English

Subjects:

  • Cross sections (Nuclear physics) -- Computer programs.,
  • Nuclear reactions -- Computer programs.,
  • Neutron resonance -- Data processing.

Book details:

Edition Notes

Statementprepared by M.E. Dunn, N.M. Greene ; prepared for Division of Systems Analysis and Regulatory Effectiveness, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission.
ContributionsGreene, N. M., Oak Ridge National Laboratory., U.S. Nuclear Regulatory Commission. Division of Systems Analysis and Regulatory Effectiveness.
The Physical Object
FormatMicroform
Paginationxi, 122 p.
Number of Pages122
ID Numbers
Open LibraryOL16003898M

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POLIDENT, a module for generating continuous-energy cross sections from ENDF resonance data (SuDoc Y 3.N /) [Dunn, M. E.] on *FREE* shipping on qualifying offers. POLIDENT, a module for generating continuous-energy cross sections from ENDF resonance data (SuDoc Y 3.N /) Get this from a library! POLIDENT, a module for generating continuous-energy cross sections from ENDF resonance data. [M E Dunn; N M Greene; Oak Ridge National Laboratory.; U.S. Nuclear Regulatory Commission. Division of Systems Analysis and Regulatory Effectiveness.] @article{osti_, title = {The AMPX Operating System for Producing Continuous Energy and Multi-Group Cross Sections from Basic Data Libraries Using the ENDF/B-6 Formats}, author = {Greene, N M}, abstractNote = {AMPX is a modular system of FORTRAN computer programs that relate to nuclear analysis with a primary emphasis on tasks associated with the production and use of POLIDENT (Point Libraries of Data from ENDF/B Tapes) is an AMPX module that accesses the resonance parameters from File 2 of an ENDF/B library and constructs the continuous-energy cross sections

POLIDENT: A Module for Generating Continuous-Energy Cross Sections From ENDF Resonance Data: Dec ML NUREG/CR V Environmentally Assisted Cracking in Light Water Reactors Semiannual Report (July - December ) Nov ML NUREG V18 POLIDENT: A Module for Generating Continuous-Energy Cross Sections From ENDF Resonance Data: NUREG/CR Hydrologic Uncertainty Assessment for Decommissioning Sites: Hypothetical Test Case Applications: NUREG/CR LAPUR Verification and User's Manual: NUREG/CR Development of Probabilistic RESRAD and RESRAD-BUILD   Fluorine 19 F Evaluation The resonance parameters for 19 F were obtained from a sequential SAMMY analysis of the experimental neutron transmission data, capture cross sections, and inelastic cross sections in the resolved energy region up to 1 MeV [13]. 19 F has two inelastic channels which are opening at the energies keV with spin 1/2 Parallelization in SCALE Continuous-Energy Resonance Module GEMINEWTRN and Transport Module NEWT. The Implementation of a 3D Characteristics Solver for the Generation of Incremental Cross Sections for Reactivity Devices in a CANDU Reactor A Computer Code for Uncertainty Propagation in Time-Of-Flight Cross Section Data. Bastian, C :CN/Multi-Physics-Coupled-Code-Reactor.

  Since resonance self-shielded cross sections are independently estimated, they are independent of the PW weighting function. In reality, because the current MPACT procedure only includes resonance data for the specified energy groups, self-shielded cross sections of nonresonance groups should be dependent on the weighting :// N. M. Greene's 52 research works with 2, citations and 2, reads, including: Generation and Testing of the ENDF/B-VI Continuous-Energy Cross-Section Library for Use with Continuous-Energy Perspectives on Nuclear Data fo - OECD OCDE код для вставки AVAILABILITY OF REFERENCE MATERIALS IN NRC PUBLICATIONS NRC Reference Material As of November , you may electronically access NUREG-series publications and other NRC records a://metadc/m2/1/high_res_d/pdf.