22.106 Neutron Interactions and Applications, Spring 2005

This course is a foundational study of the effects of single and multiple interactions on neutron distributions and their applications to problems across the Nuclear Engineering department - fission, fusion, and RST. Particle simulation methods are introduced to deal with complex processes that cann...

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Main Author: Yip, Sidney
Language:en-US
Published: 2005
Subjects:
Online Access:http://hdl.handle.net/1721.1/71172
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author Yip, Sidney
author_facet Yip, Sidney
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description This course is a foundational study of the effects of single and multiple interactions on neutron distributions and their applications to problems across the Nuclear Engineering department - fission, fusion, and RST. Particle simulation methods are introduced to deal with complex processes that cannot be studied only experimentally or by numerical solutions of equations. Treatment will emphasize basic concepts and understanding, as well as showing the underlying scientific connections with current research areas.
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spelling mit-1721.1/711722019-09-12T17:23:50Z 22.106 Neutron Interactions and Applications, Spring 2005 Neutron Interactions and Applications Yip, Sidney Neutron Interaction Neutron Elastic Scattering: Thermal Motion Chemical Binding Effects Particle Simulations I Monte Carlo Basics Monte Carlo in Statistical Physics and Radiation Transport The Neutron Transport Equation Neutron Slowing Down Neutron Diffusion Particle Simulation Methods Basic Molecular Dynamics Direct Simulation of Melting Multiscale Materials Modeling Thermal Neutron Scattering Dynamic Structure Factor in Neutron Inelastic Scattering This course is a foundational study of the effects of single and multiple interactions on neutron distributions and their applications to problems across the Nuclear Engineering department - fission, fusion, and RST. Particle simulation methods are introduced to deal with complex processes that cannot be studied only experimentally or by numerical solutions of equations. Treatment will emphasize basic concepts and understanding, as well as showing the underlying scientific connections with current research areas. 2005-06 22.106-Spring2005 local: 22.106 local: IMSCP-MD5-f50f2ef2544cffc7430f45febf612438 http://hdl.handle.net/1721.1/71172 en-US Usage Restrictions: This site (c) Massachusetts Institute of Technology 2012. Content within individual courses is (c) by the individual authors unless otherwise noted. The Massachusetts Institute of Technology is providing this Work (as defined below) under the terms of this Creative Commons public license ("CCPL" or "license") unless otherwise noted. The Work is protected by copyright and/or other applicable law. Any use of the work other than as authorized under this license is prohibited. By exercising any of the rights to the Work provided here, You (as defined below) accept and agree to be bound by the terms of this license. The Licensor, the Massachusetts Institute of Technology, grants You the rights contained here in consideration of Your acceptance of such terms and conditions. text/html Spring 2005
spellingShingle Neutron Interaction
Neutron Elastic Scattering: Thermal Motion
Chemical Binding Effects
Particle Simulations I
Monte Carlo Basics Monte Carlo in Statistical Physics and Radiation Transport
The Neutron Transport Equation
Neutron Slowing Down
Neutron Diffusion
Particle Simulation Methods
Basic Molecular Dynamics
Direct Simulation of Melting
Multiscale Materials Modeling
Thermal Neutron Scattering
Dynamic Structure Factor in Neutron Inelastic Scattering
Yip, Sidney
22.106 Neutron Interactions and Applications, Spring 2005
title 22.106 Neutron Interactions and Applications, Spring 2005
title_full 22.106 Neutron Interactions and Applications, Spring 2005
title_fullStr 22.106 Neutron Interactions and Applications, Spring 2005
title_full_unstemmed 22.106 Neutron Interactions and Applications, Spring 2005
title_short 22.106 Neutron Interactions and Applications, Spring 2005
title_sort 22 106 neutron interactions and applications spring 2005
topic Neutron Interaction
Neutron Elastic Scattering: Thermal Motion
Chemical Binding Effects
Particle Simulations I
Monte Carlo Basics Monte Carlo in Statistical Physics and Radiation Transport
The Neutron Transport Equation
Neutron Slowing Down
Neutron Diffusion
Particle Simulation Methods
Basic Molecular Dynamics
Direct Simulation of Melting
Multiscale Materials Modeling
Thermal Neutron Scattering
Dynamic Structure Factor in Neutron Inelastic Scattering
url http://hdl.handle.net/1721.1/71172
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