Enroll Info: None — HIGH PERFORMANCE COMPUTING FOR APPLICATIONS IN ENGINEERING 3 credits.An overview of hardware and software solutions that enable the use of advanced computing in tackling computationally intensive Engineering problems.
Counts toward the Natural Sci req Level - Intermediate L&S Credit - Counts as Liberal Arts and Science credit in L&S Grad 50% - Counts toward 50% graduate coursework requirement Breadth - Physical Sci.
Counts toward the Natural Sci req Level - Intermediate L&S Credit - Counts as Liberal Arts and Science credit in L&S Grad 50% - Counts toward 50% graduate coursework requirement — CRYOGENICS 3 credits.
Written work modeled on analyses of representative forms. Instruction in traditional manuscript preparation and music notation software. This course provides an applied survey of the string and percussion families. Students will also complete self-evaluations, engage in weekly individual supervision, and explore program development.
Beginning class guitar group instruction for non-music majors. Includes an introduction to the treatment process, writing goals and objectives, and documentation procedures. Emphasis on playing and singing popular music with stylistic accuracy.
An introduction to the conduct of engineering research: the scientific method, ethics in research, documentation and treatment of research data, publication practices, and the structure of the broader research community are covered.
Enroll Info: Open to EP majors only — RESEARCH PROPOSAL IN ENGINEERING PHYSICS 1 credit.
Hands-on learning promoted through programming assignments that leverage emerging hardware architectures and use parallel computing programming languages.
Students are strongly encourage to have completed COMP SCI 367 or COMP SCI 400 or to have equivalent experience. Topics defining modern vacuum technology, including the kinetic theory of gases, conductance, pumping systems, pump technologies, pressure measurement, gas-surface interactions, sealing technologies, leak detection, and residual gas analysis will be addressed through a combination of lectures, laboratory activities, problem solving, and group discussions.
Use of computational tools for the solution of problems encountered in engineering physics applications.
Topics covered include orbital mechanics, structural vibrations, beam and plate deformations, heat transfer, neutron diffusion, and criticality.
Comments P.E.P Coursework Introduction
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