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EGME 487: Thermal Control of Electronic Packaging--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisites: EGME 407. Fluid mechanics and heat transfer as related to the thermal control of electronic packages of varying sizes. Analysis of individual components, complete, boards, and complete systems is considered. Both liquid and gas cooling mediums are covered. Units: 3
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EGME 487 - Thermal Control of Electronic Packaging--Mechanical Engineering
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EGME 490: Seminar in Engineering--Mechanical Engineering
1.00 Credits
California State University-Fullerton
Description: Prerequisite: senior standing in engineering. The engineering profession, professional ethics, and related topics. May be repeated once for credit with the approval of the department. Units: 1
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EGME 490 - Seminar in Engineering--Mechanical Engineering
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EGME 497: Senior Project--Mechanical Engineering
1.00 - 3.00 Credits
California State University-Fullerton
Description: Prerequisite: Consent of instructor, adviser and department head. Directed independent design project. Units: 1-3
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EGME 497 - Senior Project--Mechanical Engineering
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EGME 499: Independent Study--Mechanical Engineering
1.00 - 3.00 Credits
California State University-Fullerton
Description: Prerequisite: Approval of study plan by adviser and department head. Specialized topics in engineering, selected in consultation with and completed under the supervision of the instructor. May be repeated for credit. Units: 1-3
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EGME 499 - Independent Study--Mechanical Engineering
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EGME 508: Advanced Inviscid Fluid Flow--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisites: EGGN 205 and 308, and EGME 333. Study of two- and three-dimensional potential flow theory. Sources, sinks, vortices, Rankin bodies, free jets, channel flow, air foils. Introduction to computational fluid dynamics. Complex potential and various transformation techniques are used. Units: 3
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EGME 508 - Advanced Inviscid Fluid Flow--Mechanical Engineering
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EGME 511: Advanced Mechanical Vibrations--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 431. Vibrations in rotating and reciprocating machines; noise and vibration in fluid machinery; continuous systems; random vibrations; transient and nonlinear vibration, computer applications. Units: 3
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EGME 511 - Advanced Mechanical Vibrations--Mechanical Engineering
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EGME 512: Advanced Mechanical Design and Management--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 421 or equivalent. Advanced modern mechanisms. Analysis and synthesis of mechanisms. Advanced topics in computer-aided design of mechanical, thermal and fluid systems. Methodology of modern design. Optimization in design. Units: 3
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EGME 512 - Advanced Mechanical Design and Management--Mechanical Engineering
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EGME 516: Advanced Radiation Heat Transfer--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 407. Radiation heat transfer including the study of the geometric factor, black and real systems, and energy transfer in absorbing, scattering and emitting media, and radiation combined with other modes of energy transfer. Units: 3
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EGME 516 - Advanced Radiation Heat Transfer--Mechanical Engineering
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EGME 520: Advanced Viscous Fluid Flow--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 333. The fundamental equations of viscous fluid flow. Viscous drag estimation. Drag reduction methods. Introduction to instability and transition. Units: 3
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EGME 520 - Advanced Viscous Fluid Flow--Mechanical Engineering
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EGME 524: Advanced Thermodynamics--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 304. Equilibrium and stability criteria, third law of thermodynamics, multiple component systems, ionization, equilibrium reaction, lower core "ideal" gases, thermodynamic cycles.Units: 3
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EGME 524 - Advanced Thermodynamics--Mechanical Engineering
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