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EGME 526: Advanced Convective Heat Transfer--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 407. Convective heat transfer; heat transfer in external and internal flow fields for both laminar and turbulent fluid flow, applications. Units: 3
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EGME 526 - Advanced Convective Heat Transfer--Mechanical Engineering
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EGME 530: Advanced Strength of Materials--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 421. Energy methods. Castilian's theorem. Curved beams, beams on elastic supports, thick wall cylinders, shrink fits, localized stress, column instability, failure theories, bearings. Units: 3
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EGME 530 - Advanced Strength of Materials--Mechanical Engineering
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EGME 536: Advanced Conduction Heat Transfer--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 407. Conduction heat transfer; Bessel and Legendre functions, Fourier series solutions, heat sources and sinks, multidimensional problems, transient systems and numerical methods (finite difference and finite element methods). Units: 3
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EGME 536 - Advanced Conduction Heat Transfer--Mechanical Engineering
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EGME 538: Advanced Engineering Analysis--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisites: EGME 438. Partial differential equations in engineering, numerical techniques, integral equations, engineering applications. Units: 3
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EGME 538 - Advanced Engineering Analysis--Mechanical Engineering
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EGME 540: Computer Applications In Engineering Design--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 410. Computers and microprocessors in engineering design. Design methodology, modeling and simulation. Geometric modeling. Designoptimization. Expert systems in engineering design. Generalized programs and simulation languages are emphasized. Units: 3
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EGME 540 - Computer Applications In Engineering Design--Mechanical Engineering
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EGME 541: Finite Element Method for Mechanical Engineers--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisites: EGME 410. Matrix formulation of basic equations in steady state and transient heat conduction. Elements and interpolation functions. Non-linear problem formulation. Finite element computer programs in heat transfer, fluid dynamics and design. Units: 3
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EGME 541 - Finite Element Method for Mechanical Engineers--Mechanical Engineering
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EGME 554: Applied Optimal Mechanical Design--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 454 or equivalent. Formulation of design optimization problems in mechanical engineering. Review of mathematical programming methods. Practical aspects of optimization. Design of complex mechanical systems. Individual projects will be assigned to apply optimization techniques to an engineering system or component. Units: 3
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EGME 554 - Applied Optimal Mechanical Design--Mechanical Engineering
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EGME 576: Advanced Dynamics & Control of Mechanical Systems--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: EGME 411. Advanced study of the dynamics and control of mechanical systems including: state space modeling, Lyapunov stability, modern design techniques and case studies. Units: 3
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EGME 576 - Advanced Dynamics & Control of Mechanical Systems--Mechanical Engineering
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EGME 597: Project--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: Consent of Graduate Program Adviser. Units: (1-6)
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EGME 597 - Project--Mechanical Engineering
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EGME 598: Thesis--Mechanical Engineering
3.00 Credits
California State University-Fullerton
Description: Prerequisite: Consent of Graduate Program Adviser. Units: (1-6)
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EGME 598 - Thesis--Mechanical Engineering
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