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Course Criteria
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0.00 - 3.00 Credits
The design of machine components considering the design process, loads, stress, deflection and stiffness, material properties; failure theories; designing for static strength and fatigue life. A written and oral presentation of the conceptual design of a machine to meet a specified societal need is required. Prerequisites: CVEN 2372, MEEN 3350 Offered: Spring
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3.00 Credits
Physical and mathematical aspects of mechanical, hydraulic, pneumatic, thermal, and electrical systems are introduced. Analysis techniques for modeling the dynamic performance of lumped mass systems are presented and applied using a unified state-space representation. Both formal analytical and extensive computer methods are utilized for the determination of model response. Prerequisite: MATH 3301; Pre or Corequisite: MEEN 3311 Offered: Fall
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0.00 - 3.00 Credits
An overview of simulation-based design, including 3-D parametric solids models and finite element analysis, and its applications in mechanical engineering. Course focuses on the modeling aspects of mechanical systems simulation in static stress and deflection analysis. Prerequisites: MEEN 2302, CVEN 2372 Offered: Spring
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0.00 - 3.00 Credits
An overview of simulation-based design, including 3-D parametric solids models and finite element analysis, and its applications in mechanical engineering. Course focuses on the modeling aspects of mechanical systems simulation in static stress and deflection analysis. Prerequisites: MEEN 2302, CVEN 2372 Offered: Spring
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3.00 Credits
Applications of thermodynamics principle and laws in power generation, propulsion and HVAC are introduced through concepts of vapor power cycles, air standard cycles, properties of gas mixtures, psychrometry, and thermodynamics of chemically reacting systems. Design aspects of engineering thermodynamics are introduced through assignments of open-ended problems and design projects. State -of-the-art software programs are introduced to sove the design problems and projects. Prerequisites: MEEN 2374, MATH 3301 Offered: Fall
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1.00 Credits
Instruction in effective public speaking. Oral and written presentation and discussion of selected topics including those from current literature of fields related to mechanical engineering. Professional activities are encouraged. Offered: Fall
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0.00 - 3.00 Credits
The techniques of integrated systems design are treated. The student is required to utilize these techniques by performing a system design. The formation of teams is facilitated. Instruction in team dynamics is provided. Presentation of intermediate and final results by each team to the class is required followed by peer response. Prerequisites: MEEN courses through third year and Senior standing Offered: Fall
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0.00 - 3.00 Credits
The techniques of integrated systems design are treated. The student is required to utilize these techniques by performing a system design. The formation of teams is facilitated. Instruction in team dynamics is provided. Presentation of intermediate and final results by each team to the class is required followed by peer response. Prerequisites: MEEN courses through third year and Senior standing Offered: Fall
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3.00 Credits
This course deals with different types of energy conversion devices and systems, including conventional heat engines, solar thermal systems, photovoltaic (PV) and future energy systems such as Stirling engines, microturbines, fuel cells, IGCC and hydrogen-based energy systems. The course also introduces the theoretical background for direct energy conversion devices such as MHD, thermoelectric and thermionic systems.
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3.00 Credits
Heat transfer study with emphasis on heat exchanger design, optimization of energy exchange, economics and design feasibility. A formal oral presentation of a written report is made by the individual to the class followed by questions and answers. Prerequisites: MEEN 3310, 3340, 3380 Offered: Fall
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