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Course Criteria
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1.00 Credits
Provides laboratory instruction and experience in the structures, processing, properties, and performance of materials.
Prerequisite:
ME A334 UA C Concurrent AND WRTG A212 UA C
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3.00 Credits
Design and analysis of machines by analytical, experimental and computer methods. Identification of requirements and conceptual design of mechanical systems, detailed design of components considering strength, life, reliability and cost.
Prerequisite:
ES A261 UA C AND ES A331 UA C AND MATH A302 UA C AND ME A280 UA C
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3.00 Credits
Modeling of vibratory mechanical systems with single and multiple degrees of freedom. Study of free and forced vibrations with or without damping by lumped-parameter methods and finite element analysis. Vibrations of rotor systems and vibration monitoring. Special Note: Not available for credit to students who have completed ME A608. May be stacked with: ME A608
Prerequisite:
(EE A306 UA C OR ME A306 UA C ) AND ES A331 UA C
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3.00 Credits
Introduces the design of power and space conditioning systems, energy conversion, heating, ventilating, air conditioning, refrigeration (HVAC&R), and steady-state simulation of thermal systems.
Prerequisite:
ES A341 UA C AND ES A346 UA C
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1.00 Credits
Provides supplemental explanation and practical exercises applying thermal system design and heating, ventilation and air conditioning (HVAC) concepts including refrigeration systems, psychrometric applications, air handling unit designs, pipe and pump designs, and fan and air distribution designs.
Prerequisite:
ES A341 UA C AND ES A346 UA C AND ME A414 UA C Concurrent
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3.00 Credits
This course presents the mechanics and manufacturing of composite materials and their applications. The analysis, design, processing/fabrication, repair, and evaluation of composite materials and structures are considered. Special Note: Not available for credit to students who have completed ME A615. May be stacked with: ME A615
Prerequisite:
ES A331 UA C AND ME A280 UA C AND ME A403 UA C
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3.00 Credits
Introduces the design and manufacturability of automotive systems including the vehicle powerplant, drivetrain, suspension and frame. Registration Restrictions: Admission to the Bachelor of Science in Mechanical Engineering
Prerequisite:
(EE A306 UA C OR ME A306 UA C ) AND ES A331 UA C AND ME A280 UA C
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3.00 Credits
Covers the mathematical formulation of the finite element analysis (FEA) method; elemental matrices, nodal loads, assembly, and solution of finite element problems; static, modal, and dynamic solid-mechanics FEA problems; heat transfer, fluid mechanics, and electromagnetic FEA problems; and FEA software: preprocessing, processing, and postprocessing. Special Note: Not available for credit to students who have completed ME A621. Recommended for students to take MATH A314. May be stacked with: ME A621
Prerequisite:
ES A210 UA C AND ES A331 UA C AND ES A341 UA C AND ES A346 UA C
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3.00 Credits
Capstone course in which mechanical engineering students design a mechanical engineering component or system starting with the initial design specification to the implementation and testing. Students apply knowledge and skills learned in their undergraduate curriculum. Registration Restrictions: Student must be in senior year of BSME degree program or obtain faculty permission. Completion of GER Tier 1 (basic college-level skills) courses.
Prerequisite:
ME A403 UA C Concurrent
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3.00 Credits
Application of heat and mass transfer concepts to engineering problems including steady state and transient conduction, numerical analysis of heat transfer problems, laminar and turbulent free and forced convection, and black body and real surface radiation.
Prerequisite:
ES A341 UA C AND ES A346 UA C AND MATH A302 UA C
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