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Course Criteria
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3.00 Credits
Design of individual components of thermal systems. Design and analysis of components such as pumps, fans, compressors, turbines, heat exchangers, piping and duct design networks. Modern innovative thermal and refrigeration concepts involving economic tradeoffs in sizing and/or choice of materials. Global and societal impacts of engineering decisions. Design experience included. Fall semester. Lecture 3 hours. Prerequisites: ENGR 3070, ENME 3040, ENME 3090 or ENCH 3320 with minimum grades of C, or department head approval. Supplementary course fee assessed.
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3.00 Credits
Free and forced vibrations of damped and undamped systems; single and multiple degrees of freedom using lumped parameter analysis. Matrix methods. Spring semester. Lecture 3 hours. Prerequisites: ENGR 248 with a grade of C or better, Mathematics 245.
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3.00 Credits
Free and forced vibrations of damped and undamped systems; single and multiple degrees of freedom using lumped parameter analysis. Matrix methods. Spring semester. Lecture 3 hours. Prerequisites: ENGR 2480 with a minimum grade of C, MATH 2450 or department head approval. Supplementary course fee assessed.
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3.00 Credits
Statically indeterminate structures; introduction to theory of elasticity; topics in mechanics of composite materials. Fall semester. Lecture 3 hours. Prerequisites: ENGR 246 with grade of C or better; Mathematics 245.
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3.00 Credits
Statically indeterminate structures; introduction to theory of elasticity; topics in mechanics of composite materials. Fall semester. Lecture 3 hours. Prerequisites: ENGR 2460 with minimum grade of C; MATH 2450 or department head approval. Supplementary course fee assessed.
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2.00 Credits
The laboratory will provide experiences with instrumentation and data acquisition required for measuring temperature, pressure, liquid and gas flow rates, rotational speed, strain, displacement, velocity, acceleration, and combustion products. Design project is included. Application of statistics. Fall and spring semesters. Laboratory 2 hours. Prerequisites: ENGR 307, 308, ENME 304, ENME 309 or ENCH 332, ENME 347 with grades of C or better.
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3.00 Credits
The laboratory will provide experiences with instrumentation and data acquisition required for measuring temperature, pressure, liquid and gas flow rates, rotational speed, strain, displacement, velocity, acceleration, and combustion products. Design project is included. Application of statistics. Fall and spring semesters. Laboratory 2 hours. Prerequisites: ENGR 3070, ENGR 3070L, ENME 3040, ENME 3090 or ENCH 3320, ENME 3470 with minimum grades of C or department head approval. Laboratory/Studio course fee will be assessed. Supplementary course fee assessed.
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3.00 Credits
The study of compound and planetary gear trains and transmissions; static force analysis of mechanisms, dynamic force analysis of mechanisms, balancing of rotating systems; dynamics of reciprocating engines, cam dynamics and vibrations; analytic synthesis of linkage and introduction to robotics. Spring semester. Lecture 3 hours. Prerequisites: ENME 348 with grade of C or better.
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3.00 Credits
The study of compound and planetary gear trains and transmissions; static force analysis of mechanisms, dynamic force analysis of mechanisms, balancing of rotating systems; dynamics of reciprocating engines, cam dynamics and vibrations; analytic synthesis of linkage and introduction to robotics. Spring semester. Lecture 3 hours. Prerequisites: ENME 3480 with minimum grade of C or department head approval. Supplementary course fee assessed.
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3.00 Credits
Capstone mechanical engineering design experience; design of a thermal and/or mechanical system; consideration of engineering standards and realistic constraints that include most of the following considerations: economic, environmental, sustainability, manufacturability, ethical, health and safety, social, and political; application of the design process; oral presentations and written design report required. Spring semester. Lecture 2 hours, design lab 2 hours. Prerequisites: ENGR 385, ENME 442, 443; Pre- or Corequisite: ENME 447.
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