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Course Criteria
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0.00 - 3.00 Credits
Student research projects are planned, scheduled, designed and evaluated. Experience is gained in the execution of an engineering project and a formal technical report is required. Prerequisite: MEEN courses through third year and senior standing Offered: Spring
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0.00 - 3.00 Credits
Student research projects are planned, scheduled, designed and evaluated. Experience is gained in the execution of an engineering project and a formal technical report is required. Prerequisite: MEEN courses through third year and senior standing Offered: Spring
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3.00 Credits
A continuation of MEEN 3340 with emphasis on simulation methods and computer techniques in solving engineering problems. Prerequisite: MEEN 3340, MEEN 3350 Offered: Spring
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0.00 - 3.00 Credits
Lectures on atomic scale structures; crystal structures; point defects and diffusion; linear, planar and volume defects; noncrystalline and semicrystalline materials; introduction to phase diagrams. Laboratory experiments include tensile testing, hardness measurement, microstructure evaluation and heat treatment of steel and aluminum. Offered: Fall
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0.00 - 3.00 Credits
Lectures on atomic scale structures; crystal structures; point defects and diffusion; linear, planar and volume defects; noncrystalline and semicrystalline materials; introduction to phase diagrams. Laboratory experiments include tensile testing, hardness measurement, microstructure evaluation and heat treatment of steel and aluminum. Offered: Fall
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3.00 Credits
Topics in mechanical vibrations including an introduction to the theory of vibrations, mechanical vibration analysis methods including finite element modeling, mechanical vibration measurement and monitoring, interpretation of vibration measurements data and other mechanical vibration topics as appropriate. Prerequisites: MEEN 3320, MEEN 3340 Offered: Other
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3.00 Credits
The course covers the advanced topics in numerical methods and their applications in different engineering problems which include experiemental data analysis and statisical methods, optimization methods and numerical methods in solving differential equations. Student will use the commerical software of Matlab and Excel in this course. Offered: Other
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3.00 Credits
Free and forced vibrations: applications to systems with one-, two-, and multi-degree of freedom; response to general periodic excitations, transient vibration and the phase method; principle and coupled coordiantes; dynamic vibration absorbers; vibration in continuous systems. Offered: Other
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0.00 - 3.00 Credits
A continuation of the design of machine components including the design of threaded fasteners and power screws, welded joints, mechanical springs, lubrication and sliding bearings, rolling-element bearings, spur gears, shafts, clutches and brakes, and miscellaneous power transmission components. Completion of the conceptual design begun in MEEN 3320 to include the addition of a power source, greater design detail in the elements, economic aspects of the design, and other matters as appropriate. Both a report and a presentation are required. Team formation and the use of various engineering software packages are encouraged. Prerequisites: MEEN 3320 Offered: Fall
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0.00 - 3.00 Credits
A continuation of the design of machine components including the design of threaded fasteners and power screws, welded joints, mechanical springs, lubrication and sliding bearings, rolling-element bearings, spur gears, shafts, clutches and brakes, and miscellaneous power transmission components. Completion of the conceptual design begun in MEEN 3320 to include the addition of a power source, greater design detail in the elements, economic aspects of the design, and other matters as appropriate. Both a report and a presentation are required. Team formation and the use of various engineering software packages are encouraged. Prerequisites: MEEN 3320 Offered: Fall
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