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MECH 5881: Mechanical Vibrations
3.00 Credits
Youngstown State University
5881. Mechanical Vibrations. Introduction to mechanical vibrations: single and multi-degree of freedom systems, free and forced vibrations, impedance and modal analysis including applications. Prereq.: MECH 3708. 3 s.h.
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MECH 5881L: Mechanical Vibrations Laboratory
1.00 Credits
Youngstown State University
5881L. Mechanical Vibrations Laboratory. Introduction to vibrations measurements. Experiments with mechanical systems, computer simulation of vibration systems. Experimental determination of component models and parameters. Three hours laboratory per week. Prereq.: MECH 5881. 1 s.h.
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MECH 5884: Finite Element Analysis
3.00 Credits
Youngstown State University
5884. Finite Element Analysis. Fundamental principles of finite element analysis with emphasis on applications to design in areas of stress analysis, vibrations, and heat transfer. Use of commercial software. Prereq.: MECH 3708, MECH 3725, MECH 3751. 3 s.h.
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MECH 5884 - Finite Element Analysis
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MECH 5885: Computational Fluid Dynamics
3.00 Credits
Youngstown State University
5885. Computational Fluid Dynamics. Applied numerical analysis, including solution of linear algebraic equations and ordinary and partial differential equations; modeling of physical processes, including fluid flow and heat and mass transfer; use of general purpose computer codes, including commercial computational fluid dynamics software packages. Prereq.: MECH 3720 and MECH 3725. 3 s.h.
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MECH 5892: Control of Mechanical Systems
3.00 Credits
Youngstown State University
5892. Control of Mechanical Systems. Introduction to theory of feedback and control. Performance and stability of linear systems. Design of feedback control systems. Practical application and introduction to state-space methods. Two hours lecture and three hours laboratory per week. Prereq.: MECH 3708. 3 s.h.
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MECH 5892 - Control of Mechanical Systems
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MET 1515: Mechanics 1
3.00 Credits
Youngstown State University
1515. Mechanics 1. Study of forces as vector quantities; resultants of force systems; principles of mechanical equilibrium; application of principles to problems, devices and structures commonly encountered in industry. Three hours lecture per week. Prereq.: "C" or better in ENTC 1505 and MATH 1513 or MATH 1510 and MATH 1511 or MATH 1510C and MATH 1511C. 3 s.h.
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MET 1515 - Mechanics 1
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MET 2606: Solid Modeling
4.00 Credits
Youngstown State University
2606. Solid Modeling. Study of parametric solid modeling and other 3D techniques using Solid Works and Inventor software, including work with geometric dimensioning and tolerancing. Three hours lecture, three hours lab per week. Prereq.: C or better in CCET 1503. 4 s.h.
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MET 2616: Mechanics 2
3.00 Credits
Youngstown State University
2616. Mechanics 2. Continuation of MET 1515 with further application of statics, introduction to dynamics of solids, study of various types of motion, Newton's second law, work and energy, impulse and momentum. Three hours lecture per week. Prereq.: MET 1515 "C" or better. 3 s.h.
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MET 2616 - Mechanics 2
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MET 2630: Manufacturing Techniques
3.00 Credits
Youngstown State University
2630. Manufacturing Techniques. The study of materials and processes used in manufacturing, including casting, heat treatment, hot and cold working, plastics processing and machining, Geometric Dimensioning and Tolerancing. Prereq.: "C" or better in ENTC 1505 and CCET 2604. 3 s.h.
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MET 2630L: Manufacturing Techniques Laboratory
1.00 Credits
Youngstown State University
2630L. Manufacturing Techniques Laboratory. Practice and procedures of machine tool operation including lathes, drill presses, shapers, and milling machines. Two hours lab per week. "C" or better in MET 2630 or concurrent with MET 2630. 1 s.h.
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