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MECH 311: Fluid Mechanics Laboratory
1.00 Credits
University of Nebraska-Lincoln
Lab 2. Prereq: MECH/ CIVE 310 or parallel. Fluid mechanics experiments and demonstrations. Conservation principles; determination of fluid properties, velocity, pressure, and flow measurements; pipe flow; open channel flow; and instrumentation techniques.
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MECH 311 - Fluid Mechanics Laboratory
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MECH 330: Mechanical Engineering Analysis
3.00 Credits
University of Nebraska-Lincoln
Prereq: MATH 221; CSCE 150E, ENGM 325 and 373; MECH 200. Conceptual modeling of mechanical engineering systems. Analytical exploration of engineering behavior of conceptual models. Case studies drawn from mechanical engineering problems.
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MECH 330 - Mechanical Engineering Analysis
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MECH 342: Kinematics and Dynamics of Machinery
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 130 and ENGM 373. Analysis of the motions of linkage and cam mechanisms. Methods of design of linkage and cam mechanisms. Gear theory. Analysis and design of ordinary and planetary gear trains. Determination of static and dynamic forces in machines. Balancing of machines. Flywheel design. Dynamics of cam mechanisms. Vibration of machines.
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MECH 342 - Kinematics and Dynamics of Machinery
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MECH 343: Elements of Machine Design
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: ENGM 325; IMSE 206; JGEN 200 or 300; MECH 342; METL 360; IMSE 321 or STAT 380 or parallel. Design of machine elements under different conditions of loading. Design work includes a project of broader scope (done primarily out of class) requiring a breadth of knowledge. Failure theories for static and dynamic loading of bolts, springs, bearings, and shafts.
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MECH 343 - Elements of Machine Design
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MECH 350: Introduction to Dynamics and Control of Engineering Systems
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: ENGM 373; ELEC 211; MATH 314 or parallel. Unified treatment of the dynamics and control of engineering systems. Emphasis on physical aspects, formulation of mathematical models, application of various mathematical methods, and interpretation of results in terms of the synthesis and analysis of real systems.
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MECH 350 - Introduction to Dynamics and Control of Engineering Systems
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MECH 370: Manufacturing Methods and Processes
3.00 Credits
University of Nebraska-Lincoln
Prereq: METL 360; and ENGM 325. Introduction to traditional and modern manufacturing processes and methods to include: foundry; forming processes; welding; metal removal theory and practices; modern manufacturing systems and automation; and economics of process selection.
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MECH 370 - Manufacturing Methods and Processes
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MECH 380: Mechanical Engineering Measurements
3.00 Credits
University of Nebraska-Lincoln
Lec 2, lab 2. Prereq: ELEC 231; JGEN 200 or 300; IMSE 321 or STAT 380 or parallel; MECH 350 and MECH 310, or parallel. Theory, statistics, applications and design of mechanical engineering experiments.
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MECH 380 - Mechanical Engineering Measurements
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MECH 402 /802: Turbomachinery
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 and MECH/CIVE 310. Thermodynamic analysis and design of axial and radial flow turbines, compressors, and pumps. Fundamentals of the operating characteristics and performance parameters of turbomachines. Cavitation and blade element theory.
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MECH 402 /802 - Turbomachinery
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MECH 403 /803: Internal Combustion Engines
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 or equivalent. Basic cycle analysis and engine types, fundamental thermodynamics and operating characteristics of various engines are analyzed, combustion processes for spark and compression-ignition engines, fuels, testing procedures, and lubrication systems are evaluated. Emphasis on the thermodynamic evaluation of the performance and understanding the basic operation of various engine types.
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MECH 403 /803 - Internal Combustion Engines
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MECH 404 /804: Theory of Combustion
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 and 420/820. Stoichiometric analysis of combustion processes. Energy transfer, flame propagation, and transformation velocities during combustion. Combustor applications and design considerations. Emission formation and methods of control.
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MECH 404 /804 - Theory of Combustion
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