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MECH 406 /806: Air Conditioning Systems Design
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 or equivalent. Application of thermodynamic and fluid dynamic principles to the design of air conditioning systems. Comprehensive design project is an integral part of the course.
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MECH 406 /806 - Air Conditioning Systems Design
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MECH 407 /807: Power Plant Systems Design
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 or equivalent. Application of thermodynamic and fluid dynamic principles to the design of Power Plants. Comprehensive design project is an integral part of the course.
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MECH 407 /807 - Power Plant Systems Design
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MECH 408 /808: Heat Exchanger Design
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 or equivalent. Design methodology for various heat exchangers employed in mechanical engineering. Introduction to computer-aided design as applied to heat exchangers. Practical exercises in actual design tasks.
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MECH 408 /808 - Heat Exchanger Design
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MECH 413 /813: Aerodynamics
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 200 and MECH/CIVE 310. Subsonic and supersonic air flow theory, dynamics of flight, performance parameters, rotoranalysis, and special topics.
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MECH 413 /813 - Aerodynamics
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MECH 414 /814: Compressible Flow
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 300 and MECH/CIVE 310. Analysis of the flow of compressible fluids by means of the momentum equation, continuity equation, and the laws of thermodynamics and some application of thermodynamic laws to incompressible fluids.
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MECH 414 /814 - Compressible Flow
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MECH 415 /815: Two-Phase Flow
3.00 Credits
University of Nebraska-Lincoln
Lec 2, lab 3. Prereq: MECH/ CIVE 310 and MECH 380, or parallel. Transport phenomena of homogeneous and heterogeneous types of mixtures such as solid-liquid, liquid-liquid, and liquidgas. Properties of components and mixtures. Flow induced vibrations and parameter distributions. Optimization and design problems in multiphase systems.
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MECH 415 /815 - Two-Phase Flow
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MECH 416 /816: Engineering Acoustics
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 310 and MATH 221/821. Transverse and longitudinal traveling waves. Acoustic wave equation of fluids. The reflection, transmission, radiation, reception, absorption, and attenuation of sound. Acoustic cavities and waveguides. Sound propagation in pipes, resonators and filters.
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MECH 416 /816 - Engineering Acoustics
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MECH 420 /820: Heat Transfer
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 310. Heat transfer by conduction, convection, and radiation. Correlation of theory with experimental data and engineering design.
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MECH 420 /820 - Heat Transfer
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MECH 424 /824: Laser Material Processing with Compressible Flow Perspective
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: Permission. Fundamentals of laser material processing. Laser material interactions from the compressible flow perspective. Analytical, semi-analytical, and numerical approaches.
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MECH 424 /824 - Laser Material Processing with Compressible Flow Perspective
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MECH 425 /825: Solar Energy Engineering
3.00 Credits
University of Nebraska-Lincoln
Lec 3. Prereq: MECH 420 or permission. Conversion of solar energy into more useful forms with emphasis on environmental heating and cooling applications. Includes solar energy availability, solar collectors and design, solar systems and their simulation and solar economics.
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MECH 425 /825 - Solar Energy Engineering
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