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Course Criteria
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3.00 Credits
Introduction to numerical techniques and their applications in different engineering problems, experimental data analysis and statistical methods, optimization methods, and numerical methods in solving differential equations. Offered: Other
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3.00 Credits
Energy methods in dynamics, free and forced vibrations, applications to systems with one-, two-, and multi-degree of freedom, response to various excitations, transient response, engineering applications, and vibration in continuous systems. Offered: Other
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3.00 Credits
Mathematical modeling of various systems, transient and steady-state response, frequency response analysis, root-locus, stability, control system design, steady-sates representations, controllability and observability, and design of system in state space. 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 using simulationbased design, mechanical vibration measurement and monitoring, interpretation of vibration measurements data and other mechanical vibration topics as appropriate. Offered: Other
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3.00 Credits
Flow problems encountered in the design of water, gas and steam turbines, centrifugal and axial-flo pumps and compressors, aero-thermodynamic design of gas turbines. Offered: Other
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3.00 Credits
Multivariate Statistics, Genetic Algorithm, and empirical modeling tools such as Partial Least Squares, Monotonic/Bounded Derivative Neural Network, and Inferential Property Estimation using state-of-the-art computer software. These modeling tools take advantage of the large amount of process data now available in process plants for data mining. Offered: Other
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3.00 Credits
Different types of energy resources and their uses, different types of energy conversion technology, such as fuel cells, thermoelectric, and solar energy conversion, and energy conservation technologies such as pinch technology and cogeneration, current and future challenges of energy generation and conservation, environmental issues such as air pollution, smog and greenhouse effects, and NOx emissions. Offered: Other
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3.00 Credits
Introduction to mechanical properties of engineering materials. Intro to kinetics of structural transformations and fundamentals aspects of structural transformations. Offered: Fall
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3.00 Credits
Students will be introduced to manufacturing as a system, different properties of castings and structure, melting and pouring principals, analysis of sheet forming and melt processing: design with plastics and composites metal cutting processes, machinability and cutting toold introduced. Students learn mechanical joining and soid state bonding and analysis of liquid state welding. Offered: Fall, Spring, Summer
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3.00 Credits
Introduction to basic concepts underlying computational fluid dynamics (CFD) including derivation of governing equations, discretization methods, grid generation, solution algorithms, numerical solution methods, error prediction, and interpretation of numerical results. A commercial CFD software package, CFX, is use to solve practical engineering fluid flow problems. Prerequisite: Fluid Mechanics, Heat Transfer, Numerical Methods, MEEN 5366 Offered: Summer
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