Ideal gas mixtures and moist air applications. The course introduces students to the fundamentals of computational fluid dynamics and heat transfer. Instruction Mode: Hybrid – Synchronous, Online – Synchronous Newton/Euler and Lagrangian formulations for three dimensional motion of particles and rigid bodies. (3 credits) CourseProfile (ATLAS), MECHENG 401. Graduate standing or permission of instructor. Instruction Mode: Hybrid – Synchronous, Online – Synchronous Feedback control design and analysis for linear dynamic systems with emphasis on mechanical engineering applications; transient and frequency response; stability; system performance; control modes; state space techniques; digital control systems. As a result of present technology trends, more time is spent on composites and achievement of design specifications through synthesis. CourseProfile (ATLAS), MECHENG 406. CourseProfile (ATLAS), MECHENG 537. Student(s) work under the direction of Mechanical Engineering faculty. Experimental demonstration for dynamic behavior and feedback control of several thermal and fluid systems. Advised Co-requisite: MECHENG 461 or equivalent. Emphasis on structure function relationships. Individual or group study, design or laboratory research in a field of interest to the student. Dissertation work by a student of the Ph.D. in Mechanical Sciences and Engineering Program conducted under guidance of the faculty advisor. CourseProfile (ATLAS), MECHENG 390. Graduate standing or permission of instructor. The course can be organized to meet the subject needs of a group of students with mutual interests. Radiative Heat Transfer (YR). Basics of manufacturing: processes, materials and thermofluid aspects. Prerequisite: MECHENG 438 and MECHENG 461 or equivalent is recommended. Accounting (ACC) African & African- Amer Studies (AAAS) Anthropology (ANTH) Arab American Studies (AAST) Art History (ARTH) Automotive Engineering (AENG) Automotive Systems & Mobility (ASM) Automotive Systems Engineering (ASE) Bioengineering (BENG) Biological Science (BIOL) Business Administration (BA) Business Economics (BE) Time Series Modeling and System Analysis ME 538 Vehicle Thermal Management 3 Credit Hours. ME 580 Advanced Engineering Materials 3 Credit Hours. ME 598 Engine Emissions 3 Credit Hours. Laboratory I Instruction Mode: Online – Synchronous Stresses and deformations in layered materials and laminated composites; cohesive-zone models of fracture; energy-release rates and delamination; fracture mechanics of layered materials; physics of adhesion; spalling; interfacial fracture mechanics; mixed-mode fracture; buckling-driven delamination; cracking of thin films and coating; adhesion and fracture tests; measurement of cohesive fracture parameters. Advised Prerequisite: MECHENG 350 or equivalent design course. Stability and bifurcation theory for autonomous and periodically forced systems. Energy principles, higher and lower pair joint parameterizations, space and dense equation formulation and solution techniques, numerical integration, generalized impulse and momentum, collisions and computational elastodynamics. Instruction Mode: Online – Synchronous Newton/Euler and Lagrangian formulations for three-dimensional motion of particles and rigid bodies. Estimation and prediction methods for vector stochastic signals and systems. The student will submit a report on the project at the close of the term. Plastic theory for materials with isotropic hardening, kinematic hardening and time dependence. Graduate standing or special permission. ME 548 Automotive Powertrains II 3 Credit Hours. Instruction Mode: Hybrid – Synchronous, Online – Synchronous Fundamental properties of biological systems, followed by a quantitative, mechanical analysis. (3 credits) Elastic and plastic stress-strain relations; yield criteria and flow rules; analyses of various plastic forming operations. Various approximate theories with emphasis on the theory of plastic flow. (YR). Large amplitude mechanical vibrations; phase-plane analysis and stability; global stability, theorems of Liapunov and Chetayev; asymptotic and perturbation methods of Lindstedt-Poincare, multiple scales, Krylov-Bogoliubov-Mitropolsky; external excitation, primary and secondary resonances; parametric excitation, Mathieu/Hill equations, Floquet theory; multi-degree of freedom systems and modal interaction. CourseProfile (ATLAS), MECHENG 590. Boundary value and eigenvalue problems are particularly stressed for linear and nonlinear elasticity, analytical dynamics, vibration of structures, wave propagation, fluid mechanics and other applied mechanic topics. CourseProfile (ATLAS), MECHENG 501. Vehicle Control Systems Prerequisite: [MECHENG 360 and 395; (C- or better)] AND [MECHENG 335 (D or better, or concurrent enrollment) and 350 (C- or better, or concurrent enrollment)] AND Not open to graduate students. CourseProfile (ATLAS), MECHENG 599. Semester-long, model-based design/build/test project in a team setting CourseProfile (ATLAS), MECHENG 360. (AY). Kinetic and thermal scales and spectra. Individual or group project work where student(s) must apply mechanical engineering principles to research, innovation, service or entrepreneurship projects. Link between processing and as-manufactured properties through coupled fluid and structural analyses. (3 credits) Prerequisite: MECHENG 336, preceded or accompanied by MECHENG 320. Topics include: characterization of random processes and random fields, calculus of random processes, applications of random vibrations to linear dynamical systems, brief discussion on applications to nonlinear dynamical systems. Regression analysis. Integration of economic indicators with life cycle environmental and social metrics for evaluating technology systems. Eigenvalue and boundary value problems. Turbulent Flow “Minimum grade of “C” required for enforced prerequisites. Mechanical and electrical issues in micromachining. Typical areas of study include vibrations of continuous or lumped systems, fluid mechanics, devices, thermodynamics, heat transfer, mechanics of solids, materials, or processing, etc. This course will cover theoretical aspects of smart materials, sensors and actuator technologies. Review of FE theory in linear static. Case studies: sustainable design of consumer products, manufacturing and infrastructure systems. Graduate standing or special permission. Mathematical Methods in Mechanical Engineering Minimum grade of “C” required for enforced prerequisites. Review of experimental results on the statistics and structure of turbulent flows. Prerequisite: one 400-level MFG or DES or BUS class. Advanced Heat Transfer Exposure to CAD systems and basic machine shop techniques. (3 credits) Theory and application of common statistical distributions to the analysis of both life and strength data for components. Restriction(s): Cannot enroll if Class is Can enroll if Major is , Mechanical Engineering-NCFD, Mechanical Engineering, ME 540 Mechanical Vibrations 3 Credit Hours. (3 credits) Techniques for dynamic analysis; dynamic behavior of lumped- and distributed-parameter systems, nonlinear systems and time-varying systems; measurement of response; plant dynamics. Variational principle will be introduced as a notion of natural modes of vibration for discrete systems is reviewed. Multiple scale dimensional analysis. Three hours lecture and two hours laboratory CourseProfile (ATLAS), MECHENG 290. Emphasis on the interaction between proper modeling and computation. … CourseProfile (ATLAS), MECHENG 515. Examples are taken from heat transfer, fluid dynamics, solid mechanics, electromagnetic theory, vibrations, etc. (YR). A project-based course in which each (global) student team comprising students from three universities will be responsible for development of a product for the global market. Engineering Acoustics Prerequisite: MECHENG 235. Instruction Mode: In-Person – Synchronous, Online – Synchronous Advanced topics in conduction and convection including the presentation of several solution methods (semi-quantitative analysis, finite difference methods, superposition, separation of variables) and analysis of multi-mode heat transfer systems. Graduate standing or special permission. CourseProfile (ATLAS), MECHENG 562. A graduate-level analytical study of selected topics in mechanical engineering. Advised Prerequisite: MECHENG 350 or equivalent design course. Conformal mapping and free streamline theory. May not be taken concurrently with MECHENG 455 or MECHENG 495. Instruction Mode: Hybrid – Synchronous, Online – Synchronous Globalization and manufacturing paradigms. Statistical Thermodynamics Multiphase Flow The key engineering elements include microprocessor technology, electronics, sensors and actuators, data communication and interface, control algorithms, and mechanisms of machine elements. Taguchi methods. The defense of the dissertation, that is, the final oral examination, must be held under a full-term candidacy enrollment. Mechanical behavior of polymers and ceramics are considered in relation to their structures, processing and applications. (8 credits); (4 credits) Instruction Mode: Hybrid – Synchronous, Online – Synchronous Analytical approach to the engineering problem and performance analysis of internal combustion engines. Instruction Mode: Online – Asynchronous/Synchronous Physical and mathematical foundations of computational fluid mechanics with emphasis on applications. Sci. Classification of partial differential equations and formulation of well-posed problems. Front-End Design The potential countermeasures for typical noise/vibration sources will be presented. CourseProfile (ATLAS), MECHENG 648. FEA in nonlinear problems; material and geometrical nonlinearities, total and updated Lagrangian formulations, solution techniques. Computer assignments. Minimum grade of “C” required for enforced prerequisites. Thermal radiation processes. Our top-ranked programs expertly prepare students for a wide range of difference-making careers creating better materials for a better planet. Prerequisite: MECHENG 211, Math 216. CourseProfile (ATLAS), MECHENG 530. Instruction Mode: Online – Synchronous Time and frequency domain mathematical techniques for linear system vibrations. CourseProfile (ATLAS), MECHENG 400. Prerequisite: Physics 140 & 141, and (Math 116 or Math 121 or 156.) CourseProfile (ATLAS), MECHENG 559 (MFG 559). This course provides an opportunity to acquire and demonstrate mastery of critical lean product design engineering disciplines within the context of an automotive vehicle program team. CourseProfile (ATLAS), MECHENG 502. CourseProfile (ATLAS), MECHENG 451 (MFG 453). The damped and undamped response to deterministic excitations will be considered for various systems. The influences of time and temperature on behavior. ME 567 Reliability Consid in Design 3 Credit Hours. Modeling, Analysis, and Control of Hybrid Electric Vehicles Descriptions are term-specific, written by course instructors, listing course requirements, topics, and method of evaluation. Prerequisite: Graduate School authorization for admission as a doctoral candidate. Formulation of discrete boundary conditions. Advanced Nonlinear Control The Bachelors of Science in Engineering (BSE) degree in Mechanical Engineering (ME) at the University of Michigan requires students to complete 128 credit hours of courses in various categories, which include: College of Engineering (CoE) core, intellectual breadth, ME program specific courses… CourseProfile (ATLAS), MECHENG 573 (MFG 581). Advised Prerequisite: MECHENG 350, MECHENG 360, EECS 314 or equivalent (4 credits) Material properties, including physical, mechanical, thermal, electrical, economic, corrosion and environmental properties. Two-dimensional Burke-Schumann flames and boundary layer combustion. The student will submit a report on the project and give an oral presentation to a panel of faculty members at the close of the term. ME 545 Acoustics and Noise Control 3 Credit Hours. Technological applications. (OC). Product design using advanced polymeric materials and composites; part consolidation, snap-fit assemblies; novel applications. 14:1. student-to-faculty ratio. Analytical synthesis of programmable and compliant mechanisms. (3 credits) Prerequisite: EECS 314 or equivalent. Ignition, flammability, and flame quenching. CourseProfile (ATLAS), MECHENG 625. Case studies (heat treatment; welding; polymer extrusion and molding; various metal casting processes; crystal growth). Robust design. Mechatronics, as an engineering discipline, is the synergistic combination of mechanical engineering, electrical engineering, control engineering, and computer science, all integrated through the design process. ME 522 Advanced Fluid Mechanics 3 Credit Hours, Graduate level course of fluid mechanics. We develop an embedded controller for a haptic interface, or force feedback system, built by Professor Brent Gillespie of the Mechanical Engineering Department at the University of Michigan. PI for all others. Coverage This is a project-oriented laboratory course in integrated microsystem design, fabrication, and testing. Nonlinear Fracture Mechanics Non-traditional machining. The ME Core courses consist of five categories: Design and Manufacturing, Mechanics and Materials, Dynamics and Controls, Thermal Sciences, and Laboratories and Technical Communication. Prerequisite: senior or graduate standing. Averaged and spectral properties. Minimum grade of “C” required for enforced prerequisites. Hands-on labs and industrial case studies are used to re-enforce the course material. (3 credits) Advisory Prerequisite: MECHENG 235 and MECHENG 382. Modeling of processes, microstructure and mechanical properties of processed materials. Product-process-business integration. Machining process simulation. Graduate standing or special permission. (3 credits) Advanced Energy Solutions (1 credit) Instruction Mode: Hybrid – Synchronous, Online – Synchronous Design of artifacts is addressed from a multidisciplinary perspective that includes engineering, art, psychology, marketing and economics. Study of complex equilibrium calculations including effect of heterogeneous reactions and real substance behavior. CourseProfile (ATLAS), MECHENG 457. Instruction Mode: Online – Synchronous Statics: moment and force resultants, equilibrium. Advisory Prerequisite: ME 311 or graduate standing. BULLETIN DESCRIPTION: Newton/Euler and Lagrangian formulations for three-dimensional motion of particles and rigid bodies. Technological problems and surfaces AUTO 533 ) to respect this schedule, but Hours! A continuous medium learn how electrochemical systems work and how they can be organized to meet the subject of! Processes in engineering material with emphasis on laboratory report writing, oral presentations team-building. 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