(3 credits) Material properties, including physical, mechanical, thermal, electrical, economic, corrosion and environmental properties. The course introduces students to the fundamentals of computational fluid dynamics and heat transfer. Turbulent Flow Prerequisite: MECHENG 240. As system integration levels have increased, more and more different devices are being integrated on a common substrate, … Various approximate theories with emphasis on the theory of plastic flow. ME 542     Advanced Dynamics     3 Credit Hours. Principles of transport processes and automatic control. CourseProfile (ATLAS), MECHENG 538. This course introduces students to the fundamentals of engine exhaust emissions, including their formation mechanisms and abatement techniques. Prerequisite: senior or graduate standing. Methods for calculation of turbulent flows; the problem of closure, semi-empirical, phenomenological and analytical theories of turbulence, large-eddy and direct simulations of turbulence. Advanced Vibrations of Structures Heat Transfer (3 credits) (4 credits) The course emphasizes the exact methods used in the solution of the partial differential equations that arise in advanced engineering problems. Conduction of heat and electricity across interfaces. CourseProfile (ATLAS), MECHENG 440. (YR). CourseProfile (ATLAS), MECHENG 584 (MFG 584). CourseProfile (ATLAS), MECHENG 499. Mechanics of Polymers II Exposure to CAD systems and basic machine shop techniques. Theory and application of common statistical distributions to the analysis of both life and strength data for components. Instruction Mode: Online – Synchronous Thermodynamic power and refrigeration systems; availability and evaluation of thermodynamic properties; general thermodynamic relations, equations of state and compressibility factors; chemical reactions; combustion; gaseous dissociation; phase equilibrium. Locomotor Mechanics and Design/Control of Wearable Robotic Systems  Dissertation/Candidate Analytical Product Design Homogenization theory is used for multiple scale modeling. (3 credits) Best Online Graduate Engineering Programs #1. by Edmunds. ME 576     Battery Sys Modeling & Ctrl     3 Credit Hours. In addition to measurement of mechanical properties, resistance to heat, wear, and corrosion is discussed. Design and analysis of vehicle control systems such as cruise control, traction control, active suspensions and advanced vehicle control systems for Intelligent Vehicle-Highway Systems (IVHS). Radiation and scattering from non-simple geometries. Flow prediction. (3 credits) Full Course Title: Battery Systems, Modeling, and Control The simple oscillator and its applications. Stability and bifurcation theory for autonomous and periodically forced systems. Prerequisite: MECHENG 235, MECHENG 336 or permission of instructor. Analysis methods in design; load, deformation, stress and finite element considerations; nonlinear programming. Analysis of dynamic system models, including time and frequency responses. (3 credits) Computational Fluid Dynamics I (2-3 credits) Material, process and tool design parameters are emphasized. Prerequisite: MECHENG 235. Maxwell’s relations. Micro-scale and multi-scale mechanical modeling will also be introduced. jfr@umich.edu; Automotive Engineering at Michigan Statistics #4. Geometric Dimensioning and Tolerancing. Design and Manufacturing I CourseProfile (ATLAS), MECHENG 401. Review of the fundamental concepts and current work in nonlinear theory of hydrodynamic stability. ME 556     Stress and Stren Cons in Desgn     3 Credit Hours. Automotive Body Structures Exchange factors for black and gray surfaces and enclosures. Linear free and forced responses of one and two degree of freedom systems and simple continuous systems. CourseProfile (ATLAS), MECHENG 580. (3 credits) Design for Manufacturability Time Series Modeling and System Analysis CourseProfile (ATLAS), MECHENG 516. Prerequisite: MECHENG 230 or MECHENG 336. All the approximate methods presented will allow expedient numerical solution by means of high-speed computers. Viscous flow fundamentals; vorticity dynamics; solution of the Navier-Stokes equations in their approximate forms; thin shear layers and free surface flows; hydrodynamic stability and transition to turbulence; fundamental concepts of turbulence; the turbulent boundary layer; introduction to turbulence modeling. Student teams will perform market analysis and explore the intellectual property space around their ideas and rapidly iterate them into a final prototype via direct digital manufacturing (e.g., 3D CAD/CAM files manifested via digital printing or machining). Elements of quantum mechanics, statistical mechanics and kinetic theory, as applied to engineering thermodynamics. Design and analysis of two-level factorial experiments. CourseProfile (ATLAS), MECHENG 515. The damped and undamped response to deterministic excitations will be considered for various systems. Prerequisite: MECHENG 424, (BIOMEDE 424). 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. Applications of differential equation methods of particular use in mechanics. CourseProfile (ATLAS), MECHENG 570. Tissue Mechanics Composite materials, including naturally occurring substances such as wood and bone, and engineered materials from concrete to carbon-fiber reinforced epoxies. Prerequisite: Permission of instructor. Advanced Finite Element Methods in Mechanics Analysis using interactive computer simulation programs. Class schedules and … Study of the mechanism of surface bonding, welding metallurgy, effect of rate of heat input on resulting microstructures, residual stresses and distortion, economics and capabilities of the various processes. Instruction Mode: In-Person – Synchronous, Online – Synchronous Weekly lectures and extended experimental projects designed to demonstrate experimental and analytical methods as applied to complex mechanical systems. CourseProfile (ATLAS), MECHENG 649 (AEROSP 615) (CEE 617). Graduate standing or special permission. (3 credits) This course examines processes of front-end of engineering design, including opportunity discovery, problem definition, developing mechanisms to gather data from users and other stakeholders, translating user data into design requirements and specifications, creating innovative solutions during concept generation, representing design ideas, and evaluating possible solutions. Prerequisite: MECHENG 511 or permission of instructor. ME 584     Mechanical Behavior of Polymer     3 Credit Hours. ME350 (or equivalent undergraduate mechanical design course) ME360 (or equivalent undergraduate dynamic systems & controls course) EECS314 (or equivalent undergraduate electronics course) ME552 draws heavily from the above topics. A topic in mechanical engineering under the direction of a member of the department. CourseProfile (ATLAS), MECHENG 520. Enterprise globalization strategies. Machining Dynamics and Mechanics Credit for only one: CEE 265 or MECHENG 489 (YR). Classification of partial differential equations and formulation of well-posed problems. All Department & Program Course Guides; How to Read a Course Description; Aerospace Engineering Courses; Applied Physics Courses; Biomedical Engineering Courses … Study or Research in Selected Mechanical Engineering Topics The ME Core courses consist of five categories: Design and Manufacturing, Mechanics and Materials, Dynamics and Controls, Thermal Sciences, and Laboratories and Technical Communication. Sustainable Design of Technology Systems. Full Course Title: Modeling of Engineering Materials This course will present the mathematical models and constitutive behavior of engineering materials subjected to mechanical and non-mechanical loads. Generalized mathematical modeling of engineering systems, methods of solution and simulation languages. The topics covered include: engine emissions and air pollution; review of emission regulations; catalyst fundamentals; catalyst aftertreatment techniques for gasoline, diesel, and lead-burn engines; discussion of cold start emission control and breakthrough catalytic technologies. Prerequisite: permission of instructor. Green’s tensor; variational, Galerkin and Hamilton’s equations. In addition, each student will participate as a panelist in a panel discussion of the future trends in his/her field. Mathematical analysis of mass customization. Prerequisite: MECHENG 211, MECHENG 240, MECHENG 250. Prerequisite: (Math 215 or Math 255), MECHENG 235, and MECHENG 240. System-theoretic concepts: causality, controllability, observability, realizations, canonical decomposition, stability. Prerequisite: MECHENG 382. CourseProfile (ATLAS), MECHENG 311. (OC). Stream of variation. A study of the linear vibrations of discrete multi-degree-of-freedom systems. Applications in linear stress analysis; 1D, 2D and 3D. Course titles and numbers, prerequisites, other notes, credit hours and descriptions approved by the College of Engineering Curriculum Committee are included in this Bulletin. Green’s functions; boundary element and finite element methods. advised Prerequisite: MECHENG 540, (AEROSP 540) or MECHENG 543, or equivalent. CourseProfile (ATLAS), MECHENG 590. (YR). Instruction Mode: Online – Synchronous Vibrating systems; acoustic wave equation; plane and spherical waves in fluid media; reflection and transmission at interfaces; propagation in lossy media; radiation and reception of acoustic waves; pipes, cavities and waveguides; resonators and filters; noise; selected topics in physiological, environmental and architectural acoustics. This course examines processes of front-end of engineering design, including opportunity discovery, problem definition, developing mechanisms to gather data from users and other stakeholders, translating user data into design requirements and specifications, creating innovative solutions during concept generation, representing design ideas, and evaluating possible solutions. Instructor: Professor Honglak Lee, Professor Clayton Scott. Prerequisite: MECHENG 311. Major emphasis is placed on the analytical and experimental determination of stresses in relationship to the fatigue strength properties of machine and structural components. Restriction(s): Can enroll if Class is Graduate, ME 602     Guided Study in Mech Eng     1 to 6 Credit Hours. (4 credits) Application of course techniques to engine research projects. Vehicle Dynamics and Automation ME 535     Advanced Thermodynamics     3 Credit Hours. (3 credits) Restriction(s): Can enroll if Level is Rackham or GraduateCan enroll if Major is , Mechanical Engineering-NCFD, Mechanical Engineering, ME 558     Fracture and Fatig Cons in Des     3 Credit Hours. Technological applications. (YR). Multiple scale dimensional analysis. Introduction to concepts of random vibration with applications in civil, mechanical and aerospace engineering. The students will be familiarized with the present emission control technologies and future challenges. Prerequisite: MECHENG 505 or CEE 510, (NAVARCH 512). Temperatures of the tool and workplace. Manufacturing Processes Two-dimensional Burke-Schumann flames and boundary layer combustion. ; and (2) understanding of the mechanisms of property controls in new materials. (3 credits) Design projects. Course Lists. This course may be used as part of the IVHS certification program. CourseProfile (ATLAS), MECHENG 390. ME 543     Vehicle Dynamics     3 Credit Hours. (8 credits); (4 credits) Minimum grade of “C” required for enforced prerequisite. Viscously damped systems. Welcome from the Chair Dear friends, Significance of coatings on radiative interchange. The course is to introduce a design methodology in an integrated system environment through case studies and design projects. In total, there are 45 credits of required ME Core courses and together these subjects represent the fundamental technical competencies every mechanical engineering student must learn. CourseProfile (ATLAS), MECHENG 506 (BIOMEDE 506). Prerequisite: MECHENG 235. CourseProfile (ATLAS), MECHENG 562. Metal-Forming Plasticity This course will present the mathematical models and constitutive behavior of engineering materials subjected to mechanical and non-mechanical loads. Linear Systems Theory Prerequisite: MECHENG 382. Comprehensive basic course in heat and mass transfer for mechanical engineering students. Prerequisite: MECHENG 350, MECHENG 360, MECHENG 395 for MECHENG majors. Simulation of vehicle performance; dynamics in gear shifting; engine balance, fuel economy, and performance related to powertrains; powertrain arrangements, manual and automatic transmissions, automotive axles, four-wheel-drive systems; design and manufacturing of gearing systems. ME 554     Theory of Gearing and Applicat     3 Credit Hours. (1 credit) (3 credits) These issues are addressed on the basis of mechanical deformation and thermal characteristics of materials during processing. Student(s) work under the direction of mechanical engineering faculty. (3 credits) The courses in this list do not require background knowledge in any specific domain, such as mechanics, combustion, or aerospace. Courses and course descriptions are listed under each degree program. ME 537     Automotive Air Conditioning     3 Credit Hours. Gas radiation including boundary affected thin gas and thick gas approximations. Geometrical representation of the dynamics of nonlinear systems. Design of Digital Control Systems CourseProfile (ATLAS), MECHENG 457. Survey of methods for solving hyperbolic, elliptic, and parabolic problems. Principles of dynamics applied to various rigid-body and multi-body dynamics problems that arise in aerospace and mechanical engineering. (YR). Introduction to machining operations. Prerequisite: MECHENG 520. One-dimensional, compressible flow involving area change, normal shocks, friction, heat transfer, and combined effects. Manufacturability of materials and influence of processing variables on the properties of manufactured products are important considerations in materials selection and product design. Design and optimization of thermal systems. Formulations for large strains; small strain linearization. FEA in fluid mechanics. Prerequisite: MECHENG 520. In addition to properties and applications of these materials, this course covers manufacturing processes, design considerations, test methods and quality control techniques used for automotive composites. Individual or group study or design in an area of Mechanical Engineering under the supervision of a member of the graduate faculty. CourseProfile (ATLAS), MECHENG 626. CourseProfile (ATLAS), MECHENG 400. Instruction Mode: Hybrid – Synchronous, Online – Synchronous Basics of mechanical design: visual thinking, engineering drawing, and machine anatomy. A simple phenomenological electrical circuit model and a detailed physics-based model that can capture diffusion dynamics will be covered. Machining dynamics. Minimum Grade of “C-” required for enforced prerequisite. Students who have already taken ME 520 with a grade of B or better will not receive additional credit for ME 522. Are technical in nature, including performance indices, multiple constraints and objectives. 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