CourseProfile (ATLAS), MECHENG 619. Prerequisite: MECHENG 520 or NAVARCH 520 or equivalent. Prerequisite: MECHENG 211. Multiphase Flow Every Ph.D. student in the field of mechanical sciences is asked to present a one-hour seminar about his/her research, and lead a one-hour follow-up discussion. Design projects. (3 credits) The PDF will include all information unique to this page. The topics will include unconstrained and constrained optimization, discrete-time optimal control problems, dynamic programming, stability, invariance, reachability, and linear predictive control problems with application examples in mechanical engineering. The subjects of study in each term usually depend on student and instructor interest. Use of Materials and their Selection in Design CourseProfile (ATLAS), MECHENG 483. Prerequisite: graduate standing or permission of instructor. Cutting forces and mechanics of machining. Prerequisite: candidate status in the mechanical sciences. Computer assignments. Stresses and deformations in mechanical and structural elements and systems; theory, analysis and applications. Dynamic Behavior of Thermal-Fluid Processes Prerequisite: senior or graduate standing. Prerequisite: MECHENG 501 (MECHENG 311 or MECHENG 320). Analytic and experimental determination of stresses in machine members. Application to spark, diesel and gas turbine engines. Fundamentals of plasticity; stress-strain relations, yield criteria and the general behavior of metals and nonmetals beyond proportional limit in the light of experimental evidence. ME 522     Advanced Fluid Mechanics     3 Credit Hours, Graduate level course of fluid mechanics. (3 credits) (4 credits) Instruction Mode: Online – Synchronous Vector description of force, position, velocity and acceleration in fixed and moving reference frames. Design strategies for power systems are described, in the context of growing global demand for power and energy. Global Product Development Principles of transport processes and automatic control. PI for all others. Emission and absorption. The roles of rheology and flow modeling are discussed. Dissertation work by a student of the Ph.D. in Mechanical Sciences and Engineering Program conducted under guidance of the faculty advisor. Electromagnetic, optical and quantum aspects of radiative equilibrium. Radiation and scattering from non-simple geometries. 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. CourseProfile (ATLAS), MECHENG 513 (Auto 513, MFG 513). Describes the core methods used to simulate matter at the atomic scale. CourseProfile (ATLAS), MECHENG 438. Effects of hardening and friction, temperature, strain rate and anisotropy. Similarity solutions. Elements of quantum mechanics, statistical mechanics and kinetic theory, as applied to engineering thermodynamics. (3 credits) CourseProfile (ATLAS), MECHENG 350. FEA in dynamics. Instruction Mode: Online – Asynchronous This course focuses on the dynamics and control of road vehicles. Emphasis will be placed on basic understanding of the convection heat transfer phenomena and the necessary mathematical techniques for the solution of such problems along with engineering applications. The course is to establish a working familiarity with the key engineering elements in the design and control of electro-mechanical systems in general and automotive systems in particular. Spatial and temporal approximation techniques for partial differential equations: stability, consistency and convergence. Vibration of continuous systems. Application of course techniques to engine research projects. (3 credits) ME 570     Powertrain NVH of Elect Veh     3 Credit Hours. Post-yield behavior, residual stress, temperature and corrosion effects. Temperatures of the tool and workplace. The Regents of the University of Michigan, Michigan Engineering | College Administration, 1221 Beal Avenue, Ann Arbor, MI 48109-2102, Safety Information | Privacy Policy | Human factor considerations such as driver interfaces. Injection molding applied to other materials, such as ceramics, is also described. The students will be familiarized with the present emission control technologies and future challenges. Student must complete a dissertation and defend his/her thesis in front of a committee of at least 2 faculty members. Course Lists. Instruction Mode: Online – Synchronous Evolution of quality methods. Extensive use of commercial finite element software packages, through computer labs and graded assignments. Advanced Engineering Acoustics 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 539 (APPLIED PHYSICS 639). Thermoelasticity. The Bulletin includes the complete listing of CHE courses and descriptions. CourseProfile (ATLAS), MECHENG 400. Prerequisite: MECHENG 360; preceded or accompanied by MECHENG 461. Review of matrices, strain and stress tensors. The student must be admitted to the Ph.D. candidacy status. Geometry, kinematics, differential kinematics, dynamics, and control of robot manipulators. (3 credits) Topics will include controls, heat transfer, fluid mechanics, thermodynamics, mechanics, materials and dynamical systems. Vorticity theorems of Helmholtz and Kelvin. CourseProfile (ATLAS), MECHENG 502. Pre: 2124, (MATH 2214 or MATH 2214H). Properties of solar radiation. Graduate standing or special permission. CourseProfile (ATLAS), MECHENG 512 (CEE 509). Introduction of the fundamental concepts and methods of analysis of fluid flows in industrial and environmental settings. Prerequisite: MECHENG 311. Prerequisite: MECHENG 382. CourseProfile (ATLAS), MECHENG 521. Applications to engineering systems involving vibration isolation, rotating imbalance and vibration absorption. Dissertation work by doctoral student not yet admitted to status as candidate. Techniques for measurement of monitoring of important process variables for model verification and process control. Advanced Mechatronics for Manufacturing Specifically, the electro-mechanical  design/modeling, basic/advanced control, and real-time motion generation techniques for computer-controlled manufacturing machines are studied. Fundamental concepts of laser/material interaction. A topic in mechanical engineering under the direction of a member of the department. A few methods to be considered include the Rayleigh-Ritz, Galerkin, Collocation, Myklestad, and Lumped-parameter methods. (3 credits) The mathematical tools required to describe spatial motion of a rigid body will be presented in full. CourseProfile (ATLAS), MECHENG 562. Students must satisfactorily complete 6 credit hours in ME 699, but these hours may be spread over more than one term. Restriction(s): Cannot enroll if Class is Cannot enroll if Level is Can enroll if Major is Mechanical Engineering-NCFD, , Bioengineering, Mechanical Engineering, ME 521     Dyn and Therm of Comp Flow     3 Credit Hours. Prerequisite: MECHENG 520. The courses in this list do not require background knowledge in any specific domain, such as mechanics, combustion, or aerospace. Student(s) work under the direction of Mechanical Engineering faculty. CourseProfile (ATLAS), MECHENG 506 (BIOMEDE 506). (OC), Restriction(s): Can enroll if Level is Doctorate or Rackham or GraduateCan enroll if Program is, ME 622     Adv Topics in Fluid Mechanics     3 Credit Hours. (4 credits) Coverage The goal of machine learning is to develop computer algorithms that can learn from data or past experience to predict well on the new unseen data. Restriction(s): Cannot enroll if Class is Can enroll if Major is Mechanical Engineering-NCFD, , Bioengineering, Mechanical Engineering, ME 512     Structural Dynamics     3 Credit Hours. I started my career out in the 1990’s in mechanical automotive engineering, and could recognize potential limitations there, so I returned to the University for a master’s in Industrial Engineering with an emphasis in computer science, and that got me into a career of IT and software development, which I have been very happy with. Combustion-generated pollution. (3 credits) Prerequisite: None. Overview and analysis of the single-point, multiple-point and abrasive processes. Emphasis on the interaction between proper modeling and computation. Prerequisite: MECHENG 541. Design and analysis of two-level factorial experiments. Instruction Mode: Online – Synchronous Material microstructures, dislocations and defects; processing and mechanical properties of metals, polymers and composites; heat treatment of metals; elastic, plastic, and viscoelastic behavior of materials, strain hardening; fracture, fracture mechanics, fatigue and multiaxis loading; creep and stress relaxation; materials-related design issues, materials selection, corrosion and environmental degradation of materials. Advanced Finite Element Methods in Mechanics Applications of differential equation methods of particular use in mechanics. Prerequisite: permission of instructor. (3 credits) (3 credits) CourseProfile (ATLAS), MECHENG 482 (MFG 492). Instruction Mode: Online – Asynchronous/Synchronous Physical and mathematical foundations of computational fluid mechanics with emphasis on applications. Mathematical modeling of engineering design problems as discrete optimization problems, integer programming, dynamic programming, graph search algorithms, and introduction to NP completeness. Prerequisite: MECHENG 235. 19%. (3 credits) Prerequisite: MECHENG 382. CourseProfile (ATLAS), MECHENG 515. (1-8 credits); (1-4 credits) Fatigue in Mechanical Design CourseProfile (ATLAS), MECHENG 790. 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 537. Energy and momentum concepts. Restriction(s): Cannot enroll if Level is Can enroll if Major is Mechanical Engineering-NCFD, , Bioengineering, Mechanical Engineering, ME 532     Combustion Processes     3 Credit Hours. Prerequisite: graduate standing; permission of the instructor who will guide the work; mandatory satisfactory/unsatisfactory. An advanced treatment of analytical mechanics for particles, systems of particles and rigid body motions with special emphasis on three-dimensional motion. Minimum grade of “C” required for enforced prerequisites. (YR). Prerequisite: MECHENG 382. (3 credits) 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. The course provides an overview of energy technology from a broad perspective that encompasses technical and environmental aspects. Rotational flow; Stability, Kelvin-Helmholtz and Rayleigh-Taylor instabilities. Prerequisite: MECHENG 240. A course listed as odd-years or even years means that the course is taught every other year, as in 2009, 2011, etc. Detailed descriptions of the principles and component designs of various types of fuel cells including proton exchange membrane fuel cell (PEMFC), phosphoric acid fuel cell (PAFC), solid oxide fuel cell (SOFC), and molten carbonate fuel cell (MCFC). The topics include: principles of energy conservation, heat transfer, and fluid mechanics; vehicle thermal management system and components; electrification of vehicle thermal management system; EDV thermal management; battery thermal management in EDVs; and waste energy recovery. CourseProfile (ATLAS), MECHENG 699. CourseProfile (ATLAS), MECHENG 662 (AEROSP 672) (EECS 662). Perturbation Methods for Fluids Galerkin and Papcovich-Neuber solutions, singular solutions, spherical harmonics. CourseProfile (ATLAS), MECHENG 523 (AEROSP 523). (MacroSE 517) Mechanics of Polymers I (3 credits) Heat transfer mechanisms. Topics include: Structure of matter and interatomic potentials; High-performance computing; Electronic structure methods; Molecular dynamics; Monte Carlo; Transition state theory; Accelerated dynamics and multi-scale modeling. Introduction to combustion processes; combustion thermodynamics, reaction kinetics and combustion transport. CourseProfile (ATLAS), MECHENG 527. In addition, each student will participate as a panelist in a panel discussion of the future trends in his/her field. The course is for doctoral students who have not completed the PhD program's coursework requirements. One-dimensional, compressible flow involving area change, normal shocks, friction, heat transfer, and combined effects. Kinematics of motion generalized coordinates and speeds, analytical and computational determination of inertia properties, generalized forces, Gibb’s function, Routhian, Kanes’s equations, Hamilton’s principle, Lagrange’s equations holonomic and nonholonomic constraints, constraint processing, computational simulation. Selected topics in multiphase flow including nucleation and cavitation; dynamics of stationary and translating particles and bubbles; basic equations of homogeneous two-phase gas/liquid, gas/solid and vapor/liquid flows; kinematics and acoustics of bubbly flows; instabilities and shock waves in bubbly flows; stratified, annular and granular flow. 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. This course may be used as part of the IVHS certification program. (3 credits) This is an in-depth course on injection molding processes, which include the conventional injection molding process, low pressure injection molding, structural sandwich molding, gas assisted injection molding etc. Generalized mathematical modeling of engineering systems, methods of solution and simulation languages. Applications to engineering systems involving vibration isolation, rotating imbalance and vibration absorption. ME 573     Radiative Transport of Heat     3 Credit Hours. Fluid Mechanics II (3 credits) Stress field of edge and screw dislocations, dislocation interactions, and cross slip. Process costs and limits; influence of processes on the final mechanical properties of the product. Random Vibrations Monitoring and life prediction techniques will be covered. College Bulletin: A complete, official and current list of all EECS and Engineering courses; EECS Special Topics Courses; New Course Announcements; LSA Course Guide: A search tool that provides information on a wide selection of courses; Selected ECE Courses. Combustion It covers a wide range of traditional and alternative energy sources and presents assessments of their availability, sustainability, and environmental impacts as well as evaluation of their potential role in solving the global energy problem. The emphasis in this course is on automotive composites, such as SMC, SRIM and RTM. Stream of variation. EECS 425: Integrated Microsystems Laboratory. RISE 2 – Research, Innovation, Service and Entrepreneurship Topics include: complex analysis (functions of complex variables, contour integrals, conformal mappings), linear operator theory (vector spaces, linear algebra), ordinary differential equations (series solutions, Laplace and Fourier transforms, Green’s functions). Applications of HVAC fundamentals to analysis and design of automotive air conditioning systems. Natural modes of vibration for continuous systems will be discussed using the boundary value formulation, the general formulation of the eigenvalue problem and orthogonality. A comprehensive treatment of the theory of the mechanics of deformable media. ME 598     Engine Emissions     3 Credit Hours. (3 credits) Fundamentals of Defects in Materials and Applications of Atomistic Modeling  CourseProfile (ATLAS), MECHENG 456 (BIOMEDE 456). The list below outlines the courses … Topics covered include: Rayleigh and Timoshenko beams and plates; free and forced vibration response of structural components; static and dynamic stability; and impact. Thermal radiation processes. Prerequisite: MECHENG 520. (3 credits) Microelectromechanical Systems It will consider both linear and non-linear models to describe elastic, plastic, viscoelastic, viscoplastic, hypo-and hyper-elastic response of materials to mechanical loads. CourseProfile (ATLAS), MECHENG 401. Instruction Mode: Online – Synchronous Exact and approximate techniques for the analysis of problems in mechanical engineering including structures, vibrations, control systems, fluids, and design. Non self-adjoint systems. (AY). Prerequisite: (Math 215 or Math 255), MECHENG 235, and MECHENG 240. The ME Core courses consist of five categories: Design and Manufacturing, Mechanics and Materials, Dynamics and Controls, Thermal Sciences, and Laboratories and Technical Communication. Graded S-U. Discrete Design Optimization Classification of partial differential equations and solution techniques. Emphasis is given on their deformation, fatigue and fracture characteristics. Prerequisite: MECHENG 461 or equivalent. Instruction Mode: In-Person – Synchronous, Online – Synchronous Fundamental concepts and methods of fluid mechanics; inviscid flow and Bernoulli theorems; potential flow and its application; Navier-Stokes equations and constitutive theory; exact solutions of the Navier-Stokes equations; boundary layer theory; integral momentum methods; introduction to turbulence. Methodology for materials selection and optimization, including performance indices, multiple constraints and multiple objectives. Prerequisite: advised Math 216; Math 217 or equivalent recommended. ME 611     Modeling of Engr Matls     3 Credit Hours, Full Course Title: Modeling of Engineering Materials Radiant exchange involving: absorbing and emitting media, including gases and flames. Introduction to system reliability. 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. (3 credits) CourseProfile (ATLAS), MECHENG 661. Prerequisite: MECHENG 336, preceded or accompanied by MECHENG 320. Tolerance analysis. Algebraic approaches to the fundamentals of radiation heat transfer problems formulation and computational dynamics I Prerequisite graduate. A battery system and its modeling will also cover design, manufacturing, prototyping. Do occur design or laboratory Research in a panel Discussion of the response ride! Four different aspects of finite element method 591 ) to simulate nanostructure.. Submit a report on the project at the atomic scale updated Lagrangian formulations, techniques... Topics to be considered for various systems of Mechanic systems 3 Credit Hours, graduate level course of Undergraduate,! 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