So, it cannot be transferred as IOE credit. Advised Co-requisite: MECHENG 461 or equivalent. Joint force analysis and dynamic analysis formulations. (3 credits) Quantum, molecular dynamics and Boltzmann transport treatments are used, along with applications (e.g., thermoelectrics, photovoltaics, laser cooling, phonon recycling, size effects). (3 credits) Regular perturbation solutions; suppression of secular terms; method of multiple scales; boundary layer and low Reynolds number flows by inner and outer expansions; phenomena in rotating flows. Introduction to micro-actuators and microsensors such as micromotors, grippers, accelerometers and pressure sensors. Introduction to machining operations. (4 credits) Proficiency in the fundamental understanding of materials processing techniques. Review of energy methods, Betti's reciprocal theorem; elastic, thermoelastic and elastoplastic analysis of axisymmetric thick cylinders and rotating discs; bending of rectangular and circular plates, including asymmetric problems; beams on elastic foundations; axisymmetric bending of cylindrical shells; torsion of prismatic bars. (Course Profile), Prerequisite: Chem 130 & 125 or Chem 210 & 211, and (Math 116 or Math 121 or Math 156.) These span the entire spectrum of aerospace technologies, from aerodynamics and propulsion (collectively referred to as “gas dynamics”) to structural mechanics, flight dynamics and controls. (4 credits) Reconfigurable manufacturing systems. Prerequisite: MECHENG 440. Automotive and other applications considered. Prerequisite: MECHENG 511. Mass production and lean production. Tolerance synthesis. Students will have the opportunity to develop a program to implement the methods to simulate nanostructure evolution. Surface roughness effects. MECHENG 571 – Energy Generation and Storage Using Modern Materials. Emphasis is on body concept for design using first order modeling of thin walled structural elements. 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. Mission Statement; Undergraduate; Sequential Undergraduate/Graduate Study (SUGS) Graduate; Naval Architecture and Marine Engineering Courses; Contacts; Nuclear Engineering and Radiological Sciences. Design and analysis of two-level factorial experiments. Stress, strain and displacement, equilibrium and compatibility. Minimum grade of "C" required for enforced prerequisites. Prerequisite: MECHENG 311 or MECHENG 350. (3 credits) Minimum grade of "C" required for enforced prerequisite. (3 credits) Courses: Mechanical Behavior of Materials, Atomistic Computer Modeling of Materials, Contact Mechanics, Friction & Wear Thermal and Fluid Sciences Follow fluid flow and heat transfer and apply mathematical methods and physics to better understand how energy is carried. Definition of biological tissue and orthopedic device mechanics including elastic, viscoelastic and non-linear elastic behavior. Gas radiation including boundary affected thin gas and thick gas approximations. Election for dissertation work by a doctoral student who has been admitted to candidate status. 400 Level Courses. (3 credits) Integration of economic indicators with life cycle environmental and social metrics for evaluating technology systems. (1-3 credits) Two hour lecture and one hour lab. Theoretical and computational aspects of finite element methods. (Course Profile), Prerequisite: MECHENG 211, MECHENG 240, Math 216. Prerequisite: graduate standing and seniors by PI. (Course Profile), Prerequisite: MECHENG 350. Ideal gas mixtures and moist air applications. Laser principles and optics. Prerequisite: MECHENG 438 and MECHENG 461 or equivalent is recommended. Prerequisite: MECHENG 360. (Course Profile), Prerequisite: permission of instructor. Fluid statics; conservation of mass, momentum and energy in fixed and moving control volumes; steady and unsteady Bernoulli's equation; differential analysis of fluid flow; dimensional analysis and similitude; laminar and turbulent flow; boundary layers; lift and drag; applications to mechanical, biological, environmental, and micro-fluidic systems (Course Profile), Prerequisite: MECHENG 320. Prerequisite: MECHENG 520. Prerequisite: MECHENG 335. The finite volume formulation of the equations. (3 credits) Mechanisms of deformation, cohesion, and fracture of matter. The Rackham Graduate School works together with faculty in the schools and colleges of the University to provide more than 180 graduate degree programs and to sustain a dynamic intellectual climate … Research Areas: Diversity, Equity and Inclusion; Students and practitioners; Instructional innovation and change. Prerequisite: Math 451 and Math 217 or equivalent. Stochastic response of nonlinear systems, and the Fokker-Planck Equation. Introduction to theory and practice of the finite element method. Correlation. Courses, by research area Autonomous Systems and Control Fundamental courses. I’m especially interested in adding the “human in the loop” and studying how humans interact w ith these robotic systems. A unified approach to the modeling, analysis and simulation of energetic dynamic systems. The student(s) submits proposal and presents poster at ME Undergraduate Symposium.) Brown Laboratory Truncation errors, stability, conservation and monotonicity. Emphasizes systems approach to automotive design. Emphasis on structure function relationships. Newton/Euler and Lagrangian formulations for three-dimensional motion of particles and rigid bodies. Semester-long, model-based design/build/test project in a team setting (Course Profile), Prerequisite: MECHENG 240 and P/A EECS 314. Analysis of human movement, including gait, running and balance. Fundamental properties of biological systems, followed by a quantitative, mechanical analysis. Minimum grade of "C" required for enforced prerequisites. Green's tensor; variational, Galerkin and Hamilton's equations. (3-4 credits) Prerequisite: MECHENG 382 and MECHENG 335 or equivalent. Prerequisite: MECHENG 520. Conduction of heat and electricity across interfaces. Prerequisite: EECS 314 or equivalent. Developing mathematical models of dynamic systems, including mechanical, electrical, electromechanical and fluid/thermal systems and representing these models in transfer function and state space form. Chain reactions, ignition, quenching and flammability limits, detonations, deflagrations and flame stability. Design projects. Dynamic loading. Examples from areas of thermal diffusion, potential/irrotational flows, lubrication, structural mechanics, design of machine components, linear elasticity and Navier-Stokes flows problems. Student(s) work under the direction of Mechanical Engineering faculty. Many of these courses are cross-listed between U-M’s various schools. Two-dimensional Burke-Schumann flames and boundary layer combustion. Mechanical Engineering Courses; Contacts; Naval Architecture and Marine Engineering. It will also cover design, modeling and manufacturing issues involved in integrating smart materials and components with control capabilities to engineering smart structures. Prerequisite: MECHENG 520. Will review system identification, averaging, feedforward, feedback, multivariable (multiple SISO and MIMO), estimation, dynamic programming and optimal control techniques. (3 credits) Process behavior over time. As chair of the University of Michigan Department of Mechanical Engineering (U-M ME), I have been privileged to witness their remarkable commitment and resilience in so many ways... read more, New Mechanical Engineering Faculty Openings. Mechatronics is the synergistic integration of mechanical disciplines, controls, electronics and computers in the design of high-performance systems. Dr. Lattuca studies students’ experiences in engineering courses and programs with the goal of improving curricula, teaching, and learning and broadening participation of marginalized students. Prerequisite: MECHENG 382 and senior, or graduate standing. (3 credits) Advsised Prerequisite: MECHENG 350, MECHENG 360, EECS 314 or equivalent (4 credits) Prerequisite: MECHENG 541. (Course Profile), Prerequisite: MECHENG 382. Axisymmetric torsion. Robust design. Modeling, analysis and control of vehicles with electrified propulsion systems, including electric vehicles, hybrid vehicles, plug-in and fuel cell vehicles. Prerequisite: MECHENG 240. For outstanding contributions to hydrodynamics research, Professor Steve Ceccio has been recognized by ASME. The Engineering Advising Center (EAC) provides academic services and support for first year and undeclared students. (1-8 credits); (1-4 credits) Globalization and manufacturing paradigms. Engineers are problem-solvers. A mechanical engineering design project by which the student is exposed to the design process from concept through analysis to layout and report. Analysis using interactive computer simulation programs. Official tutoring will end on Tuesday, December 8th. Computer simulations and discussion of experimental measurement techniques. This is an intermediate level fluid mechanics course which uses examples from biotechnology processes and physiologic applications including the cardiovascular, respiratory, ocular, renal, musculo-skeletal and gastrointestinal systems. It has been an extraordinary year, one that has underscored the grit, resolve, and dedication of our entire community — our faculty, staff, students, and alumni alike. Emphasis is placed upon system-level modeling, model order reduction from micro-scale and surrogate models for load control, estimation, on-board identification and diagnostics for Lithium Ion batteries. Graduate standing or special permission. Mechanics of proprioceptors and other sensors. I hope this message finds you safe and well. 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. Very different from them study lead to a Bachelor of Science in engineering ( B.S.E. Symposium. Two-Phase flows, flow control and flows involving heat transfer ) manufacturing system design methodologies and procedures Fokker-Planck equation Definition! Of electromechanical systems awarded Ellen Arruda for her sustained outstanding contributions in theoretical and techniques! In fixed and moving reference frames materials into power supplies has changed the landscape of Options: 140... Quality control, and control fundamental courses work under the direction of mechanical engineering.... Fraction and polynomial descriptions choice of materials processing and manufacturing issues involved in integrating smart materials and systems. 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