Fabrication and Characterization of Nanomaterials . ENGRMAE249P. Introduction of thermochemistry and combustion. Students with a score of4.0with70%average from state exams would be considered on a case by case basis for the Loughborough University Foundation Year. Reduced-order control, stability, multipliers, and mixed-mu. EMAE481. Equations of motion for complete aeroelastic systems; solution techniques. 3 Credit Hours. Acoustic wave propagation in inhomogeneous flows, flame-acoustic wave interactions, and control of combustion-driven oscillations. Three dimensional flow: slender-body theory. Coreq: EMAE382. Review of conservation equations. Rotorcraft Design I. Restriction: Mechanical Engineering Majors have first consideration for enrollment. For students tasking theAvgngsbetyg / Slutbetyg frn Gymnasieskola, typical offers are normally based on an average score from 2500 credits with an A counting as20points, a B counting as17.5points, a C counting as15points etc. Case histories and practical approaches to mitigate fatigue and prolong life. Please see the Approved Qualifications table on the English Language page for further details. Topics include: buoyant driven flow, fire plume, ceiling jet, vent flow, flashover and smoke movement as well as steady burning of liquids and solids; ignition, extinction and flame spread over solids. 3 Units. Advanced topics in viscous and compressible flows. Andres Felipe Bermudez Mendoza. Introduction to modern multidisciplinary design optimization methods and techniques. The Uganda Advanced Certificate of Education (UACE) is also acceptable with grades equivalent to the typical A Level offer requirements. Rotorcraft Design. Students learn how to probabilistically formulate a design problem, translate the formulations into a computer, and systematically find the solution. AE2220R. Alternatively, please contact the International Office to check if the Foundation Programme that you are considering taking is acceptable for entry to Loughborough courses. Unsteady incompressible flow equations in primitive and vorticity/stream function formulations. As shown in Fig. Applications to nonlinear control methods, such as sliding mode or adaptive techniques. Prerequisite: ENGRMAE200A and ENGRMAE270A. 2 Credit Hours. Flow instabilities, choking in two-phase flow, film and dropwise condensation. AE6531. This should not be confused with open-channel flow where the conduit is partially filled by the fluid and thus the flow is partially bounded by solid surfaces, as in an irrigation ditch, and flow is driven by gravity alone. 3 Credit Hours. Dilational, equivalue mixed waves; Rayleigh and Lamb waves, reflection, refraction, impact problems, plastic waves, N.D.E, vibration control, numerical methods, finite deformation wave propagation, constitutive equations. Aerospace applications including elastically coupled composite and sandwich plates. Buckling of beams on elastic foundations, rings and arches; elasticity theory; torsional buckling of shafts, buckling of plates, circular cylindrical shells, rotating beams, nonconservative problems. 4 Units. Applications to aerospace devices. AE6412. Mechanical Engineering Majors have first consideration for enrollment. 1 Credit Hour. Aerospace Engineering Elective. Normally taken by sophomores. To introduce the basic principles of acoustics including measurement and analysis. 3 Credit Hours. AR 2011 Recitation. Students who have studied the Bng Tt Nghip Ph Thng Trung Hc will need to complete an appropriate Foundation Year. The detailed information will be provided in the first week of the class. Analysis of Aerospace Structural Elements. 3 Credit Hours. AE6393. Archival data include the placement information for graduating seniors, which provides direct information regarding the success of the graduates in finding employment or being admitted to graduate programs. AE3903. Aerospace Engineering Majors have first consideration for enrollment. EMAE399. For students taking theBrandos Atestatas, typical offers generally range from9.010.0overall. Sorry, preview is currently unavailable. AE6070. Mechanics of cells. 3 Units. Aerospace Engineering Majors have first consideration for enrollment. Euler-Lagrange formulation; Hamilton-Jacobi approach; Pontryagin's minimum principle; Systems with quadratic performance index; Second variation and neighboring extremals; Singular solutions; numerical solution techniques. Noise problems. Dynamics of interacting machine component, comprehensive understanding of system dynamic behavior. Prerequisite: (ENGR80 or ENGRCEE80 or ENGRMAE80) and MATH2E and MATH3D. A schematic of the PINN framework is demonstrated in Fig. Chemical kinetics and thermodynamics; governing conservation equations for chemically reacting flows; laminar premixed and diffusion flames; turbulent flames; ignition; extinction and flame stabilization; detonation; liquid droplet and solid particle combustion; flame spread, combustion-generated air pollution; applications of combustion processes to engines, rockets, and fire research. A host of design software is installed locally, including Solidworks, MasterCAM, Abaqus, COMSOL, and MATLAB. (Design units: 1) Prerequisite: ENGRMAE 130A Normally taken by seniors. Chemical Engineering Majors have first consideration for enrollment. To provide hands-on experience of a proprietary CFD code. Acoustic Propagation. Results generated from the study when compared with existing literature are in good agreement. English language studied within the above qualification is normally sufficient to meet the universitys minimum entry requirements. The Apolytirion is not accepted for direct entry to the University when studied on its own. 2 Credit Hours. Get Started Now. 3 Credit Hours. Introduction to Monte Carlo methods and particle filtering. Multi-Phase Combustion. Space propulsion requirements and maneuvers, stressing those best suited to electric propulsion. Students are assumed to have an adequate background in calculus, physics, and engineering mechanics. About Our Coalition. For students taking the SlovakianMatura (Vysvedenie o maturitnej skke), typical offers range from2.00to1.00average from best 4 subjects with specific subject marks (either1or2) required for some courses. Mass minimization under stiffness, strength, and buckling constraints. Interactive simulators. 4 Units. For IB requirements please see theundergraduate prospectus. AE4531. AE8883. Structural Dynamics. One-dimensional flow with area variation, friction, heat transfer, and shocks. Related Papers. Stress-strain behavior of composites, property of matrix and reinforcing materials, mechanics of fiber-reinforced composites, lamina and laminate analysis, and mechanical performance. Integration of technologies. 4 Units. An accredited course is an important element for graduates to become a professionally registered engineer. Introduction to finite-difference solutions. 3 Units. A schematic of the PINN framework is demonstrated in Fig. Performance criteria. As shown in Fig. Restriction: Upper-division students only. For students taking theCaribbean Advanced Proficiency Examination (CAPE), we typically require a range from 2, 2, 2 - 1, 1,1 achieved from three 2-unit exams with specific subject marks of 1 or 2 required by some courses. Structural Optimization. AE6410. 3 Credit Hours. Applied numerical analysis, including solution of linear algebraic equations and ordinary and partial differential equations; modeling of physical processes, including fluid flow and heat and mass transfer; use of general purpose computer codes, including commercial computational fluid dynamics software packages. AE2699. Special Topics. EMAE600T. Arbin battery testers are available to test the batteries from a single individual battery cell to a battery module pack on their electrochemical performance, internal impedance, rate capability, etc. AE4883. Those who have a checking or savings account, but also use financial alternatives like check cashing services are considered underbanked. Topics include: grasping, wearable assistive locomotion, legged locomotion, locomotion in fluids, and locomotion over soft terrain. ENGRMAE185. That means the impact could spread far beyond the agencys payday lending rule. Special Problems. The scope includes an appreciation of fuels/combustion, power-producing cycles, internal/external fluid flows and further heat transfer. 4 Units. EMAE360. Rational approaches to materials selection for new and existing designs of structures. However, as engineers challenge themselves to make increasingly soft robots, new challenges in design and control need to be addressed. AE4903. Methods for analyzing aviation systems, flight and engine performance, operations, and associated modern environmental challenges, including fuel burn, emissions, and noise are introduced. Theory of Machines and Mechanisms. Dynamics of Machinery. Finite deformation kinematics; stress and strain measures; invariance in solid mechanics; objective rates; constitutive theory of elastic and inelastic solids; rate formulations; computational approaches; theories of plates and shells; applications to aerospace vehicles. Tools for advanced feedback control design for these systems, including computational packages. Air Pollution and Control. Typically performed as an extension to EMAE397 or EMAE398. Solid pyrolysis, ignition, flame spread, material flammability, wild land fire, battery fire, fire dynamics, fire modeling, combustion in micro- and partial gravity. 3 Credit Hours. Manufacturing aspects are also covered. AE8740. 3 Units. Review of mass, momentum, energy equations. All Ph.D. candidates enrolled in this course sequence will be expected to perform direct contact teaching at some point in the sequence. Advanced Heat Transfer. Fundamental conservation laws. Structural Analysis. 3 Credit Hours. Necessary and sufficient conditions for optimimality. ENGRMAE295P. Emphasis addresses understanding and use of designed experiments, response surfaces, linear regression modeling, process optimization, and development of links between empirical and theoretical models. Special Problems in Aerospace Engineering. Basic two-phase flow equations, homogeneous model, drift-flux model, flow regimes, pressure drop in two-phase flow. Students taking the Baccalaurat Gnral will need to complete a suitable Foundation Year. Advanced Heat Transfer. 3 Credit Hours. Students with A Level or IB qualifications will be considered for direct entry to undergraduate degree courses. The academic and research activities of the department center on the roles of mechanics, thermodynamics, heat and mass transfer, robotics, mechatronics, data analytics, sustainability in manufacturing, and engineering design in a wide variety of applications such as aeronautics, astronautics, biomechanics and orthopedic engineering, biomimetics and biologically-inspired robotics, energy, environment, mechanics of advanced materials, and nanotechnology. Lecture based modules are assessed by a combination of coursework and formal examinations taken at the end of each semester. Titration involves the addition of a reactant to a solution being analyzed until some equivalence point is reached. Aerospace Engineering Elective. Introduction to computational fluid dynamics in simple engineering devices. 3 Credit Hours. Introduce students to the development and analysis of complex System of Systems, and their practical application to formulate Grand Challenge projects. 3 Units. Students with A Level or IB qualifications will be considered for direct entry to undergraduate degree courses. AE6530. AE4343. Computer implementation. Companies, therefore, target the School with placement year opportunities and a number of companies offer sponsorship, for which there is intense competition. For undergraduate Engineering majors in supervised but independent reading, research, or design. The Bio-imaging Laboratory includes microscopes and three-dimensional imaging equipment for evaluating tissue microstructure and workstations for three-dimensional visualization, measurement, and finite element modeling. Physics of premixed, non-premixed, and partially premixed turbulent combustion. Thermodynamic and fluid properties. Crosslisted with CEE, CHE, ME, MSE, and PTFE 4794. Students following the Option Internationale (OIB) will often receive a slightly lower offer. Finite Element method and application to trusses. Group or individual senior project of theoretical or applied nature involving design. Fundamentals of heat and mass transfer. 1-21 Credit Hours. For students taking theDiploma de Bacalaureat, typical offers range from8.69.4overall. Control of Mechanical Systems. Aircraft Design. Topics will include resource estimation, environmental effects and economic evaluations of fossil fuels, nuclear power, hydropower, solar energy and more. A thermal interface material or mastic (aka TIM) is used to fill the gaps between thermal transfer surfaces, such as between microprocessors and heatsinks, in order to increase thermal transfer efficiency.It has a higher thermal conductivity value in Z-direction than xy-direction. Download Free PDF View PDF. Special Topics. Normally taken by seniors. Robotics Research Foundation I. AE6445. Special Topics. 479C Glennan Building (7222)Phone: 216.368.6045; Fax: 216.368.6445Robert X. Gao, Cady Staley Professor of Engineering and Department Chairrobert.gao@case.edu. Classical Mechanics. Participants are exposed to disciplinary and interdisciplinary issues. Since its founding in 1995, faculty and students in the EMS lab have been conducting fundamental and applied research on physics-based sensing for improved observability and controllability of dynamic systems, vibration analysis, machine learning for data analytics, energy harvesting, smart materials and structures, and energy-efficient wireless communication methods based on radio frequencies, acoustic waves, and magnetic field coupling. 4 Units. Individual or team design or experimental project under faculty supervisor. Autonomous situational flight model allows students to examine complex behaviors in the "pilot-vehicle-operational conditions" system. Due to recent technological developments and public interest, the retail ENGRMAE248. Technical resume preparation. Spacecraft and Launch Vehicle Design I. Robotics Research Foundation II. Methods of problem formulation and application of frequently used mathematical methods in mechanical engineering. 3 Credit Hours. First and second laws of thermodynamics. Download Free PDF. 3 Units. The Laboratory for Soft Machines & Electronics (SME) has approximately 600 square feet in space with a diverse set of facilities for the development, characterization, manufacturing and testing of multifunctional materials, soft robotics, flexible and stretchable electronics. Aerospace Robust Control II. 3 Credit Hours. Water in a city is distributed by extensive piping networks. Please see the undergraduate prospectus for specific course requirements. ENGRMAE278. Introduction to System of Systems Engineering Principles. Examples of significance and role of analytic solutions, approximate methods (including integral methods) and numerical methods in the solution of heat transfer problems. JERICK JABIEN. Where courses have specific subject requirements, a score of between70%and90%would normally be required in a higher level exam. Applications are presented in diverse areas of science and engineering that include the coordination of vehicles and distribution of energy and resources. Prereq: EMAE252. Presents atomistic mechanisms that control mechanical behavior of materials. 3 Units. Other theoretical approaches. AE6767. 4 Credit Hours. Life Cycle Cost Analysis. Estimation of total weight and weight distribution, design of wings, fuselage, and tail, selection and location of engines, prediction of overall performance. Similar trend is observed adopting the alumina nanoparticle. Projects involve developing (or improving) design of aerospace vehicles of current interest (aircraft and spacecraft) starting from mission requirements to researching developments in relevant areas and using them to obtain conceptual design. The Biorobotics Complex (http//biorobots.cwru.edu/) consists of 8 labs, shops and office spaces on the 8th floor of the Glennan Engineering Building. Advanced Dynamics I. Analysis of stresses and deformation of shells with and without bending, shells forming surfaces of revolution, asymptote methods, buckling of shells, nonlinear theories. Download Free PDF View PDF. This course focuses on the analysis of advanced aerospace structures. Our students have undertaken placements in a variety of sectors including automotive, aerospace, electronics, consumer goods, computer software and food processing. Interview preparation & career search. MATH3D with a grade of C- or better. The laboratory is equipped with state-of-the-art Particle Image Velocimetry (PIV) equipment, Pulsed Ultrasound Doppler Velocimeter, Ultrasound concentrationmeasurement instrumentation and modern data acquisition and analysis equipment including PCs. Students design a small robotic device and program it to exhibit sentient behaviors. We start this chapter with a general physical description of internal flow and the velocity boundary layer. 3 Units. Restriction: Mechanical Engineering Majors have first consideration for enrollment. For students taking the Unified Examination Certificate (UEC) we would typically require from the best 7 subjects grades ranging 2xA1 5xA2 to 7xB3 in the UEC-SML. Analysis of heat transfer in complex systems such as biological organisms, multi-functional materials and building enclosures. All of our courses have an established reputation with employers in industry. Comprehensive methodologies for aerospace vehicle synthesis and sizing. Weve got everything you need for a really successful future. Safety and professional procedures emphasized. Mechanics of Structures Laboratory. Stress analysis of aircraft components. Technical or leadership role commensurate with junior standing. Aircraft Vehicle Design. EMAE250. ENGRMAE263. Radiation-convection interaction. Design of a thermodynamic process. 3 Credit Hours. 1-21 Credit Hours. Gradient projection, penalty functions, and Lagrange methods. However the silver nanoparticle having better thermal properties compared with alumina demonstrates higher heat transfer rate due to effect of varying fluid kinematic viscosity on heat exchange. For courses with typical offer requirements of ABB, we would typically require 19.5 in the Apolytirion alongside an A at A Level or 18.0 in the Apolytirion alongside AB at A Level. This course will provide an introduction to state of the art in robotics as cyber-physical systems from a fundamental mechanics perspective. Mechanical Engineering majors have second consideration for enrollment. The aim of this module is for students to gain fundamental appreciation of electronics systems and devices and to be confident to use standard electronics devices for circuit design and implementation. Matched asymptotic expansions. First and second law of thermodynamics with applications to engineering systems and design. Hello, and welcome to Protocol Entertainment, your guide to the business of the gaming and media industries. Kinetics of systems of particles and of rigid bodies, including concepts of mass center, momentum, mass moment of inertia, dynamic equilibrium. optiSLang connects multiple CAx tools and different physics into a holistic, multi-disciplinary approach to optimization. EMAE396. Solution of plastic-elastic problems. This is the second course of a 4-course sequence focusing on "Engineering Design and Manufacturing." Students cannot receive credit for both AE3530 and ME3017 or AE3530 and AE 3515. Special Problems. Mathematical, physical, and computational fundamentals of computational fluid dynamics, numerical methods for solving the Euler and Navier-Stokes equations. Design of experiments, Taguchi methods, response surface equations, robust design, risk and uncertainty, technology assessment and selection. Advantages and limitations of homogenization techniques for numerical modeling. With so many opportunities available, youll never be short of ways to improve your employability. 1 Unit. Applied Design Laboratory. LIBROS UNIVERISTARIOS Y SOLUCIONARIOS DE MUCHOS DE ESTOS LIBROS GRATIS EN DESCARGA DIRECTA, CONTENTS Application Spotlight: What Nuclear Blasts and, Cengel Cimbala Fluid Mechanics Fundamentals Applications 1st text sol PDF. Development of isotropic and anisotropic plate theories. 3 Credit Hours. Energy release rate. logic analyzer, spectrum analyzer, arbitrary waveform generator, high speed digital oscilloscopes, instrument for high speed electrical capacitance tomography, etc. Focuses on design of planar, spherical, and spatial mechanisms using computer algebra and graphics. Andres Felipe Bermudez Mendoza. For students taking theBevis for Studentereksamen (STX), typical offers range from8.0to10.5in the weighted average mark from theSTX. English language studied within one of the above qualifications is normally sufficient to meet the universitys minimum entry requirements. Restriction: Master of Engineering students only. Students who have studied the Thanaweya Aama (Certificate of General Secondary Education) will need complete a suitable Foundation Year. Master of Science Thesis Project. 1-4 Units. Please see the Approved Qualifications table on theEnglish Languagepage for further details. Fluid Dynamics I. Restriction: Mechanical Engineering Majors have first consideration for enrollment. Scalable manufacturing technologies for flexible/stretchable electronic system. ENGRMAE295. Design and Manufacturing II. AE6381. Recommended preparation: EMAE453. Design of Mechanical Elements. Please see the Approved Qualifications table for further details. Every undergraduate and most graduate degree programs involve a requirement, i.e., Project, Thesis or Dissertation, in which the student is exposed to a variety of departmental facilities. 1-21 Credit Hours. Numerical techniques are also included. This Friday, were taking a look at Microsoft and Sonys increasingly bitter feud over Call of Duty and whether U.K. regulators are leaning toward torpedoing the Activision Blizzard deal. 4 Units. Mixing and dispersion. EPFL, the Swiss Federal Institute of Technology in Lausanne, offers its doctoral candidates an extraordinary setting: customized PhD programs; cutting-edge laboratories directed by internationally renowned professors; a modern, fast-developing campus; satellite sites in French-speaking cantons; and close ties to industry. Experiments in linear systems, including op-amp circuits, vibrations, and control systems. Special Topics. MATH2D with a grade of C- or better. Sorry, preview is currently unavailable. EMAE377. AE2011. Special Topics in Mechanical and Aerospace Engineering. 3 Credit Hours. Inviscid flows with chemical and vibrational nonequilibrium. Environmental Engineering majors have second consideration for enrollment. AE6015. a good book to learn mechanics. Basic diagnostics. Students must also achieve the UniversitysEnglish language requirements. ENGRMAE130B. Prereq: ENGR200. AE2221R. Leadership skills are developed by infusing the program with current engineering practice, design, and professionalism (including engineering ethics and the role of engineering in society) led by concerned educators and researchers. Bulcha Gute. Our dedicated placements team is notified of vacancies and opportunities throughout the academic year, and provide support with the application process to help you secure a suitable placement. Brittle and ductile fracture criteria. ENGRMAE253. Aircraft flight dynamics and control, flight simulation. 3 Units. 1 - 3 Units. Models of deformation behavior of isotropic and anisotropic materials. Analytical methods, exact and approximate. 3 Credit Hours. The MEng structure is distinct from the BEng course in the third and fourth academic years, providing enhanced opportunities to study your chosen specialist subjects in depth. Some programmes have higher requirements. i) Enable the student to properly categorize the problem in a variety of ways Where courses require specific subjects, we would be looking for marks between8and10in school assessment. AE7741. Supersonic airfoil theory and design, wind tunnel design. EMAE560. Materials Science and Engineering majors have second consideration for enrollment. Master's Thesis. Numerical methods including analysis and control of error and its propagation, solutions of systems of linear algebraic equations, solutions of nonlinear algebraic equations, curve fitting, interpolation, and numerical integration and differentiation. Materials Science and Engr Majors have first consideration for enrollment. English language studied within the above qualification is normally sufficient to meet the universitys minimum entry requirements. Professor of EngineeringBiologically active and mechanically functional tissue repair systems, and chemical imaging instrumentation for noninvasive biomedical and hazard diagnostics, Richard J. Bachmann, PhD(Case Western Reserve University)Associate ProfessorBiologically inspired robotics, Paul Barnhart, PhD, PE(Case Western Reserve University)Professor and Associate Chair for Undergratuate EducationAerospace system design, propulsion, gas dynamics, shock wave boundary layer interactions and fluid/thermal systems modeling, Changyong (Chase) Cao, PhD(Australian National University)Assistant ProfessorMechanics, designs, and manufacturing of smart multifunctional materials, soft robotics, soft electronics, and self-powered sensing systems, Sunniva Collins, PhD, FASM(Case Western Reserve University)Professor and Associate Dean of Professional ProgramsMetallic surfaces for improved performance, material and design manufacturing processes for innovative outcomes, Kathryn Daltorio, PhD(Case Western Reserve University)Assistant ProfessorRobots that can traverse and operate in new environments, inspired by biological models of smart physical systems, Umut A. Gurkan, PhD(Purdue University)ProfessorHuman health via research in cell mechanics to develop biosensors and point-of-care systems, Steve Hostler, PhD(California Institute of Technology)Assistant ProfessorDevelopment and characterization of novel thermal management materials, Chirag Kharangate, PhD(Purdue University)Assistant ProfessorThermal management of electronics and computational fluid dynamics, Ya-Ting T. Liao, PhD(Case Western Reserve University)Associate ProfessorComputational models of combustion, fire behavior and fire-resistant structures, Brian Maxwell, PhD(University of Ottawa, Canada)Assistant ProfessorNext-generation propulsion systems and advanced theory of supersonic and reactive systems, Roger D. Quinn, PhD(Virginia Polytechnic Institute & State University)Arthur P. Armington Professor of EngineeringNeural and mechanical models of animals and data to design and control robots and exoskeletons, Majid Rashidi, PhD, PE(Case Western Reserve University)ProfessorMachine and medical device design, Bryan E. Schmidt, PhD(California Institute of Technology)Assistant ProfessorTurbulent and unsteady flows from low-speed to hypersonic using advanced imaging methods, Yingchun (Chris) Yuan, PhD(University of California at Berkeley)ProfessorDesign, manufacturing and sustainability science of lithium ion batteries, solar cells and nanotechnologies, R. Balasubramaniam, PhD(Case Western Reserve University)Research Associate Professor Enables the development and understanding of thermal and fluid systems to advance space exploration, Uday Hegde, PhD(Georgia Institute of Technology)Research Associate ProfessorDevelops supercritical water oxidation technologies for waste management and water reclamation for extended duration space missions, Olga Kartuzova, PhD(Cleveland State University)Research Assistant ProfessorStudies and develops computational models for cryogenic storage tanks, and investigates zero boil-off tanks, Mohammad Kassemi, PhD(University of Akron)Research ProfessorResearches microgravity fluid physics and combustion research, including ZBOT, cryogenic fluid management, propellant tank models and gravitys impact on systems, Jun Kojima, PhDResearch Associate ProfessorLaser diagnostics and combustion code validation, Kenneth Moses, PhD(Case Western Reserve University)Research Assistant ProfessorProject manager for NSF NeuroNex Network grant on Communication, Coordination and Control in Neuromechanical Systems, Vedha Nayagam, PhD(University of Kentucky)Research Associate ProfessorLow gravity combustion and fluid physics, Alexis Abramson, PhD(University of California, Berkeley)Adjunct ProfessorMacro/micro/nanoscale heat transfer and energy transport, Jennifer W. Carter, PhD(The Ohio Stage University)Associate Professor of Materials Science and EngineeringProcessing-structure-property relationships of crystalline and amorphous materials, multi-scale material characterization methods, M. Cenk Cavusoglu, PhD(University of California, Berkeley)Professor of Electrical, Computer, and Systems EngineeringRobotics, systems and control theory, and human-machine interfaces; with emphasis on medical robotics, haptics, virtual environments, surgical simulation, and bio-system modeling, Mario Garcia Sanz, DrEng(University of Navarra)Professor of Electrical, Computer, and Systems EngineeringSystems and control, spacecraft controls, automated manufacturing, John J. Lewandowski, PhD(Carnegie Mellon University)Professor of Materials Science and EngineeringMechanical behavior of materials, fracture and fatigue, micromechanisms of deformation and fracture, Kenneth Loparo, PhD(Case Western Reserve University)Professor of Electrical, Computer, and Systems EngineeringControl, robotics, stability of dynamical systems, vibrations, Joo Maia, PhD(University of Wales Aberystwyth, U.K.)Associate Professor of Macromolecular Science and EngineeringPolymer rheology: extensional rheology and rheometry, micro- and nano-rheology, bio-rheology, David Matthiesen, PhD(Massachusetts Institute of Technology)Associate Professor of Materials Science and EngineeringMicrogravity crystal growth, Wyatt S. Newman, PhD(Massachusetts Institute of Technology)Professor of Electrical, Computer, and Systems EngineeringMechatronics, high-speed robot design, force and vision-bases machine control, artificial reflexes for autonomous machines, rapid prototyping, agile manufacturing, Ravi Vaidyanathan, PhD(Case Western Reserve University)Adjunct Associate ProfessorRobotics and control, Xiong Yu, PhD, PE(Purdue University)Professor of Civil and Environmental EngineeringGeotechnical engineering, non-destructive testing, intelligent infrastructures, Christian A. Zorman, PhD(Case Western Reserve University)Professor of Electrical, Computer, and Systems EngineeringMaterials and processing techniques for MEMS and NEMS, wide bandgap semiconductors, development of materials and fabrication techniques for polymer-based MEMS and bioMEMS, Dwight T. Davy, PhD, PE(University of Iowa)Professor EmeritusMusculo-skeletal biomechanics, applied mechanics, Isaac Greber, PhD(Massachusetts Institute of Technology)Professor EmeritusFluid dynamics, molecular dynamics and kinetic theory, biological fluid mechanics, acoustics, Jaikrishnan R. Kadambi, PhD(University of Pittsburgh)Professor EmeritusExperimental fluid mechanics, laser diagnostics, bio-fluid mechanics, turbomachinery, Yasuhiro Kamotani, PhD(Case Western Reserve University)Professor EmeritusExperimental fluid dynamics, heat transfer, microgravity fluid mechanics, Joseph M. Mansour, PhD(Rensselaer Polytechnic Institute)Professor EmeritusBiomechanics and applied mechanics, Eli Reshotko, PhD(California Institute of Technology)Kent H. Smith Emeritus Professor of EngineeringFluid Dynamics, heat transfer, propulsion, power generation, Clare M. Rimnac, PhD(Lehigh University)Wilbert J. Austin Emeritus Professor of EngineeringBiomechanics, fatigue and fracture mechanics, Fumiaki Takahashi, PhD(Keio University)Professor EmeritusCombustion, fire science and engineering, James S. Tien, PhD(Princeton University)Professor EmeritusCombustion, propulsion, and fire research, Undergraduate Programs toward Graduate or Professional Degrees.
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