Quantum mechanical principles as applied to electron devices, lasers, and electro-optics; material properties and interaction of radiation and material. Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing in electrical engineering or physics.
Score: 6.1930866 Details | Listing | Web page
Physical basis of plastic deformation; mathematical theory of incremental plasticity; total theories; numerical implementation; slip and physical theories of plastic deformation; rate dependent (viscoplastic) models; applications to several engineering problems. Three lecture hours a week for one semester. Prerequisite: Graduate standing, and Engineering Mechanics 388 or the equivalent.
Score: 6.1930866 Details | Listing | Web page
Foundations of the general nonlinear theories of continuum mechanics; general treatment of motion and deformation of continua, balance laws, constitutive theory; particular application to elastic solids and simple materials. Three lecture hours a week for one semester. Prerequisite: Graduate standing, and Engineering Mechanics 386K or consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Same as Aerospace Engineering 384P (Topic 1: Solid Mechanics I ). Mathematical description of stress, deformation, and constitutive equations of solid mechanics; boundary value problems of elasticity. Three lecture hours a week for one semester. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Griffith theory of brittle crack propagation, other theories, crack toughness testing concepts. Three lecture hours a week for one semester. Prerequisite: Graduate standing, and Engineering Mechanics 388 or consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Same as Aerospace Engineering 384P (Topic 2: Solid Mechanics II ). Continuation of Engineering Mechanics 388. Additional topics in elasticity, plasticity, viscoelasticity, variational methods, and other areas of solid mechanics. Three lecture hours a week for one semester. Prerequisite: Graduate standing, Engineering Mechanics 388, and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Constitutive characterization of materials based on their microstructure. Relationships between internal structure and mechanical properties for composites, polycrystals, and polymers on the basis of linear elasticity, plasticity, and theories that account for rate-dependence. Three lecture hours a week for one semester. Prerequisite: Graduate standing and a graduate course in solid mechanics.
Score: 6.1930866 Details | Listing | Web page
Introduction to linear viscoelasticity; methods of characterizing viscoelastic material behavior; analytical and approximate solution techniques for engineering problems, including contact, wave propagation, and thermoviscoelastic problems. Three lecture hours a week for one semester. Prerequisite: Graduate standing, and Engineering Mechanics 388 or consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Principles and techniques of measurement in mechanics; includes discussion of strain gauges, optical interference methods, photoelasticity, and dynamic measurements. Two lecture hours and three laboratory hours a week for one semester. Prerequisite: Graduate standing.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
The process of designing a material for a specific engineering function as illustrated for various materials. Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. Some topics may require additional laboratory hours; these are identified in the Course Schedule . May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Lattice vibrations and thermal properties of solids; band theory of solids; transport properties of metals and semiconductors; optical properties; magnetic properties; magnetic relaxation; superconductivity. Three lecture hours a week for one semester. Prerequisite: Graduate standing, Physics 389K, and Physics 375S or the equivalent.
Score: 6.1930866 Details | Listing | Web page
Elementary excitations: phonons, electrons, spin waves; interactions: phonon-phonon, electron-electron, electron-phonon; theory of metals and semiconductors; transport theory; optical properties. Three lecture hours a week for one semester. Prerequisite: Graduate standing and Physics 392K.
Score: 6.1930866 Details | Listing | Web page
Topics to be announced. Three lecture hours a week for one semester. With consent of instructor, may be repeated for credit. Prerequisite: Graduate standing and consent of instructor.
Score: 6.1930866 Details | Listing | Web page
Individual research. May be repeated for credit. Offered on the credit/no credit basis only. Prerequisite: Graduate standing in mechanical engineering.
Score: 6.1930866 Details | Listing | Web page
Applications of mathematical analysis and numerical concepts to typical engineering problems. Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing, and Mathematics 427K or the equivalent.
Score: 6.1930866 Details | Listing | Web page
Detailed study of fluid dynamics, boundary layer phenomena, and incompressible flows. Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing, and Mechanical Engineering 326 or the equivalent.
Score: 6.1930866 Details | Listing | Web page
Three lecture hours a week for one semester. May be repeated for credit when the topics vary. Prerequisite: Graduate standing, and Mechanical Engineering 339 or the equivalent.
Score: 6.1930866 Details | Listing | Web page
1 - 25 26 - 50 51 - 75 76 - 100 101 - 125 126 - 150 151 - 175 176 - 200 201 - 225 226 - 250 251 - 275 276 - 300 301 - 325 326 - 350 351 - 375 376 - 400 401 - 425 426 - 450 451 - 475 476 - 500 501 - 525 526 - 550 551 - 575 576 - 600 601 - 625 626 - 650 651 - 675 676 - 700 701 - 725 726 - 750 751 - 775 776 - 800 801 - 825 826 - 850 851 - 875 876 - 900 901 - 925 926 - 950 951 - 975 976 - 1000 1001 - 1025 1026 - 1050 1051 - 1075 1076 - 1100 1101 - 1125 1126 - 1150 1151 - 1175 1176 - 1200 1201 - 1225 1226 - 1250 1251 - 1275 1276 - 1300 1301 - 1325 1326 - 1350 1351 - 1375 1376 - 1400 1401 - 1425 1426 - 1450 1451 - 1475 1476 - 1500 1501 - 1525 1526 - 1550 1551 - 1575 1576 - 1600 1601 - 1625 1626 - 1650 1651 - 1675 1676 - 1700 1701 - 1725 1726 - 1750 1751 - 1775 1776 - 1800 1801 - 1825 1826 - 1850 1851 - 1875 1876 - 1900 1901 - 1925 1926 - 1950 1951 - 1975 1976 - 2000 2001 - 2025 2026 - 2050 2051 - 2075 2076 - 2100 2101 - 2125 2126 - 2150 2151 - 2175 2176 - 2182