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11 - 20 of 29 results for: MATSCI ; Currently searching spring courses. You can expand your search to include all quarters

MATSCI 198: Mechanical Properties of Materials (MATSCI 208)

Introduction to the mechanical behavior of solids, emphasizing the relationships between microstructure and mechanical properties. Elastic, anelastic, and plastic properties of materials. The relations between stress, strain, strain rate, and temperature for plastically deformable solids. Application of dislocation theory to strengthening mechanisms in crystalline solids. The phenomena of creep, fracture, and fatigue and their controlling mechanisms. Prerequisites: 193/203. Undergraduates register for 198 for 4 units; graduates register for 208 for 3 units.
Terms: Spr | Units: 3-4 | UG Reqs: GER:DB-EngrAppSci | Grading: Letter or Credit/No Credit

MATSCI 199: Electronic and Optical Properties of Solids (MATSCI 209)

The concepts of electronic energy bands and transports applied to metals, semiconductors, and insulators. The behavior of electronic and optical devices including p-n junctions, MOS-capacitors, MOSFETs, optical waveguides, quantum-well lasers, light amplifiers, and metallo-dielectric light guides. Emphasis is on relationships between structure and physical properties. Elementary quantum and statistical mechanics concepts are used. Prerequisite: 195/205 or equivalent. Undergraduates register for 199 for 4 units; graduates register for 209 for 3 units.
Terms: Spr | Units: 3-4 | UG Reqs: GER:DB-EngrAppSci | Grading: Letter or Credit/No Credit

MATSCI 200: Master's Research

Participation in a research project.
Terms: Aut, Win, Spr, Sum | Units: 1-15 | Repeatable for credit | Grading: Satisfactory/No Credit
Instructors: Bao, Z. (PI) ; Barnett, D. (PI) ; Beasley, M. (PI) ; Bent, S. (PI) ; Boxer, S. (PI) ; Bravman, J. (PI) ; Brongersma, M. (PI) ; Chang, F. (PI) ; Chidsey, C. (PI) ; Cho, K. (PI) ; Chueh, W. (PI) ; Clemens, B. (PI) ; Cui, Y. (PI) ; Dai, H. (PI) ; Dauskardt, R. (PI) ; Dionne, J. (PI) ; Feigelson, R. (PI) ; Fisher, I. (PI) ; Frank, C. (PI) ; Geballe, T. (PI) ; Goodson, K. (PI) ; Harris, J. (PI) ; Heilshorn, S. (PI) ; Hesselink, L. (PI) ; Lee, T. (PI) ; Lindenberg, A. (PI) ; Manoharan, H. (PI) ; McGehee, M. (PI) ; McIntyre, P. (PI) ; Melosh, N. (PI) ; Musgrave, C. (PI) ; Nishi, Y. (PI) ; Nix, W. (PI) ; Pianetta, P. (PI) ; Pinsky, P. (PI) ; Plummer, J. (PI) ; Prinz, F. (PI) ; Reed, E. (PI) ; Robertson, C. (PI) ; Salleo, A. (PI) ; Saraswat, K. (PI) ; Senesky, D. (PI) ; Sinclair, R. (PI) ; Stebbins, J. (PI) ; Stohr, J. (PI) ; Wang, S. (PI) ; Wong, H. (PI)

MATSCI 207: Rate Processes in Materials (MATSCI 197)

Diffusion and phase transformations in solids. Diffusion topics: Fick's laws, atomic theory of diffusion, and diffusion in alloys. Phase transformation topics: nucleation, growth, diffusional transformations, spinodal decomposition, and interface phenomena. Material builds on the mathematical, thermodynamic, and statistical mechanical foundations in the prerequisites. Prerequisites: 194/204. Undergraduates register for 197 for 4 units; graduates register for 207 for 3 units.
Terms: Spr | Units: 3-4 | Grading: Letter or Credit/No Credit

MATSCI 208: Mechanical Properties of Materials (MATSCI 198)

Introduction to the mechanical behavior of solids, emphasizing the relationships between microstructure and mechanical properties. Elastic, anelastic, and plastic properties of materials. The relations between stress, strain, strain rate, and temperature for plastically deformable solids. Application of dislocation theory to strengthening mechanisms in crystalline solids. The phenomena of creep, fracture, and fatigue and their controlling mechanisms. Prerequisites: 193/203. Undergraduates register for 198 for 4 units; graduates register for 208 for 3 units.
Terms: Spr | Units: 3-4 | Grading: Letter or Credit/No Credit

MATSCI 209: Electronic and Optical Properties of Solids (MATSCI 199)

The concepts of electronic energy bands and transports applied to metals, semiconductors, and insulators. The behavior of electronic and optical devices including p-n junctions, MOS-capacitors, MOSFETs, optical waveguides, quantum-well lasers, light amplifiers, and metallo-dielectric light guides. Emphasis is on relationships between structure and physical properties. Elementary quantum and statistical mechanics concepts are used. Prerequisite: 195/205 or equivalent. Undergraduates register for 199 for 4 units; graduates register for 209 for 3 units.
Terms: Spr | Units: 3-4 | Grading: Letter or Credit/No Credit

MATSCI 210: Organic and Biological Materials (MATSCI 190)

Unique physical and chemical properties of organic materials and their uses.The relationship between structure and physical properties, and techniques to determine chemical structure and molecular ordering. Examples include liquid crystals, dendrimers, carbon nanotubes, hydrogels, and biopolymers such as lipids, protein, and DNA. Prerequisite: Thermodynamics and ENGR 50 or equivalent. Undergraduates register for 190 for 4 units; graduates register for 210 for 3 units.
Terms: Spr | Units: 3-4 | Grading: Letter or Credit/No Credit

MATSCI 230: Materials Science Colloquium

May be repeated for credit.
Terms: Aut, Win, Spr | Units: 1 | Repeatable for credit | Grading: Satisfactory/No Credit

MATSCI 299: Practical Training

Educational opportunities in high-technology research and development labs in industry. Qualified graduate students engage in internship work and integrate that work into their academic program. Following the internship, students complete a research report outlining their work activity, problems investigated, key results, and any follow-on projects they expect to perform. Student is responsible for arranging own employment. See department student services manager before enrolling.
Terms: Aut, Win, Spr, Sum | Units: 1 | Repeatable for credit | Grading: Satisfactory/No Credit
Instructors: Bao, Z. (PI) ; Barnett, D. (PI) ; Beasley, M. (PI) ; Bent, S. (PI) ; Boxer, S. (PI) ; Bravman, J. (PI) ; Brongersma, M. (PI) ; Chidsey, C. (PI) ; Cho, K. (PI) ; Chueh, W. (PI) ; Clemens, B. (PI) ; Cui, Y. (PI) ; Dai, H. (PI) ; Dauskardt, R. (PI) ; Dionne, J. (PI) ; Fisher, I. (PI) ; Frank, C. (PI) ; Geballe, T. (PI) ; Goodson, K. (PI) ; Harris, J. (PI) ; Heilshorn, S. (PI) ; Hesselink, L. (PI) ; Lee, T. (PI) ; Lindenberg, A. (PI) ; Manoharan, H. (PI) ; McGehee, M. (PI) ; McIntyre, P. (PI) ; Melosh, N. (PI) ; Musgrave, C. (PI) ; Nishi, Y. (PI) ; Nix, W. (PI) ; Pianetta, P. (PI) ; Pinsky, P. (PI) ; Plummer, J. (PI) ; Prinz, F. (PI) ; Reed, E. (PI) ; Salleo, A. (PI) ; Saraswat, K. (PI) ; Sinclair, R. (PI) ; Stebbins, J. (PI) ; Stohr, J. (PI) ; Wang, S. (PI) ; Wong, H. (PI)

MATSCI 300: Ph.D. Research

Participation in a research project.
Terms: Aut, Win, Spr, Sum | Units: 1-15 | Repeatable for credit | Grading: Satisfactory/No Credit
Instructors: Bao, Z. (PI) ; Barnett, D. (PI) ; Beasley, M. (PI) ; Bent, S. (PI) ; Block, S. (PI) ; Boxer, S. (PI) ; Bravman, J. (PI) ; Brongersma, M. (PI) ; Butte, M. (PI) ; Cai, W. (PI) ; Chang, F. (PI) ; Chidsey, C. (PI) ; Cho, K. (PI) ; Chueh, W. (PI) ; Clemens, B. (PI) ; Cui, Y. (PI) ; Dai, H. (PI) ; Dauskardt, R. (PI) ; Dionne, J. (PI) ; Feigelson, R. (PI) ; Fisher, I. (PI) ; Frank, C. (PI) ; Geballe, T. (PI) ; Goodson, K. (PI) ; Harris, J. (PI) ; Heilshorn, S. (PI) ; Hesselink, L. (PI) ; Hwang, H. (PI) ; Jaramillo, T. (PI) ; Kanan, M. (PI) ; Lee, T. (PI) ; Lee, Y. (PI) ; Lindenberg, A. (PI) ; Manoharan, H. (PI) ; Martinez, T. (PI) ; McGehee, M. (PI) ; McIntyre, P. (PI) ; Melosh, N. (PI) ; Musgrave, C. (PI) ; Nilsson, A. (PI) ; Nishi, Y. (PI) ; Nix, W. (PI) ; Pianetta, P. (PI) ; Pinsky, P. (PI) ; Plummer, J. (PI) ; Prinz, F. (PI) ; Reed, E. (PI) ; Salleo, A. (PI) ; Saraswat, K. (PI) ; Senesky, D. (PI) ; Sinclair, R. (PI) ; Spakowitz, A. (PI) ; Stebbins, J. (PI) ; Stohr, J. (PI) ; Suzuki, Y. (PI) ; Tang, S. (PI) ; Wang, S. (PI) ; Wong, H. (PI) ; Xia, Y. (PI) ; Yang, F. (PI) ; Zheng, X. (PI)
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