Stanford Mechanics and Computation
(Prof. Wei Cai Visit Schedule)
(Reverted back to Stanford Wei Cai and made a new page for visitor)
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[[Image:WeiCai.jpg|left]]
 
[[Image:WeiCai.jpg|left]]
  
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==[http://www.stanford.edu/~caiwei/ Wei Cai]==
  
=Prof. Wei Cai Visit Schedule=
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{| class="person"
===Feb 7, 2008===
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! Title:
{| class="wikitable" style="text-align:center; width: 100%"
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| Assistant Professor
 
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! Time !! Meeting !! Location !! Contact Info
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! Office:
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| Durand 259
 
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| 8:00-9:00|| breakfast at FC with Beth Pruitt and Ellen Kuhl || Faculty Club || 650-723-9313 (club)<br>pruitt@stanford.edu, kuhl@stanford.edu
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! Phone:
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| 650.736.1671
 
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|9:00-9:30  || Beth Pruitt|| lab tours || 650-723-4559
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! Email:
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| caiwei@stanford.edu
| 9:45-10:15  ||Ellen Kuhl || Durand 217||650-724-8988
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|}
|-
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| 10:30-11:00  ||  ||  ||
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|-
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| 11:15-11:45 ||  ||    || 
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|-
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| 12:00-1:15|| lunch at FC with...|| Faculty Club || 650-723-9313 (club)
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|-
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|1:30-2:00  ||    ||    || 
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|-
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| 2:15-2:45  ||    ||    || 
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|-
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|3:00:-3:30  ||    ||    || 
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|-
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| 3:45-4:15  ||seminar prep  || - || -
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|-
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| 4:15-5:15 || seminar ||  EDUC128 Directions: http://campus-map.stanford.edu/index.cfm?ID=03-300 || 
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|-
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| 6:00-7:30  || Dinner with....|| To Be Deterimined  ||
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|}
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===Research===
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Predicting mechanical strength of materials through theory and simulations of defect microstructures across atomic, mesoscopic and continuum scales. Developing new atomistic simulation methods for long time-scale processes, such as crystal growth and self-assembly. Introducing magnetic field in quantum simulations of electronic structure and transport.
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===Publications===
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V. V. Bulatov, et al. , "Dislocation multi-junctions and strain hardening", Nature, 440, 1174 (2006).
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Wei Cai, et al. "A non-singular continuum theory of dislocations", Journal of the Mechanics and Physics of Solids, 54, 561 (2006).
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Wei Cai and Giulia Galli, "Ab initio calculations in a uniform magnetic field using periodic supercells", Physical Review Letters, 92, 186402 (2004).
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Jaime Marian, Wei Cai and Vasily V. Bulatov, "Dynamic transitions from smooth to rough to twinning in dislocation motion", Nature Materials, 3, 158 (2004).

Revision as of 19:56, 18 December 2007