Stanford Mechanics and Computation

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  1. Fujita
  2. Fundamental Atomistic Mechanisms of Capillary Flow
  3. Garikipati
  4. Gecko Adhesion
  5. Gerard Ateshian
  6. Givoli
  7. Glaucoma and Computational Multi-Scale Modeling of the Human Eye
  8. Grain Growth: A Case Study of Multi-Scale Modeling
  9. GregHulbert
  10. Guang Lin
  11. High Order Discontinuous Galerkin Methods For Systems Of Conservation Laws
  12. High Power and High Energy Systems at Small Scales
  13. Huajian Gao
  14. Ignacio Romero
  15. Imaging and Modeling of Cardiac Cells and Tissues
  16. Inhomogeniety and size of microstructure - a new paradigm in understanding deformation mechanism of nano crystalline metals
  17. Inverse Wave Problems, Time Reversal and Damage Identification
  18. Isogeometric Analysis of Solids, Structures, and FSI: From Early Results to Recent Developments
  19. Jaume Peraire
  20. Jeremy Templeton
  21. Jimmy Hsia
  22. Joe Howard
  23. JohnBassani
  24. K. Ravi-Chandar
  25. KC Park
  26. Katia Bertoldi
  27. Kim Turner
  28. King signup link
  29. Kit Parker
  30. Klaus W. Schwarz
  31. Kris Dahl
  32. LeonKeer
  33. LlorcaAbstract
  34. Lorca
  35. Lorna Gibson
  36. MEMS and Nanotechnology for the Automotive Market
  37. Main Page
  38. Making devices based on ion-ion correlations in nanofluidics, biology, and beyond
  39. Marino Arroyo
  40. MarkusBuehler
  41. Mary boyce
  42. Mathematical models for the cardiovascular system: numerical simulation, control and optimization, clinical applications
  43. Matrix Regulation of Mesenchymal Stem Cells: Implications for Heart Valve Disease
  44. Matteo Negri
  45. Mechanical Behavior of Cells on Tissue Engineering Scaffolds
  46. Mechanical Engineering in the Biotech Century
  47. Mechanical Investigation of Naturally-Occurring High Performance Materials
  48. Mechanical Signaling by Motor Proteins during Mitosis and Cell Motility
  49. Mechanical Signaling in Cells and Tissues
  50. Mechanical and Chemical Effects in the Adhesion of Shells

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