living matter lab
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(me309 - finite element analysis in mechanical design)
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! day !! date !! !! topic !! notes !!  
 
! day !! date !! !! topic !! notes !!  
 
|-
 
|-
| tue || sep || 25 || introduction I - cell biology || [http://biomechanics.stanford.edu/me339/me339_s01.pdf s01] || jacobs  
+
| tue || jan || 08 || introduction I - cell biology || [http://biomechanics.stanford.edu/me339/me339_s01.pdf s01] || jacobs  
 
|-
 
|-
| thu || sep || 27 || introduction II - cytoskeletal biology || [http://biomechanics.stanford.edu/me339/me339_s02.pdf s02] || kwon  
+
| thu || jan || 10 || introduction II - cytoskeletal biology || [http://biomechanics.stanford.edu/me339/me339_s02.pdf s02] || kwon  
 
|-
 
|-
| tue || oct || 02 || introduction III - mechanics || [http://biomechanics.stanford.edu/me339/me339_s03.pdf s03] || kuhl  
+
| tue || jan || 15 || introduction III - mechanics || [http://biomechanics.stanford.edu/me339/me339_s03.pdf s03] || kuhl  
 
|-
 
|-
| thu || oct || 04 || biopolymers I - bending & buckling || [http://biomechanics.stanford.edu/me339/me339_s04.pdf s04] || kuhl  
+
| thu || jan || 17 || biopolymers I - bending & buckling || [http://biomechanics.stanford.edu/me339/me339_s04.pdf s04] || kuhl  
 
|-
 
|-
| tue || oct || 09 || first homework - biopolymers || [http://biomechanics.stanford.edu/me339/me339_h01.pdf h01] || [http://biomechanics.stanford.edu/me339/me339_h01s.pdf solution]  
+
| tue || jan || 22 || first homework - biopolymers || [http://biomechanics.stanford.edu/me339/me339_h01.pdf h01] || [http://biomechanics.stanford.edu/me339/me339_h01s.pdf solution]  
 
|-
 
|-
| tue || oct || 09 || biopolymers II - statistical mechanics || [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s05] || kwon  
+
| tue || jan || 24 || biopolymers II - statistical mechanics || [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s05] || kwon  
 
|-
 
|-
| thu || oct || 11 || biopolymers III - gaussian chain ||  [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s06]  || kwon  
+
| thu || jan || 29 || biopolymers III - gaussian chain ||  [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s06]  || kwon  
 
|-
 
|-
| tue || oct || 16 || biopolymers IV -  freely jointed chain & wormlike chain ||  [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s07]  || kwon  
+
| tue || jan || 31 || biopolymers IV -  freely jointed chain & wormlike chain ||  [http://biomechanics.stanford.edu/me339/me339_s050607.pdf s07]  || kwon  
 
|-
 
|-
| thu || oct || 18 || second homework - biopolymers || [http://biomechanics.stanford.edu/me339/me339_h02.pdf h02] || [http://biomechanics.stanford.edu/me339/me339_h02s.pdf solution]  
+
| thu || feb || 05 || second homework - biopolymers || [http://biomechanics.stanford.edu/me339/me339_h02.pdf h02] || [http://biomechanics.stanford.edu/me339/me339_h02s.pdf solution]  
 
|-
 
|-
| thu || oct || 18 || cytoskeletal mechanics I - filopodia - fiber bundle model || [http://biomechanics.stanford.edu/me339/me339_s0809.pdf s08] || kwon  
+
| thu || feb || 07 || cytoskeletal mechanics I - filopodia - fiber bundle model || [http://biomechanics.stanford.edu/me339/me339_s0809.pdf s08] || kwon  
 
|-
 
|-
| tue || oct || 23 || cytoskeletal mechanics II - red blood cells - six and four fold network model ||  [http://biomechanics.stanford.edu/me339/me339_s0809.pdf s09] || kwon  
+
| tue || feb || 12 || cytoskeletal mechanics II - red blood cells - six and four fold network model ||  [http://biomechanics.stanford.edu/me339/me339_s0809.pdf s09] || kwon  
 
|-
 
|-
| thu || oct || 25 || biomembranes I - pipette aspiration ||  [http://biomechanics.stanford.edu/me339/me339_s10.pdf s10] ||  kwon  
+
| thu || feb || 14 || biomembranes I - pipette aspiration ||  [http://biomechanics.stanford.edu/me339/me339_s10.pdf s10] ||  kwon  
 
|-
 
|-
| tue || oct || 30 || cytoskeletal mechanics III - muscle cells - tensegrity model ||  ||  kuhl   
+
| tue || feb || 19 || cytoskeletal mechanics III - muscle cells - tensegrity model ||  ||  kuhl   
 
|-
 
|-
| thu || oct || 01 || third homework - cytoskeleton || [http://biomechanics.stanford.edu/me339/me339_h03.pdf h03] ||  
+
| thu || feb || 21 || third homework - cytoskeleton || [http://biomechanics.stanford.edu/me339/me339_h03.pdf h03] ||  
 
|-
 
|-
| thu || nov || 01 || biomembranes II - soap bubbles & cell membranes || [http://biomechanics.stanford.edu/me339/me339_s12.pdf s12] ||  kuhl  
+
| tue || feb || 26 || biomembranes II - soap bubbles & cell membranes || [http://biomechanics.stanford.edu/me339/me339_s12.pdf s12] ||  kuhl  
 
|-
 
|-
| tue || nov || 06 || biomembranes III - tension, shear & bending || [http://biomechanics.stanford.edu/me339/me339_s13.pdf s13] ||  kuhl   
+
| thu || feb || 28 || biomembranes III - tension, shear & bending || [http://biomechanics.stanford.edu/me339/me339_s13.pdf s13] ||  kuhl   
 
|-
 
|-
| thu || nov || 08 || mechanotransduction I || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s14]  ||  jacobs  
+
| tue || mar || 04 || mechanotransduction I || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s14]  ||  jacobs  
 
|-
 
|-
| tue || nov || 13 || mechanotransduction II || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s15] ||  jacobs  
+
| thu || mar || 06 || mechanotransduction II || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s15] ||  jacobs  
 
|-
 
|-
| thu || nov || 15 || midterm ||  [http://biomechanics.stanford.edu/me339/me339_m01.pdf m01]  ||   
+
| tue || mar || 11 || midterm ||  [http://biomechanics.stanford.edu/me339/me339_m01.pdf m01]  ||   
 
|-
 
|-
| tue || nov || 27 || mechanotransduction III  || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s16] || jacobs  
+
| thu || mar || 13 || mechanotransduction III  || [http://biomechanics.stanford.edu/me339/me339_s141516.pdf s16] || jacobs  
 
|-
 
|-
| thu || nov || 29 || class projects - preparation, no class ||  || 
+
| fri || mar || 06 || class projects - oral presentations II  ||  ||  
|-
+
| tue || dec || 04 || class projects - oral presentations I ||  ||
+
|-
+
| thu || dec || 06 || class projects - oral presentations II  ||  ||
+
|-
+
| fri || dec || 14 || class projects - written projects due ||  ||  
+
 
|-
 
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|}
 
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Revision as of 21:43, 29 November 2007

Contents

me309 - finite element analysis in mechanical design

Fem02.jpg
Fem01.jpg

ellen kuhl - ekuhl.at.stanford.edu
marc levenston - levenston.at.stanford.edu
addala bhargav - bhargav.at.stanford.edu

winter 2008
tue thu 9:30-10:45
530-127

 

goals

grading

  • 30 % homework - 3 homework assignments, 10% each
  • 30 % midterm - open notes, with calculators, no books
  • 40 % project - oral presentations graded by the class, written part graded by us

syllabus

copyright ron kwon, ellen kuhl, chris jacobs, stanford, fall 2007

day date topic notes
tue jan 08 introduction I - cell biology s01 jacobs
thu jan 10 introduction II - cytoskeletal biology s02 kwon
tue jan 15 introduction III - mechanics s03 kuhl
thu jan 17 biopolymers I - bending & buckling s04 kuhl
tue jan 22 first homework - biopolymers h01 solution
tue jan 24 biopolymers II - statistical mechanics s05 kwon
thu jan 29 biopolymers III - gaussian chain s06 kwon
tue jan 31 biopolymers IV - freely jointed chain & wormlike chain s07 kwon
thu feb 05 second homework - biopolymers h02 solution
thu feb 07 cytoskeletal mechanics I - filopodia - fiber bundle model s08 kwon
tue feb 12 cytoskeletal mechanics II - red blood cells - six and four fold network model s09 kwon
thu feb 14 biomembranes I - pipette aspiration s10 kwon
tue feb 19 cytoskeletal mechanics III - muscle cells - tensegrity model kuhl
thu feb 21 third homework - cytoskeleton h03
tue feb 26 biomembranes II - soap bubbles & cell membranes s12 kuhl
thu feb 28 biomembranes III - tension, shear & bending s13 kuhl
tue mar 04 mechanotransduction I s14 jacobs
thu mar 06 mechanotransduction II s15 jacobs
tue mar 11 midterm m01
thu mar 13 mechanotransduction III s16 jacobs
fri mar 06 class projects - oral presentations II

additional reading

(1) boal d: mechanics of the cell, cambridge university press, cambridge, 2002
(2) howard j: mechanics of motor proteins and the cytoskeleton, sinauer associates, sunderland, 2001
(3) alberts b et al.: molecular biology of the cell, garland science, taylor & francis, new york, 2002