living matter lab
(Difference between revisions)
(spring 11 - e14 - applied mechanics: statics)
(syllabus)
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!    !! w01  !! !! force week !! ch 1-2 !!  
 
!    !! w01  !! !! force week !! ch 1-2 !!  
 
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| mon || mar || 28 || what's statics? || 1.1-1.5 ||[http://biomechanics.stanford.edu/e14/e14_n01.pdf n01],[http://biomechanics.stanford.edu/e14/e14_s01.pdf s01]   
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| tue || mar || 28 || what's statics? || 1.1-1.5 ||[http://biomechanics.stanford.edu/e14/e14_n01.pdf n01],[http://biomechanics.stanford.edu/e14/e14_s01.pdf s01]   
 
|-
 
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| wed || mar || 30 || what's a 2d force? || 2.1-2.4 ||[http://biomechanics.stanford.edu/e14/e14_n02.pdf n02],[http://biomechanics.stanford.edu/e14/e14_s02.pdf s02]  
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| thu || mar || 30 || what's a 2d force? || 2.1-2.4 ||[http://biomechanics.stanford.edu/e14/e14_n02.pdf n02],[http://biomechanics.stanford.edu/e14/e14_s02.pdf s02]  
 
|-
 
|-
 
| fri || apr || 01 || what's a 3d force?  || 2.5-2.9 ||[http://biomechanics.stanford.edu/e14/e14_n03.pdf n03],[http://biomechanics.stanford.edu/e14/e14_s03.pdf s03]  
 
| fri || apr || 01 || what's a 3d force?  || 2.5-2.9 ||[http://biomechanics.stanford.edu/e14/e14_n03.pdf n03],[http://biomechanics.stanford.edu/e14/e14_s03.pdf s03]  
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!    !! w02  !! !! particle week !! ch 3 !!  
 
!    !! w02  !! !! particle week !! ch 3 !!  
 
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| mon || apr || 04 || what's a free body diagram at a point? || 3.1-3.2||[http://biomechanics.stanford.edu/e14/e14_n04.pdf n04],[http://biomechanics.stanford.edu/e14/e14_s04.pdf s04]   
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| tue || apr || 04 || what's a free body diagram at a point? || 3.1-3.2||[http://biomechanics.stanford.edu/e14/e14_n04.pdf n04],[http://biomechanics.stanford.edu/e14/e14_s04.pdf s04]   
 
|-
 
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| wed || apr || 06 || what's force equilibrium at a point?  || 3.3-3.4 ||[http://biomechanics.stanford.edu/e14/e14_n05.pdf n05],[http://biomechanics.stanford.edu/e14/e14_s05.pdf s05]
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| thu || apr || 06 || what's force equilibrium at a point?  || 3.3-3.4 ||[http://biomechanics.stanford.edu/e14/e14_n05.pdf n05],[http://biomechanics.stanford.edu/e14/e14_s05.pdf s05]  
|-
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| fri || apr || 08 || problem session 1  ||  || [http://biomechanics.stanford.edu/e14/e14_h01.pdf h01]
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!    !! w03  !! !! moment week !! ch 4 !!  
 
!    !! w03  !! !! moment week !! ch 4 !!  
 
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| mon || apr || 11 || what's a moment? || 4.1-4.4 ||[http://biomechanics.stanford.edu/e14/e14_n06.pdf n06],[http://biomechanics.stanford.edu/e14/e14_s06.pdf s06]   
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| tue || apr || 11 || what's a moment? || 4.1-4.4 ||[http://biomechanics.stanford.edu/e14/e14_n06.pdf n06],[http://biomechanics.stanford.edu/e14/e14_s06.pdf s06]   
 
|-
 
|-
| wed || apr || 13 || what's a couple? what's distributed loading? || 4.5-4.7 ||[http://biomechanics.stanford.edu/e14/e14_n07.pdf n07],[http://biomechanics.stanford.edu/e14/e14_s07.pdf s07]
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| thu || apr || 13 || what's a couple? what's distributed loading? || 4.5-4.7 ||[http://biomechanics.stanford.edu/e14/e14_n07.pdf n07],[http://biomechanics.stanford.edu/e14/e14_s07.pdf s07]  
|-
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| fri || apr || 15 || problem session 2  ||  ||[http://biomechanics.stanford.edu/e14/e14_h02.pdf h02]
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|-
 
|-
 
!    !! w04  !! !! practice week !! ch 1-4 !!  
 
!    !! w04  !! !! practice week !! ch 1-4 !!  
 
|-
 
|-
| mon || apr || 18 || problems, problem, problems ... ||  ||   
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| tue || apr || 18 || problems, problem, problems ... ||  ||   
 
|-
 
|-
| wed || apr || 20 || midterm 1, all day take home, wed 12pm - thu 2pm ||  ||
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| thu || apr || 20 || midterm 1, all day take home, wed 12pm - thu 2pm ||  ||
|-
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| fri || apr || 22 || recover-from-midterm friday / no problem session  ||  ||
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|-
 
|-
 
!    !! w05  !! !! 2d equilibrium week !! ch 5 !!  
 
!    !! w05  !! !! 2d equilibrium week !! ch 5 !!  
 
|-
 
|-
| mon || apr || 25 || what's a free body diagram of a 2d system? || 5.1-5.2 ||[http://biomechanics.stanford.edu/e14/e14_n08.pdf n08],[http://biomechanics.stanford.edu/e14/e14_s08.pdf s08]   
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| tue || apr || 25 || what's a free body diagram of a 2d system? || 5.1-5.2 ||[http://biomechanics.stanford.edu/e14/e14_n08.pdf n08],[http://biomechanics.stanford.edu/e14/e14_s08.pdf s08]   
 
|-
 
|-
| wed || apr || 27 || what force and moment equilibrium in 2d? || 5.3-5.4 || [http://biomechanics.stanford.edu/e14/e14_n09.pdf n09],[http://biomechanics.stanford.edu/e14/e14_s09.pdf s09]
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| thu || apr || 27 || what force and moment equilibrium in 2d? || 5.3-5.4 || [http://biomechanics.stanford.edu/e14/e14_n09.pdf n09],[http://biomechanics.stanford.edu/e14/e14_s09.pdf s09]  
|-
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| fri || apr || 29 || problem session 3  ||  ||[http://biomechanics.stanford.edu/e14/e14_h03.pdf h03]
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|-
 
|-
 
!    !! w06  !! !! 3d equilibrium week !! ch 5 !!  
 
!    !! w06  !! !! 3d equilibrium week !! ch 5 !!  
 
|-
 
|-
| mon || may || 02 || what's a free body diagram of a 3d system? || 5.5 || [http://biomechanics.stanford.edu/e14/e14_n10.pdf n10],[http://biomechanics.stanford.edu/e14/e14_s10.pdf s10]   
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| tue || may || 02 || what's a free body diagram of a 3d system? || 5.5 || [http://biomechanics.stanford.edu/e14/e14_n10.pdf n10],[http://biomechanics.stanford.edu/e14/e14_s10.pdf s10]   
 
|-
 
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| wed || may || 04 || what force and moment equilibrium in 3d?  || 5.6-5.7 || [http://biomechanics.stanford.edu/e14/e14_n11.pdf n11],[http://biomechanics.stanford.edu/e14/e14_s11.pdf s11]
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| thu || may || 04 || what force and moment equilibrium in 3d?  || 5.6-5.7 || [http://biomechanics.stanford.edu/e14/e14_n11.pdf n11],[http://biomechanics.stanford.edu/e14/e14_s11.pdf s11]
|-
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| fri || may || 06 || problem session 4  ||  ||[http://biomechanics.stanford.edu/e14/e14_h04.pdf h04]
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!    !! w07  !! !! structures week !! ch 6 !!  
 
!    !! w07  !! !! structures week !! ch 6 !!  
 
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| mon || may || 09 || what's truss structure? || 6.1-6.3 || [http://biomechanics.stanford.edu/e14/e14_n12.pdf n12],[http://biomechanics.stanford.edu/e14/e14_s12.pdf s12]  
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| tue || may || 09 || what's truss structure? || 6.1-6.3 || [http://biomechanics.stanford.edu/e14/e14_n12.pdf n12],[http://biomechanics.stanford.edu/e14/e14_s12.pdf s12]  
 
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| wed || may || 11 || what's a frame? || 6.6 || [http://biomechanics.stanford.edu/e14/e14_n13.pdf n13],[http://biomechanics.stanford.edu/e14/e14_s13.pdf s13]
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| thu || may || 11 || what's a frame? || 6.6 || [http://biomechanics.stanford.edu/e14/e14_n13.pdf n13],[http://biomechanics.stanford.edu/e14/e14_s13.pdf s13]
|-
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| fri || may || 13 || problem session 5  ||  ||
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!    !! w08  !! !! internal force week !! ch 7 !!  
 
!    !! w08  !! !! internal force week !! ch 7 !!  
 
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| mon || may || 16 || what's inside? || 7.1 || [http://biomechanics.stanford.edu/e14/e14_n14.pdf n14],[http://biomechanics.stanford.edu/e14/e14_s14.pdf s14]  
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| tue || may || 16 || what's inside? || 7.1 || [http://biomechanics.stanford.edu/e14/e14_n14.pdf n14],[http://biomechanics.stanford.edu/e14/e14_s14.pdf s14]  
 
|-
 
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| wed || may || 18 || midterm 2, in class, closed book, 1 cheat sheet  || cubberley ||
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| thu || may || 18 || midterm 2, in class, closed book, 1 cheat sheet  || cubberley ||
 
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|-
 
| fri || may || 20 || what's a shear and moment diagram?  || 7.2-7.3 || [http://biomechanics.stanford.edu/e14/e14_n15.pdf n15],[http://biomechanics.stanford.edu/e14/e14_s15.pdf s15]
 
| fri || may || 20 || what's a shear and moment diagram?  || 7.2-7.3 || [http://biomechanics.stanford.edu/e14/e14_n15.pdf n15],[http://biomechanics.stanford.edu/e14/e14_s15.pdf s15]
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!    !! w09  !! !! friction and center week !! ch 8-9 !!  
 
!    !! w09  !! !! friction and center week !! ch 8-9 !!  
 
|-
 
|-
| mon || may || 23 || what's friction? || 8.1-8.2 || [http://biomechanics.stanford.edu/e14/e14_n16.pdf n16],[http://biomechanics.stanford.edu/e14/e14_s16.pdf s16]  
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| tue || may || 23 || what's friction? || 8.1-8.2 || [http://biomechanics.stanford.edu/e14/e14_n16.pdf n16],[http://biomechanics.stanford.edu/e14/e14_s16.pdf s16]  
 
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| wed || may || 25 || what's the center? || 9.1-9.2 || [http://biomechanics.stanford.edu/e14/e14_n17.pdf n17],[http://biomechanics.stanford.edu/e14/e14_s17.pdf s17]
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| thu || may || 25 || what's the center? || 9.1-9.2 || [http://biomechanics.stanford.edu/e14/e14_n17.pdf n17],[http://biomechanics.stanford.edu/e14/e14_s17.pdf s17]
|-
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| fri || may || 27 || problem session 6  ||  || [http://biomechanics.stanford.edu/e14/e14_h05.pdf h05]
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!    !! w10  !! !! that's it week !!  !!  
 
!    !! w10  !! !! that's it week !!  !!  
 
|-
 
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| mon || may || 30 || memorial day / no class ||  ||   
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| tue || may || 30 || memorial day / no class ||  ||   
|-
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| wed || jun || 01 || what's a was this all about? || rep 1-9 || [http://biomechanics.stanford.edu/e14/e14_n18.pdf n18],[http://biomechanics.stanford.edu/e14/e14_s18.pdf s18] 
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|-
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| fri || jun || 03 || end of quarter / no class  ||  ||
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| sun || jun || 05 || makeup final, in class, closed book, 1 cheat sheet  || 530-127 ||
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| thu || jun || 01 || what's a was this all about? || rep 1-9 || [http://biomechanics.stanford.edu/e14/e14_n18.pdf n18],[http://biomechanics.stanford.edu/e14/e14_s18.pdf s18]   
 
|-
 
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| mon || jun || 06 || final, in class, closed book, 1 cheat sheet  || cubaud ||
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| wed || mar || 16 || final, in class, closed book, 1 cheat sheet  || ||
 
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Revision as of 21:36, 2 January 2016

Contents

winter 16 - engr14 - intro to solid mechanics

Hibbeler03.jpg
Hibbeler04.jpg

engr14 - intro to solid mechanics 16
engr14 on youtube, mech1 on youtube

ellen kuhl tbd, 520-203
jean-claude angles, tbd, 520
josh siegel tbd, 520
jeanny wang, tbd, 520
kayla powers tbd, 520

tue / thu 11:30-1:20, 550-200

 

goals

why do things break? to reliably predict what’s going on inside a structure, we need to know the forces that act on it. it’s newton’s law that helps us to determine these forces. basically, this class is all about newton’s law, force equilibrium, and its application to civil, mechanical, aerospace, and biological problems. we explore it for particles first, then for two-dimensional, and finally for three-dimensional systems. first we look at the structure from the outside, then from the inside. we learn how to identify, formulate, and solve engineering problems. to do so, you should be familiar with and not afraid of maths, vectors, and basic physics.

grading

  • 20 % homework - 5 homework assignments, 4% each
  • 25 % midterm 1 - closed book, closed notes, one single page cheat sheet
  • 25 % midterm 2 - take home exam
  • 25 % final - closed book, closed notes, one single page cheat sheet

the best of the three exams will count 30% towards your final grade

syllabus

day date topic chapter notes/slides
w01 force week ch 1-2
tue mar 28 what's statics? 1.1-1.5 n01,s01
thu mar 30 what's a 2d force? 2.1-2.4 n02,s02
fri apr 01 what's a 3d force? 2.5-2.9 n03,s03
w02 particle week ch 3
tue apr 04 what's a free body diagram at a point? 3.1-3.2 n04,s04
thu apr 06 what's force equilibrium at a point? 3.3-3.4 n05,s05
w03 moment week ch 4
tue apr 11 what's a moment? 4.1-4.4 n06,s06
thu apr 13 what's a couple? what's distributed loading? 4.5-4.7 n07,s07
w04 practice week ch 1-4
tue apr 18 problems, problem, problems ...
thu apr 20 midterm 1, all day take home, wed 12pm - thu 2pm
w05 2d equilibrium week ch 5
tue apr 25 what's a free body diagram of a 2d system? 5.1-5.2 n08,s08
thu apr 27 what force and moment equilibrium in 2d? 5.3-5.4 n09,s09
w06 3d equilibrium week ch 5
tue may 02 what's a free body diagram of a 3d system? 5.5 n10,s10
thu may 04 what force and moment equilibrium in 3d? 5.6-5.7 n11,s11
w07 structures week ch 6
tue may 09 what's truss structure? 6.1-6.3 n12,s12
thu may 11 what's a frame? 6.6 n13,s13
w08 internal force week ch 7
tue may 16 what's inside? 7.1 n14,s14
thu may 18 midterm 2, in class, closed book, 1 cheat sheet cubberley
fri may 20 what's a shear and moment diagram? 7.2-7.3 n15,s15
w09 friction and center week ch 8-9
tue may 23 what's friction? 8.1-8.2 n16,s16
thu may 25 what's the center? 9.1-9.2 n17,s17
w10 that's it week
tue may 30 memorial day / no class
thu jun 01 what's a was this all about? rep 1-9 n18,s18
wed mar 16 final, in class, closed book, 1 cheat sheet

download syllabus here

E14 jump.jpg