Difference between revisions of "Kayla's pages"

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=In Progress=
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[[Series Problems|Series Problems]]
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[[Limit Definition of Derivative|Limit Definition of Derivative]]
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[[007B Sample Midterm 1|007B Sample Midterm 1]]
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[[007B Sample Midterm 2|007B Sample Midterm 2]]
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[[007B Sample Midterm 3|007B Sample Midterm 3]]
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=Completed=
 
=Completed=
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[[Integration by Parts|Integration by Parts]]
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[[031 Review Part 1|031 Review Part 1]]
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[[031 Review Part 2|031 Review Part 2]]
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[[031 Review Part 3|031 Review Part 3]]
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[[009A Sample Final 2|009A Sample Final 2]]
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=Editing Comments=
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=Needs Updating=
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[[009B Sample Midterm 2|009B Sample Midterm 2]]
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[[009B Sample Midterm 3|009B Sample Midterm 3]]
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[[009C Sample Final 1|009C Sample Final 1]]
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[[009C Sample Final 2|009C Sample Final 2]]
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[[009C Sample Final 3|009C Sample Final 3]]
  
 
[[009B Sample Final 1|009B Sample Final 1]]
 
[[009B Sample Final 1|009B Sample Final 1]]
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[[009A Sample Final 3|009A Sample Final 3]]
 
[[009A Sample Final 3|009A Sample Final 3]]
  
[[009A Sample Final 2|009A Sample Final 2]]
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=Posted to Public Wiki=
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[[Strategies for Testing Series|Strategies for Testing Series]]
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[[Chain Rule|Chain Rule]]
  
=Editing Comments=
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[[Volume of a Sphere|Volume of a Sphere]]
  
9B Sample 1:
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[[Product Rule and Quotient Rule|Product Rule and Quotient Rule]]
  
3.a) Step 2, should say 2 - cos(x), not 1 - cos(x)
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[[U-substitution|U-substitution]]
4. Foundation, would be better to write it as sin^2(x) + cos^2(x) = 1 since you remind them of this in each example before using it anyways
 
4.b) I think it would look better if you wrote \int 1 dx instead of just \int dx in steps 1 and 3
 
4.b) Make the size of the final integral in step 4 larger
 
6.b) Should be limit as a approaches 4 from the left only
 
7. Foundation, should have a dx at the end of the equation for ds
 
7.b) Why not solve it using u-sub directly instead of trig sub to start?
 
  
9B Sample 2:
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[[004 Sample Final A|004 Sample Final A]]
4. This is completely blank.
 
5.b) Just compute 27^2/2^2 = 729/4, would look better I think
 
7.a) and b) Why convert the limit from a to x, since a ranges over real numbers also so l'Hopital's rule holds.
 
7.b) Should be limit as a approaches 0 from the right only
 
  
9A Sample 1:
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[[007A Sample Midterm 1|007A Sample Midterm 1]]
1. Foundation, limit as x approaches any value a, not just infinity. And I don't think we need the comment that lim f'(x)/g'(x) is finite or +-infinity.
 
  
9A Sample 2:
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[[007A Sample Midterm 2|007A Sample Midterm 2]]
1. Foundation, limit as x approaches any value a, not just infinity. And I don't think we need the comment that lim f'(x)/g'(x) is finite or +-infinity.
 
1.a) %if% we plug in x=4...
 
3.c) Why not just use implicit differentiation to explain how to do the derivative?
 
5. This is completely blank.
 
8. Foundation, limit as x approaches any value a, not just infinity. And I don't think we need the comment that lim f'(x)/g'(x) is finite or +-infinity.
 
10.c) Better to take the limit as x approaches infinity and negative infinity to show the HA is y=0.
 
  
=Posted to Public Wiki=
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[[007A Sample Midterm 3|007A Sample Midterm 3]]
  
 
[[009A Sample Midterm 1|009A Sample Midterm 1]]
 
[[009A Sample Midterm 1|009A Sample Midterm 1]]
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[[009B Sample Midterm 1|009B Sample Midterm 1]]
 
[[009B Sample Midterm 1|009B Sample Midterm 1]]
 
[[009B Sample Midterm 2|009B Sample Midterm 2]]
 
 
[[009B Sample Midterm 3|009B Sample Midterm 3]]
 
  
 
[[009C Sample Midterm 1|009C Sample Midterm 1]]
 
[[009C Sample Midterm 1|009C Sample Midterm 1]]
  
 
[[009C Sample Midterm 2|009C Sample Midterm 2]]
 
[[009C Sample Midterm 2|009C Sample Midterm 2]]
 
[[004 Sample Final A|004 Sample Final A]]
 
 
[[009C Sample Final 1|009C Sample Final 1]]
 
 
[[009C Sample Final 2|009C Sample Final 2]]
 
 
[[009C Sample Final 3|009C Sample Final 3]]
 
 
 
=In Progress=
 
 
[[U-substitution|U-substitution]]
 

Latest revision as of 12:26, 2 December 2017