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Unformatted text preview: d) What is the percentage error between the two values?
3, a Let f (x) = (1 + x)Quiz= 0. 5a Time 30 min 4.1 Page 211 3, 33, 35, 37, 45, 49, to 53, at a. 51, f 55 a) Find the tangent line 4.3 Page 227 1, 11, 12, 13, 15, 29, 35, 37, 39 3 w 1 Let f the tangent on to 2]. b) Use(x) = sin x line[0, find an approximate value of (1.02) 3 1) What value does your calculator give for (1.02) 1 ? 3 c) Differentiate and simplify. 2) Find is critical numbers. Covers 3.9 all the percentage error between the two values? d) What 1 Problems H 7 Q5 You'll need a calculator. 3) Use the first derivative test to find all local extremes. 4) Find all tan x, a =extremes. Let f (x) = absolute .
4 a) Find the tangent line to f at a. b) Use the tangent line to find an approximate value of tan(46o ) Hint: You will have to convert 46o to radians) c) What value does your calculator give for tan(46o ) ? d) What is the percentage error between the two values? Q6 Preview Quiz 5b Time 30 min Quiz 5a Let f (x) = x3 (x  1)2 on [1, Time 30 min 2]. 3 Let f (x) = sin x and 2]. 1) Differentiate on [0, simplify. 1) 2) Differentiate and simplify. Find all critical numbers. 2) Find all critical numbers. 3) Find all absolute extremes.. test to find all local extremes. 3) Use the first derivative 4) Find all absolute extremes. Quiz 5b Let f (x) = x3 (x  1)2 on [1, 2]. 1) Differentiate and simplify. 2) Find all critical numbers. 3) Find all absolute extremes.. Time 30 min Quiz 5c Time 30 min Letff (x) = x  sin x 2 on [1, 1]. Let (x) = cos x 1  xon [, ]. 1) Differentiate simplify. 1) Differentiate andand simplify. 2) Find all critical numbers. 2) Find all critical numbers. 3) Find all absolute extremes.. Quiz 5c Time 30 min 3) Use the first derivative test to find all local extremes. 4) Find all absolute Quiz 5d extremes. Time 30 min
Let f (x) = sin2 x  cos x on the interval [0, 2].. 1) Differentiate and simplify. 2) Find all critical numbers. 3) Find all absolute extremes.. Quiz 5e Time 30 min Let f (x) = cos x sin x on the interval [, ]. 1) Differentiate and simplify. ...
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This note was uploaded on 03/22/2008 for the course M 408c taught by Professor Mcadam during the Fall '06 term at University of Texas at Austin.
 Fall '06
 McAdam

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