51. f(x)=x² - 8x1/2 52. f(n) (x ≥ 0)

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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How do you do problem 51? The problem asks to find what intervals on f is concave up or down, the points of inflection, the critical points, and the local maxima and minima Thanks!
ints of in-
e
sin* +4 (0,2*1
43. a) xe
45. f(x) = x³ Inx (x > 0)
46. f(x) = In x +In(4-x2), (0,2)
In Exercises 47-62, find the intervals on which
the points of inflection, the critical points,
maxima.
14
47. f(x) = x³ - 2x² + x
49. f(t) = 1² - 13
51. f(x)=x²-8x¹/2 (x ≥ 0)
52. f(x) = x3/2 - 4x-1/2
1540
53. f(x) =
X
x² +27
55. f(x) = x5/3 - x
(57. f(0) = 0 + sin 0, [0,27]
59. f(x) = tan x₁
(x > 0)
x, (II)
48.
50.
54
50
5
Transcribed Image Text:ints of in- e sin* +4 (0,2*1 43. a) xe 45. f(x) = x³ Inx (x > 0) 46. f(x) = In x +In(4-x2), (0,2) In Exercises 47-62, find the intervals on which the points of inflection, the critical points, maxima. 14 47. f(x) = x³ - 2x² + x 49. f(t) = 1² - 13 51. f(x)=x²-8x¹/2 (x ≥ 0) 52. f(x) = x3/2 - 4x-1/2 1540 53. f(x) = X x² +27 55. f(x) = x5/3 - x (57. f(0) = 0 + sin 0, [0,27] 59. f(x) = tan x₁ (x > 0) x, (II) 48. 50. 54 50 5
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