Approximate the area under graph (a) of f(x)=1/x over the interval [2,10] by computing the area of each rectangle to four decimal places and then ad Approximate the area under graph (b) of f(x) = 1/x² over the interval [2,10] by computing the area of each rectangle to four decimal places and then ad Q 0.25 The area under graph (a) is approximately (Round to four decimal places as needed.) (a) f(x)=1/x² 0.125+ 0- 6 10-11x2 0.25 125- A 10 (b) X Q Q

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
6th Edition
ISBN:9781337111348
Author:Bruce Crauder, Benny Evans, Alan Noell
Publisher:Bruce Crauder, Benny Evans, Alan Noell
ChapterA: Appendix
SectionA.2: Geometric Constructions
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a) Approximate the area under graph (a) of f(x) = 1/x² over the interval [2,10] by computing the area of each rectangle to four decimal places and then adding.
b) Approximate the area under graph (b) of f(x)=1/x² over the interval [2,10] by computing the area of each rectangle to four decimal places and then adding.
C
Ay
Ⓒ
The area under graph (a) is approximately
(Round to four decimal places as needed.)
(a)
f(x)=1/x²
10
(b)
((x)=1/x²
5
( 8 9 10
0.25
0.125-
0
Ау
0.25
0.125-
o
→ □
Transcribed Image Text:a) Approximate the area under graph (a) of f(x) = 1/x² over the interval [2,10] by computing the area of each rectangle to four decimal places and then adding. b) Approximate the area under graph (b) of f(x)=1/x² over the interval [2,10] by computing the area of each rectangle to four decimal places and then adding. C Ay Ⓒ The area under graph (a) is approximately (Round to four decimal places as needed.) (a) f(x)=1/x² 10 (b) ((x)=1/x² 5 ( 8 9 10 0.25 0.125- 0 Ау 0.25 0.125- o → □
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