Tutorial Exercise Consider the given function. f(x)=4- Evaluate the Riemann sum for 2 S x S 14, with six subintervals, taking the sample points to be left endpoints. Part 1 of 3 We must calculate Le (f(x₁-1) Ax = [f(x0) + f(x₂) + F(x₂) + F(x3) + F(xa) + f(xs)] Ax, where xo, X1, X2, X3, X4, Xs represent the left-hand endpoints of six equal sub-intervals of [2, 14]. Since we wish to estimate the area over the interval [2, 14] using 6 rectangles of equal widths, then each rectangle will have width Ax= Submit Skip (you cannot come back)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter4: Polynomial And Rational Functions
Section4.5: Rational Functions
Problem 51E
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Tutorial Exercise
Consider the given function.
f(x)=4-
Evaluate the Riemann sum for 2 S x S 14, with six subintervals, taking the sample points to be left endpoints.
Part 1 of 3
We must calculate Le
f(x₁-1) Ax = [f(x0) + f(x₁) + f(x₂) + F(x3) + f(x4) + f(xs)] Ax, where xor X1, X2 X3, X4, Xs represent the left-hand endpoints of six equal sub-intervals of [2, 14].
Since we wish to estimate the area over the interval [2, 14] using 6 rectangles of equal widths, then each rectangle will have width Ax=
Submit Skip (you cannot come back)
Transcribed Image Text:Tutorial Exercise Consider the given function. f(x)=4- Evaluate the Riemann sum for 2 S x S 14, with six subintervals, taking the sample points to be left endpoints. Part 1 of 3 We must calculate Le f(x₁-1) Ax = [f(x0) + f(x₁) + f(x₂) + F(x3) + f(x4) + f(xs)] Ax, where xor X1, X2 X3, X4, Xs represent the left-hand endpoints of six equal sub-intervals of [2, 14]. Since we wish to estimate the area over the interval [2, 14] using 6 rectangles of equal widths, then each rectangle will have width Ax= Submit Skip (you cannot come back)
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