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he figure above includes the graph of f(x)=x^(2) and the 10 left rectangles. Each rectangle has e same width, but the heights are obtained by

he figure above includes the graph of

f(x)=x^(2)

and the 10 left rectangles. Each rectangle has e same width, but the heights are obtained by plugging in the left-endpoints of each subinterval to

f(x)=x^(2)

. Fill out the below table to compute the areas of these rectangles.\ \\\\table[[Subinterval,Left Endpt,Rectangle Height,Rectangle Width,Area of Rectangle],[

0,.1

,,,,],[

.1,.2

,,,,],[

.2,.3

,,,,],[

.3,.4

,,,,],[

.4,.5

,,,,],[

.5,.6

,,,,],[

.6,.7

,,,,],[

.7,.8

,,,,],[

.8,.9

,,,,],[

9.1

,,,,]]

image text in transcribed
figure above includes the graph of f(x)=x2 and the 10 left rectangles. Each rectangle has e same width, but the heights are obtained by plugging in the left-endpoints of each subinterval to f(x)=x2. Fill out the below table to compute the areas of these rectangles. figure above includes the graph of f(x)=x2 and the 10 left rectangles. Each rectangle has e same width, but the heights are obtained by plugging in the left-endpoints of each subinterval to f(x)=x2. Fill out the below table to compute the areas of these rectangles

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