Can the Fundamental Theorem of Calculus be used to find x²-x+3 dx ? x²-x+3 O No, f(x) = is not continuous on the given interval and its antiderivative does not exist. Yes, f(x) = x²-x+3 %3D is continuous on the given interval but its antiderivative does not exist. O Yes, f(x) = x²-x+3 is continuous on the given interval and its antiderivative exists. O No, f(x) = r²-r+3 is not continuous on the given interval but its antiderivative exists.

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter6: Applications Of The Derivative
Section6.CR: Chapter 6 Review
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Question
Can the Fundamental Theorem of Calculus be used to find
x2-x+3
dx?
O No, f(x) =
x²-x+3
is not continuous on the given interval and its antiderivative does not exist.
x²-x+3
O Yes, f(x) =
is continuous on the given interval but its antiderivative does not exist.
O Yes, f(x) = *²-x+3
is continuous on the given interval and its antiderivative exists.
O No. f(x) = x²-x+3
is not continuous on the given interval but its antiderivative exists.
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Transcribed Image Text:Can the Fundamental Theorem of Calculus be used to find x2-x+3 dx? O No, f(x) = x²-x+3 is not continuous on the given interval and its antiderivative does not exist. x²-x+3 O Yes, f(x) = is continuous on the given interval but its antiderivative does not exist. O Yes, f(x) = *²-x+3 is continuous on the given interval and its antiderivative exists. O No. f(x) = x²-x+3 is not continuous on the given interval but its antiderivative exists. 4 6 7 9 10 1 MacBook Air FL F2 F3 F6 F7 FB F9 @ # & * 2 3 4. 5 6 7 8 W E R Y F G H. K C V BINM
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