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Find the area bounded by the graphs of the indicated equations over the given interval. y=x2 - 24; y =0; - 35x50 The area is

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Find the area bounded by the graphs of the indicated equations over the given interval. y=x2 - 24; y =0; - 35x50 The area is square units.Find the area bounded by the graphs of the indicated equations over the given interval. Compute answers to three decimal places. _ 3 . _ . yx +9, yO. 05x52 The area, calculated to three decimal places, is square units. Find the area bounded by the graphs of the indicated equations over the given interval (when stated). Compute answers to three decimal places. y=2x2-9x;y=0; -25x52 The area, calculated to three decimal places, is square units. Find the area bounded by the graphs of the indicated equations over the given interval (when stated). Compute answers to three decimal places. y=x2+4;y=4x-4; -1Sx52 The area, calculated to three decimal places, is square units. 6.1.79-BE roduction and geological data, the management of an oil company estimates that oil will be pumped from a producing field at a rate ' given y the following. 80 t+8 R(t): +8; Osts'ls R(t) is the rate of production (in thousands of barrels per year) tyears after pumping begins. Find the area between the graph of R and the t-axis over the interval [3,7] and interpret the results. The area is approximately square units. (Round to the nearest integer as needed.) Choose the correct interpretation of the results below. ' 'i- A. Total production from the end of the first year to the end of the fifteenth year will be approximately 57 thousand barrels. 5':- B. It will take approximately 57 years after pumping begins to reach a thousand barrels. ('2' C. Total production from the end of the third year to the end of the seventh year will be approximately 57 thousand barrels. ('2' D. It will take approximately 58 years after pumping begins to reach a thousand barrels

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