Exam 4: Applications of Differentiation
Exam 1: Functions and Limits51 Questions
Exam 2: Derivatives50 Questions
Exam 3: Inverse Functions: Exponential, Logarithmic, and Inverse Trigonometric Functions56 Questions
Exam 4: Applications of Differentiation29 Questions
Exam 5: Integrals41 Questions
Exam 6: Techniques of Integration43 Questions
Exam 7: Applications of Integration61 Questions
Exam 8: Series50 Questions
Exam 9: Parametric Equations and Polar Coordinates30 Questions
Exam 10: Ectors and the Geometry of Space68 Questions
Exam 11: Partial Derivatives71 Questions
Exam 12: Multiple Integrals54 Questions
Exam 13: Vector Calculus56 Questions
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Express the integral as a limit of sums.Then evaluate the limit. 

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The velocity of a car was read from its speedometer at ten-second intervals and recorded in the table. Use the Midpoint Rule to estimate the distance traveled by the car.



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E
Find a function
such that
for x > 0 and some number a.


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; for
The velocity graph of a car accelerating from rest to a speed of 7 km/h over a period of 10 seconds is shown.Estimate to the nearest integer the distance traveled during this period.Use a right sum with n = 10.

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By reading values from the given graph of f ,use five rectangles to find a lower estimate,to the nearest whole number,for the area from 0 to 10 under the given graph of f.

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Use Part 1 of the Fundamental Theorem of Calculus to find the derivative of the function. 

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The area of the region that lies to the right of the y-axis and to the left of the parabola
(the shaded region in the figure)is given by the integral
. Find the area.. 



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The acceleration function (in m/
)and the initial velocity are given for a particle moving along a line.Find the velocity at time t and the distance traveled during the given time interval. 


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The velocity graph of a braking car is shown.Use it to estimate to the nearest foot the distance traveled by the car while the brakes are applied.Use a left sum with n = 7. 

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Use the Midpoint Rule with n = 10 to approximate the integral. 

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A table of values of an increasing function f(x) is shown.Use the table to find an upper estimate of



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Use the Midpoint Rule with n = 5 to approximate the integral.
Round your answer to three decimal places.

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Find the average value of the function on the given interval. 

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