Exam 16: Methods and Applications of Integration

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It is estimated that service industries will grow at the rate of R'(t)= 5 It is estimated that service industries will grow at the rate of R'(t)= 5    where t is the time in decades and R(t)is the percent of (non-farming)workers who are employed in the service industry.If 30 percent of the (non-farming)workers are now in the service industry,then use the trapezoidal rule and    to approximate 30 +    the percentage of workers who will be working in the service industry in 2 decades. where t is the time in decades and R(t)is the percent of (non-farming)workers who are employed in the service industry.If 30 percent of the (non-farming)workers are now in the service industry,then use the trapezoidal rule and It is estimated that service industries will grow at the rate of R'(t)= 5    where t is the time in decades and R(t)is the percent of (non-farming)workers who are employed in the service industry.If 30 percent of the (non-farming)workers are now in the service industry,then use the trapezoidal rule and    to approximate 30 +    the percentage of workers who will be working in the service industry in 2 decades. to approximate 30 + It is estimated that service industries will grow at the rate of R'(t)= 5    where t is the time in decades and R(t)is the percent of (non-farming)workers who are employed in the service industry.If 30 percent of the (non-farming)workers are now in the service industry,then use the trapezoidal rule and    to approximate 30 +    the percentage of workers who will be working in the service industry in 2 decades. the percentage of workers who will be working in the service industry in 2 decades.

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Use the table below to determine Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C dx.Indicate the formula number employed. I. Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C + C II. Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C + C III. Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C + C IV. Use the table below to determine    dx.Indicate the formula number employed. I.    + C II.    + C III.        + C IV.    + C + C

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Use the trapezoidal rule with n = 3 to estimate the value of Use the trapezoidal rule with n = 3 to estimate the value of

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Use the formula Use the formula    ln    + C to find    . ln Use the formula    ln    + C to find    . + C to find Use the formula    ln    + C to find    . .

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A surveyor measured the length of a piece of land at 100-ft intervals (x),as shown in the table.Use Simpson's Rule to estimate the area of the piece of land in square feet. A surveyor measured the length of a piece of land at 100-ft intervals (x),as shown in the table.Use Simpson's Rule to estimate the area of the piece of land in square feet.

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Find the area of the region bounded by the curve y = f(x)= Find the area of the region bounded by the curve y = f(x)=    - x and the x-axis on the interval    .Use your graphing calculator to see a graph of this area. - x and the x-axis on the interval Find the area of the region bounded by the curve y = f(x)=    - x and the x-axis on the interval    .Use your graphing calculator to see a graph of this area. .Use your graphing calculator to see a graph of this area.

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Systolic blood pressure is the blood pressure in a body when the heart contracts.An animal undergoing laboratory testing was injected with an experimental drug.The animal's systolic blood pressure P (in millimeters of mercury)was found to be given by P = Systolic blood pressure is the blood pressure in a body when the heart contracts.An animal undergoing laboratory testing was injected with an experimental drug.The animal's systolic blood pressure P (in millimeters of mercury)was found to be given by P =    + 100; 0 ≤ t ≤ 4,where t was the number of hours after the injection.What was the average systolic blood pressure over the first two hours after the injection? + 100; 0 ≤ t ≤ 4,where t was the number of hours after the injection.What was the average systolic blood pressure over the first two hours after the injection?

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Either find the value of Either find the value of    or show that it diverges. or show that it diverges.

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Find the average value of the function f(x)= (x + Find the average value of the function f(x)= (x +    over the interval    . over the interval Find the average value of the function f(x)= (x +    over the interval    . .

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Find the average value of the function f(x)= Find the average value of the function f(x)=    + 4 over the interval    . + 4 over the interval Find the average value of the function f(x)=    + 4 over the interval    . .

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Use the trapezoidal rule with n = 3 to find an approximate value of Use the trapezoidal rule with n = 3 to find an approximate value of

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If If   =     And y(-2)= -   ,then = If   =     And y(-2)= -   ,then If   =     And y(-2)= -   ,then And y(-2)= - If   =     And y(-2)= -   ,then ,then

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Use Simpson's rule with n = 4 to find an approximate value of Use Simpson's rule with n = 4 to find an approximate value of

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Use the tables to find: Use the tables to find:

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Use the tables to find: Use the tables to find:

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Use the tables to find: Use the tables to find:

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The exact area of the region bounded by the graphs of y = The exact area of the region bounded by the graphs of y =   + x + 1,x = -2,x = 1,and the x-axis is + x + 1,x = -2,x = 1,and the x-axis is

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Solve the differential equation: 4y' + 3 Solve the differential equation: 4y' + 3    = 0,y(1)=  = 0,y(1)= Solve the differential equation: 4y' + 3    = 0,y(1)=

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Find the average value of the function y = f(x)= Find the average value of the function y = f(x)=    + 3 on the interval    .Use your graphing calculator to graph both y = f(x)=    + 3 and y =    on the same set of axes.Estimate the value of x when these two curves intersect. + 3 on the interval Find the average value of the function y = f(x)=    + 3 on the interval    .Use your graphing calculator to graph both y = f(x)=    + 3 and y =    on the same set of axes.Estimate the value of x when these two curves intersect. .Use your graphing calculator to graph both y = f(x)= Find the average value of the function y = f(x)=    + 3 on the interval    .Use your graphing calculator to graph both y = f(x)=    + 3 and y =    on the same set of axes.Estimate the value of x when these two curves intersect. + 3 and y = Find the average value of the function y = f(x)=    + 3 on the interval    .Use your graphing calculator to graph both y = f(x)=    + 3 and y =    on the same set of axes.Estimate the value of x when these two curves intersect. on the same set of axes.Estimate the value of x when these two curves intersect.

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The demand equation for a product is p = The demand equation for a product is p =    and the supply equation is p = 1 + q.Determine the consumers' surplus and the producers' surplus. and the supply equation is p = 1 + q.Determine the consumers' surplus and the producers' surplus.

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