Deck 13: Introduction to Functions of Several Variables

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Assume in 2009, an investment of $2400 was made in a bond earning 9% compounded annually. Assume that the buyer pays at rate R and the annual rate of inflation is I.
Suppose in the year 2019, the value V of the investment in constant 2009 dollars is Assume in 2009, an investment of $2400 was made in a bond earning 9% compounded annually. Assume that the buyer pays at rate R and the annual rate of inflation is I. Suppose in the year 2019, the value V of the investment in constant 2009 dollars is  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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and simplify the function and simplify the function    <div style=padding-top: 35px> and simplify the function    <div style=padding-top: 35px>
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Sketch the level curves of the function Sketch the level curves of the function    <div style=padding-top: 35px> Sketch the level curves of the function    <div style=padding-top: 35px>
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and simplify the function <strong>and simplify the function  </strong> A)-56 B)-26 C)-14 D)-44 E)-27 <div style=padding-top: 35px>

A)-56
B)-26
C)-14
D)-44
E)-27
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and simplify the function and simplify the function    <div style=padding-top: 35px> and simplify the function    <div style=padding-top: 35px>
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According to the Ideal Gas Law, According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k.  <div style=padding-top: 35px> temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k. According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k.  <div style=padding-top: 35px>
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average length of time that a customer waits in line for service is average length of time that a customer waits in line for service is  <div style=padding-top: 35px>
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the limit. the limit.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of
Board-feet is <strong>Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of Board-feet is   . Find the number of board-feet of lumber in a log 28 inches in Diameter and  </strong> A)7,290 board-feet B)1,690 board-feet C)270 board-feet D)3,380 board-feet E)6,760 board-feet <div style=padding-top: 35px> . Find the number of board-feet of lumber in a log 28 inches in
Diameter and <strong>Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of Board-feet is   . Find the number of board-feet of lumber in a log 28 inches in Diameter and  </strong> A)7,290 board-feet B)1,690 board-feet C)270 board-feet D)3,380 board-feet E)6,760 board-feet <div style=padding-top: 35px>

A)7,290 board-feet
B)1,690 board-feet
C)270 board-feet
D)3,380 board-feet
E)6,760 board-feet
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and simplify and simplify    <div style=padding-top: 35px> and simplify    <div style=padding-top: 35px>
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Sketch the level curves for the function Sketch the level curves for the function    <div style=padding-top: 35px> Sketch the level curves for the function    <div style=padding-top: 35px>
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Sketch the surface given by the function. Sketch the surface given by the function.  <div style=padding-top: 35px>
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Determine the continuity of the function Determine the continuity of the function    <div style=padding-top: 35px> Determine the continuity of the function    <div style=padding-top: 35px>
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Describe the level curves of the function. Sketch the level curves for the given c-values. Describe the level curves of the function. Sketch the level curves for the given c-values.  <div style=padding-top: 35px>
Question
and simplify the function <strong>and simplify the function  </strong> A)-42 B)-14 C)42 D)14 E) <div style=padding-top: 35px>

A)-42
B)-14
C)42
D)14
E)
Question
rectangular box with an open top has a length of x feet, a width of y feet, and a height of z feet. It costs $2.10 per square foot to build the base and $0.75 per square foot to build the
Sides. Write the cost C of constructing the box as a function of x, y, and z. rectangular box with an open top has a length of x feet, a width of y feet, and a height of z feet. It costs $2.10 per square foot to build the base and $0.75 per square foot to build the Sides. Write the cost C of constructing the box as a function of x, y, and z.  <div style=padding-top: 35px>
Question
According to the Ideal Gas Law, According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function Of V and T after evaluating k.  <div style=padding-top: 35px> temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function
Of V and T after evaluating k. According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function Of V and T after evaluating k.  <div style=padding-top: 35px>
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and simplify the function and simplify the function    <div style=padding-top: 35px> and simplify the function    <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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  Find the limit  <div style=padding-top: 35px> Find the limit   Find the limit  <div style=padding-top: 35px>
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polar coordinates and L'Hopital's Rule to find the limit. polar coordinates and L'Hopital's Rule to find the limit.  <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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the limit. the limit.  <div style=padding-top: 35px>
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Discuss the continuity of the function. Discuss the continuity of the function.    <div style=padding-top: 35px> Discuss the continuity of the function.    <div style=padding-top: 35px>
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Determine the continuity of the composite function Determine the continuity of the composite function    <div style=padding-top: 35px> Determine the continuity of the composite function    <div style=padding-top: 35px>
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Determine the continuity of the function Determine the continuity of the function    <div style=padding-top: 35px> Determine the continuity of the function    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Determine the continuity of the function Determine the continuity of the function    <div style=padding-top: 35px> Determine the continuity of the function    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the limit . the limit .  <div style=padding-top: 35px>
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the limit. the limit.  <div style=padding-top: 35px>
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Determine the continuity of the function Determine the continuity of the function    <div style=padding-top: 35px> Determine the continuity of the function    <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Suppose the temperature at any point Suppose the temperature at any point    <div style=padding-top: 35px> Suppose the temperature at any point    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the total differential for the function the total differential for the function    <div style=padding-top: 35px> the total differential for the function    <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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  Find the total differential for the function  <div style=padding-top: 35px> Find the total differential for the function   Find the total differential for the function  <div style=padding-top: 35px>
Question
Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If   respectively, then the total revenue for the product is given by  <div style=padding-top: 35px> respectively, then the total revenue for the product is given by Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If   respectively, then the total revenue for the product is given by  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the total differential of the function the total differential of the function    <div style=padding-top: 35px> the total differential of the function    <div style=padding-top: 35px>
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the partial derivative the partial derivative    <div style=padding-top: 35px> the partial derivative    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the total differential of the function the total differential of the function    <div style=padding-top: 35px> the total differential of the function    <div style=padding-top: 35px>
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the first partial derivative for the function the first partial derivative for the function   respect to z.  <div style=padding-top: 35px> respect to z. the first partial derivative for the function   respect to z.  <div style=padding-top: 35px>
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  simultaneously.  <div style=padding-top: 35px> simultaneously.   simultaneously.  <div style=padding-top: 35px>
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Suppose the utility function Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of  <div style=padding-top: 35px> derived by a person from the consumption of two products x and y. Determine the marginal utility of Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of  <div style=padding-top: 35px>
Question
Suppose the utility function Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is    <div style=padding-top: 35px> derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is    <div style=padding-top: 35px> Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is    <div style=padding-top: 35px>
Question
Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y
Fireplace-insert stoves is Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y Fireplace-insert stoves is    <div style=padding-top: 35px> Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y Fireplace-insert stoves is    <div style=padding-top: 35px>
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  Find the partial derivative  <div style=padding-top: 35px> Find the partial derivative   Find the partial derivative  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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<strong>  towards  </strong> A)10.96 B)-6.04 C)49.96 D)31.92 E)33.92 <div style=padding-top: 35px> towards <strong>  towards  </strong> A)10.96 B)-6.04 C)49.96 D)31.92 E)33.92 <div style=padding-top: 35px>

A)10.96
B)-6.04
C)49.96
D)31.92
E)33.92
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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     <div style=padding-top: 35px>      <div style=padding-top: 35px>      <div style=padding-top: 35px>
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parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at   places.  <div style=padding-top: 35px> places. parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at   places.  <div style=padding-top: 35px>
Question
Suppose the centripetal acceleration of a particle moving in a circle is Suppose the centripetal acceleration of a particle moving in a circle is    <div style=padding-top: 35px> Suppose the centripetal acceleration of a particle moving in a circle is    <div style=padding-top: 35px>
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Suppose the formula for wind chill C (in degrees Fahrenheit) is given by Suppose the formula for wind chill C (in degrees Fahrenheit) is given by  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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<strong>  Round your answer to four decimal places.</strong> A)-7.9441 B)-45.9441 C)-19.9441 D)0.1118 E)-4.8882 <div style=padding-top: 35px> Round your answer to four decimal places.

A)-7.9441
B)-45.9441
C)-19.9441
D)0.1118
E)-4.8882
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Suppose the period T of a pendulum of length L is <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds <div style=padding-top: 35px> acceleration due to gravity. A pendulum is moved from the Canal Zone, where <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds <div style=padding-top: 35px> second per second, to Greenland, where <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds <div style=padding-top: 35px> feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the
Change in the period of the pendulum. Round your answer to four decimal places.

A)5.8508 seconds
B)-0.0746 second
C)0.9254 second
D)7.9254 seconds
E)-7.1492 seconds
Question
radius r and height h of a right circular cylinder are measured with possible errors of 5% and 1%, respectively. Approximate the maximum possible percent error in measuring
The volume.

A)18 %
B)11 %
C)24 %
D)12 %
E)7 %
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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<strong> </strong> A)116t B)58t C)104t D)32t E)174t <div style=padding-top: 35px>

A)116t
B)58t
C)104t
D)32t
E)174t
Question
Suppose the formula for wind chill C (in degrees Fahrenheit) is given by Suppose the formula for wind chill C (in degrees Fahrenheit) is given by  <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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<strong>  towards   . Round your answer to four decimal places.</strong> A)-35.7266 B)30.5500 C)17.2734 D)15.5468 E)-4.7266 <div style=padding-top: 35px> towards <strong>  towards   . Round your answer to four decimal places.</strong> A)-35.7266 B)30.5500 C)17.2734 D)15.5468 E)-4.7266 <div style=padding-top: 35px> . Round your answer to four decimal places.

A)-35.7266
B)30.5500
C)17.2734
D)15.5468
E)-4.7266
Question
Suppose electrical power P is given by <strong>Suppose electrical power P is given by   resistance. Approximate the maximum percent error in calculating the power if 140 volts are applied to a 3000-ohm resistor and the possible percent errors in measuring E and R are 5% and 8%, Respectively.</strong> A)24% B)42% C)38% D)43% E)18% <div style=padding-top: 35px> resistance. Approximate the maximum percent error in calculating the power if 140 volts are applied to a 3000-ohm resistor and the possible percent errors in measuring E and R are 5% and 8%,
Respectively.

A)24%
B)42%
C)38%
D)43%
E)18%
Question
<strong>  Round your answer to four decimal places.</strong> A)7.3037 B)5.6074 C)-16.6963 D)-2.6963 E)-21.3926 <div style=padding-top: 35px> Round your answer to four decimal places.

A)7.3037
B)5.6074
C)-16.6963
D)-2.6963
E)-21.3926
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Deck 13: Introduction to Functions of Several Variables
1
Assume in 2009, an investment of $2400 was made in a bond earning 9% compounded annually. Assume that the buyer pays at rate R and the annual rate of inflation is I.
Suppose in the year 2019, the value V of the investment in constant 2009 dollars is Assume in 2009, an investment of $2400 was made in a bond earning 9% compounded annually. Assume that the buyer pays at rate R and the annual rate of inflation is I. Suppose in the year 2019, the value V of the investment in constant 2009 dollars is
B
2
C
3
and simplify the function and simplify the function    and simplify the function
C
4
Sketch the level curves of the function Sketch the level curves of the function    Sketch the level curves of the function
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and simplify the function <strong>and simplify the function  </strong> A)-56 B)-26 C)-14 D)-44 E)-27

A)-56
B)-26
C)-14
D)-44
E)-27
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and simplify the function and simplify the function    and simplify the function
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7
According to the Ideal Gas Law, According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k.  temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k. According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 2000 cubic inches of nitrogen at a pressure of 26 pounds per square inch and a temperature of 600 K. Determine k.
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average length of time that a customer waits in line for service is average length of time that a customer waits in line for service is
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the limit. the limit.
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Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of
Board-feet is <strong>Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of Board-feet is   . Find the number of board-feet of lumber in a log 28 inches in Diameter and  </strong> A)7,290 board-feet B)1,690 board-feet C)270 board-feet D)3,380 board-feet E)6,760 board-feet . Find the number of board-feet of lumber in a log 28 inches in
Diameter and <strong>Assume a rule that is one of several methods used to determine the lumber yield of a log (in board-feet) in terms of its diameter d (in inches) and its length L (in feet). The number of Board-feet is   . Find the number of board-feet of lumber in a log 28 inches in Diameter and  </strong> A)7,290 board-feet B)1,690 board-feet C)270 board-feet D)3,380 board-feet E)6,760 board-feet

A)7,290 board-feet
B)1,690 board-feet
C)270 board-feet
D)3,380 board-feet
E)6,760 board-feet
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and simplify and simplify    and simplify
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13
Sketch the level curves for the function Sketch the level curves for the function    Sketch the level curves for the function
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14
Sketch the surface given by the function. Sketch the surface given by the function.
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15
Determine the continuity of the function Determine the continuity of the function    Determine the continuity of the function
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16
Describe the level curves of the function. Sketch the level curves for the given c-values. Describe the level curves of the function. Sketch the level curves for the given c-values.
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and simplify the function <strong>and simplify the function  </strong> A)-42 B)-14 C)42 D)14 E)

A)-42
B)-14
C)42
D)14
E)
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rectangular box with an open top has a length of x feet, a width of y feet, and a height of z feet. It costs $2.10 per square foot to build the base and $0.75 per square foot to build the
Sides. Write the cost C of constructing the box as a function of x, y, and z. rectangular box with an open top has a length of x feet, a width of y feet, and a height of z feet. It costs $2.10 per square foot to build the base and $0.75 per square foot to build the Sides. Write the cost C of constructing the box as a function of x, y, and z.
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19
According to the Ideal Gas Law, According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function Of V and T after evaluating k.  temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function
Of V and T after evaluating k. According to the Ideal Gas Law,   temperature (in Kelvins), and k is a constant of proportionality. A tank contains 3500 cubic inches of nitrogen at a pressure of 34 pounds per square inch and a temperature of 300 K. Write P as a function Of V and T after evaluating k.
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and simplify the function and simplify the function    and simplify the function
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21
the partial derivative the partial derivative    the partial derivative
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  Find the limit  Find the limit   Find the limit
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polar coordinates and L'Hopital's Rule to find the limit. polar coordinates and L'Hopital's Rule to find the limit.
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the partial derivative the partial derivative    the partial derivative
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the partial derivative the partial derivative    the partial derivative
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the limit. the limit.
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Discuss the continuity of the function. Discuss the continuity of the function.    Discuss the continuity of the function.
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Determine the continuity of the composite function Determine the continuity of the composite function    Determine the continuity of the composite function
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Determine the continuity of the function Determine the continuity of the function    Determine the continuity of the function
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Determine the continuity of the function Determine the continuity of the function    Determine the continuity of the function
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35
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36
the limit . the limit .
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37
the limit. the limit.
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38
Determine the continuity of the function Determine the continuity of the function    Determine the continuity of the function
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39
the partial derivative the partial derivative    the partial derivative
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40
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41
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42
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43
Suppose the temperature at any point Suppose the temperature at any point    Suppose the temperature at any point
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44
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45
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46
the total differential for the function the total differential for the function    the total differential for the function
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47
the partial derivative the partial derivative    the partial derivative
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48
  Find the total differential for the function  Find the total differential for the function   Find the total differential for the function
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49
Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If   respectively, then the total revenue for the product is given by  respectively, then the total revenue for the product is given by Suppose a pharmaceutical corporation has two plants that produce the same over-the-counter medicine. If   respectively, then the total revenue for the product is given by
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50
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51
the total differential of the function the total differential of the function    the total differential of the function
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52
the partial derivative the partial derivative    the partial derivative
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53
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54
the total differential of the function the total differential of the function    the total differential of the function
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55
the first partial derivative for the function the first partial derivative for the function   respect to z.  respect to z. the first partial derivative for the function   respect to z.
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56
  simultaneously.  simultaneously.   simultaneously.
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57
Suppose the utility function Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of  derived by a person from the consumption of two products x and y. Determine the marginal utility of Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of
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58
Suppose the utility function Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is    derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is    Suppose the utility function   derived by a person from the consumption of two products x and y. Determine the marginal utility of product if the utility function is
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59
Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y
Fireplace-insert stoves is Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y Fireplace-insert stoves is    Suppose a company manufactures two types of wood-burning stoves: a freestanding model and a fireplace-insert model. The cost function for producing x freestanding and y Fireplace-insert stoves is
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60
  Find the partial derivative  Find the partial derivative   Find the partial derivative
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61
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62
<strong>  towards  </strong> A)10.96 B)-6.04 C)49.96 D)31.92 E)33.92 towards <strong>  towards  </strong> A)10.96 B)-6.04 C)49.96 D)31.92 E)33.92

A)10.96
B)-6.04
C)49.96
D)31.92
E)33.92
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63
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64
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65
parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at   places.  places. parametric equations for the paths of two projectiles are given below. At what rate is the distance between the two objects changing at   places.
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66
Suppose the centripetal acceleration of a particle moving in a circle is Suppose the centripetal acceleration of a particle moving in a circle is    Suppose the centripetal acceleration of a particle moving in a circle is
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67
Suppose the formula for wind chill C (in degrees Fahrenheit) is given by Suppose the formula for wind chill C (in degrees Fahrenheit) is given by
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68
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69
<strong>  Round your answer to four decimal places.</strong> A)-7.9441 B)-45.9441 C)-19.9441 D)0.1118 E)-4.8882 Round your answer to four decimal places.

A)-7.9441
B)-45.9441
C)-19.9441
D)0.1118
E)-4.8882
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70
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71
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72
Suppose the period T of a pendulum of length L is <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds acceleration due to gravity. A pendulum is moved from the Canal Zone, where <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds second per second, to Greenland, where <strong>Suppose the period T of a pendulum of length L is   acceleration due to gravity. A pendulum is moved from the Canal Zone, where   second per second, to Greenland, where   feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the Change in the period of the pendulum. Round your answer to four decimal places.</strong> A)5.8508 seconds B)-0.0746 second C)0.9254 second D)7.9254 seconds E)-7.1492 seconds feet per second per second. Because of the change in temperature, the length of the pendulum changes from 2.6 feet to 2.45 feet. Approximate the
Change in the period of the pendulum. Round your answer to four decimal places.

A)5.8508 seconds
B)-0.0746 second
C)0.9254 second
D)7.9254 seconds
E)-7.1492 seconds
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73
radius r and height h of a right circular cylinder are measured with possible errors of 5% and 1%, respectively. Approximate the maximum possible percent error in measuring
The volume.

A)18 %
B)11 %
C)24 %
D)12 %
E)7 %
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74
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75
<strong> </strong> A)116t B)58t C)104t D)32t E)174t

A)116t
B)58t
C)104t
D)32t
E)174t
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76
Suppose the formula for wind chill C (in degrees Fahrenheit) is given by Suppose the formula for wind chill C (in degrees Fahrenheit) is given by
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77
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78
<strong>  towards   . Round your answer to four decimal places.</strong> A)-35.7266 B)30.5500 C)17.2734 D)15.5468 E)-4.7266 towards <strong>  towards   . Round your answer to four decimal places.</strong> A)-35.7266 B)30.5500 C)17.2734 D)15.5468 E)-4.7266 . Round your answer to four decimal places.

A)-35.7266
B)30.5500
C)17.2734
D)15.5468
E)-4.7266
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79
Suppose electrical power P is given by <strong>Suppose electrical power P is given by   resistance. Approximate the maximum percent error in calculating the power if 140 volts are applied to a 3000-ohm resistor and the possible percent errors in measuring E and R are 5% and 8%, Respectively.</strong> A)24% B)42% C)38% D)43% E)18% resistance. Approximate the maximum percent error in calculating the power if 140 volts are applied to a 3000-ohm resistor and the possible percent errors in measuring E and R are 5% and 8%,
Respectively.

A)24%
B)42%
C)38%
D)43%
E)18%
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80
<strong>  Round your answer to four decimal places.</strong> A)7.3037 B)5.6074 C)-16.6963 D)-2.6963 E)-21.3926 Round your answer to four decimal places.

A)7.3037
B)5.6074
C)-16.6963
D)-2.6963
E)-21.3926
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