Deck 12: Parametric Equations and Polar Coordinates
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Deck 12: Parametric Equations and Polar Coordinates
1
Find a parametrization for the curve.
The line segment with endpoints (-4, -7) and ( , -15)
The line segment with endpoints (-4, -7) and ( , -15)

2
Find an equation for the line tangent to the curve at the point defined by the given value of t.


A
3
Graph the pair of parametric equations with the aid of a graphing calculator.


B
4
Graph the pair of parametric equations with the aid of a graphing calculator.


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5
Graph the pair of parametric equations with the aid of a graphing calculator.


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6
Graph the pair of parametric equations with the aid of a graphing calculator.


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7
Parametric equations and and a parameter interval for the motion of a particle in the xy-plane are given. Identify the
particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.

particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.


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8
Parametric equations and and a parameter interval for the motion of a particle in the xy-plane are given. Identify the
particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.

particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.


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9
Parametric equations and and a parameter interval for the motion of a particle in the xy-plane are given. Identify the
particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.

particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.


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10
Parametric equations and and a parameter interval for the motion of a particle in the xy-plane are given. Identify the
particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.

particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph
traced by the particle and the direction of motion.


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11
Find a parametrization for the curve.
The ray (half line) with initial point (-3, ) that passes through the point (-10, -3)
The ray (half line) with initial point (-3, ) that passes through the point (-10, -3)
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12
Graph the pair of parametric equations with the aid of a graphing calculator.


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13
Graph the pair of parametric equations with the aid of a graphing calculator.


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14
Graph the pair of parametric equations with the aid of a graphing calculator.


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15
Graph the pair of parametric equations with the aid of a graphing calculator.


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16
Solve the problem.


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17
Find a parametrization for the curve.


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18
Graph the pair of parametric equations with the aid of a graphing calculator.


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19
Solve the problem.


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20
Graph the pair of parametric equations with the aid of a graphing calculator.


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21
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

curve x = f(t), y = g(t) at the given value of t.

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22
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

curve x = f(t), y = g(t) at the given value of t.

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23
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

A) -8
B) 2
C) 8
D) 4
curve x = f(t), y = g(t) at the given value of t.

A) -8
B) 2
C) 8
D) 4
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24


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25
Find an equation for the line tangent to the curve at the point defined by the given value of t.


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26
Find the area.
Find the area under one arch of the cycloid x = 2(t - sin t), y = 2(1 - cos t).
Find the area under one arch of the cycloid x = 2(t - sin t), y = 2(1 - cos t).

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27
Find an equation for the line tangent to the curve at the point defined by the given value of t.


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28


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29
Find an equation for the line tangent to the curve at the point defined by the given value of t.


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30
Find an equation for the line tangent to the curve at the point defined by the given value of t.


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31
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

curve x = f(t), y = g(t) at the given value of t.

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32


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33
Find an equation for the line tangent to the curve at the point defined by the given value of t.


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34


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35


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36


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37
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

A) - 6
B) 9
C) - 9
D) - 4
curve x = f(t), y = g(t) at the given value of t.

A) - 6
B) 9
C) - 9
D) - 4
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38
Assuming that the equations define x and y implicitly as differentiable functions x = f(t), y = g(t), find the slope of the
curve x = f(t), y = g(t) at the given value of t.

curve x = f(t), y = g(t) at the given value of t.

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39


A) 14
B) -14
C) 0
D) -7
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40


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41
Find the length of the curve.


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42
Find the length of the curve.

A) 7
B) 42
C) 14
D) 21

A) 7
B) 42
C) 14
D) 21
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43
Find the area.


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44
Find the length of the curve.


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45
Find the area of the surface generated by revolving the curves about the indicated axis.


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46
Find the length of the curve.


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47
Determine if the given polar coordinates represent the same point.

A) Yes
B) No

A) Yes
B) No
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48
Find the length of the curve.


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49
Find the length of the curve.


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50
Find the area of the surface generated by revolving the curves about the indicated axis.


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51
Find the length of the curve.


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52
Find the area.

A) 4
B) 9
C) 8
D) 5

A) 4
B) 9
C) 8
D) 5
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53
Find the length of the curve.


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54
Find the coordinates of the centroid of the curve.


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55
Determine if the given polar coordinates represent the same point.

A) No
B) Yes

A) No
B) Yes
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56
Determine if the given polar coordinates represent the same point.

A) Yes
B) No

A) Yes
B) No
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57
Find the coordinates of the centroid of the curve.


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58
Find the length of the curve.


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59
Determine if the given polar coordinates represent the same point.

A) Yes
B) No

A) Yes
B) No
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60
Find the length of the curve.


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61
Plot the point whose polar coordinates are given.



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62
Find the Cartesian coordinates of the given point.


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63
Determine if the given polar coordinates represent the same point.

A) Yes
B) No

A) Yes
B) No
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64
Find the Cartesian coordinates of the given point.

A) (-3, 0)
B) (0, -3)
C) (3, 0)
D) (0, 3)

A) (-3, 0)
B) (0, -3)
C) (3, 0)
D) (0, 3)
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65
Find all the polar coordinates of the point.


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66
Find the Cartesian coordinates of the given point.


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67
Find the Cartesian coordinates of the given point.


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68
Determine if the given polar coordinates represent the same point.

A) No
B) Yes

A) No
B) Yes
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69
Find all the polar coordinates of the point.


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70
Find the Cartesian coordinates of the given point.


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71
Determine if the given polar coordinates represent the same point.

A) No
B) Yes

A) No
B) Yes
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72
Determine if the given polar coordinates represent the same point.

A) Yes
B) No

A) Yes
B) No
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73
Plot the point whose polar coordinates are given.



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74
Find the Cartesian coordinates of the given point.
( , 0)
A) (0, 7)
B) (0, -7)
C) (-7, 0)
D) (7, 0)
( , 0)
A) (0, 7)
B) (0, -7)
C) (-7, 0)
D) (7, 0)
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75
Plot the point whose polar coordinates are given.



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75
Find the Cartesian coordinates of the given point.

A) (0, -9)
B) (-9, 0)
C) (9, 0)
D) (0, 9)

A) (0, -9)
B) (-9, 0)
C) (9, 0)
D) (0, 9)
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76
Find the Cartesian coordinates of the given point.


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77
Determine if the given polar coordinates represent the same point.

A) No
B) Yes

A) No
B) Yes
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78
Find the Cartesian coordinates of the given point.


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79
Describe the graph of the polar equation.

A) Vertical line through (-11, 0)
B) Line through origin with slope -11
C) Circle of radius 11 centered at origin
D) Horizontal line through (0, -11)

A) Vertical line through (-11, 0)
B) Line through origin with slope -11
C) Circle of radius 11 centered at origin
D) Horizontal line through (0, -11)
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