Deck 10: Parametric and Polar Curves; Conic Sections
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Deck 10: Parametric and Polar Curves; Conic Sections
1
Identify the conic section represented by
.
A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section

A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section
circle
2
Find the distance between the pole and the vertices for the conic that has its focus at the pole and its directrix is
units to the right of the pole and its eccentricity is
.
A) 4
B) 0.08
C) 0
D) 1
E) 0.32


A) 4
B) 0.08
C) 0
D) 1
E) 0.32
4
3
Identify the conic section represented by
.
A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section

A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section
ellipse
4
Identify the conic section represented by
.
A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section

A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section
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5
Find the eccentricity of the conic described by
.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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6
Find the polar equation for the conic that has its focus at the pole and its directrix is
units to the right of the pole and its eccentricity is
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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7
Find the polar equation for the conic that has its focus at the pole and its directrix is
units to the left of the pole and its eccentricity is
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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8
Find the distance between the pole and the vertices for the conic that has its focus at the pole and its directrix is
units to the left of the pole and its eccentricity is
.
A) 4
B) 0.1
C) 0
D) 1
E) 0.4


A) 4
B) 0.1
C) 0
D) 1
E) 0.4
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9
Find the polar equation for the ellipse that has one of its foci at the pole , eccentricity of
, a = 6, and the directrix above the pole.

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10
Find the distance from the pole to the vertex of the conic described. 

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11
Find the eccentricity of the conic described by
.

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12
Identify the type of conic section by transforming to rectangular coordinates. 

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13
The directrix of the conic described by
is
A) To the right of the pole
B) To the left of the pole
C) Above the pole
D) Below the pole

A) To the right of the pole
B) To the left of the pole
C) Above the pole
D) Below the pole
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14
The directrix of the conic described by
is how many units to the right of the pole?
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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15
Identify the conic section represented by
.
A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section

A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section
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16
Find the distance between the pole and the vertices for the conic that has its focus at the pole and its directrix is
units above the pole and its eccentricity is
.
A) 4
B) 0.04
C) 0
D) 1
E) 0.16


A) 4
B) 0.04
C) 0
D) 1
E) 0.16
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17
Find the polar equation for the conic that has its focus at the pole and its directrix is
units below the pole and its eccentricity is
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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18
Identify the conic section represented by
.
A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section

A) parabola
B) hyperbola
C) ellipse
D) circle
E) not a conic section
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19
Find the polar equation for the conic that has its focus at the pole and its directrix is
units above the pole and its eccentricity is
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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20
Find the distance from the pole to the vertex of the conic described. 

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21
Convert the following equation to polar coordinates. 

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22
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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23
Identify the type of conic section by transforming to rectangular coordinates. 

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24
Determine the shape of the curve
by eliminating the parameter F and label the direction of increasing .

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25
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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26
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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27
Identify the conic section by transforming to rectangular coordinates. 

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28
Identify the shape of the curve
by eliminating the parameter and label the direction of increasing .

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29
Identify the conic section by transforming to rectangular coordinates. 

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30
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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31
Sketch and identify the curve
for
by eliminating the parameter t and label the direction of increasing t.



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32
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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33
Identify the type of conic section by transforming to rectangular coordinates. 

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34
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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35
Convert the following equation to polar coordinates. 

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36
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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37
Convert the following equation to polar coordinates. 

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38
Determine the rotation angle that will eliminate the xy-term. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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39
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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40
Rotate the coordinates to remove the xy-term. Then, name the conic. 
A) circle
B) hyperbola
C) ellipse
D) parabola

A) circle
B) hyperbola
C) ellipse
D) parabola
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41
Find the center of the ellipse
in the x'y'-coordinate system.

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42
Find the ends of the major axis of the ellipse
in the x'y'-coordinate system.

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43
Find the foci of the ellipse
in the x'y'-coordinate system.

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44
Determine the rotation angle that will eliminate the xy-term. 

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45
Find the foci of
.

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46
Rotate the coordinate axes to remove the xy-term. What is the equation in the new
coordinate system? What type of conic section is it? 


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47
Determine the rotation angle that will eliminate the xy-term. 

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48
Find the vertex of the parabola
in the x'y'-coordinate system.

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49
Rotate the coordinate axes to remove the xy-term. What is the equation in the new
coordinate system? What type of conic section is it? 


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50
The vertex of the parabola
is
A) (2, 0)
B) (0, 2)
C) (0, 0)
D) (1, 2)
E) (2, 2)

A) (2, 0)
B) (0, 2)
C) (0, 0)
D) (1, 2)
E) (2, 2)
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51
Find the center of the hyperbola
in the xy-coordinate system.

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52
Rotate the coordinate axes to remove the xy-term. What is the equation in the new
coordinate system? What type of conic section is it? 


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53
Find the ends of the minor axis of the ellipse
in the x'y'-coordinate system.

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54
Find the vertex of the parabola
in the x'y'-coordinate system.

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55
Find the ends of the minor axis of the ellipse
in the x'y'-coordinate system.

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56
Determine the rotation angle that will eliminate the xy-term. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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57
Determine the rotation angle that will eliminate the xy-term. 

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58
Find the ends of the major axis of the ellipse
in the x'y'-coordinate system.

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59
Find the asymptotes of
.

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60
Find the vertices of the hyperbola
in the xy-coordinate system.

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61
Find the equation of the hyperbola with vertices
and asymptotes
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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62
Find the equation of the hyperbola with foci
and vertices
units apart.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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63
Find the equation of the hyperbola with foci
and vertices
units apart.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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64
Find the equation of the ellipse with a major axis length of
, a minor axis length of
, center at (0, 0), and foci on the x-axis.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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65
Sketch the parabola 2x2- 10x + 5y + 12 = 0 showing the focus, vertex and directrix.
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66
Find the equation of the hyperbola with foci
and vertices
units apart.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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67
State the definition of a parabola. Use your definition to derive the equation of the parabola whose focus is at F(3, 9) and directrix x = 1.
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68
Find the equation of the ellipse with foci
and such that the distances from the foci to any point on the ellipse sum to 34.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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69
Sketch the parabola y2 + 6y + 6x
= 0 showing the focus, vertex and directrix.

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70
Find the equation of the hyperbola with foci
and vertices
units apart.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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71
Sketch the parabola 9y2 = 24x - 48 showing the focus, vertex and directrix.
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72
Find the equation of the parabola with vertex (
, 3) and directrix 
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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73
Find the equation of the ellipse with a major axis length of
, a minor axis length of
, center at
, and foci on
.
A)
B)
C)
D)
E)




A)

B)

C)

D)

E)

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74
Find the equation for the parabola whose directrix is x = 6 and vertex at (9, 6). Where is the focus located?
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75
Sketch the parabola y2 - 4y- 7x + 11 = 0 showing the focus, vertex, and directrix.
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76
Find the equation of the hyperbola with vertices
and asymptotes
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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77
Find the equation of the ellipse with a major axis length of
, a minor axis length of
, center at (0, 0), and foci on the y-axis.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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78
Find the equation of the parabola with focus at (6, -1) and directrix x = 2. Sketch.
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79
Sketch the parabola x2- 10x - 2y
13 = 0 showing the focus, vertex and directrix.

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80
Find the equation of the ellipse with a major axis length of
, a minor axis length of
, center at
, and foci on
.
A)
B)
C)
D)
E)




A)

B)

C)

D)

E)

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