Deck 11: Conic Sections
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Deck 11: Conic Sections
1
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.












2
Find an equation for a parabola with vertex at the origin, and with directrix
.




3
Find an equation of the parabola whose graph is shown. 


4
Find an equation of the parabola whose graph is shown. 

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5
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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6
Find an equation for a parabola with vertex at the origin, and with focus
.

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7
Find an equation of a parabola with vertex at the origin, focus on the negative
- axis, 7 units away from the directrix.

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8
Find an equation of a parabola with horizontal axis and vertex at the origin that passes through the point
.

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9
Find an equation of the parabola whose graph is shown. 

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10
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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11
A cable is suspended between two utility poles (the shape of the suspended cable is parabolic). If the poles are
ft apart, and the lowest point of the cable is
ft. below the top of the poles, find the parabolic equation of the suspended cable, placing the origin of the coordinate system at the vertex.


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12
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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13
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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14
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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15
Find an equation of the parabola whose graph is shown. 

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16
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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17
Find the focus, directrix, and focal diameter of the parabola
, and sketch its graph.

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18
Find an equation for a parabola with vertex at the origin, and with directrix
.

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19
Find an equation of the parabola whose graph is shown. 

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20
Find an equation for a parabola with vertex at the origin, and with directrix
.

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21
Find an equation for the ellipse with eccentricity
, and foci
.


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22
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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23
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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24
By placing the origin at the center of Mercury's orbit and the Sun on the
- axis at one of the foci, find the equation of Mercury's orbit given that the length of its major axis is
m and the elliptical orbit has eccentricity
.



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25
Find the vertices, foci, and asymptotes of the hyperbola
, and sketch its graph.

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26
Find an equation for the ellipse whose graph is shown. 

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27
Find the vertices, foci, and asymptotes of the hyperbola
, and sketch its graph.

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28
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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29
Find an equation for the ellipse whose foci are
, and whose vertices are
.


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30
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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31
Find an equation for the ellipse with foci
, and major axis of length
.


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32
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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33
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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34
Find an equation for the ellipse whose graph is shown. 

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35
Find an equation for the ellipse with major axis of length
, minor axis of length
, foci on the
-axis, and centered at the origin.



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36
Find an equation for the ellipse with foci
, and major axis of length
.


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37
Find an equation for the ellipse whose graph is shown. 

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38
Find an equation for the ellipse with endpoints of the minor axis at
, and a distance of
between the foci.


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39
Find an equation for the ellipse with endpoints of the major axis at
, and a distance of
between the foci.


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40
Find the vertices, foci, and eccentricity of the ellipse given by
. Determine the lengths of the major and minor axes, and sketch the graph.

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41
Find an equation for the hyperbola that has vertices
and passes through the point
.


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42
Find the center, foci, vertices, and asymptotes of the hyperbola
, and sketch its graph.

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43
Complete the square to determine whether the equation
represents an ellipse, a parabola, a hyperbola, or a degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axes. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph, explain why.

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44
Find an equation for the hyperbola that has foci
and passes through the point
.


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45
Find an equation for the conic whose graph is shown. 

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46
Find the equation for the hyperbola that has asymptotes
and passes through the point
.


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47
Complete the square to determine whether the equation
represents an ellipse, a parabola, a hyperbola, or a degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axes. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph, explain why.

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48
Find an equation for the conic whose graph is shown. 

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49
Find an equation for the hyperbola whose graph is shown. 

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50
Find the center, foci, vertices, and asymptotes of the hyperbola
, and sketch its graph.

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51
Find the vertex, focus, and directrix of the parabola
, and sketch its graph.

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52
Find the vertex, focus, and directrix of the parabola
, and sketch its graph.

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53
Find an equation for the conic whose graph is shown. 

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54
Find an equation for the hyperbola that has vertices
and asymptotes
.


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55
Find the vertices, foci, and asymptotes of the hyperbola
, and sketch its graph.

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56
Find an equation for the hyperbola that has foci
and vertices
.


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57
Find an equation for the hyperbola that has foci
and a transverse axis of length
.


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58
Find an equation for the hyperbola that has foci
and vertices
.


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59
Find an equation for the hyperbola that has foci
and vertices
.


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60
Find an equation for the hyperbola whose graph is shown. 

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61
Complete the square to determine whether the equation
, represents an ellipse, a parabola, a hyperbola, or a degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axes. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph, explain why.

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62
Determine the
- coordinates of
if the axes are rotated through an angle
.



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63
Determine the equation of the conic
in
- coordinates if the axes are rotated through an angle
.



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64
Determine the equation of the conic
in
- coordinates if the axes are rotated through an angle
.



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65
Use the discriminant to determine if the graph of the equation,
is a parabola, an ellipse or a hyperbola, then use a rotation of axes to eliminate the
- term, and sketch the graph.


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66
A cannon fires a cannonball as shown in the figure. The path of the cannonball is a parabola with vertex at the highest point of the path. If the cannonball lands 1600 ft from the cannon and the highest point it reaches is 2400 ft above the ground, find an equation for the path of the cannonball. Place the origin at the location of the cannon. 

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67
Use the discriminant to determine if the graph of the equation,
is a parabola, an ellipse or a hyperbola, then use a rotation of axes to eliminate the
- term, and sketch the graph.


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68
Complete the square to determine whether the equation
represents an ellipse, parabola, hyperbola or degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axis. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph explain why.

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69
Use the discriminant to determine if the graph of the equation
is a parabola, an ellipse or a hyperbola, then use a rotation of axes to eliminate the
- term, and sketch the graph.


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70
Complete the square to determine whether the equation
represents an ellipse, a parabola, a hyperbola, or a degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axes. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph, explain why.

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71
Determine the
- coordinates of
if the axes are rotated through an angle
.



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72
Use the discriminant to determine if the graph of the equation,
is a parabola, an ellipse or a hyperbola, then use a rotation of axes to eliminate the
- term, and sketch the graph.


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73
Determine the
- coordinates of
if the axes are rotated through an angle
.



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74
Determine the equation of the conic
in
- coordinates if the axes are rotated through an angle
.



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75
Use the discriminant to determine if the graph of the equation,
is a parabola, an ellipse or a hyperbola, then use a rotation of axes to eliminate the
- term, and sketch the graph.


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76
Complete the square to determine whether the equation
represents an ellipse, a parabola, a hyperbola, or a degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axes. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph, explain why.

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77
Use the discriminant to determine if the graph of the equation
is a parabola, an ellipse or a hyperbola, and then use a rotation of axes to eliminate the
- term, and sketch the graph.


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78
Complete the square to determine whether the equation
represents an ellipse, parabola, hyperbola or degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axis. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph explain why.

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79
A cannon fires a cannonball as shown in the figure. The path of the cannonball is a parabola with vertex at the highest point of the path. If the cannonball lands 800 ft from the cannon and the highest point it reaches is 1600 ft above the ground, find an equation for the path of the cannonball. Place the origin at the location of the cannon. 

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80
Complete the square to determine whether the equation
represents an ellipse, parabola, hyperbola or degenerate conic. Then sketch the graph of the equation. If the graph is an ellipse, find the center, foci, vertices, and lengths of the major and minor axis. If it is a parabola, find the vertex, focus and directrix. If it is a hyperbola, find the center, foci, vertices, and asymptotes. If the equation has no graph explain why.

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