Deck 9: Parametric Equations and Polar Coordinates
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Deck 9: Parametric Equations and Polar Coordinates
1
Find the polar equation for the curve represented by the given Cartesian equation. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)


2
Write a polar equation in r and of an ellipse with the focus at the origin,with the eccentricity
and directrix
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)


3
Find the area that the curve encloses.





4
Find the eccentricity of the conic. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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5
The planet Mercury travels in an elliptical orbit with eccentricity 0.403 .Its minimum distance from the Sun is
km.If the perihelion distance from a planet to the Sun is a (1- e) and the aphelion distance is a (1+e) ,find the maximum distance (in km)from Mercury to the Sun.
A)
km
B)
km
C)
km
D)
km
E)
km

A)

B)

C)

D)

E)

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6
Write a polar equation in r and of an ellipse with the focus at the origin,with the eccentricity
and vertex at
.
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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7
The graph of the following curve is given.Find the area that it encloses.

A)
B)
C)
D)
E) A =


A)

B)

C)

D)

E) A =

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8
Find a polar equation for the curve represented by the given Cartesian equation. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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9
The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.
A)
AU
B)
AU
C)
AU
D)
AU
E)
AU
A)
![<strong>The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.</strong> A) AU B) AU C) AU D) AU E) AU](https://storage.examlex.com/TB2067/11eaae29_f48e_e8c9_87fe_f350f726afda_TB2067_11.jpg)
B)
![<strong>The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.</strong> A) AU B) AU C) AU D) AU E) AU](https://storage.examlex.com/TB2067/11eaae29_f48f_0fda_87fe_639fcf83fb0e_TB2067_11.jpg)
C)
![<strong>The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.</strong> A) AU B) AU C) AU D) AU E) AU](https://storage.examlex.com/TB2067/11eaae29_f48f_0fdb_87fe_45a67c688476_TB2067_11.jpg)
D)
![<strong>The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.</strong> A) AU B) AU C) AU D) AU E) AU](https://storage.examlex.com/TB2067/11eaae29_f48f_36ec_87fe_839e6775f800_TB2067_11.jpg)
E)
![<strong>The orbit of Hale-Bopp comet,discovered in 1995,is an ellipse with eccentricity 0.995 and one focus at the Sun.The length of its major axis is 369.9 AU.[An astronomical unit (AU)is the mean distance between Earth and the Sun,about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is a(1-e) and the aphelion distance is a(1+e) .Find the answer in AU and round to the nearest hundredth.</strong> A) AU B) AU C) AU D) AU E) AU](https://storage.examlex.com/TB2067/11eaae29_f48f_36ed_87fe_a51e8f02cadd_TB2067_11.jpg)
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10
Find the area of the region enclosed by one loop of the curve. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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11
Consider the polar equation
.
(a)Find the eccentricity and an equation of the directrix of the conic.
(b)Identify the conic.
(c)Sketch the curve.

(a)Find the eccentricity and an equation of the directrix of the conic.
(b)Identify the conic.
(c)Sketch the curve.
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12
Find the area of the region that lies inside the first curve and outside the second curve. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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13
Sketch the polar curve with the given equation. 
A)
B)
C)
D)

A)

B)

C)

D)

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14
Find a Cartesian equation for the curve described by the given polar equation. 

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15
Write a polar equation of the conic that has a focus at the origin,eccentricity
,and directrix
.Identify the conic.
A)
,ellipse
B)
,ellipse
C)
,hyperbola
D)
,hyperbola


A)

B)

C)

D)

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16
Find the length of the polar curve. 
A)
B)
C)
D)
E) None of these

A)

B)

C)

D)

E) None of these
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17
Find the area enclosed by the curve
.

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18
Write a polar equation in r and
of a hyperbola with the focus at the origin,with the eccentricity
and directrix
.
A)
B)
C)
D)
E)



A)

B)

C)

D)

E)

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19
Consider the polar equation
.
(a)Find the eccentricity and an equation of the directrix of the conic.
(b)Identify the conic.
(c)Sketch the curve.

(a)Find the eccentricity and an equation of the directrix of the conic.
(b)Identify the conic.
(c)Sketch the curve.
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20
Find the Cartesian coordinates of the point
.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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21
Match the parametric equations with the graphs labeled a-e. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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22
Select the curve by using the parametric equations to plot the points. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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23
Select the curve by using the parametric equations to plot the points. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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24
Set up an integral that represents the length of the curve.Then use your calculator to find the length correct to four decimal places. 

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25
Select the curve by using the parametric equations to plot the points. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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26
Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter. 

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27
Find the length of the curve.
,
, 
A)
B)
C)
D)
E) None of these



A)

B)

C)

D)

E) None of these
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28
Find the point(s)on the curve where the tangent is horizontal. 
A)
B)
C)
D)
E) None of these

A)

B)

C)

D)

E) None of these
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29
Set up,but do not evaluate,an integral that represents the length of the parametric curve. 

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30
Match the parametric equations with the graphs labeled a-e. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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