Deck 8: Complex Numbers, Polar Equations, and Parametric Equations
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Deck 8: Complex Numbers, Polar Equations, and Parametric Equations
1
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


C
2
Give the rectangular coordinates for the point.


C
3
The graph of a polar equation is given. Select the polar equation for the graph


D
4
Find the product. Write the answer in standard form.


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5
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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6
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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7
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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8
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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9
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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10
The graph of a polar equation is given. Select the polar equation for the graph


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11
The graph of a polar equation is given. Select the polar equation for the graph.


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12
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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13
The graph of r = a in polar coordinates is an example of the spiral of Archimedes. With your calculator set to radian
mode, use the given value of a and interval of to graph the spiral in the window specified.

mode, use the given value of a and interval of to graph the spiral in the window specified.

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14
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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15
Find a rectangular equation for the plane curve defined by the parametric equations.


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16
Provide an appropriate response.
A projectile is launched from the ground with an initial velocity of v0 feet per second at an
angle of ϴ° above the horizontal. Write parametric equations in terms of v0 and ϴ that
model the flight of the projectile. Explain how you would use these equations, for given
values of v0 and ϴ, to determine the horizontal distance traveled by the projectile.
A projectile is launched from the ground with an initial velocity of v0 feet per second at an
angle of ϴ° above the horizontal. Write parametric equations in terms of v0 and ϴ that
model the flight of the projectile. Explain how you would use these equations, for given
values of v0 and ϴ, to determine the horizontal distance traveled by the projectile.
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17
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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18
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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19
Considering the given value of t, choose the ordered pair that lies on the graph of the given pair of parametric equations.


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20
Provide an appropriate response.
Which of the following pairs of parametric equations will graph a semicircle?
Which of the following pairs of parametric equations will graph a semicircle?

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21
Find the polar coordinates of the point(s)of intersection of the given curves for 0 



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22
Find all cube roots of the complex number. Leave answers in trigonometric form.
-8
A)2 cis 30°, 2 cis 150°, 2 cis 270°
B)2 cis 180°, 2 cis 0°
C)2 cis 60°, 2 cis 180°, 2 cis 300°
D)2 cis 120°, 2 cis 180°, 2 cis 300°
-8
A)2 cis 30°, 2 cis 150°, 2 cis 270°
B)2 cis 180°, 2 cis 0°
C)2 cis 60°, 2 cis 180°, 2 cis 300°
D)2 cis 120°, 2 cis 180°, 2 cis 300°
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23
Write the number as the product of a real number and i.


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24
Find the product. Write the product in rectangular form, using exact values.


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25
Find the polar coordinates of the point(s)of intersection of the given curves for 0 



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26
Solve the problem.
A projectile is fired with an initial velocity of 350 feet per second at an angle of 45° with the horizontal. In how many seconds will the projectile strike the ground? (Round your answer to the
Nearest tenth of a second.)
A)23.6 sec
B)15.5 sec
C)20.3 sec
D)12.1 sec
A projectile is fired with an initial velocity of 350 feet per second at an angle of 45° with the horizontal. In how many seconds will the projectile strike the ground? (Round your answer to the
Nearest tenth of a second.)
A)23.6 sec
B)15.5 sec
C)20.3 sec
D)12.1 sec
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27
Find the given power. Write answer in rectangular form.


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28
Find sum of the pair of complex numbers.


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29
Solve the quadratic equation and express all nonreal complex solutions in terms of i.


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30
Find the quotient. Write the answer in standard form.


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31
Identify the number as real, complex, pure imaginary, or nonreal complex. More than one of these descriptions may


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32
Find all cube roots of the complex number. Leave answers in trigonometric form.


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33
Graph the cycloid for t in the indicated interval.


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34
Perform the indicated operation. Give answers in rectangular form expressing real and imaginary parts to four decimal
places.

places.

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35
Find the quotient. Write the answer in standard form.


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36
Solve the quadratic equation and express all nonreal complex solutions in terms of i.


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37
Find the product. Write the answer in standard form.


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38
Find an equivalent equation in rectangular coordinates.


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39
Determine two pairs of polar coordinates for the point with 0 



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40
The rectangular coordinates of a point are given. Express the point in polar coordinates with 



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41
Graph the polar equation for in [0°, 360°).



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42
Perform the indicated operation. Give answers in rectangular form expressing real and imaginary parts to four decimal
places.

places.

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43
Perform the indicated operations. Simplify the answer.


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44
Find the given power. Write answer in rectangular form.


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45
Find all specified roots.


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46
Perform the indicated operation. Write the result in standard form.


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47
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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48
Use a table of values to graph the plane curve defined by the following parametric equations. Find a rectangular equation
for the curve.

for the curve.

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49
Find the product. Write the answer in standard form.


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50
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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51
Write the complex number in rectangular form.


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52
Find the product. Write the answer in standard form.


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53
Find the polar coordinates of the point(s)of intersection of the given curves for 0 



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54
For the given rectangular equation, give its equivalent polar equation.


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55
Perform the indicated operation. Write the result in standard form.


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56
Indicate whether the statement is true always, sometimes, or never.
The sum of two imaginary numbers is an imaginary number.
A)Always
B)Sometimes
C)Never
The sum of two imaginary numbers is an imaginary number.
A)Always
B)Sometimes
C)Never
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57
Perform the indicated operations. Simplify the answer.


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58
Solve the problem.
A projectile is fired with an initial velocity of 400 feet per second at an angle of 70° with the horizontal. In how many seconds will the projectile reach its maximum altitude? (Round your
Answer to the nearest tenth of a second.)
A)16.6 sec
B)8.4 sec
C)11.8 sec
D)19.9 sec
A projectile is fired with an initial velocity of 400 feet per second at an angle of 70° with the horizontal. In how many seconds will the projectile reach its maximum altitude? (Round your
Answer to the nearest tenth of a second.)
A)16.6 sec
B)8.4 sec
C)11.8 sec
D)19.9 sec
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59
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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60
Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form.


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