Deck 10: Parametric Equations and Polar Coordinates

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Find the area that the curve encloses. Find the area that the curve encloses.  <div style=padding-top: 35px>
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Set up, but do not evaluate, an integral that represents the length of the parametric curve. Set up, but do not evaluate, an integral that represents the length of the parametric curve.  <div style=padding-top: 35px>
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Sketch the parametric curve and eliminate the parameter to find the Cartesian equation of the
curve. Sketch the parametric curve and eliminate the parameter to find the Cartesian equation of the curve.  <div style=padding-top: 35px>
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Set up an integral that represents the length of the curve.Then use your calculator to find the
length correct to four decimal places. Set up an integral that represents the length of the curve.Then use your calculator to find the length correct to four decimal places.  <div style=padding-top: 35px>
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True or False? True or False?  <div style=padding-top: 35px>
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Find an equation of the tangent to the curve at the point by first eliminating the parameter. Find an equation of the tangent to the curve at the point by first eliminating the parameter.  <div style=padding-top: 35px>
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Eliminate the parameter to find a Cartesian equation of the curve. Eliminate the parameter to find a Cartesian equation of the curve.  <div style=padding-top: 35px>
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True or False? True or False?  <div style=padding-top: 35px>
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Find the area of the region that lies inside both curves. Find the area of the region that lies inside both curves.  <div style=padding-top: 35px>
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Find an equation of the tangent to the curve at the point corresponding to the given value of the
parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.  <div style=padding-top: 35px>
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Eliminate the parameter to find a Cartesian equation of the curve. Eliminate the parameter to find a Cartesian equation of the curve.  <div style=padding-top: 35px>
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Find an equation of the tangent to the curve at the point corresponding to the given value of the
parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.  <div style=padding-top: 35px>
Question
Using the arc length formula, set up, but do not evaluate, an integral equal to the total arc length of the
ellipse. Using the arc length formula, set up, but do not evaluate, an integral equal to the total arc length of the ellipse.  <div style=padding-top: 35px>
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Find the exact area of the surface obtained by rotating the given curve about the x-axis. Find the exact area of the surface obtained by rotating the given curve about the x-axis.  <div style=padding-top: 35px>
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Find an equation of the hyperbola centered at the origin that satisfies the given condition. Find an equation of the hyperbola centered at the origin that satisfies the given condition.  <div style=padding-top: 35px>
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Find the eccentricity of the conic. Find the eccentricity of the conic.  <div style=padding-top: 35px>
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Find a polar equation for the curve represented by the given Cartesian equation. Find a polar equation for the curve represented by the given Cartesian equation.  <div style=padding-top: 35px>
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Find the point(s) on the curve where the tangent is horizontal. Find the point(s) on the curve where the tangent is horizontal.  <div style=padding-top: 35px>
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Find the polar equation for the curve represented by the given Cartesian equation. Find the polar equation for the curve represented by the given Cartesian equation.  <div style=padding-top: 35px>
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Sketch the polar curve with the given equation. Sketch the polar curve with the given equation.  <div style=padding-top: 35px>
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Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.  <div style=padding-top: 35px>
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Find the exact area of the surface obtained by rotating the given curve about the x-axis. Find the exact area of the surface obtained by rotating the given curve about the x-axis.  <div style=padding-top: 35px>
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____ ____  <div style=padding-top: 35px>
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Find a polar equation for the curve represented by the given Cartesian equation. Find a polar equation for the curve represented by the given Cartesian equation.  <div style=padding-top: 35px>
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Deck 10: Parametric Equations and Polar Coordinates
1
Find the area that the curve encloses. Find the area that the curve encloses.
2
Set up, but do not evaluate, an integral that represents the length of the parametric curve. Set up, but do not evaluate, an integral that represents the length of the parametric curve.
3
4
Sketch the parametric curve and eliminate the parameter to find the Cartesian equation of the
curve. Sketch the parametric curve and eliminate the parameter to find the Cartesian equation of the curve.
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5
Set up an integral that represents the length of the curve.Then use your calculator to find the
length correct to four decimal places. 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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6
True or False? True or False?
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7
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8
Find an equation of the tangent to the curve at the point by first eliminating the parameter. Find an equation of the tangent to the curve at the point by first eliminating the parameter.
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9
Eliminate the parameter to find a Cartesian equation of the curve. Eliminate the parameter to find a Cartesian equation of the curve.
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10
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11
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12
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13
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14
True or False? True or False?
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15
Find the area of the region that lies inside both curves. Find the area of the region that lies inside both curves.
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16
Find an equation of the tangent to the curve at the point corresponding to the given value of the
parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.
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17
Eliminate the parameter to find a Cartesian equation of the curve. Eliminate the parameter to find a Cartesian equation of the curve.
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18
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19
Find an equation of the tangent to the curve at the point corresponding to the given value of the
parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.
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20
Using the arc length formula, set up, but do not evaluate, an integral equal to the total arc length of the
ellipse. Using the arc length formula, set up, but do not evaluate, an integral equal to the total arc length of the ellipse.
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21
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22
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23
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24
Find the exact area of the surface obtained by rotating the given curve about the x-axis. Find the exact area of the surface obtained by rotating the given curve about the x-axis.
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25
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26
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27
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28
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29
Find an equation of the hyperbola centered at the origin that satisfies the given condition. Find an equation of the hyperbola centered at the origin that satisfies the given condition.
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30
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31
Find the eccentricity of the conic. Find the eccentricity of the conic.
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32
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33
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34
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35
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36
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37
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38
Find a polar equation for the curve represented by the given Cartesian equation. Find a polar equation for the curve represented by the given Cartesian equation.
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39
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40
Find the point(s) on the curve where the tangent is horizontal. Find the point(s) on the curve where the tangent is horizontal.
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41
Find the polar equation for the curve represented by the given Cartesian equation. Find the polar equation for the curve represented by the given Cartesian equation.
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42
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43
Sketch the polar curve with the given equation. Sketch the polar curve with the given equation.
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44
Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter. Find an equation of the tangent to the curve at the point corresponding to the given value of the parameter.
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45
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46
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47
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48
Find the exact area of the surface obtained by rotating the given curve about the x-axis. Find the exact area of the surface obtained by rotating the given curve about the x-axis.
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49
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50
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52
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53
____ ____
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54
Find a polar equation for the curve represented by the given Cartesian equation. Find a polar equation for the curve represented by the given Cartesian equation.
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55
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56
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59
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60
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