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Find an Equation for the Ellipse Described (x5)236+(y2)29=1\frac { ( x - 5 ) ^ { 2 } } { 36 } + \frac { ( y - 2 ) ^ { 2 } } { 9 } = 1

Question 159

Multiple Choice

Find an equation for the ellipse described. Graph the equation.
-Vertices at (5, -4) and (5, 8) ; length of minor axis is 6  Find an equation for the ellipse described. Graph the equation. -Vertices at (5, -4)  and (5, 8) ; length of minor axis is 6   A)      \frac { ( x - 5 )  ^ { 2 } } { 36 } + \frac { ( y - 2 )  ^ { 2 } } { 9 } = 1   B)      \frac { ( x + 5 )  ^ { 2 } } { 9 } + \frac { ( y + 2 )  ^ { 2 } } { 36 } = 1   C)     \frac { ( x + 5 )  ^ { 2 } } { 36 } + \frac { ( y + 2 )  ^ { 2 } } { 9 } = 1   D)      \frac { ( x - 5 )  ^ { 2 } } { 9 } + \frac { ( y - 2 )  ^ { 2 } } { 36 } = 1


A)
 Find an equation for the ellipse described. Graph the equation. -Vertices at (5, -4)  and (5, 8) ; length of minor axis is 6   A)      \frac { ( x - 5 )  ^ { 2 } } { 36 } + \frac { ( y - 2 )  ^ { 2 } } { 9 } = 1   B)      \frac { ( x + 5 )  ^ { 2 } } { 9 } + \frac { ( y + 2 )  ^ { 2 } } { 36 } = 1   C)     \frac { ( x + 5 )  ^ { 2 } } { 36 } + \frac { ( y + 2 )  ^ { 2 } } { 9 } = 1   D)      \frac { ( x - 5 )  ^ { 2 } } { 9 } + \frac { ( y - 2 )  ^ { 2 } } { 36 } = 1

(x5) 236+(y2) 29=1\frac { ( x - 5 ) ^ { 2 } } { 36 } + \frac { ( y - 2 ) ^ { 2 } } { 9 } = 1

B)
 Find an equation for the ellipse described. Graph the equation. -Vertices at (5, -4)  and (5, 8) ; length of minor axis is 6   A)      \frac { ( x - 5 )  ^ { 2 } } { 36 } + \frac { ( y - 2 )  ^ { 2 } } { 9 } = 1   B)      \frac { ( x + 5 )  ^ { 2 } } { 9 } + \frac { ( y + 2 )  ^ { 2 } } { 36 } = 1   C)     \frac { ( x + 5 )  ^ { 2 } } { 36 } + \frac { ( y + 2 )  ^ { 2 } } { 9 } = 1   D)      \frac { ( x - 5 )  ^ { 2 } } { 9 } + \frac { ( y - 2 )  ^ { 2 } } { 36 } = 1

(x+5) 29+(y+2) 236=1\frac { ( x + 5 ) ^ { 2 } } { 9 } + \frac { ( y + 2 ) ^ { 2 } } { 36 } = 1

C)
 Find an equation for the ellipse described. Graph the equation. -Vertices at (5, -4)  and (5, 8) ; length of minor axis is 6   A)      \frac { ( x - 5 )  ^ { 2 } } { 36 } + \frac { ( y - 2 )  ^ { 2 } } { 9 } = 1   B)      \frac { ( x + 5 )  ^ { 2 } } { 9 } + \frac { ( y + 2 )  ^ { 2 } } { 36 } = 1   C)     \frac { ( x + 5 )  ^ { 2 } } { 36 } + \frac { ( y + 2 )  ^ { 2 } } { 9 } = 1   D)      \frac { ( x - 5 )  ^ { 2 } } { 9 } + \frac { ( y - 2 )  ^ { 2 } } { 36 } = 1
(x+5) 236+(y+2) 29=1\frac { ( x + 5 ) ^ { 2 } } { 36 } + \frac { ( y + 2 ) ^ { 2 } } { 9 } = 1

D)
 Find an equation for the ellipse described. Graph the equation. -Vertices at (5, -4)  and (5, 8) ; length of minor axis is 6   A)      \frac { ( x - 5 )  ^ { 2 } } { 36 } + \frac { ( y - 2 )  ^ { 2 } } { 9 } = 1   B)      \frac { ( x + 5 )  ^ { 2 } } { 9 } + \frac { ( y + 2 )  ^ { 2 } } { 36 } = 1   C)     \frac { ( x + 5 )  ^ { 2 } } { 36 } + \frac { ( y + 2 )  ^ { 2 } } { 9 } = 1   D)      \frac { ( x - 5 )  ^ { 2 } } { 9 } + \frac { ( y - 2 )  ^ { 2 } } { 36 } = 1

(x5) 29+(y2) 236=1\frac { ( x - 5 ) ^ { 2 } } { 9 } + \frac { ( y - 2 ) ^ { 2 } } { 36 } = 1

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