For Exercises 1-6, identify each equation as representing a circle , an ellipse, or a hyperbola. If the equation represents a circle, identify the center and radius. If the equation represents an ellipse, identify the center, vertices, endpoints of the minor axis, foci, and eccentricity. If the equation represents a hyperbola, identify the center, vertices, foci, equations of the asymptotes, and eccentricity. x 2 9 + ( y + 7 ) 2 16 = 1
For Exercises 1-6, identify each equation as representing a circle , an ellipse, or a hyperbola. If the equation represents a circle, identify the center and radius. If the equation represents an ellipse, identify the center, vertices, endpoints of the minor axis, foci, and eccentricity. If the equation represents a hyperbola, identify the center, vertices, foci, equations of the asymptotes, and eccentricity. x 2 9 + ( y + 7 ) 2 16 = 1
Solution Summary: The author calculates whether the equation represents a circle, an ellipse, or hyperbola. They identify the center, vertices, endpoints of the minor axis and foci.
For Exercises 1-6, identify each equation as representing a circle, an ellipse, or a hyperbola.
If the equation represents a circle, identify the center and radius.
If the equation represents an ellipse, identify the center, vertices, endpoints of the minor axis, foci, and eccentricity.
If the equation represents a hyperbola, identify the center, vertices, foci, equations of the asymptotes, and eccentricity.
x
2
9
+
(
y
+
7
)
2
16
=
1
Two-dimensional figure measured in terms of radius. It is formed by a set of points that are at a constant or fixed distance from a fixed point in the center of the plane. The parts of the circle are circumference, radius, diameter, chord, tangent, secant, arc of a circle, and segment in a circle.
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