In each part, name the conic section described. (a) The set of points whose distance to the point (2, 3) is half the distance to the line x + y = 1is _____ . (b) The set of points whose distance to the point (2, 3) is equal to the distance to the line x + y = 1is _____. (c) The set of points whose distance to the point (2, 3) is twice the distance to the line x + y = 1is _____.
In each part, name the conic section described. (a) The set of points whose distance to the point (2, 3) is half the distance to the line x + y = 1is _____ . (b) The set of points whose distance to the point (2, 3) is equal to the distance to the line x + y = 1is _____. (c) The set of points whose distance to the point (2, 3) is twice the distance to the line x + y = 1is _____.
In each part, name the conic section described. (a) The set of points whose distance to the point (2, 3) is half the distance to the line x + y = 1is _____ . (b) The set of points whose distance to the point (2, 3) is equal to the distance to the line x + y = 1is _____. (c) The set of points whose distance to the point (2, 3) is twice the distance to the line x + y = 1is _____.
In each part, name the conic section described. (a) The set of points whose distance to the point (2, 3) is half the distance to the line x + y = 1is _____ . (b) The set of points whose distance to the point (2, 3) is equal to the distance to the line x + y = 1is _____. (c) The set of points whose distance to the point (2, 3) is twice the distance to the line x + y = 1is _____.
Curve that is obtained by the intersection of the surface of a cone with a plane. The three types of conic sections are parabolas, ellipses, and hyperbolas. The main features of conic sections are focus, eccentricity, and directrix. The other parameters are principal axis, linear eccentricity, latus rectum, focal parameter, and major and minor axis.
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