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A parabola.

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12y ago
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Q: Which geometric objects is defined as the set of all points in a plane equidistant from a single point and a single line?
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Related questions

Which geometric object is defined as the set of all points in a plane that are equidistant from two points?

line


Which geometric object is defined as the set of all points in a plane that are equidistant from a point and a line?

parabola


Which geometric is defined as the set of all point s in a plane that are equidistant from two points?

A line.


Which geometric object is defined as the set of all points in a plane that are equidistant from one point?

Parabola - apex


Which geometric object is defined as the set of all points that are equidistant from the two sides of an angle?

The bisector of that angle.


Which geometric object is defined as the set of all points in a plane that are equidistant from each other?

They are parallel lines


Which geometric object is defined as the set of all points in a plane that are equidistant from the two sides of a given angle?

Bisector of an angle, is defined as the set of all points in a plane that are equidistant from the two sides of a given angle.


Which geometric object is defined as the set of all points in a plane equidistant from a single point and a single line?

parabola


Which geometric object is defined as the set of all points in the plane that are equidistant from two points?

Parallel lines could fit the given criterior


Are the only geometric objects that can be defined using the locus of points are straight lines circles and angle bisectors?

No, they are not the only geometric objects.


Which geometric object is defined as the set of all points in one plane that are equidistant from two points?

Parallel lines could fit the given criterior


The only geometric objects which can be defined using the locus of points idea is a straight line circle and angle bisector?

False, other geometric objects exist which can be defined as a parrticular locus of points, such as the parabola and the hyperbola.