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How can you prove the converse of the ab...

How can you prove the converse of the above theorem.
"If a line in the plane of a circle is perpendicular to the radius at its end point on the circle , then the line is tangent to the circle " .

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How can you prove the converse of the above theorem. " If a line in the plane of a circle is perpendicular to the radius at its endpoint on the circle, then the line is tangent of the circle ".

How can you prove the converse of the above theorem. " If a line in the plane of a circle is perpendicular to the radius at its endpoint on the circle, then the line is tangent of the circle ".

Theorem: A tangent to a circle is perpendicular to the radius through the point of contact.

The tangent at any point of a circle is perpendicular to the radius through the point of contact.

The tangent at any point of a circle is perpendicular to the radius through the point of contact.

The tangent at any point of a circle is perpendicular to the radius through the point of contact.

Prove that the tangent at any point of a circle is perpendicular to the radius through the point of tangent

A tangent at any point of a circle is perpendicular to the radius through the _____.

A tangent at any point of a circle is perpendicular to the radius through the _____.

Theorem 10.1 : The tangent at any point of a circle is perpendicular to the radius through the point of contact.