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The slant height of a right circular cone is the distance from any point on the circle of its base to the apex via a line segment along the surface of the cone. It is given by r 2 + h 2 {\displaystyle {\sqrt {r^{2}+h^{2}}}} , where r {\displaystyle r} is the radius of the base and h {\displaystyle h} is the height.
English: This file illustrates a cone and its main caracteristics. Labeled "r" is the radius of the circular base. Labeled "h" is the height, from center of base to apex, of the cone. Labeled "c", is the slant height of the cone. Labeled "θ" is the angle between the height and the slant height.
For a right circular cone, the surface area is = where = + is the slant height. Regular right symmetric n-gonal bipyramids: Bipyramid name Digonal bipyramid ...
The volume of a circular cone frustum is: = ... For a right circular conical frustum [5] [6] the slant height is = ) +, the lateral surface area is ...
That can also be rewritten as + [32] or (+) where r is the radius and l is the slant height of the cone. π r 2 {\displaystyle \pi r^{2}} is the base area while π r l {\displaystyle \pi rl} is the lateral surface area of the cone.
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If the directrix is a circle , and the apex is located on the circle's axis (the line that contains the center of and is perpendicular to its plane), one obtains the right circular conical surface or double cone. [2]
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