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A cone is a three-dimensional geometric shape that tapers smoothly from a flat base (frequently, though not necessarily, circular) to a point called the apex or vertex that is not contained in the base. A cone is formed by a set of line segments, half-lines, or lines connecting a common point, the apex, to all of the points on a base. In the ...
Symbolab is an answer engine [1] that provides step-by-step solutions to mathematical problems in a range of subjects. [2] It was originally developed by Israeli start-up company EqsQuest Ltd., under whom it was released for public use in 2011. In 2020, the company was acquired by American educational technology website Course Hero. [3] [4]
The cone over a closed interval I of the real line is a filled-in triangle (with one of the edges being I), otherwise known as a 2-simplex (see the final example). The cone over a polygon P is a pyramid with base P. The cone over a disk is the solid cone of classical geometry (hence the concept's name). The cone over a circle given by
A conic is the curve obtained as the intersection of a plane, called the cutting plane, with the surface of a double cone (a cone with two nappes).It is usually assumed that the cone is a right circular cone for the purpose of easy description, but this is not required; any double cone with some circular cross-section will suffice.
An example of a spherical cap in blue (and another in red) In geometry, a spherical cap or spherical dome is a portion of a sphere or of a ball cut off by a plane.It is also a spherical segment of one base, i.e., bounded by a single plane.
For a solid cone or pyramid, the centroid is the distance from the base to the apex. For a cone or pyramid that is just a shell (hollow) with no base, the centroid is 1 3 {\displaystyle {\tfrac {1}{3}}} the distance from the base plane to the apex.
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If X = Spec k is a point and R is a homogeneous coordinate ring, then the affine cone of R is the (usual) affine cone [disambiguation needed] over the projective variety corresponding to R. If R = ⨁ 0 ∞ I n / I n + 1 {\displaystyle R=\bigoplus _{0}^{\infty }I^{n}/I^{n+1}} for some ideal sheaf I , then Spec X R {\displaystyle ...