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15
Math.TechQA.Club
2015-05-13 02:37:03
3.9k
Views
Find the center and radius of a sphere
Published on
13 May 2015 - 2:37
#spheres
140
Views
Whether or not a plane is a tangent plane to an ellipse or not? And if so, what is the point of intersection
Published on
13 May 2015 - 10:05
#conic-sections
#spheres
893
Views
Calculus 3: Two spheres centered at origin, tangent to sphere of radius $1$ at $(3,-2,4)$. Why two different radii?
Published on
15 May 2015 - 5:09
#geometry
#spheres
151
Views
free groups of rotations
Published on
27 Mar 2026 - 14:50
#rotations
#free-groups
#spheres
2.1k
Views
How can I find Z on a hemisphere providing X/Y coordinates?
Published on
19 May 2015 - 12:25
#spheres
130
Views
What is real $R$ so that every subset of Euclidean space with diameter one is inside a ball of radius $R$?
Published on
21 May 2015 - 15:42
#geometry
#euclidean-geometry
#spheres
139
Views
Volume between a cone and a sphere
Published on
25 May 2015 - 22:56
#volume
#spheres
1.4k
Views
Why do disks on planes grow more quickly with radius than disks on spheres?
Published on
27 May 2015 - 7:26
#geometry
#differential-geometry
#spheres
3.3k
Views
The fundamental group of $S^n$
Published on
28 May 2015 - 1:25
#algebraic-topology
#fundamental-groups
#spheres
2k
Views
Tangent points on circle that placed on Earth surface
Published on
25 Mar 2026 - 21:47
#spherical-geometry
#spheres
#spherical-trigonometry
32.5k
Views
Distance between two points on a sphere.
Published on
27 Mar 2026 - 22:51
#spheres
#spherical-geometry
120
Views
Finding eachother on a sphere
Published on
31 May 2015 - 19:30
#probability
#geometry
#spheres
2.4k
Views
Clarify: "$S^0$, $S^1$ and $S^3$ are the only spheres which are also groups"
Published on
03 Jun 2015 - 13:57
#group-theory
#complex-numbers
#real-numbers
#quaternions
#spheres
91
Views
A tangent vector to the unit tangent bundle $T_1S^n$ at $(x,\xi)$ can be written $(X,Z)$ with $X \cdot x = 0$ and $Z \cdot \xi = 0$.
Published on
28 Mar 2026 - 6:16
#differential-geometry
#fiber-bundles
#spheres
107
Views
Prove that $(div \ w)(p) = \lim \limits_{r\rightarrow 0} \frac{1}{V_n r^n}\int_{S_r(p)} \langle w,\nu \rangle dS$ using Gauss's theorem
Published on
27 Mar 2026 - 22:04
#limits
#spheres
#gaussian-integral
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