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15
Math.TechQA.Club
2026-04-10 01:30:59
411
Views
Equation of common tangent.
Published on
10 Apr 2026 - 1:30
#analytic-geometry
#conic-sections
52
Views
Points on the curve
Published on
15 Apr 2026 - 4:21
#calculus
#geometry
#differential-geometry
#analytic-geometry
#conic-sections
675
Views
3-D Geometry Problem. Find a curve which touches the straight line.
Published on
28 Mar 2026 - 21:44
#geometry
#analytic-geometry
#conic-sections
#plane-curves
#solid-geometry
115
Views
How do I find the left end height of an ellipse tilted at the right end?
Published on
13 Apr 2026 - 19:39
#conic-sections
31
Views
Spaces relations
Published on
09 Apr 2026 - 13:43
#circles
#conic-sections
#area
10.6k
Views
Common tangents to circle $x^2+y^2=\frac{1}{2}$ and parabola $y^2=4x$
Published on
29 Mar 2026 - 16:03
#linear-algebra
#algebra-precalculus
#circles
#conic-sections
#tangent-line
624
Views
Finding centers of ellipses with two points and their respective tangents
Published on
29 Mar 2026 - 16:02
#geometry
#conic-sections
#tangent-line
708
Views
How to get the coordinates of the center of the ellipse after approximation
Published on
12 Apr 2026 - 22:00
#ordinary-differential-equations
#discrete-mathematics
#conic-sections
#quadratics
736
Views
quadratic function vs conic section
Published on
13 Apr 2026 - 18:25
#conic-sections
#quadratics
822
Views
Prove that the equation of the cone is $yz(\frac{b}{c}+\frac{c}{b})+zx(\frac{c}{a}+\frac{a}{c})+xy(\frac{a}{b}+\frac{b}{a})=0$
Published on
15 Apr 2026 - 2:45
#geometry
#analytic-geometry
#conic-sections
690
Views
Show that the vertex lies on the surface $z^2(\frac{x}{a}+\frac{y}{b})=4(x^2+y^2)$
Published on
04 Apr 2026 - 6:02
#geometry
#analytic-geometry
#conic-sections
#surfaces
1.8k
Views
Planes through $OX$ and $OY$ include an angle $\alpha,$ show that their line of intersection lies on the cone $z^2(x^2+y^2+z^2)=x^2y^2\tan^2\alpha$
Published on
14 Apr 2026 - 17:09
#geometry
#analytic-geometry
#conic-sections
2k
Views
Find the length of the chord joining the points in which the straight line $\frac{x}{a} + \frac{y}{b}= 1$ meets the circle $x^2+y^2=r^2$
Published on
18 Jun 2016 - 11:25
#conic-sections
16.8k
Views
Discriminant of a Conic Section
Published on
10 Apr 2026 - 3:10
#conic-sections
859
Views
Given the bounds of a rotated ellipse, can you find the semi-major and semi-minor axis?
Published on
13 Apr 2026 - 10:52
#trigonometry
#conic-sections
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