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15
Math.TechQA.Club
2016-09-17 10:16:23
73
Views
Find the equation of two ...
Published on
17 Sep 2016 - 10:16
#analytic-geometry
78
Views
Show that the pair of straight lines...
Published on
17 Sep 2016 - 12:07
#analytic-geometry
114
Views
Can we solve this problem with analytic geometry and transfinite induction?
Published on
17 Sep 2016 - 15:19
#real-analysis
#analytic-geometry
89
Views
Closed-form condition for concyclicity
Published on
18 Sep 2016 - 4:29
#analytic-geometry
361
Views
Find the locus of foot of perpendicular from origin
Published on
18 Sep 2016 - 5:18
#analytic-geometry
27
Views
The equation of the long axis of an arbitrary body
Published on
18 Sep 2016 - 14:36
#geometry
#analytic-geometry
2.4k
Views
Equation of a plane, given two points and a perpendicular plane
Published on
18 Sep 2016 - 14:38
#vectors
#analytic-geometry
56
Views
For the variable traingle ABC with...
Published on
18 Sep 2016 - 15:11
#analytic-geometry
423
Views
Prove all ines of the form all lines of the form $(a+2)x - (a+1)y - 2a - 3 = 0$ pass through a common point
Published on
18 Sep 2016 - 19:55
#geometry
#analytic-geometry
27
Views
Given $A = (2,1,3)$ and $B=(4,-1,1)$ and the plane $\alpha \{ \ 2x-y+2z=3$ find line $r$ contained in $\alpha$ equidistant to $A$ and $B$
Published on
19 Sep 2016 - 0:00
#algebra-precalculus
#analytic-geometry
3.8k
Views
Finding angle between two tangents to the ellipse.
Published on
19 Sep 2016 - 15:13
#geometry
#analytic-geometry
68
Views
proving $a^2_{n+1}-a^2_{n}=a_{n+1} \cdot a_{n} $ is a Geometric progression
Published on
26 Mar 2026 - 3:12
#sequences-and-series
#algebra-precalculus
#geometry
#analytic-geometry
#geometric-progressions
1.8k
Views
Find the equation of the circle which touches the circle $ x^2 + y^2 = 4 $ and the line $ x+ y =\frac{5}{\sqrt{2}}$
Published on
27 Mar 2026 - 23:14
#analytic-geometry
#circles
#tangent-line
123
Views
Conics definition from Lens formula
Published on
21 Sep 2016 - 7:49
#analytic-geometry
134
Views
True? "A rectangle is a subset of a circle if and only if all its vertices are in the circle (or its boundary)."
Published on
21 Sep 2016 - 14:20
#geometry
#euclidean-geometry
#analytic-geometry
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