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15
Math.TechQA.Club
2018-04-11 14:05:45
1.5k
Views
Cohomology with support and Poincare duality
Published on
11 Apr 2018 - 14:05
#algebraic-geometry
301
Views
Induced map on homology for the surface of genus $g$
Published on
29 Mar 2026 - 13:27
#algebraic-geometry
#algebraic-topology
#homology-cohomology
54
Views
The birational positivity of a Line Bundle
Published on
11 Apr 2018 - 19:55
#algebraic-geometry
131
Views
The additive group $\mathbb{G}_a$ over an infinite field $k$ is not a topological group
Published on
25 Mar 2026 - 1:17
#algebraic-geometry
#algebraic-groups
112
Views
Why $\mathbb{C}[f_1(t),f_2(t)]=\mathbb{C}[t]$ iff $(f'_1(t),f'_2(t))\neq0$ and $t\mapsto (f_1(t),f_2(t))$ is injective?
Published on
29 Mar 2026 - 21:55
#differential-geometry
#algebraic-geometry
#polynomials
#commutative-algebra
264
Views
Largest subgroup in which a given polynomial is invariant.
Published on
22 Mar 2026 - 17:03
#group-theory
#algebraic-geometry
#invariant-theory
#groebner-basis
#geometric-invariant-theory
384
Views
What is meant by "local equation" for a closed subscheme?
Published on
25 Mar 2026 - 9:38
#general-topology
#algebraic-geometry
#sheaf-theory
#projective-space
62
Views
The description of $k$-rational points of $A^G$, for $G$ a finite group acting on $A$
Published on
29 Mar 2026 - 21:54
#algebraic-geometry
#commutative-algebra
67
Views
understanding $G$-bundles via embedding in $GL_n$
Published on
25 Mar 2026 - 1:23
#algebraic-geometry
#reference-request
#vector-bundles
#algebraic-groups
106
Views
Chow's Lemma Immersion
Published on
29 Mar 2026 - 14:57
#algebraic-geometry
#proof-explanation
1.2k
Views
Graph Morphism Closed Immersion
Published on
25 Mar 2026 - 12:12
#algebraic-geometry
#schemes
221
Views
Multiple roots of one polynomial of degree 4
Published on
13 Apr 2018 - 13:46
#complex-analysis
#algebraic-geometry
#polynomials
97
Views
Lifting (a generically 1-1) map to resolutions
Published on
13 Apr 2018 - 15:25
#algebraic-geometry
143
Views
Behaviors of Chow groups under restriction of base field
Published on
13 Apr 2018 - 20:22
#algebraic-geometry
44
Views
Showing that if $F,G \in k[x_1, ..., x_n]$ are two polynomials such that $V(F,G)$ is irreducible, that dim$(V(F,G))$ does not have to be $n - 2$
Published on
13 Apr 2018 - 21:13
#abstract-algebra
#algebraic-geometry
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