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15
Math.TechQA.Club
2019-10-14 16:53:16
1.8k
Views
Direct Sum properties in linear algebra.
Published on
14 Oct 2019 - 16:53
#linear-algebra
#vector-spaces
#direct-sum
57
Views
universal property of tensor product-the canonical map
Published on
16 Oct 2019 - 17:37
#modules
#tensor-products
#products
#direct-sum
113
Views
Quotient group from direct product?
Published on
26 Mar 2026 - 3:00
#abstract-algebra
#group-theory
#abelian-groups
#direct-sum
#quotient-group
53
Views
Question about tensor product distributivity over direct sum
Published on
19 Oct 2019 - 14:17
#modules
#tensor-products
#tensors
#direct-sum
84
Views
Does every vector space with a weak topology contain a dense subspace which is a direct sum of real lines?
Published on
02 Mar 2026 - 2:46
#topological-vector-spaces
#direct-sum
#weak-topology
90
Views
Example of divisible direct product but not the direct sum
Published on
25 Mar 2026 - 12:21
#group-theory
#direct-sum
#direct-product
#divisible-groups
44
Views
Restriction of the decomposition map of attaching of topological space
Published on
26 Mar 2026 - 17:34
#general-topology
#quotient-spaces
#direct-sum
67
Views
homogeneous idempotent element has degree $e$
Published on
25 Mar 2026 - 18:24
#direct-sum
#graded-rings
#idempotents
307
Views
Norms and convergence on direct product of Banach spaces
Published on
27 Oct 2019 - 18:28
#convergence-divergence
#banach-spaces
#normed-spaces
#direct-sum
58
Views
Prove two sub-space is a direct sum of a vector space.
Published on
28 Oct 2019 - 14:46
#linear-algebra
#direct-sum
78
Views
For all subgroups $K \leq U(65)$, $K \ncong \mathbb Z_2 \oplus \mathbb Z_2 \oplus \mathbb Z_2$.
Published on
30 Oct 2019 - 12:33
#abstract-algebra
#group-theory
#group-isomorphism
#direct-sum
151
Views
Finding elements of order $4$ of a subgroup of $U(65)$.
Published on
30 Oct 2019 - 13:17
#abstract-algebra
#group-theory
#cyclic-groups
#direct-sum
369
Views
Direct Sum Theorem Proof
Published on
30 Oct 2019 - 22:02
#linear-algebra
#proof-verification
#vector-spaces
#direct-sum
330
Views
Show that $v_1,...,v_n$ is a basis of $\textsf{V}$ if and only if $\textsf{V}=\left<v_1\right>\oplus\cdots\oplus\left<v_n\right>$
Published on
31 Oct 2019 - 9:53
#linear-algebra
#vector-spaces
#direct-sum
128
Views
Matrix of linear transformation is symmetric
Published on
02 Nov 2019 - 16:21
#linear-algebra
#linear-transformations
#direct-sum
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