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15
Math.TechQA.Club
2014-05-30 20:42:57
167
Views
Geometric Algebra Question
Published on
30 May 2014 - 20:42
#geometric-algebras
185
Views
Are subspaces also subalgebras in Geometric Algebra?
Published on
03 Jun 2014 - 15:36
#geometric-algebras
368
Views
Rank and Nullity of Projection of Multivectors onto k-Blades
Published on
05 Jun 2014 - 16:12
#linear-algebra
#geometric-algebras
137
Views
Proving det(A) property with outermorphism definition
Published on
08 Jun 2014 - 22:52
#geometric-algebras
142
Views
Question about domains of Geometric (Clifford) Calculus functions
Published on
11 Jun 2014 - 16:43
#geometric-algebras
2.7k
Views
What good is the Commutator product?
Published on
20 Jun 2014 - 19:40
#linear-algebra
#geometric-algebras
139
Views
Proof that every noninvertiable multivector has an idempotent factor.
Published on
30 Jun 2014 - 19:29
#geometric-algebras
2.8k
Views
How to define integration over the boundary of a curve?
Published on
02 Jul 2014 - 15:15
#real-analysis
#integration
#multivariable-calculus
#differential-forms
#geometric-algebras
527
Views
Projections in Geometric Algebra
Published on
02 Jul 2014 - 20:25
#geometric-algebras
1.4k
Views
A question on the dual relationship between the regressive product and the exterior product
Published on
11 Jul 2014 - 8:15
#abstract-algebra
#clifford-algebras
#geometric-algebras
147
Views
derivative $\nabla \frac{\mathbf{r}}{r^k}$ in the context of Geometric Calculus
Published on
12 Aug 2014 - 14:27
#calculus
#vector-analysis
#geometric-algebras
182
Views
derivative formula $\nabla \times (\mathbf{a} \times \mathbf{r}) = \nabla \cdot(\mathbf{a} \wedge\mathbf{r}) = (n-1)\mathbf{a}$
Published on
12 Aug 2014 - 18:20
#calculus
#vector-analysis
#geometric-algebras
225
Views
Geometric Product
Published on
26 Aug 2014 - 22:37
#linear-algebra
#differential-geometry
#geometric-algebras
914
Views
Proof that geometric product is associative
Published on
29 Aug 2014 - 14:47
#geometric-algebras
459
Views
what is vector $(\vec{a}\cdot \vec{b})\vec{c} + (\vec{b}\cdot \vec{c})\vec{a} - (\vec{c} \cdot \vec{a})\vec{b}$
Published on
29 Aug 2014 - 18:53
#geometry
#vector-spaces
#geometric-algebras
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