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15
Math.TechQA.Club
2014-08-09 17:50:52
210
Views
Metric for vector sets
Published on
09 Aug 2014 - 17:50
#linear-algebra
#vector-spaces
#metric-spaces
#vector-analysis
77
Views
Does someone knows how calculate scalar product of two gradients and put the result in terms of nabla operator? .
Published on
09 Aug 2014 - 21:42
#vector-analysis
242
Views
Flow of fluid through a really tricky closed surface S (divergence theorem)
Published on
26 Mar 2026 - 14:20
#multivariable-calculus
#vector-analysis
#spherical-coordinates
131
Views
On the Continuity of the Jacobian of a diffeomorphism
Published on
10 Aug 2014 - 18:43
#real-analysis
#multivariable-calculus
#vector-analysis
5.6k
Views
How to calculate this area? (portion of a sphere inside a cylinder )
Published on
11 Aug 2014 - 11:56
#multivariable-calculus
#vector-analysis
1.7k
Views
geometry proof with triangles using vector
Published on
11 Aug 2014 - 12:05
#vector-analysis
38
Views
How to calculate length and area for this curve?
Published on
11 Aug 2014 - 15:24
#multivariable-calculus
#vector-analysis
148
Views
derivative $\nabla \frac{\mathbf{r}}{r^k}$ in the context of Geometric Calculus
Published on
25 Mar 2026 - 3:21
#calculus
#vector-analysis
#geometric-algebras
183
Views
derivative formula $\nabla \times (\mathbf{a} \times \mathbf{r}) = \nabla \cdot(\mathbf{a} \wedge\mathbf{r}) = (n-1)\mathbf{a}$
Published on
25 Mar 2026 - 3:20
#calculus
#vector-analysis
#geometric-algebras
299
Views
Using Stokes theorem to integrate $\vec{F}=5y \vec{\imath} −5x \vec{\jmath} +4(y−x) \vec{k}$ over a circle
Published on
13 Aug 2014 - 16:50
#calculus
#integration
#multivariable-calculus
#definite-integrals
#vector-analysis
177
Views
Why is the derivative Df(p) defined to $ \in \Lambda^1 (\mathbb{R}^n) $, or how is it a 1-form?
Published on
30 Mar 2026 - 0:58
#calculus
#multivariable-calculus
#vector-analysis
#differential-forms
342
Views
$\Delta \vec{v}=0$ implies $\nabla\cdot \vec{v}=\nabla\times \vec{v}=0$?
Published on
17 Aug 2014 - 23:42
#calculus
#multivariable-calculus
#differential-geometry
#vector-analysis
512
Views
Spherical integral
Published on
30 Mar 2026 - 20:48
#special-functions
#vector-analysis
93
Views
What is the simplest way to understand $\nabla \cdot (\nabla \times \textbf{A} ) =0$?
Published on
20 Aug 2014 - 20:08
#vector-analysis
9.6k
Views
Definite integral-dot product
Published on
21 Aug 2014 - 23:00
#calculus
#derivatives
#vector-spaces
#definite-integrals
#vector-analysis
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