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15
Math.TechQA.Club
2014-05-12 22:27:27
594
Views
Finding Cos of an angle between matrices
Published on
12 May 2014 - 22:27
#matrices
#intuition
#inner-products
450
Views
Example for finite dimensional analog of integral transforms
Published on
25 Mar 2026 - 3:07
#vector-spaces
#intuition
#examples-counterexamples
#integral-transforms
#recurrence-relations
721
Views
Gaining Linear Algebra Intuition -- Subspaces
Published on
14 May 2014 - 2:03
#linear-algebra
#intuition
1.2k
Views
What's the intuition behind definition of chaotic function?
Published on
25 Mar 2026 - 19:10
#intuition
#dynamical-systems
#math-history
#chaos-theory
1.7k
Views
Stokes' Theorem Explanation
Published on
14 May 2014 - 23:07
#calculus
#multivariable-calculus
#definition
#intuition
2.3k
Views
What, fundamentally, is the reason for the shape of a sin curve?
Published on
15 May 2014 - 1:39
#calculus
#trigonometry
#intuition
309
Views
understanding Green's theorem Intuition
Published on
15 May 2014 - 3:19
#integration
#intuition
#vector-analysis
252
Views
Find the area bounded by the hypercycloid
Published on
15 May 2014 - 16:24
#definite-integrals
#intuition
#vector-analysis
296
Views
A graph of all of mathematics
Published on
27 Mar 2026 - 13:47
#logic
#soft-question
#intuition
#education
144
Views
How can you divine (the trick of) multiplying both sides by $T - \lambda_k I$?
Published on
16 May 2014 - 14:25
#linear-algebra
#intuition
#proof-explanation
19.2k
Views
rank($A$)=rank($A^T$)
Published on
27 Mar 2026 - 14:58
#linear-algebra
#matrices
#geometry
#intuition
#matrix-rank
1k
Views
Why is $\cos(x)$ the derivative of $\sin(x)$?
Published on
18 May 2014 - 21:32
#trigonometry
#derivatives
#intuition
927
Views
What is a smooth curve in $\mathbb{R}^2$ intuitively?
Published on
19 May 2014 - 15:14
#intuition
97
Views
If $z = f(x, y)$, then why are $\partial_x z$ and $\partial_y z$ functions of x and y also?
Published on
25 Mar 2026 - 21:31
#multivariable-calculus
#partial-derivative
#intuition
#visualization
147
Views
Why $\frac{d}{dt} \frac{dy}{dx} = \frac{d}{dx} [ \frac{dy}{dx} ] \quad \frac{dx}{dt} $?
Published on
25 Mar 2026 - 21:22
#calculus
#derivatives
#intuition
#visualization
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