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15
Math.TechQA.Club
2020-04-15 03:50:59
52
Views
How to solve triple integral that is broken up into two regions
Published on
15 Apr 2020 - 3:50
#integration
#multivariable-calculus
#surface-integrals
38
Views
Integrating over a range of $xy$- values of a sphere.
Published on
15 Apr 2020 - 16:24
#multivariable-calculus
#vector-fields
#surface-integrals
1.1k
Views
What does a negative surface integral mean?
Published on
15 Apr 2020 - 18:21
#surface-integrals
153
Views
Boundary of a surface z=\sin(x)\cos(y)
Published on
26 Mar 2026 - 14:31
#surfaces
#surface-integrals
#stokes-theorem
244
Views
Calculating surface area implicitly ... and wrongly?
Published on
19 Apr 2020 - 20:54
#multivariable-calculus
#surface-integrals
59
Views
Surface area integral
Published on
25 Apr 2020 - 7:21
#surface-integrals
387
Views
Evaluate $I=\iint_S (x^2+y^2)\, dS$ where $S$ is the surface of the cone $\sqrt{x^2+y^2}\leqslant z\leqslant 1$
Published on
25 Apr 2020 - 13:24
#integration
#multivariable-calculus
#surface-integrals
66
Views
Evaluate $I=\iint\limits_S f(x;y;z)\ dS$ over an ellipsoid
Published on
25 Apr 2020 - 16:22
#calculus
#integration
#surface-integrals
43
Views
To evaluate a surface integral
Published on
27 Apr 2020 - 5:04
#surface-integrals
40
Views
How do you find the parameters of a surface integral?
Published on
29 Apr 2020 - 18:23
#integration
#multivariable-calculus
#surface-integrals
470
Views
Surface Area of a Sphere Over a Cone
Published on
29 Apr 2020 - 23:52
#multivariable-calculus
#surface-integrals
56
Views
Evaluate $ I=\iint\limits_S (x^5+z)\ dy\ dz\ \ \text{where}\ S\ \text{is an inner side of a hemisphere}\ x^2+y^2+z^2=R^2,\ z\leqslant 0 $
Published on
30 Apr 2020 - 19:07
#calculus
#integration
#surface-integrals
62
Views
Evaluate $ I=\iint\limits_S yz^2\ dx\ dz\ \ \text{where}\ S\ \text{is the inner side of a cylinder}$
Published on
01 May 2020 - 7:46
#calculus
#integration
#surface-integrals
176
Views
Coordinate change to use in Integration
Published on
02 May 2020 - 0:50
#calculus
#integration
#surface-integrals
55
Views
Show that the graph of $f$, $G(f) =$ {$(x, y, z) \in \mathbb R^3 : z = f(x, y) $} is the image of a parametrized surface.
Published on
02 May 2020 - 17:40
#integration
#multivariable-calculus
#surface-integrals
#parametrization
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