Green’s Theorem for line integrals Use either form of Green’s Theorem to evaluate the following line integrals. 32. ∮ C 3 x 3 d y − 3 y 3 d x ; C is the circle of radius 4 centered at the origin with clockwise orientation.
Green’s Theorem for line integrals Use either form of Green’s Theorem to evaluate the following line integrals. 32. ∮ C 3 x 3 d y − 3 y 3 d x ; C is the circle of radius 4 centered at the origin with clockwise orientation.
Solution Summary: The author evaluates the value of the line integral, which is -1152pi . Compute the double integral by using the formula.
Green’s Theorem for line integralsUse either form of Green’s Theorem to evaluate the following line integrals.
32.
∮
C
3
x
3
d
y
−
3
y
3
d
x
;
C is the circle of radius 4 centered at the origin with clockwise orientation.
With differentiation, one of the major concepts of calculus. Integration involves the calculation of an integral, which is useful to find many quantities such as areas, volumes, and displacement.
For what value of A and B the function f(x) will be continuous everywhere for the given definition?..
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SESSCALCET2 6.4.006.MI.
Use the Table of Integrals to evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.)
7y2
y²
11
dy
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SESSCALCET2 6.4.009.
Use the Table of Integrals to evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.)
tan³(12/z) dz
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SESSCALCET2 6.4.014.
Use the Table of Integrals to evaluate the integral. (Use C for the constant of integration.)
5 sinб12x dx
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