A.) A 25μC point charge is located at the origin, calculate the electric flux passing through a portion of sphere r=20cm bounded by θ = 30 to 60 and ∅ = 20 to 75. Draw the diagram.

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A.) A 25μC point charge is located at the origin, calculate the electric flux passing through a portion of sphere r=20cm bounded by θ = 30 to 60 and ∅ = 20 to 75. Draw the diagram.

17. a. A 25μC point charge is located at the origin, calculate the electric flux passing through a
portion of a sphere r = 20cm bounded by 0 = 30 to 60 and p = 20 to 75. Draw the diagram
b. Given D =x(y^2)(z^2) ax + 2x(y^2)(z^3) ay + 6x(y^2)(z^3) az μC/m^2, find the total charge
contained in an incremental sphere having a radius of 5um at P(3, 2, 4).
c. Given D = 3(x^3)(y^2)z ax + 2x(y^3)z ay + 3x(y^2)(z^3) az μC/m^2, find (b.1) magnitude of
the flux density at point P(2, 5, -1) (b.2) magnitude of the electric field intensity at point P. (b.3)
div D (b.4) pv at point P.
Transcribed Image Text:17. a. A 25μC point charge is located at the origin, calculate the electric flux passing through a portion of a sphere r = 20cm bounded by 0 = 30 to 60 and p = 20 to 75. Draw the diagram b. Given D =x(y^2)(z^2) ax + 2x(y^2)(z^3) ay + 6x(y^2)(z^3) az μC/m^2, find the total charge contained in an incremental sphere having a radius of 5um at P(3, 2, 4). c. Given D = 3(x^3)(y^2)z ax + 2x(y^3)z ay + 3x(y^2)(z^3) az μC/m^2, find (b.1) magnitude of the flux density at point P(2, 5, -1) (b.2) magnitude of the electric field intensity at point P. (b.3) div D (b.4) pv at point P.
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