Problem 3: A cube is centered on the origin. Its sides are parallel to the x-y, the y - z, and the - z planes and have edges of length of L. It is immersed in an electric field given by y Refer to the figure. Ē(x) = E (ar³ +2j+5k) NX Z ☑^ Part (a) Using only the symbols in the palette, enter an expression for the total electric flux through the cube. E = (E₁ α L³)/4 ✔ Correct! Part (b) Given L = 3.91 m. α = 1.04/m³, and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube? B=0.000 V m × Attempts Remain Part (c) If the electric field is Ē(z) = E₁(ßx² à + 2j+15) with B = 2.5/m². Given L = 3.91 m and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube?

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Gauss's Law 

 Problem 3

Problem 3: A cube is centered on the origin. Its sides are parallel to the x-y, the y - z, and the
- z planes and have edges of length of L. It is immersed in an electric field given by
y
Refer to the figure.
Ē(x) = E (ar³ +2j+5k)
NX
Z
☑^
Part (a) Using only the symbols in the palette, enter an expression for the total electric flux through the cube.
E = (E₁ α L³)/4 ✔ Correct!
Part (b) Given L = 3.91 m. α = 1.04/m³, and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube?
B=0.000 V m × Attempts Remain
Part (c) If the electric field is
Ē(z) = E₁(ßx² à + 2j+15)
with B = 2.5/m². Given L = 3.91 m and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube?
Transcribed Image Text:Problem 3: A cube is centered on the origin. Its sides are parallel to the x-y, the y - z, and the - z planes and have edges of length of L. It is immersed in an electric field given by y Refer to the figure. Ē(x) = E (ar³ +2j+5k) NX Z ☑^ Part (a) Using only the symbols in the palette, enter an expression for the total electric flux through the cube. E = (E₁ α L³)/4 ✔ Correct! Part (b) Given L = 3.91 m. α = 1.04/m³, and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube? B=0.000 V m × Attempts Remain Part (c) If the electric field is Ē(z) = E₁(ßx² à + 2j+15) with B = 2.5/m². Given L = 3.91 m and E0 = 77.3 V/m, what is the value, in volt meters, of the electric flux through the cube?
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