A nonuniform electric field is directed along the x-axis at all points in space. The magnitude of the field varies with x, but not with y or z. The axis of a cylindrical surface, 0.8 m long and 0.2 m in diameter, is aligned parallel to the x-axis, as shown in the figure below. The electric fields at the ends of the cylindrical surface have magnitudes of E, = 9000 N/C and E₂ = 5000 N/C. The net flux through the cylindrical surface is E₁ A. 50 Nm²/C B. 140 Nm²/C C. -90 Nm²/C D. 0 Nm²/C E. 0.20 m of 0.80 m- -40 Nm²/C YA On Je E₂

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A nonuniform electric field is directed along the x-axis at all points in space. The magnitude of the field varies
with x, but not with y or z. The axis of a cylindrical surface, 0.8 m long and 0.2 m in diameter, is aligned
parallel to the x-axis, as shown in the figure below. The electric fields at the ends of the cylindrical surface
have magnitudes of E₁ = 9000 N/C and E₂ = 5000 N/C. The net flux through the cylindrical surface is
OPE₂
E₁
A.
50 Nm²/C
B. 140 Nm²/C
C. -90 Nm²/C
D. 0 Nm²/C
E.
-40 Nm²/C
0.20 m
0.80 m
YA
2
Transcribed Image Text:A nonuniform electric field is directed along the x-axis at all points in space. The magnitude of the field varies with x, but not with y or z. The axis of a cylindrical surface, 0.8 m long and 0.2 m in diameter, is aligned parallel to the x-axis, as shown in the figure below. The electric fields at the ends of the cylindrical surface have magnitudes of E₁ = 9000 N/C and E₂ = 5000 N/C. The net flux through the cylindrical surface is OPE₂ E₁ A. 50 Nm²/C B. 140 Nm²/C C. -90 Nm²/C D. 0 Nm²/C E. -40 Nm²/C 0.20 m 0.80 m YA 2
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