A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E, and Ez., at the ends of the cylindrical surface, have magnitudes of 6000 N/C and 1000 N/C respectively, and are directed as shown. What is the net electric flux passing through the cylindrical surface?

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A nonuniform electric field is directed along the x-axis at all points in space. This
magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical
surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in
the figure. The electric fields E, and Ez, at the ends of the cylindrical surface, have
magnitudes of 6000 N/C and 1000 N/C respectively, and are directed as shown. What is
the net electric flux passing through the cylindrical surface?
y.
0.20 m
E
E2
0.80 m
-350 N• m?/C
+350 N• m2/C
+160 N• m?/c
0.00 N• m?/c
-160 N • m2/C
Transcribed Image Text:A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E, and Ez, at the ends of the cylindrical surface, have magnitudes of 6000 N/C and 1000 N/C respectively, and are directed as shown. What is the net electric flux passing through the cylindrical surface? y. 0.20 m E E2 0.80 m -350 N• m?/C +350 N• m2/C +160 N• m?/c 0.00 N• m?/c -160 N • m2/C
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