25.0 N/C 20.0 N/C. 20.0 N/C 35.0 N/C 20.0 N/C 15.0 N/C Assume the magnitude of the electric field on each face of the cube of edge L = 10.62 m in a given Figure is uniform and the directions of the fields on each face are as indicated, i.e electric field vector is parallel to area vector. Find (a) the net electric flux PE = N•m2/C through the cube, and (b) the net charge Qnet = C inside the cube.

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Continuous Charge Distributions And Gauss's Law
Section: Chapter Questions
Problem 23P: Figure P23.23 represents the top view of a cubic gaussian surface in a uniform electric field E...
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25.0 N/C
20.0 N/C.
20.0 N/C
35.0 N/C
20.0 N/C
15.0 N/C
Assume the magnitude of the electric
field on each face of the cube of edge L =
10.62 m in a given Figure is uniform and
the directions of the fields on each face
are as indicated, i.e electric field vector is
parallel to area vector. Find
(a) the net electric flux OF =
N•m2/C
through the cube, and
(b) the net charge Qnet =
C inside the
cube.
Transcribed Image Text:25.0 N/C 20.0 N/C. 20.0 N/C 35.0 N/C 20.0 N/C 15.0 N/C Assume the magnitude of the electric field on each face of the cube of edge L = 10.62 m in a given Figure is uniform and the directions of the fields on each face are as indicated, i.e electric field vector is parallel to area vector. Find (a) the net electric flux OF = N•m2/C through the cube, and (b) the net charge Qnet = C inside the cube.
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