An electric field of magnitude 4.44 kN/C is applied along the x axis. Calculate the electric flux through a rectangular plane 0.350 m wide and 0.700 m long if the following conditions are true. (a) The plane is parallel to the yz plane. 1088 ✓ N·m²/C (b) The plane is parallel to the xy plane. 0 ✓N·m²/C (c) The plane contains the y axis, and its normal makes an angle of 35.0° with the axis. X Use the area, the electric field, and the relative orientation of the electric field and the plane to find the flux. N. m²/C

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter24: Gauss’s Law
Section: Chapter Questions
Problem 24.63CP: A dosed surface with dimensions a = b= 0.400 111 and c = 0.600 in is located as shown in Figure...
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An electric field of magnitude 4.44 kN/C is applied along the x axis. Calculate the electric flux through a rectangular plane 0.350 m wide and 0.700 m long if the following conditions are true.
(a) The plane is parallel to the yz plane.
1088
✓ N·m²/c
(b) The plane is parallel to the xy plane.
0
✓ N·m²/c
(c) The plane contains the y axis, and its normal makes an angle of 35.0° with the x axis.
X
Use the area, the electric field, and the relative orientation of the electric field and the plane to find the flux. N. m²/C
Transcribed Image Text:An electric field of magnitude 4.44 kN/C is applied along the x axis. Calculate the electric flux through a rectangular plane 0.350 m wide and 0.700 m long if the following conditions are true. (a) The plane is parallel to the yz plane. 1088 ✓ N·m²/c (b) The plane is parallel to the xy plane. 0 ✓ N·m²/c (c) The plane contains the y axis, and its normal makes an angle of 35.0° with the x axis. X Use the area, the electric field, and the relative orientation of the electric field and the plane to find the flux. N. m²/C
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