1A On the diagram below, draw the normal vectors for all six faces of the cube (have the tail of the vector placed at the dots, 1 mark). What is the surface area vector for the top (3) and the bottom (6) faces of the cube in terms of î, ĵ, k.I B)| Write expressions of the electric field Ē along each of the faces of the cube. E, (a, y,z) = Ē2(x, a, z) = Ē3(x, y, a) = E, (0, y, z) = Es(x, 0, z) = Ē,(x, y,0) = C) Calculate the value of ¤g = S Ē -dà o on face 3 of the cube. Show all your steps.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter25: Gauss’s Law
Section: Chapter Questions
Problem 75PQ: A solid sphere of radius R has a spherically symmetrical, nonuniform volume charge density given by...
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1A
On the diagram below, draw the normal vectors for all six faces of the cube (have the tail of the
vector placed at the dots, 1 mark). What is the surface area vector for the top (3) and the bottom (6)
faces of the cube in terms of î, ĵ, k.I
B)|
Write expressions of the electric field Ē along each of the faces of the cube.
E, (a, y,z) =
Ē2(x, a, z) =
Ē3(x, y, a) =
E, (0, y, z) =
Es(x, 0, z) =
Ē,(x, y,0) =
C)
Calculate the value of ¤g = S Ē -dà o on face 3 of the cube. Show all your steps.
Transcribed Image Text:1A On the diagram below, draw the normal vectors for all six faces of the cube (have the tail of the vector placed at the dots, 1 mark). What is the surface area vector for the top (3) and the bottom (6) faces of the cube in terms of î, ĵ, k.I B)| Write expressions of the electric field Ē along each of the faces of the cube. E, (a, y,z) = Ē2(x, a, z) = Ē3(x, y, a) = E, (0, y, z) = Es(x, 0, z) = Ē,(x, y,0) = C) Calculate the value of ¤g = S Ē -dà o on face 3 of the cube. Show all your steps.
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