A right triangular prism is placed in a E = 200 N/C uniform electric field as shown in the Figure above. The base of the prism is a right angle triangle. With the notation above the dimensions of the prism are h = 1.2 m, l = 4.2 m, and ϑ = 30 degrees. Calculate (in N m2/C): a. the electric flux trough the face ABED. b. the electric flux trough the face BEFC. b. the electric flux trough the face BEFC. c. the electric flux trough the face DEF. d. the electric flux trough the face ABC. e. the electric flux trough the face ACFD.
A right triangular prism is placed in a E = 200 N/C uniform electric field as shown in the Figure above. The base of the prism is a right angle triangle. With the notation above the dimensions of the prism are h = 1.2 m, l = 4.2 m, and ϑ = 30 degrees. Calculate (in N m2/C): a. the electric flux trough the face ABED. b. the electric flux trough the face BEFC. b. the electric flux trough the face BEFC. c. the electric flux trough the face DEF. d. the electric flux trough the face ABC. e. the electric flux trough the face ACFD.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter7: Gravity
Section: Chapter Questions
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A right triangular prism is placed in a E = 200 N/C uniform electric field as shown in the Figure above. The base of the prism is a right angle triangle. With the notation above the dimensions of the prism are h = 1.2 m, l = 4.2 m, and ϑ = 30 degrees. Calculate (in N m2/C):
a. the electric flux trough the face ABED.
b. the electric flux trough the face BEFC. b. the electric flux trough the face BEFC.
c. the electric flux trough the face DEF.
d. the electric flux trough the face ABC.
e. the electric flux trough the face ACFD.
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