Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.04 × 104 N/C as shown in the figure below. 30.0 cm 60.0° 10.0 cm (a) Calculate the electric flux through the vertical rectangular surface of the box. | KN · m²/c (b) Calculate the electric flux through the slanted surface of the box. kN : m?/c (c) Calculate the electric flux through the entire surface of the box. kN • m2/c

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 11PQ: A Ping-Pong paddle with surface area 3.80 102 m2 is placed in a uniform electric field of magnitude...
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Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.04 × 104 N/C as shown in the figure below.
30.0 cm
60.0°
10.0 cm
(a) Calculate the electric flux through the vertical rectangular surface of the box.
N.m²/c
(b) Calculate the electric flux through the slanted surface of the box.
kN · m?/c
(c) Calculate the electric flux through the entire surface of the box.
kN • m2/c
Transcribed Image Text:Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.04 × 104 N/C as shown in the figure below. 30.0 cm 60.0° 10.0 cm (a) Calculate the electric flux through the vertical rectangular surface of the box. N.m²/c (b) Calculate the electric flux through the slanted surface of the box. kN · m?/c (c) Calculate the electric flux through the entire surface of the box. kN • m2/c
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