Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.68 x 104 N/C as shown in the figure below. 10.0 cm 30.0 cm 60.0 (a) Calculate the electric flux through the vertical rectangular surface of the box. kNm²/C (b) Calculate the electric flux through the slanted surface of the box. kNm²/C (c) Calculate the electric flux through the entire surface of the box. kNm²/C
Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.68 x 104 N/C as shown in the figure below. 10.0 cm 30.0 cm 60.0 (a) Calculate the electric flux through the vertical rectangular surface of the box. kNm²/C (b) Calculate the electric flux through the slanted surface of the box. kNm²/C (c) Calculate the electric flux through the entire surface of the box. kNm²/C
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![Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.68 x 104 N/C as shown in the figure below.
10.0 cm
30.0 cm
60.0⁰
(a) Calculate the electric flux through the vertical rectangular surface of the box.
kNm²/C
(b) Calculate the electric flux through the slanted surface of the box.
kNm²/C
(c) Calculate the electric flux through the entire surface of the box.
kNm²/C](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F51f216e9-26e6-4f1d-af4e-0b0d68779673%2F4cd67ffb-7a5d-406c-8f48-a5cd096ad2e7%2Frpe9yfr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.68 x 104 N/C as shown in the figure below.
10.0 cm
30.0 cm
60.0⁰
(a) Calculate the electric flux through the vertical rectangular surface of the box.
kNm²/C
(b) Calculate the electric flux through the slanted surface of the box.
kNm²/C
(c) Calculate the electric flux through the entire surface of the box.
kNm²/C
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