The figure below shows a prism-shaped object that is a = 42.0 cm high, b 22.0 cm deep, and c = 76.0 cm long. The prism is immersed in a uniform electric field of 500 N/C directed parallel to the x axis. Surface I Surface IV C a D. Surface V Surface III Surface II 1) Calculate the electric flux out of face I. (Express your answer to three significant figures.) kN - m?/C Submit

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PLEASE. THIS IS **NOT** A GRADED QUESTION!!!!! I need to know how to do numbers 1, 5, and 6. PLEASE DO NOT REJECT THIS!
5) Calculate the electric flux out of face V. (Express your answer to three significant figures.)
kN - m²/C Submit
6) Calculate the net electric flux out of the entire closed surface. (Express your answer to three significant figures.)
N. m²/C Submit
Transcribed Image Text:5) Calculate the electric flux out of face V. (Express your answer to three significant figures.) kN - m²/C Submit 6) Calculate the net electric flux out of the entire closed surface. (Express your answer to three significant figures.) N. m²/C Submit
The figure below shows a prism-shaped object that is a = 42.0 cm high, b 22.0 cm deep, and c = 76.0 cm long. The
prism is immersed in a uniform electric field of 500 N/C directed parallel to the x axis.
Surface I
Surface IV
C
a
Surface V
Surface III
Surface II
1) Calculate the electric flux out of face I. (Express your answer to three significant figures.)
kN . m?/C Submit
Transcribed Image Text:The figure below shows a prism-shaped object that is a = 42.0 cm high, b 22.0 cm deep, and c = 76.0 cm long. The prism is immersed in a uniform electric field of 500 N/C directed parallel to the x axis. Surface I Surface IV C a Surface V Surface III Surface II 1) Calculate the electric flux out of face I. (Express your answer to three significant figures.) kN . m?/C Submit
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Electric flux is defined as the amount of electric field passing through a given areaIt is given aϕ=E.Aϕ=EAcosθE is the electric fieldA is the area of the elementθ is the angle between the electric field and the normal to the area element

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