Figure illustrates a prism-shaped object with 80.0 cm high, 60.0 cm deep, and 160.0 cm long. The prism is immersed in a uniform electric field of 400 N/C directed parallel to the y axis. (a) Calculate the electric flux out of each of its five faces and (b) the net electric flux out of the entire closed surface. (c) If in addition to the given electric field the prism also enclosed a point charge of -4.00 µC, qualitatively how would your answers above change, if at all?

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Givens: Je'|=p = 1.6×101°C, k = 9x10° N-m?/C, ɛ. = 9.0×10-12C/N•m?
Ho = 4T×107T m/A, g = 10 m/s?, v2 = 1.4, V3 = 1.7, V10 = 3.2
Sin30° = 0.5, Cos 30° = 0.87, In(5) = 1.61, In(10) = 2.30
Figure illustrates a prism-shaped object with 80.0 cm high, 60.0 cm deep, and 160.0
cm long. The prism is immersed in a uniform electric field of 400 N/C directed
parallel to the y axis. (a) Calculate the electric flux out of each of its five faces and (b)
the net electric flux out of the entire closed surface. (c) If in addition to the given
electric field the prism also enclosed a point charge of –4.00 µC, qualitatively how
would your answers above change, if at all?
Surface I
Surface IV
160 cm
80 cm
Surface V
60 cm
Surface III
Surface II
Transcribed Image Text:Givens: Je'|=p = 1.6×101°C, k = 9x10° N-m?/C, ɛ. = 9.0×10-12C/N•m? Ho = 4T×107T m/A, g = 10 m/s?, v2 = 1.4, V3 = 1.7, V10 = 3.2 Sin30° = 0.5, Cos 30° = 0.87, In(5) = 1.61, In(10) = 2.30 Figure illustrates a prism-shaped object with 80.0 cm high, 60.0 cm deep, and 160.0 cm long. The prism is immersed in a uniform electric field of 400 N/C directed parallel to the y axis. (a) Calculate the electric flux out of each of its five faces and (b) the net electric flux out of the entire closed surface. (c) If in addition to the given electric field the prism also enclosed a point charge of –4.00 µC, qualitatively how would your answers above change, if at all? Surface I Surface IV 160 cm 80 cm Surface V 60 cm Surface III Surface II
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