GY 91 93 q2 94 95 The figure shows 5 loads. Out of these 5 loads, only qs is outside the Gaussian Surface (GY) given the cross section. Here q1 = q3 = q4 =+1,1 µC q2 = q5 =-7,1 µC If so, what is the total (net) flux through the Gaussian Surface? (Eo = 8.9x1012 C/Nm?) O A) -8,4x10 Nm²/C² O B) -4,3x10 Nm2/C? O C) 2,4x10 Nm/C? O D) 1,2x10 Nm/C O E) -6.7x10 Nm/C

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GY
91
93
q2
33 -
• 95
The figure shows 5 loads. Out of these 5 loads, only gs is outside the Gaussian Surface (GY) given the cross section. Here
q1 = q3 = q4 = +1,1 µC
q2 = qs =-7,1 µC
If so, what is the total (net) flux through the Gaussian Surface? (€o = 8.9x1012 C?/Nm?)
O A) -8,4x10 Nm2/C?
B) -4,3x10° Nm?/C
O C) 2,4x10 Nm/C
O D) 1,2x10Nm2/C
E) -6,7x10 Nm²/C
Transcribed Image Text:GY 91 93 q2 33 - • 95 The figure shows 5 loads. Out of these 5 loads, only gs is outside the Gaussian Surface (GY) given the cross section. Here q1 = q3 = q4 = +1,1 µC q2 = qs =-7,1 µC If so, what is the total (net) flux through the Gaussian Surface? (€o = 8.9x1012 C?/Nm?) O A) -8,4x10 Nm2/C? B) -4,3x10° Nm?/C O C) 2,4x10 Nm/C O D) 1,2x10Nm2/C E) -6,7x10 Nm²/C
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