Find the net electric flux through the spherical closed surface shown in the figure below. The two charges on the right are inside the spherical surface. (Take q, = +1.82 nC, q, = +1.10 nC, and g, = -2.97 nC.) N m2/c

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Find the net electric flux through the spherical closed surface shown in the figure below. The two charges on the right are inside the spherical surface.

Find the net electric flux through the spherical closed surface shown in the figure below. The two charges on the right are inside the spherical surface. (Take \( q_1 = +1.82 \, \text{nC}, \, q_2 = +1.10 \, \text{nC}, \text{ and } q_3 = -2.97 \, \text{nC.} \))

The image shows a diagram with three point charges. On the left, there is a charge labeled \( q_1 \). On the right, within a translucent spherical surface, there are two charges labeled \( q_2 \) and \( q_3 \).

\[
\boxed{} \, \text{N} \cdot \text{m}^2/\text{C}
\] 

The task is to calculate the net electric flux through the spherical surface, considering only the charges enclosed by the surface (\( q_2 \) and \( q_3 \)).
Transcribed Image Text:Find the net electric flux through the spherical closed surface shown in the figure below. The two charges on the right are inside the spherical surface. (Take \( q_1 = +1.82 \, \text{nC}, \, q_2 = +1.10 \, \text{nC}, \text{ and } q_3 = -2.97 \, \text{nC.} \)) The image shows a diagram with three point charges. On the left, there is a charge labeled \( q_1 \). On the right, within a translucent spherical surface, there are two charges labeled \( q_2 \) and \( q_3 \). \[ \boxed{} \, \text{N} \cdot \text{m}^2/\text{C} \] The task is to calculate the net electric flux through the spherical surface, considering only the charges enclosed by the surface (\( q_2 \) and \( q_3 \)).
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