Three charges are at the corners of an isosceles triangle as shown in (Figure 1). The +5.00 µC charges form a dipole. Figure +5.00 µC 2.00 cm 3.00 сm (2.00 cm -5.00 μC Find the magnitude of the net force that the q=- 11.0 µC charge exerts on the dipole. Express your answer in newtons. ? Fnet = N For an axis perpendicular to the line connecting the two charges of the dipole at its midpoint and perpendicular to the plane of the screen, find the magnitude of the torque exerted on the dipole by the – 11.0 µC charge. Express your answer in newton meters. nν ΑΣφ ? N-m

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Three charges are at the corners of an isosceles triangle as shown
in (Figure 1). The +5.00 µC charges form a dipole.
Figure
+5.00 µC
2.00 cm
3.00 cm
/2.00 cm
-5.00 μC
Find the magnitude of the net force that the q = - 11.0 µC charge exerts on the dipole.
Express your answer in newtons.
Fnet =
N
For an axis perpendicular to the line connecting the two charges of the dipole at its midpoint and perpendicular to the plane of the screen, find the magnitude of
the torque exerted on the dipole by the - 11.0 µC charge.
Express your answer in newton meters.
?
N.m
Transcribed Image Text:Three charges are at the corners of an isosceles triangle as shown in (Figure 1). The +5.00 µC charges form a dipole. Figure +5.00 µC 2.00 cm 3.00 cm /2.00 cm -5.00 μC Find the magnitude of the net force that the q = - 11.0 µC charge exerts on the dipole. Express your answer in newtons. Fnet = N For an axis perpendicular to the line connecting the two charges of the dipole at its midpoint and perpendicular to the plane of the screen, find the magnitude of the torque exerted on the dipole by the - 11.0 µC charge. Express your answer in newton meters. ? N.m
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