3. Consider a dipole sitting in an electric field caused by a single positively charged particle as shown. Assume the dipole charges are -3 nC and +3 nC, the distance between the charges is 3 nm, and the distance from the center of the dipole to the positively charged particle is 100 nm. The charge on the single particle is +6 nC. Calculate the force on the charged particle from the dipole and calculate the net force (if any) and torque (if any) on the dipole from the charged particle. Fon dipole E + F Q TE (+)

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3. Consider a dipole sitting in an electric field caused by a single positively charged particle as shown.
Assume the dipole charges are -3 nC and +3 nG, the distance between the charges is 3 nm, and the
distance from the center of the dipole to the positively charged particle is 100 nm. The charge on the
single particle is +6 nC. Calculate the force on the charged particle from the dipole and calculate the net
force (if any) and torque (if any) on the dipole from the charged particle.
E-
(+)
Fon dipole
Fon Q
E
F_
(b)
(a)
Transcribed Image Text:3. Consider a dipole sitting in an electric field caused by a single positively charged particle as shown. Assume the dipole charges are -3 nC and +3 nG, the distance between the charges is 3 nm, and the distance from the center of the dipole to the positively charged particle is 100 nm. The charge on the single particle is +6 nC. Calculate the force on the charged particle from the dipole and calculate the net force (if any) and torque (if any) on the dipole from the charged particle. E- (+) Fon dipole Fon Q E F_ (b) (a)
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