A pair of unlike charges equal in magnitude and separated by a small distance is known as a dipole. Such a pair is situated on the x axis at equal distances from the origin as shown in the figure below. Use the direction rosette to answer the questions. E 9 zero magnitude (a) What is the direction of the net electric field at location C due to both charges? vx Did you consider the symmetry of the situation? What is the net contribution to the field from the y components of the field from each charge? (b) What is the direction of the net electric field at location D due to both charges? 3 vx Consider the magnitude and direction of the electric field due to each charge. (c) What is the direction of the net electric field at location E due to both charges? 4 vx What is the direction of the electric field at the observation location due to the positive charge? What is the direction of the electric field this same location due to the negative charge?

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A pair of unlike charges equal in magnitude and separated by a small distance is known as a dipole. Such a pair is situated on the x axis at equal distances from the origin as shown in the figure below. Use the direction rosette to answer the questions.
2
E
3
b-
9 zero magnitude
(a) What is the direction of the net electric field at location C due to both charges?
5
vX Did you consider the symmetry of the situation? What is the net contribution to the field from the y components of the field from each charge?
(b) What is the direction of the net electric field at location D due to both charges?
3
vx Consider the magnitude and direction of the electric field due to each charge.
(c) What is the direction of the net electric field at location E due to both charges?
vx What is the direction of the electric field at the observation location due to the positive charge? What is the direction of the electric field at this same location due to the negative charge?
Transcribed Image Text:A pair of unlike charges equal in magnitude and separated by a small distance is known as a dipole. Such a pair is situated on the x axis at equal distances from the origin as shown in the figure below. Use the direction rosette to answer the questions. 2 E 3 b- 9 zero magnitude (a) What is the direction of the net electric field at location C due to both charges? 5 vX Did you consider the symmetry of the situation? What is the net contribution to the field from the y components of the field from each charge? (b) What is the direction of the net electric field at location D due to both charges? 3 vx Consider the magnitude and direction of the electric field due to each charge. (c) What is the direction of the net electric field at location E due to both charges? vx What is the direction of the electric field at the observation location due to the positive charge? What is the direction of the electric field at this same location due to the negative charge?
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