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. Ď E Â -9 +q 9 zero magnitude location C due to both charges? (a) What is the direction of the net electric field ✓x Did you consider the symmetry 5 of the situation? What is the net contribution to the field from the y components of the field from each charge? location D due to both charges? (b) What is the direction of the net electric field ---Select--- ✓ location E due to both charges? (c) What is the direction of the net electric field ---Select--- Additional Materials

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Chapter1: Units, Trigonometry. And Vectors
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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.
ΧΑ
8
+
*
D
E
B
3
+q
-9
5
9 zero magnitude
(a) What is the direction of the net electric field at location C due to both charges?
5
X 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?
---Select--- v
(c) What is the direction of the net electric field at location E due to both charges?
---Select--- ✓
Additional Materials
Reading
7
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. ΧΑ 8 + * D E B 3 +q -9 5 9 zero magnitude (a) What is the direction of the net electric field at location C due to both charges? 5 X 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? ---Select--- v (c) What is the direction of the net electric field at location E due to both charges? ---Select--- ✓ Additional Materials Reading 7
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