Charge Q1 is located at (2 m, 3 m) and has a magnitude of –4. 0 × 10-6 C. (in meters) QI = - 4.0 E-6 C Charge Q2 is located at (2 m, 0 m) and has a magnitude of -2.5 × 10-6 C. NOTE: values will be very large Q2 = - 2.5 E-6 C 2. x (in meters) origin 2.
Charge Q1 is located at (2 m, 3 m) and has a magnitude of –4. 0 × 10-6 C. (in meters) QI = - 4.0 E-6 C Charge Q2 is located at (2 m, 0 m) and has a magnitude of -2.5 × 10-6 C. NOTE: values will be very large Q2 = - 2.5 E-6 C 2. x (in meters) origin 2.
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
Transcribed Image Text:Charge Q1 is located at (2 m, 3 m) and has a
magnitude of –4.0 × 10-6 C.
(in meters)
Q1 = - 4.0 E-6 C
3
Charge Q2 is located at (2 m, 0 m) and has a
magnitude of –2.5 × 10-6 C.
NOTE: values will be very large
2.
1
- 2.5 E-6 C
02=-
2
3
x (in meters)
origin
c) Determine the x – component and y-component of the electric field at the origin due to
charge Q2 only. Draw and label this vector E, in the diagram above.
d) Determine the net electric field at the origin. Express your answer in terms of both
magnitude and direction. Draw and label this vector Ener in the diagram above.
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