The Figure (and other information) at the top of the last page is repeated below for your convenience. The Figure below shows a pair of charged particles held fixed in location on the x-axis, and a point "P", which is located on the y- axis, at y = 8.00 cm. Q, = + 2.00 µC, Q, = - 2.00 µC. A+y •P 8.00 cm Q1 Q2 Q1= + 2.00 µC 6.00 cm Q2= - 2.00 µC 6.00 cm 4. The electric field created by charge O at the point "P" has a magnitude of A. 1.80 x 10 N/C. B. 1.80 x 106 N/C. C. 9.17 x 10 N/C. D. 4.94 x 10 N/C. E. 180 N/C. 5. The electric field created by charge O, at the point "P" has a magnitude of A. 4.94 x 106 N/C. B. 180 N/C. C. 1.80 x 10 N/C. D. 1.80x 106 N/C. E. 9.17 x 10 N/C. 6. The total electric field at the point "P" is directed A. in the positive x direction. B. in the negative y direction. C. in the negative x direction. D. in the positive y direction. E. None of the above. 7. A third charged particle, Q3 = - 0.100uC, placed at the point at the point "P" would be acted upon by a total electric force directed A. parallel to the total electric field at the point "P". B. antiparallel to the total electric field at the point "p". C. straight down towards the Earth's center. 3

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter25: Electric Potential
Section: Chapter Questions
Problem 25.3OQ: (i) A metallic sphere A of radius 1.00 cm is several centimeters away from a metallic spherical...
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The Figure (and other information) at the top of the last page is repeated below for your convenience.
The Figure below shows a pair of charged particles held fixed in location on the x-axis, and a point "P", which is located on the y-
axis, at y = 8.00 cm. O, = + 2.00 µC, Q, = - 2.00 uC.
A+y
•P
8.00 cm
Q1
Q2
Q1= + 2.00 µC
6.00 cm
Q2= - 2.00 µC
6.00 cm
4. The electric field created by charge Q at the point "P" has a magnitude of
A. 1.80 x 10 N/C.
B. 1.80 x 106 N/C.
C. 9.17 × 10° N/C.
D. 4.94 x 10 N/C.
E. 180 N/C.
5. The electric field created by charge O, at the point "P" has a magnitude of
C. 1.80 x 10 N/C.
D. 1.80x106 N/C.
E. 9.17x 10 N/C.
A. 4.94 x 106 N/C.
B. 180 N/C.
6. The total electric field at the point "P" is directed
A. in the positive x direction.
B. in the negative y direction.
C. in the negative x direction.
D. in the positive y direction.
E. None of the above.
7. A third charged particle, Q3 =
-0.100µC, placed at the point at the point "P" would be acted upon by
a total electric force directed
A. parallel to the total electric field at the point "p".
B. antiparallel to the total electric field at the point "p".
C. straight down towards the Earth's center.
3
Transcribed Image Text:The Figure (and other information) at the top of the last page is repeated below for your convenience. The Figure below shows a pair of charged particles held fixed in location on the x-axis, and a point "P", which is located on the y- axis, at y = 8.00 cm. O, = + 2.00 µC, Q, = - 2.00 uC. A+y •P 8.00 cm Q1 Q2 Q1= + 2.00 µC 6.00 cm Q2= - 2.00 µC 6.00 cm 4. The electric field created by charge Q at the point "P" has a magnitude of A. 1.80 x 10 N/C. B. 1.80 x 106 N/C. C. 9.17 × 10° N/C. D. 4.94 x 10 N/C. E. 180 N/C. 5. The electric field created by charge O, at the point "P" has a magnitude of C. 1.80 x 10 N/C. D. 1.80x106 N/C. E. 9.17x 10 N/C. A. 4.94 x 106 N/C. B. 180 N/C. 6. The total electric field at the point "P" is directed A. in the positive x direction. B. in the negative y direction. C. in the negative x direction. D. in the positive y direction. E. None of the above. 7. A third charged particle, Q3 = -0.100µC, placed at the point at the point "P" would be acted upon by a total electric force directed A. parallel to the total electric field at the point "p". B. antiparallel to the total electric field at the point "p". C. straight down towards the Earth's center. 3
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