b. Explain why the x-component of the total electric field is zero at any point on the y-axis.

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Part B please.

y
y
A
•P2
ol
Figure 2
Figure 1
а.
Point P1, the intersection of the three bisectors, locates the geometric center
of the triangle and is one point where the electric field is zero. On Figure 1
above, draw the electric field vectors EA, EB, and Ec at P1, due to each of the
three charges. Be sure your arrows are drawn to reflect the relative
magnitude of the fields.
i.
ii. Another point where the electric field is zero is point P2 at (0, y2). On Figure
2 above, draw electric field vectors EA, EB, and Ec at P2 due to each of the
three point charges. Indicate below whether the magnitude of each of these
vectors is greater than, less than, or the same as for point P1.
Greater than at P,
Less than at P,
The same as at P,
EA
EB
Ec
b.
Explain why the x-component of the total electric field is zero at any point on
the y-axis.
Transcribed Image Text:y y A •P2 ol Figure 2 Figure 1 а. Point P1, the intersection of the three bisectors, locates the geometric center of the triangle and is one point where the electric field is zero. On Figure 1 above, draw the electric field vectors EA, EB, and Ec at P1, due to each of the three charges. Be sure your arrows are drawn to reflect the relative magnitude of the fields. i. ii. Another point where the electric field is zero is point P2 at (0, y2). On Figure 2 above, draw electric field vectors EA, EB, and Ec at P2 due to each of the three point charges. Indicate below whether the magnitude of each of these vectors is greater than, less than, or the same as for point P1. Greater than at P, Less than at P, The same as at P, EA EB Ec b. Explain why the x-component of the total electric field is zero at any point on the y-axis.
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