21.37 • Three negative point charges lie along a Figure E21.37 line as shown in Fig. E21.37. Find the magnitude and direction of the electric field this combination -5.00 µC of charges producœs at point P, which lies 6.00 cm from the -2.00 µC charge measured perpendicu- lar to the line connecting the three charges. 8.00 cm! 16.00 cm P 2.00 μC 8.00 cm! -5.00 μC

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21.37 • Three negative point charges lie along a Figure E21.37
line as shown in Fig. E21.37. Find the magnitude
and direction of the electric field this combination
-5.00 μC
of charges produces at point P, which lies 6.00 cm
from the -2.00 µC charge measured perpendicu-
lar to the line connecting the three charges.
8.00 cm 6.00 cm
- 2.00 μC
8.00 cm
-500 μC
21.43 • In a rectangular coordinate system a positive point charge
q = 6.00 × 10-º C is placed at the point x = +0.150 m, y = 0, and
an identical point charge is placed at x = -0.150 m, y = 0. Find the
x- and y-components, the magnitude, and the direction of the electric
field at the following points: (a) the origin; (b) x = 0.300 m, y = 0;
(c) x = 0.150 m, y = -0.400 m; (d) x = 0, y = 0.200 m.
Transcribed Image Text:21.37 • Three negative point charges lie along a Figure E21.37 line as shown in Fig. E21.37. Find the magnitude and direction of the electric field this combination -5.00 μC of charges produces at point P, which lies 6.00 cm from the -2.00 µC charge measured perpendicu- lar to the line connecting the three charges. 8.00 cm 6.00 cm - 2.00 μC 8.00 cm -500 μC 21.43 • In a rectangular coordinate system a positive point charge q = 6.00 × 10-º C is placed at the point x = +0.150 m, y = 0, and an identical point charge is placed at x = -0.150 m, y = 0. Find the x- and y-components, the magnitude, and the direction of the electric field at the following points: (a) the origin; (b) x = 0.300 m, y = 0; (c) x = 0.150 m, y = -0.400 m; (d) x = 0, y = 0.200 m.
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