The figure shows an arrangement of four charged particles, with angle 0 = 30.0° and distance d = 2.50 cm. Particle 2 has charge 92 = 6.40 × 10-1⁹ C; particles 3 and 4 have charges 93 94 = -1.60 × 10-19 C. (a) What is the distance D between the origin and particle 2 if the net electrostatic force on particle 1 due to the other particles is zero? (b) If particles 3 and 4 were moved closer to the x axis but maintained their symmetry about that axis, would the required value of D be greater than, less than, or the same as in part (a)? y (a) Number (b) i 1 Units 0 Ꮎ d 3 4 D 2 >

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The figure shows an arrangement of four charged particles, with angle 0 = 30.0° and distance d = 2.50 cm. Particle 2 has charge
92 = 6.40 × 10-1⁹ C; particles 3 and 4 have charges 93 94 = -1.60 × 10-19 C. (a) What is the distance D between the origin and particle 2
if the net electrostatic force on particle 1 due to the other particles is zero? (b) If particles 3 and 4 were moved closer to the x axis but
maintained their symmetry about that axis, would the required value of D be greater than, less than, or the same as in part (a)?
y
(a) Number
(b)
i
1
Units
0
Ꮎ d
3
4
D
2
>
Transcribed Image Text:The figure shows an arrangement of four charged particles, with angle 0 = 30.0° and distance d = 2.50 cm. Particle 2 has charge 92 = 6.40 × 10-1⁹ C; particles 3 and 4 have charges 93 94 = -1.60 × 10-19 C. (a) What is the distance D between the origin and particle 2 if the net electrostatic force on particle 1 due to the other particles is zero? (b) If particles 3 and 4 were moved closer to the x axis but maintained their symmetry about that axis, would the required value of D be greater than, less than, or the same as in part (a)? y (a) Number (b) i 1 Units 0 Ꮎ d 3 4 D 2 >
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