Concept explainers
(a)
The net-electrostatic force on the third particle with charge
(a)
Answer to Problem 63PQ
The net-electrostatic force on the third particle with charge
Explanation of Solution
The net-electrostatic force on the particle with charge
Write the expression for Coulomb’s law.
Here,
The force due to 1 on 3 is in the
Substitute
Substitute
Write the expression to find the net-electrostatic force on the third particle with charge
Here,
Conclusion:
Substitute
Therefore, the net-electrostatic force on the third particle with charge
(b)
Compere the force on
(b)
Answer to Problem 63PQ
The force on
Explanation of Solution
Write the expression for Coulomb’s law.
Here,
Conclusion:
Substitute
Therefore, the force on
In the case, the separation and the distance to the 3rd charge is comparable. The first two charges cannot be replaced by an effective charge at origin.
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Chapter 23 Solutions
Physics for Scientists and Engineers: Foundations and Connections
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- Eight small conducting spheres with identical charge q = 2.00 C are placed at the corners of a cube of side d = 0.500 m (Fig. P23.75). What is the total force on the sphere at the origin (sphere A) due to the other seven spheres? Figure P23.75arrow_forwardFigure P23.49 shows two identical small, charged spheres. One of mass 4.0 g is hanging by an insulating thread of length 20.0 cm. The other is held in place and has charge q1 = 3.6 C. The thread makes an angle of 18 with the vertical, resulting in the spheres being aligned horizontally, a distance r apart. Determine the charge q2 on the hanging sphere. Figure P23.49arrow_forward(a) What is the electric field 5.00 m from the center of the terminal of a Van de Graaff with a 3.00 mC charge, noting that the field is equivalent to that of a point charge at the center of the terminal? (b) At this distance, what force does the field exert on a 2.00 C charge on the Van de Graaff’s belt?arrow_forward
- Charges A, B, and C are arranged in the xy plane with qA = 5.60 C, qB = 4.00 C, and qC = 2.30 /C (Fig. P23.43). What are the magnitude and direction of the electrostatic force on charge B? Figure P23.43arrow_forwardThe infinite sheets in Figure P25.47 are both positively charged. The sheet on the left has a uniform surface charge density of 48.0 C/m2, and the one on the right has a uniform surface charge density of 24.0 C/m2. a. What are the magnitude and direction of the net electric field at points A, B, and C? b. What is the force exerted on an electron placed at points A, B, and C? FIGURE P25.47arrow_forwardA Figure P23.65 shows two identical conducting spheres, each with charge q, suspended from light strings of length L. If the equilibrium angle the strings make with the vertical is , what is the mass m of the spheres? Figure P23.65arrow_forward
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