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Two small spheres each of mass 10 mg are suspended from a point by threads 0.5m long. They are equally charged and repel each other to distance of 0.28m. If g=10m/s^2, what is charge on each?
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Calculation of Charge on Small Spheres

Given Data:


  • Mass of each sphere = 10 mg = 10 x 10^-6 kg

  • Length of thread = 0.5 m

  • Distance between spheres = 0.28 m

  • Acceleration due to gravity (g) = 10 m/s^2



Calculation:


  • Let q be the charge on each sphere.

  • Since the spheres repel each other, the electrostatic force between them is given by Coulomb's law:

  • F = k * (q^2) / r^2

    Where k is Coulomb's constant and r is the distance between the spheres.
  • The gravitational force on each sphere is given by:

  • F = m * g

    Where m is the mass of each sphere and g is the acceleration due to gravity.
  • Since the spheres are in equilibrium, the electrostatic force must be equal and opposite to the gravitational force:

  • k * (q^2) / r^2 = m * g

  • Substituting the given values, we get:

  • k * (q^2) / (0.28)^2 = 10 * 10^-6 * 10

  • Rearranging and solving for q, we get:

  • q = sqrt((0.28)^2 * 10 * 10^-6 * 10 / k)

  • Substituting the value of Coulomb's constant k, we get:

  • q = sqrt((0.28)^2 * 10 * 10^-6 * 10 / (9 x 10^9))

  • Simplifying, we get:

  • q = 2.97 x 10^-7 C



Conclusion:


  • The charge on each small sphere is 2.97 x 10^-7 C.

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Two small spheres each of mass 10 mg are suspended from a point by threads 0.5m long. They are equally charged and repel each other to distance of 0.28m. If g=10m/s^2, what is charge on each?
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