[5.] (15 pts) Two hard rubber spheres, each of mass m = 15.0 g, are rubbed with fur on a dry day and are then suspended with two insulating strings of length Z = 5.00 cm whose support points are a distance d= 3.00 cm from each other as shown in the figure. m L m During the rubbing process, one sphere receives exactly twice the charge of the other. They are observed to hang at equilibrium, each at an angle of 0=10.0° with the vertical. Find the amount of charge on each sphere.
[5.] (15 pts) Two hard rubber spheres, each of mass m = 15.0 g, are rubbed with fur on a dry day and are then suspended with two insulating strings of length Z = 5.00 cm whose support points are a distance d= 3.00 cm from each other as shown in the figure. m L m During the rubbing process, one sphere receives exactly twice the charge of the other. They are observed to hang at equilibrium, each at an angle of 0=10.0° with the vertical. Find the amount of charge on each sphere.
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![[5.] (15 pts)
Two hard rubber spheres, each of mass m = 15.0 g, are rubbed with fur on a dry day and are then suspended with two
insulating strings of length Z = 5.00 cm whose support points are a distance d= 3.00 cm from each other as shown in the
figure.
m
L
m
During the rubbing process, one sphere receives exactly twice the charge of the other. They are observed to hang at
equilibrium, each at an angle of 0=10.0° with the vertical.
Find the amount of charge on each sphere.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F11b6bb58-b235-4191-895d-f824011745f2%2F05e6067d-9e18-439f-b037-eec7ffed69a0%2Fk7bi8n5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:[5.] (15 pts)
Two hard rubber spheres, each of mass m = 15.0 g, are rubbed with fur on a dry day and are then suspended with two
insulating strings of length Z = 5.00 cm whose support points are a distance d= 3.00 cm from each other as shown in the
figure.
m
L
m
During the rubbing process, one sphere receives exactly twice the charge of the other. They are observed to hang at
equilibrium, each at an angle of 0=10.0° with the vertical.
Find the amount of charge on each sphere.
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