Question
Plz solve this, I tried so many times i kept getting 0 or 6.5 and they were wrong, thank u in advance, rating will follow for sure!
Two small metallic spheres, each of mass m-0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle f 6 3.5 with the vertical. If each string has length L = 34.0 cm, what is the magnitude of the charge on each sphere? 6.5 Your response differs from the correct answer by more than 10%. Double check your calculations. nc
0 0
Add a comment Improve this question Transcribed image text
Answer #1

ne have 冫0. a5지.3k т: о.asa 0-3.5。 am r? s tonce2- r/크 Hence 0,000 4 3388433 1481S-61052 ใ 드 = 0.000000001158 c

Here the forces are being expressed by newton's law of motion. By solving them we will get the answer for the above question.

Add a comment
Know the answer?
Add Answer to:
Plz solve this, I tried so many times i kept getting 0 or 6.5 and they...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Two small metallic spheres, each of mass m= 0.25 g, are suspended as pendulums by light...

    Two small metallic spheres, each of mass m= 0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of 0 8.3o with the vertical. If each string has length L- 27.0 cm, what is the magnitude of the charge on each sphere? nC

  • Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 6.1° with the vertical. If each string has length L = 39.0 cm, what is the magnitude of the charge on each sphere? Give answer...

  • Two small metallic spheres, each of mass m-0.40 g, are suspended as pendulums by light strings...

    Two small metallic spheres, each of mass m-0.40 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 7.5° with the vertical. If each string has length L 28.0 cm, what is the magnitude of the charge on each sphere? nC

  • Two small metallic spheres, each of mass m-0.25 g, are suspended as pendulums by light strings...

    Two small metallic spheres, each of mass m-0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ-4.80 with the vertical. If each string has length L 38.0 cm, what is the magnitude of the charge on each sphere?

  • Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 4.8° with the vertical. If each string has length L = 38.0 cm, what is the magnitude of the charge on each sphere?

  • Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.25 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 7.7° with the vertical. If each string has length  L = 23.0 cm, what is the magnitude of the charge on each sphere?

  • Two small metallic spheres, each of mass m = 0.35 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.35 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 4.70 with the vertical. If each string has length L = 39.0 cm, what is the magnitude of the charge on each sphere? Your response...

  • Two small metallic spheres, each of mass m 0.40 g, are suspended as pendulums by light...

    Two small metallic spheres, each of mass m 0.40 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ 7.5° with the vertical. If each string has length L = 28.0 cm, what is t magnitude of the charge on each sphere? 0.0186e-8 X Your response...

  • Two small metallic spheres, each of mass m = 0.220 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.220 g, are suspended as pendulums by light strings of length L as shown in the figure below. The spheres are given the same electric charge of 6.6 nC, and they come to equilibrium when each string is at an angle of θ = 5.40° with the vertical. How long are the strings? Your response differs from the correct answer by more than 10%. Double check your calculations. m

  • Two small metallic spheres, each of mass m = 0.50 g, are suspended as pendulums by...

    Two small metallic spheres, each of mass m = 0.50 g, are suspended as pendulums by light strings from a common point as shown in the figure below. The spheres are given the same electric charge, and it is found that they come to equilibrium when each string is at an angle of θ = 4.0° with the vertical. If each string has length  L = 39.0 cm, what is the magnitude of the charge on each sphere? Thank you in...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT