Question

One end of a cord is fixed and a small 0.550-kg object is attached to the other end, where it swings in a section of a verticOne end of a cord is fixed and a small 0.550-kg object is attached to the other end, where it swings in a section of a vertical circle of radius 1.00 m, as shown in the figure below. When θ = 30.0°, the speed of the object is 6.50 m/s.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

T 19 Newtanys zudlan Ef = mac muz T-mg Cono = T = m( 12 + g copo) T=27.9054N 6 at - F E = m - gsmo (9.8) Sm 309 z 14.9 m/s2 a

Please rate

if any mistake in this answer please comment i will clarify your doubt . thank you

Add a comment
Know the answer?
Add Answer to:
One end of a cord is fixed and a small 0.550-kg object is attached to the...
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
  • One end of a cord is fixed and a small 0.600 kg object is attached to...

    One end of a cord is fixed and a small 0.600 kg object is attached to the other end, where it swings in a section of a vertical circle of radius 2.00 m as shown in the figure below. When 9 = 26.0 degree, the speed of the object is 8.10 m/s. At this instant, find each of the following. (b) the tangential and radial components of acceleration ar = m/s^2 inward at = m/s^2 downward tangent to the circle...

  • One end of a cord is fixed and a small 0.700-kg object is attached to the...

    One end of a cord is fixed and a small 0.700-kg object is attached to the other end, where it swings in a section of a vertical circle of radius 3.00 m, as shown in the figure below. When θ = 15.0°, the speed of the object is 5.50 m/s. a. At this instant, find the magnitude of the tension in the string. b. At this instant, find the tangential and radial components of acceleration. c. At this instant, find...

  • 6. One end of a cord is fixed and a small 0.750-kg obiect is attached to...

    6. One end of a cord is fixed and a small 0.750-kg obiect is attached to the other end, where it swings in a section of a vertical circle of radius 2.50 m as shown in the figure below. When 0 28 speed of the object is 4.50 m/s. At this instant, find each of the following. a) (5 points) the tension in the string b) (5 points) the tangential and radial components of the acceleration c) (5 points) the...

  • One end of a cord is fixed and a 0.5 kg object is attached to the...

    One end of a cord is fixed and a 0.5 kg object is attached to the other end, where it swings in a vertical circular motion of radius 2 m. When the angle is 20 degree, the speed of the object is 8 m/s. At this instant find the tension in the string, and the radial acceleration.

  • An object with a mass of m - 4.80 kg is attached to the free end...

    An object with a mass of m - 4.80 kg is attached to the free end of a light string wrapped around a reel of radius R - 0.275 m and mass of M 3.00 kg. The reel is a solid disk, free to rotate in a vertical plane about the horizontal axis passing through its center as shown in the figure below. The suspended object is released from rest 6.80 m above the floor. (a) Determine the tension in...

  • A 12.0 kg object is attached to a cord that is wrapped around a wheel of...

    A 12.0 kg object is attached to a cord that is wrapped around a wheel of radius 10.0 cm. The acceleration of the object down the frictionless incline is measured to be 2.00 m/s2. Assuming the axis of the wheel to be frictionless, determine a) the tension in the rope, b) the moment of inertia of the wheel, and c) the angular speed of the wheel 2.00 s after it begins rotating, starting from rest. A 12.0 kg object is...

  • One end of a 0.80 m string is fixed, the other end is attached to a...

    One end of a 0.80 m string is fixed, the other end is attached to a 2.0-kg stone. The stone swings in a vertical circle, passing the bottom point at 10 m/s. What is the radial acceleration of the stone at the top of the circle? (Ans: 86 m/s2)

  • A small block with a mass of 0.0600 kg is attached to a cord passing through...

    A small block with a mass of 0.0600 kg is attached to a cord passing through a hole in a frictionless, horizontal surface (Figure 1). The block is originally revolving at a distance of 0.49 m from the hole with a speed of 0.77 m/s . The cord is then pulled from below, shortening the radius of the circle in which the block revolves to 9.0×10−2 m . At this new distance, the speed of the block is 4.19 m/s...

  • Circle answers please An object with a mass of m = 5.5 kg is attached to...

    Circle answers please An object with a mass of m = 5.5 kg is attached to the free end of a light string wrapped around a reel of radius R = 0.275 m and mass of M = 3.00 kg. The reel is a solid disk, free to rotate in a vertical plane about the horizontal axis passing through its center as shown in the figure below. The suspended object is released from rest 6.40 m above the floor. M...

  • A 0.40 kg ball, attached to the end of a horizontal cord, is rotated in a...

    A 0.40 kg ball, attached to the end of a horizontal cord, is rotated in a circle of radius 1.5 m on a frictionless horizontal surface. If the cord will break when the tension in it exceeds 63 N, what is the maximum speed the ball can have?

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
ADVERTISEMENT