Question

Image for In the figure, block A (mass 1.6 kg) slides into block B (mass 2.4 kg), along a frictionless surface. The direIn the figure, block A (mass 1.6 kg) slides into block B (mass 2.4 kg), along a frictionless surface. The directions of velocities before and after the collision are indicated; the corresponding speeds are vAi = 5.4 m/s, vBi = 2.0 m/s, and vBf = 4.5 m/s. What is velocity vAf (including sign, where positive denotes motion to the right)

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

Momentum before = Momentum after
(1.1)(5.6) + (2.9)(2.2) = (1.1)(vAf) + (2.9)(4.9)
I found vAf.
But when I calculated the kinetic energy before and after the collision, I got an increase in kinetic energy, as in : kinetic energy before collision < kinetic energy after collision.

Kinetic energy before collision:
(1/2)(1.1)(5.6)^2 + (1/2)(2.9)(2.2)^2 = 24.3 J.

Kinetic energy after collision, using vAf = -1.52, found when conserving momentum:
(1/2)(1.1)(-1.52)^2 + (1/2)(2.9)(4.9)^2 = 36.1 J

Add a comment
Know the answer?
Add Answer to:
In the figure, block A (mass 1.6 kg) slides into block B (mass 2.4 kg), along...
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
  • In the figure, block A (mass 1.2 kg) slides into block B (mass 2.7 kg), along...

    In the figure, block A (mass 1.2 kg) slides into block B (mass 2.7 kg), along a frictionless surface. The directions of velocities before and after the collision are indicated; the corresponding speeds are vAI = 5.7 m/s, vBi = 2.3 m/s, and vBf = 4.1 m/s. What is velocity vAf (including sign, where positive denotes motion to the right)? VB Units Number The number of siqnificant digits is set to 2; the tolerance is +/-3%

  • A 1.6 kg block slides along a frictionless surface at 1.0 m/s . A second block,...

    A 1.6 kg block slides along a frictionless surface at 1.0 m/s . A second block, sliding at a faster 4.4 m/s , collides with the first from behind and sticks to it. The final velocity of the combined blocks is 2.5 m/s . Part A What was the mass of the second block? Express your answer to two significant figures and include the appropriate units.

  • please be descriptive so i actually understand it. A 2.4 kg block slides along a frictionless...

    please be descriptive so i actually understand it. A 2.4 kg block slides along a frictionless surface at 1.3 in/s. A second block, sliding at a faster 4.2 m/s, collides with the first from behind and sticks to it. The final velocity of the combined blocks is 2.3 m/s. What was the mass of the second block? Express your answer to two significant figures and include the appropriate units.

  • A 1.3 kg block slides along a frictionless surface at 1.5 m/s . A second block,...

    A 1.3 kg block slides along a frictionless surface at 1.5 m/s . A second block, sliding at a faster 4.9 m/s , collides with the first from behind and sticks to it. The final velocity of the combined blocks is 2.0 m/s . What was the mass of the second block?

  • A 2.3 kg block slides along a frictionless surface at 1.0 m/s . A second block,...

    A 2.3 kg block slides along a frictionless surface at 1.0 m/s . A second block, sliding at a faster 4.1 m/s , collides with the first from behind and sticks to it. The final velocity of the combined blocks is 2.0 m/s . Part A) What was the mass of the second block?

  • In the figure, block 1 of mass m1 slides from rest along a frictionless ramp from...

    In the figure, block 1 of mass m1 slides from rest along a frictionless ramp from height h = 2.4 m and then collides with stationary block 2, which has mass m2 = 2m1. After the collision, block 2 slides into a region where the coefficient of kinetic friction μk is 0.2 and comes to a stop in distance d within that region. What is the value of distance d if the collision is (a) elastic and (b) completely inelastic?...

  • In the figure, block 1 of mass 2.00 kg slides from rest along a frictionless ramp...

    In the figure, block 1 of mass 2.00 kg slides from rest along a frictionless ramp from height h = 2.60 m and then collides with stationary block 2, which has mass 4.50 kg. The spring shown has a spring constant of 31.5 N/m. (a) How fast is block 1 moving just before contacting block 2? (b) Assume the whole path is frictionless, and the collision is completely inelastic, how far does the spring compress? (c) Now, assume you test...

  • Problem 9.41 Part A A 3.0-kg block slides along a frictionless tabletop at 8.0 m/s toward...

    Problem 9.41 Part A A 3.0-kg block slides along a frictionless tabletop at 8.0 m/s toward a second block (at rest) of mass 4.5 kg. A coil spring, which obeys Hooke's law and has spring constant k = 720 N/m , is attached to the second block in such a way that it will be compressed when struck by the moving block. (Figure 1) What will be the maximum compression of the spring? Express your answer using two significant figures...

  • 1- A block slides along a frictionless surface at 2.4 m/s. A second 3.5-kg block, sliding...

    1- A block slides along a frictionless surface at 2.4 m/s. A second 3.5-kg block, sliding at a faster 7.5 m/s, collides with the first from behind and sticks to it. The final velocity of the combined blocks is 4.6 m/s. What was the mass of the first block? 2-A 15 g ball of clay traveling west at 4 m/s collides with a 50 g ball of clay traveling 30° north of east at 3.5 m/s. What is the speed...

  • A 1.4 kg block slides along a frictionless surface at 1.1 m/s . A second block,...

    A 1.4 kg block slides along a frictionless surface at 1.1 m/s . A second block, sliding at a faster 4.3 m/s , collides with the first from behind and sticks to it. The final velocity of the combined blocks is 2.3 m/s . What was the mass of the second block?

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