Question

Consider two masses sliding across a frictionless surface about to undergo a head-on collision as shown in the figure. The fi

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

1)

m1v1-m2v2=-m1v

(3*8)-(5*V2)=-(3*2)

V2=6 m/s

2)

Impulse=m1(v-v1)=3*(2-8)=-18i kg.m/s

Add a comment
Know the answer?
Add Answer to:
Consider two masses sliding across a frictionless surface about to undergo a head-on collision as shown...
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
  • Consider two masses sliding across a frictionless surface about to undergo a head-on collision as shown...

    Consider two masses sliding across a frictionless surface about to undergo a head-on collision as shown in the figure. The first mass (m1 =3 kg) is travelling to the right with a speed of v1 = 8 m/s. The speed of the second mass (m2 = 5 kg) is unknown. After the masses collide, ma rebounds moving off at a speed of v = 2 m/s in the opposite direction, while mz is motionless. a)(10 pts.) At what velocity, v2...

  • The figure below show three masses m1=1.7 kg, m2=2.9 kg, and m3=4.5 kg which undergo two...

    The figure below show three masses m1=1.7 kg, m2=2.9 kg, and m3=4.5 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=7.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? (use figure in picture, but answer question above) The figure below show three...

  • The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg which undergo two...

    The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=8.2 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg...

  • Two blocks undergo a completely inelastic collision while sliding horizontally on a smooth surface. Before the...

    Two blocks undergo a completely inelastic collision while sliding horizontally on a smooth surface. Before the collision, block A is sliding to the right at 6 m/s whereas block B is sliding to the left at 17 m/s. The mass of block A is 8 kg and the mass of block B is 7 kg, calculate their post-collision speed

  • Two blocks have masses mi = 5 kg and m2 = 1 kg and speeds v1...

    Two blocks have masses mi = 5 kg and m2 = 1 kg and speeds v1 = 2 m/s and v2 = 5 m/s. The objects slide directly toward each other along a frictionless horizontal surface and collide. After the collision, block mi is at rest. (Hint: impulse, linear momentum conservation) a. What is the magnitude of the impulse, Jil, exerted on block mı during the collision? b. What is the magnitude of the impulse, 1J21, exerted on block me...

  • Problem 1 An object of mass m1 travels through empty space at a constant speed until...

    Problem 1 An object of mass m1 travels through empty space at a constant speed until it strikes and sticks to a second object. As observed from the frame where the second object is motionless, the first object was traveling at a speed of vi. In that same frame, both objects travel at a speed of v after the collision. a. What is the general expression for the mass of the second object in terms of mi, vi, and v?...

  • just need d and e. thank you 6. Consider a head-on collision between two pucks, T...

    just need d and e. thank you 6. Consider a head-on collision between two pucks, T = 0.5 kg and m = 0.3 kg in the image below. V2 The puck m, is initially travelling in the +x direction with velocity o, = +10m/s, and m, is initially travelling in the x direction with velocity = -3m/s. The two collide with a perfectly elastic collision along the x-direction. (a) What is the speed of the center of mass of the...

  • The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=6.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 co

  • The figure below show three masses m1=1.5 kg, m2=2.7 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.5 kg, m2=2.7 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=8.6 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 co

  • The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=6.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 3

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