Question

Let the red cart have a mass of 1 kg and an initial velocity of +10 m/s, and the blue cart have a mass of 3 kg and an initial
0 0
Add a comment Improve this question Transcribed image text
Answer #1

en m = 1kg U = 10 m/sec u tomkee V m/see. m₂ = 3kg Ikg 3kg In perfectly inelastiè collision, both the cart stick move with to

Add a comment
Know the answer?
Add Answer to:
Let the red cart have a mass of 1 kg and an initial velocity of +10...
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
  • Let the red cart have a mass of 1 kg and an initial velocity of +10...

    Let the red cart have a mass of 1 kg and an initial velocity of +10 m/s, and the blue cart have a mass of 3 kg and an initial velocity of -10 m/s. If the two carts experience an Elastic Collision, what will be the final velocity of the blue cart? Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: x10 Answer units Question 5 (0.2 points) In which type of collision is...

  • 2.5 m/s2.5 m/s Initial Velocity Initial Velocity 0 1 m/s 0 3 m/s Mass: 1 kg...

    2.5 m/s2.5 m/s Initial Velocity Initial Velocity 0 1 m/s 0 3 m/s Mass: 1 kg Mass: 3 kg Inelastic Case 2: Blue Cart Moving Slower than the Red Cart Set the initial blue cart velocity to less than the red cart velocity. Position the blue cart in the middle of the track. Use different mass values. Run the simulation and record the mass and velocity values. Before Collision After Collision m/s m/s m/s mRed kg m Blue kg Table...

  • 0 m/s 2 m/s Initial Velocity Initial Velocity 0 O m/s 2 m/s Mass: 2 kg...

    0 m/s 2 m/s Initial Velocity Initial Velocity 0 O m/s 2 m/s Mass: 2 kg Mass: 2 kg Elastic Case 1: Red and Blue Carts with Equal Mass Set the initial blue cart velocity to 0 m/s. Set the red and blue carts' mass values to the same value. Run the simulation and record the mass and velocity values. Before Collision After Collision Vred = m/s Vred = m/s Vblue = m/s mRed = kg m Blue = kg...

  • reset Collision Carts pause 0.4 m/s 1.6 m/s Initial Velocity Initial Velocity 2 m/s O m/s...

    reset Collision Carts pause 0.4 m/s 1.6 m/s Initial Velocity Initial Velocity 2 m/s O m/s Mass: 2 kg Mass: 3 kg Elastic Collision Inelastic Collision Explosion Again, set the initial blue cart velocity to 0 m/s. Now, set the red cart's mass value to be greater than the mass value of the blue car value. Run the simulation and record the mass and velocity values. Before Collision After Collision Vred = m/s Vred = m/s Vblue = m/s mRed...

  • Two small carts are set up on a horizontal track. Cart A (mass 0.6 kg )...

    Two small carts are set up on a horizontal track. Cart A (mass 0.6 kg ) sits at rest. Cart B (mass 1.3 kg ) moves to the right with a speed of 3 m/s , colliding with cart A. A) If the collision is perfectly elastic, what is the speed of cart A after the collision? B) If the collision is perfectly elastic, what's the speed of cart B after the collision? C) If the collision is perfectly inelastic,...

  • p mv 6. A 0.5 kg blue dynamics cart is moving with an initial velocity of...

    p mv 6. A 0.5 kg blue dynamics cart is moving with an initial velocity of -2 m/s when it collides with a 0.25 kg red dynamics cart. The red cart is initially moving with a velocity of +4 m/s. As a result of the collision, the blue dynamics cart has a final velocity of +0.8 m/s. What is the final velocity of the red cart? 7. Starting from rest, a 1600 kg car is subject to a net force...

  • Two carts are on a flat and frictionless track. Cart 1 has an initial velocity vti-+6...

    Two carts are on a flat and frictionless track. Cart 1 has an initial velocity vti-+6 m/s. Cart 2 has an initial velocity v2i +2 m/s. The two carts collide elastically. Cart 1 ends with a velocity of vif -+1 m/s and cart 2 ends with a velocity of v2f +3 m/s. a. What is the set of equation(s) that describes the final velocity(s) of a collision? b. What are the smallest masses that the carts can have that are...

  • PART 4: Collisions where the carts make contact but do not stick together 0.250 kg 0.250...

    PART 4: Collisions where the carts make contact but do not stick together 0.250 kg 0.250 kg 0.487 m/s 0.090 m/s Trial 7: In this part we will have the magnets of the blue Both carts same mass cart face the Velcro of the red cart. Because there are no magnets on the Velcro side of the red cart, we'll end up with the plastic of the blue cart hitting Total mass mb of blue cart the Velcro of the...

  • Two carts experience a completely inelastic collision. Before the collision, cart A, which has a mass...

    Two carts experience a completely inelastic collision. Before the collision, cart A, which has a mass of 1.00 kg, is traveling to the right at 7.00 m/s, while cart B, with a mass of 3.00 kg, is traveling to the left at 1.00 m/s. a) What is the velocity of the two carts after the collision? Define right as positive, so enter a negative value if you determine that the velocity is to the left. _______ m/s b) What percentage...

  • Explosion 2: Red Cart Less Massive than the Blue Cart <IMPORTANT>Set the initial velocities of both...

    Explosion 2: Red Cart Less Massive than the Blue Cart <IMPORTANT>Set the initial velocities of both carts to 0 m/s. Set the mass of the red cart to be the smaller mass. Run the simulation and record the mass and velocity values.</IMPORTANT> After Explosion Before Explosion m/s y = At Rest. m Blue AMomentum mRed _kg Use mass and velocity values to complete the following momentum table. Before Explosion After Explosion _kg x kg x Red Cart kg•m/s kg•m/s m/s...

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