Question

Thinkabout 35.3 Determine the decrease in total kinetic energy ΔΚΕ,otal of the two asteroids in 1 and 2 when they collide. If

sorry these statements follow up with whats stated for 35.3
Thinkabout 35.1 Two asteroids collide head-on and stick together. Before the collision, asteroid A (mass 1,000 kg) moved at 1
Thinkabout 35.2 Two asteroids identical to those in 1 collide at right angles and stick together. Collide at right angles m
0 0
Add a comment Improve this question Transcribed image text
Answer #1

35-1 combime the aztuod aftu collision 3000 к 8omlg L o 000 K Loo mm mital momumturn 3000x looox 1oo 6 0000 300035.3 com biud ooO 3 ivuctionm 00-3000 , scopesrceg θ = 33.33 1) 3000 X 80-3000 х.f. Sin θ ( 1リ (1, [11)2 mow on ut + 3 [33.33), 153. 33)? 62.88 い) 33.33 62.88 6 2.3835.1 35.3 cou934 fimal kEto tal l00o1 ス 2. (26) Jourl 1.08 x 1o nkE total totaMs twhur AT bt the cham R 05 x1o kg1.08 xIO AT1.456 35.3 35. 1 2 2000 (80) total 3000) (63.88) total = | 5.46 g x 10 5.469 x 10

Add a comment
Know the answer?
Add Answer to:
sorry these statements follow up with whats stated for 35.3 Thinkabout 35.3 Determine the decrease in...
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
  • 1. Two asteroids collide head-on and stick together. Before the collision, asteroid A (mass 1,000 kg)...

    1. Two asteroids collide head-on and stick together. Before the collision, asteroid A (mass 1,000 kg) moved at 100 m/s and asteroid B (mass 2,000 kg) moved at 80 m/s in the opposite direction. Use momentum conservation (make a complete Momentum chart) to find the velocity of the asteroids after the collision. 2. Two asteroids identical to those in (1) collide at right angles and stick together. "Collide at right angles" means that their initial velocities were perpendicular to each...

  • 4. Consider two asteroids with masses mi and m2 located in outer space far away from any external forces. m2 is initially stationary but mi travels horizontally to the right towards m2 with an initia...

    4. Consider two asteroids with masses mi and m2 located in outer space far away from any external forces. m2 is initially stationary but mi travels horizontally to the right towards m2 with an initial speed vo. Let's assume that after the collision the asteroids only move horizontally (in other words we'll assume this problem is purely 1-dimensional) a) Suppose the asteroids stick together after colliding. Find an expression for the final velocity of the asteroids and show that the...

  • Object A is moving due east, while object B is moving due north. They collide and...

    Object A is moving due east, while object B is moving due north. They collide and stick together in a completely inelastic collision. Momentum is conserved. Object A has a mass of mA = 16.8 kg and an initial velocity of = 7.37 m/s, due east. Object B, however, has a mass of mB = 29.0 kg and an initial velocity of = 5.03 m/s, due north. Find the (a) magnitude and (b) direction of the total momentum of the...

  • 10.0 points 003 A 7.65 g bullet is stopped in a 6.4 kg block of wood....

    10.0 points 003 A 7.65 g bullet is stopped in a 6.4 kg block of wood. The speed of the bullet-plus-wood combination immediately after the collision is 0.851 m/s. What was the original speed of the bullet? Answer in units of m/s. 10.0 points 004 Two cars, one of mass 1100 kg, and the second of mass 2100 kg, are moving at right angles to each other when they collide and stick to- gether. The initial velocity of the first...

  • Conservation of moment in two dimensions Mech HW-62 2. Two objects collide on a level, frictionless...

    Conservation of moment in two dimensions Mech HW-62 2. Two objects collide on a level, frictionless table. The mass of object A is 50 kg: the mass of object B is 3.0 kg. The objects stick together after the collision. The initial velocity of object A and the final velocity of both objects are shown. After collision Before collision BA (One side of a square represents 0.1 m/s) a. In the space provided, draw separate arrows for object A and...

  • A car with a mass of 980 kg is initially traveling east toward an intersection with...

    A car with a mass of 980 kg is initially traveling east toward an intersection with a speed of vc = 20.9 m/s and a 1500 kg pickup is traveling north toward the same intersection. The car and truck collide at the intersection and stick together. After the collision, the wreckage (car and truck) moves off in a direction of 44.0° above the x-axis. Determine the initial speed of the truck and the final speed of the wreckage in meters...

  • Two railway cars are on a straight railroad track. The first, with mass 8000 kg, moves...

    Two railway cars are on a straight railroad track. The first, with mass 8000 kg, moves slowly at a velocity of 0.05 m/s to the right in the direction of the second car of mass 15000 kg, which is stationary. (a) What is the total momentum (relative to the ground) of both cars together? kg m/s They collide and stick to each other. What is the total momentum right after the collision? For the short times involved, you can take...

  • Two disks collide with the initial velocities just before the collision as shown in (Figure 1).

    Learning Goal: To use the conservation of momentum and the coefficient of restitution to determine the speeds of two disks after a collision Two disks collide with the initial velocities just before the collision as shown in (Figure 1). What are the speeds of the two disks just after impact if the coefficient of restitution is e = 0.9? The masses of the disks are mA = 5 kg and mB = 7.5 kg, the initial velocities are vA = 3...

  • Two cars collide at an icy intersection and stick together afterward. The first car has a...

    Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1200 kg and was approaching at 6.00 m/s due south. The second car has a mass of 800 kg and was approaching at 21.0 m/s due west. (a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look...

  • Two cars collide at an icy intersection and stick together afterward. The first car has a...

    Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1250 kg and was approaching at 6.00 m/s due south. The second car has a mass of 900 kg and was approaching at 17.0 m/s due west. (a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look...

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