Question

Problem: A spaceship of mass 1.9×106 kg is cruising at a speed of 6.0×106 m/s when...

Problem: A spaceship of mass 1.9×106 kg is cruising at a speed of 6.0×106 m/s when the antimatter reactor fails, blowing the ship into three pieces. The first piece, having a mass of 4.9×105 kg , is blown straight backward with a speed of 2.5×106 m/s . A second piece, with mass 7.5×105 kg , continues forward at 1.0×106 m/s. Q: What is the speed of the third piece?

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

Since explosion is only in one direction and there is no external force applied, So

Using momentum conservation:

Pi = Pf

M*V = m1*v1 + m2*v2 + m3*v3

v3 = (M*V - m1*v1 - m2*v2)/m3

M = 1.9*10^6 kg, m1 = 4.9*10^5 kg, m2 = 7.5*10^5 kg, So

m3 = M - m1 - m2 = 1.9*10^6 - 4.9*10^5 - 7.5*10^5

m3 = 6.60*10^5 kg

Now Using given values:

v3 = (1.9*10^6*6.0*10^6 - 4.9*10^5*(-2.5*10^6) - 7.5*10^5*(1.0*10^6))/(6.60*10^5)

v3 = 18.0*10^6 m/sec = speed of the third piece

Please Upvote.

Add a comment
Know the answer?
Add Answer to:
Problem: A spaceship of mass 1.9×106 kg is cruising at a speed of 6.0×106 m/s when...
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
  • A spaceship of mass 2.0×106 kg is cruising at a speed of 4.9×106 m/s when the...

    A spaceship of mass 2.0×106 kg is cruising at a speed of 4.9×106 m/s when the antimatter reactor fails, blowing the ship into three pieces. One section, having a mass of 4.6×105 kg , is blown straight backward with a speed of 2.1×106 m/s . A second piece, with mass 8.2×105 kg , continues forward at 1.3×106 m/s . What is the speed of the third piece?

  • A spaceship of mass 2.3×106 kg is cruising at a speed of 6.0×106 m/s when the antimatter reactor fails, blowing the ship...

    A spaceship of mass 2.3×106 kg is cruising at a speed of 6.0×106 m/s when the antimatter reactor fails, blowing the ship into three pieces. One section, having a mass of 4.7×105 kg , is blown straight backward with a speed of 2.2×106 m/s . A second piece, with mass 7.9×105 kg , continues forward at 1.3×106 m/s .

  • A spaceship of mass 1.90×106 kg is cruising at a speed of 4.60×106 m/s when the...

    A spaceship of mass 1.90×106 kg is cruising at a speed of 4.60×106 m/s when the antimatter reactor fails, blowing the ship into three pieces. One section, having a mass of 4.60×105 kg , is blown straight backward with a speed of 2.30×106 m/s . A second piece, with mass 8.20×105 kg , continues forward at 1.20×106 m/s . What is the speed of the third piece?

  • A spaceship of mass 2.2×106 kg is cruising at a speed of 5.6×106 m/s when the...

    A spaceship of mass 2.2×106 kg is cruising at a speed of 5.6×106 m/s when the antimatter reactor fails, blowing the ship into three pieces. One section, having a mass of 5.1×105 kg , is blown straight backward with a speed of 1.8×106 m/s . A second piece, with mass 7.6×105 kg , continues forward at 1.3×106 m/s . What is the speed of the third piece?

  • Review Constants 1 Periodic Part A A spaceship of mass 2.0x10 kg is cruising at a...

    Review Constants 1 Periodic Part A A spaceship of mass 2.0x10 kg is cruising at a speed of 4.1x10 m/s when the antimatter reactor fails, blowing the ship into three pieces. The first piece, having a mass of 5.0x10kgis blown straight backward with a speed of 2.1x10 m/s. A second piece, with mass 8.5x10 kg. continues forward at 1.1x10 m/s What is the speed of the third piece? Express your answer using three significant figures and include the appropriate units....

  • A spaceship with a mass of 5.50 104 kg is traveling at 6.16 103 m/s relative...

    A spaceship with a mass of 5.50 104 kg is traveling at 6.16 103 m/s relative to a space station. What mass will the ship have after it fires its engines in order to reach a speed of 7.78 103 m/s? Assume an exhaust velocity of 4.69 103 m/s.

  • A) An electron is moving at a speed of 8.0 x 106 m/s. if the uncertainty...

    A) An electron is moving at a speed of 8.0 x 106 m/s. if the uncertainty in measuring the speed is 1.0 percent of the speed, calculate the uncertainty in the electron's position. the mass of the electron is 9.1094 x 10-31 kg.

  • 5) Fred (mass 60 kg) is running with the football at a speed of 6.0 m/s...

    5) Fred (mass 60 kg) is running with the football at a speed of 6.0 m/s when he is met head-on by Brutus (mass 120 kg), who is moving at 4.0 m/s. Brutus grabs Fred in a tight grip, and they fall to the ground. Which way do they slide and how far? The coefficient of kinetic friction between football uniforms and the ground is 0.30.

  • A softball of mass 0.220 kg that is moving with a speed of 6.5 m/s (in...

    A softball of mass 0.220 kg that is moving with a speed of 6.5 m/s (in the positive direction) collides head-on and elastically with another ball initially at rest. Afterward it is found that the incoming ball has bounced backward with a speed of 4.3 m/s. (a) Calculate the velocity of the target ball after the collision. m/s (b) Calculate the mass of the target ball. kg

  • An object, with mass 93 kg and speed 23 m/s relative to an observer, explodes into...

    An object, with mass 93 kg and speed 23 m/s relative to an observer, explodes into two pieces, one 3 times as massive as the other; the explosion takes place in deep space. The less massive piece stops relative to the observer. How much kinetic energy is added to the system during the explosion, as measured in the observer's reference frame

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