Question
Consider a system containing an electron and a neutron. The electron has a mass m= 7.11 x 10^-31 kg and is traveling at a speed of V= 1200 m/s due south. The neutron has a mass m= 1.67 x 10^-27 kg and is traveling ar a speed V= 2.0 m/s due north.

own paper. Upload U SLUN UP LIEUR LULUJU Particles bills orbit a Consider a system containing an electron and a neutron. The
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Ve = me = goll 2 o 3 kg 1200 m/s I saith Up = Attro 2ml 1 sath north. of neuhon be (0,0) electron be co, 200m) mp=1.67 X2027Aften collision velocity of electron = 2Vem - Ve = 2x2.344 - (-2200) = a 1202.688 mis Velocity of posso nelson = 28cm - Up =

Add a comment
Know the answer?
Add Answer to:
Consider a system containing an electron and a neutron. The electron has a mass m= 7.11...
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
  • Two cars, both of mass m, collide and stick together. Prior to the collision, one car...

    Two cars, both of mass m, collide and stick together. Prior to the collision, one car had been traveling north at speed 2v, while the second was traveling at speed v at an angle ϕ south of east (as indicated in the figure). After the collision, the two-car system travels at speed vfinal at an angle θ east of north. (Figure 1) Find the speed vfinal of the joined cars after the collision. Express your answer in terms of v...

  • Two cars, both of mass m, collide and stick together. Prior to thecollision, one car had been traveling north at speed...

    Two cars, both of mass m, collide and stick together. Prior to the collision, one car had been traveling north at speed 2v, while the second was traveling at speed v at an angle phi south of east (asindicated in the figure). After the collision, the two-car system travels at speed v_final at an angle theta east of north.Part AFind the speed v_final of the joined cars after the collision.Express your answer in terms of v and phi.Part BWhat is...

  • An object (A) of mass m A = 29.0 kg is moving in a direction that...

    An object (A) of mass m A = 29.0 kg is moving in a direction that makes angle of 40° north of east with a speed v A = 5.10 m/s, while object (B) of mass m B = 17.5 kg is moving due north with a speed v B = 7.85 m/s. The two objects collide and stick together in a completely inelastic collision. Find the magnitude of the final velocity of the two-object system after the collision. An...

  • Two cars, both of mass m, collide and stick togetber. Prior to the collision, one car had been traveling north at speed 2v

    Two cars, both of mass m, collide and stick togetber. Prior to the collision, one car had been traveling north at speed 2v, while the second was traveling at speed u at an angle φ south of east (as indicated in the figure). After the collision, the two-car system travels at speed vfinal at an angle θ east of north.

  • An object (A) of mass mAA = 27.5 kg is moving in a direction that makes...

    An object (A) of mass mAA = 27.5 kg is moving in a direction that makes angle of 56° south of east with a speed vAA = 5.00 m/s, while object (B) of mass mBB = 17.5 kg is moving due north with a speed vBB = 8.00 m/s. The two objects collide and stick together in a completely inelastic collision. Find the magnitude of the final velocity of the two-object system after the collision.

  • Please help with BOTH parts [3] In a nuclear reaction, a proton (m, = 1.6726 x...

    Please help with BOTH parts [3] In a nuclear reaction, a proton (m, = 1.6726 x 10-25kg) and an electron (mass me = 9.11 x 10-51kg) collide and merge to form a neutron (mass m,- 1.6749 x 10-27kg), in a process known as inverse beta decay. (We are ignoring the effect of another particle called a neutrino that is also involved in the process.) (a) If the initial neutron and electron collide head-on as shown, what is the speed and...

  • Part A Find the speed Vfinal of the joined cars after the collision. Express your answer...

    Part A Find the speed Vfinal of the joined cars after the collision. Express your answer in terms of v and ϕ. Part B What is the angle theta with respect to north made by the velocity vector of the two cars after the collision? Express your answer in terms of phi. Your answer should contain an inverse trigonometric function. Two cars, both of mass m, collide and stick together. Prior to the collision, one car had been traveling north...

  • 8-14 positron-electron annihilation A positron et of mass m and kinetic energy K is annihilated on...

    8-14 positron-electron annihilation A positron et of mass m and kinetic energy K is annihilated on a target containing electrons e(same mass m) practically at rest in the laboratory frame: et(fast) +e-(at rest) → radiation a By considering the collision in the center-of- momentum frame (the frame of reference in which the total momentum of the initial particles is equal to zero), show that it is necessary for at least two gamma rays (rather than one) co result from the...

  • Puck A of mass 240-g is traveling due east with a speed, v_Ai=10 m/s, on a...

    Puck A of mass 240-g is traveling due east with a speed, v_Ai=10 m/s, on a level, frictionless air table when it collides with puck B of mass 160 g traveling at 40° south of west with a speed, v_Bi=15 m/s, on the same table. (See the diagram below.) When the pucks collide, they stick together via Velcro surfaces that line the circular boundaries of both pucks. Find the magnitude and direction of the momentum of the tandem of pucks...

  • Two cars approach an ice-covered intersection. One car, of mass 1.11*103 kg, is initially traveling north...

    Two cars approach an ice-covered intersection. One car, of mass 1.11*103 kg, is initially traveling north at 12.1 m/s. The other car, of mass 1.70*103 kg, is initially traveling east at 12.1 m/s. The cars reach the intersection at the same instant, collide, and move off coupled together. Find the velocity of the center of mass of the two-car system just after the collision. Magnitude= Directions = North of East

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