8. An object (A) of mass m₁ = 29.5 kg is moving in a direction that makes angle of 36° south of west with a speed VA = 5.00 m/s, while object (B) of mass mB = 18.5 kg is moving due south with a speed VB = 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.
8. An object (A) of mass m₁ = 29.5 kg is moving in a direction that makes angle of 36° south of west with a speed VA = 5.00 m/s, while object (B) of mass mB = 18.5 kg is moving due south with a speed VB = 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.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter11: Collisions
Section: Chapter Questions
Problem 39PQ: Two objects collide head-on (Fig. P11.39). The first object is moving with an initial speed of 8.00...
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![8. An object (A) of mass m = 29.5 kg is moving in a direction that makes angle of 36° south of west with a speed
VA
5.00 m/s, while object (B) of mass m³ = 18.5 kg is moving due south with a speed VB = 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.
=
m/s
19 jjo?
1198](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa9d0517d-085e-40c6-8139-62d7919f2ba7%2Fe79aa7ef-2d70-4c63-846b-7755cf42bd27%2F2jp16wt_processed.png&w=3840&q=75)
Transcribed Image Text:8. An object (A) of mass m = 29.5 kg is moving in a direction that makes angle of 36° south of west with a speed
VA
5.00 m/s, while object (B) of mass m³ = 18.5 kg is moving due south with a speed VB = 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.
=
m/s
19 jjo?
1198
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