Two particle of mass m, = 1.0 g and m, = 2.0 g had a head-on collision and after collision the two moves together with the same velocity. If m, moves with velocity v = 3.0i – 2.0j and m, on the other hand moves with velocity v, = 4.0j – 6.0k , find the velocity of the formed particle (both the vector v and its modulus/magnitude), if the components of the vectors v, and v, are given in the SI units.
Two particle of mass m, = 1.0 g and m, = 2.0 g had a head-on collision and after collision the two moves together with the same velocity. If m, moves with velocity v = 3.0i – 2.0j and m, on the other hand moves with velocity v, = 4.0j – 6.0k , find the velocity of the formed particle (both the vector v and its modulus/magnitude), if the components of the vectors v, and v, are given in the SI units.
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 49P: An alpha particle (4He) undergoes an elastic collision with a stationary uranium nucleus (235U) ....
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![3.
LII yi .
4. Two particle of mass m, = 1.0 g and m, = 2.0 g had a head-on collision and after
collision the two moves together with the same velocity. If m, moves with velocity
v, = 3.0i – 2.0j and m, on the other hand moves with velocity v, = 4.0j – 6.0k , find the
velocity of the formed particle (both the vector v and its modulus/magnitude), if the
components of the vectors v, and v, are given in the SI units.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2f8c025e-1517-4420-88da-d939854a4935%2F371e21e5-e1fb-406c-ab31-2912e23b8ace%2F95y3ouk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3.
LII yi .
4. Two particle of mass m, = 1.0 g and m, = 2.0 g had a head-on collision and after
collision the two moves together with the same velocity. If m, moves with velocity
v, = 3.0i – 2.0j and m, on the other hand moves with velocity v, = 4.0j – 6.0k , find the
velocity of the formed particle (both the vector v and its modulus/magnitude), if the
components of the vectors v, and v, are given in the SI units.
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