A mass mA = 1.8 kg , moving with velocity v⃗A = (3.4i + 6.0j − 2.0k) m/s , collides with mass mB = 5.0 kg , which is initially at rest. Immediately after the collision, mass mA = 1.8 kg is observed traveling at ′ˆˆ velocity v⃗ A = (−1.0 i + 3.2k) m/s . Find the velocity of mass mB after the collision. Assume no outside force acts on the two masses during the collision. Enter the x , y , and z components of the velocity separated by commas. Express your answer to two significant figures.

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A mass mA = 1.8 kg , moving with velocity v⃗A = (3.4i + 6.0j − 2.0k) m/s , collides with mass mB = 5.0 kg , which is initially at rest. Immediately after the collision, mass mA = 1.8 kg is observed traveling at ′ˆˆ velocity v⃗ A = (−1.0 i + 3.2k) m/s . Find the velocity of mass mB after the collision. Assume no outside force acts on the two masses during the collision. Enter the x , y , and z components of the velocity separated by commas. Express your answer to two significant figures.
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3A - Homework 8 (Chapter 9)
A mass m, = 2.0 kg, moving with velocity va = (5.0i + 5.8j – 1.4k) m/s, collides with mass mg = 3.6 kg, which is
initially at rest. Immediately after the collision, mass mA = 2.0 kg is observed traveling at velocity
VA = (-2.01 + 2.6k) m/s.
Part A
Find the velocity of mass mg after the collision. Assume no outside force acts on the two masses during the collision.
Enter the z, y, and : components of the velocity separated by commas. Express your answer to two significant
figures.
ANSWER:
m/s
->
+
6
Transcribed Image Text:18:46 l 4G A bartleby.com = bartleby E Q&A Sign in Science / Physics / Q&A Library / Problem 9.19 https:/... Problem 9.19 https://session.masteri... Start your trial now! First week only $4.99! Please help me, double and triple check your answers previous tutors got it wrong, please answer all parts Problem 9.19 hmps.session.masteringphysics.com/myctassignmentPrintviewtassignmeneD063371 3A - Homework 8 (Chapter 9) A mass m, = 2.0 kg, moving with velocity va = (5.0i + 5.8j – 1.4k) m/s, collides with mass mg = 3.6 kg, which is initially at rest. Immediately after the collision, mass mA = 2.0 kg is observed traveling at velocity VA = (-2.01 + 2.6k) m/s. Part A Find the velocity of mass mg after the collision. Assume no outside force acts on the two masses during the collision. Enter the z, y, and : components of the velocity separated by commas. Express your answer to two significant figures. ANSWER: m/s -> + 6
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