A helium atom (m = 6.6465 x 10-27 kg) collides elastically with an oxygen atom (m = 2.6560 x 10-26 kg) at rest. After the collision, the helium atom is observed to be moving with a velocity of 6.636 x 106 m/s in a direction at an angle of 84.7 relative to its original direction. The oxygen atom is observed to move at an angle of -40.4 Find the speed of the oxygen atom
A helium atom (m = 6.6465 x 10-27 kg) collides elastically with an oxygen atom (m = 2.6560 x 10-26 kg) at rest. After the collision, the helium atom is observed to be moving with a velocity of 6.636 x 106 m/s in a direction at an angle of 84.7 relative to its original direction. The oxygen atom is observed to move at an angle of -40.4 Find the speed of the oxygen atom
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![A helium atom (m = 6.6465 x 10-27 kg) collides elastically with an oxygen atom (m = 2.6560
x 10-26 kg) at rest. After the collision, the helium atom is observed to be moving with a
velocity of 6.636 x 106 m/s in a direction at an angle of 84.7 relative to its original
direction. The oxygen atom is observed to move at an angle of -40.4° Find the speed of
the oxygen atom](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F66dd4ef3-a176-4e7b-b1e9-78992de62e58%2Fd054b205-3a5d-462f-a253-8e40dee82f0f%2F2r3nhf4_processed.png&w=3840&q=75)
Transcribed Image Text:A helium atom (m = 6.6465 x 10-27 kg) collides elastically with an oxygen atom (m = 2.6560
x 10-26 kg) at rest. After the collision, the helium atom is observed to be moving with a
velocity of 6.636 x 106 m/s in a direction at an angle of 84.7 relative to its original
direction. The oxygen atom is observed to move at an angle of -40.4° Find the speed of
the oxygen atom
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