You have landed on an alien planet and because you have nothing better to do with your time, you have decided to do a physics experiment with a block. Your experiment is show above. A 60 kg block on a horizontal surface is attached to a rope. The normal force on the block is 378 N. The block is moving to the right, = 0.6, & the acceleration of the block is 5.22 m/s² to the right. Determine g (the free fall acceleration on this planet) & the tension in the rope. 9= FT =

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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter6: Applications Of Newton's Laws
Section: Chapter Questions
Problem 76P: The CERN particle accelerator is circular with a circumference of 7.0 km. (a) What is the...
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MY NOTES
ASK YOUR TEACHER
You have landed on an alien planet and because you have nothing better to do with your time, you have decided to do a physics experiment with a block. Your experiment is shown
above. A 60 kg block on a horizontal surface is attached to a rope. The normal force on the block is 378 N. The block is moving to the right, k = 0.6, & the acceleration of the block
is 5.22 m/s² to the right. Determine g (the free fall acceleration on this planet) & the tension in the rope.
g =
FT =
Transcribed Image Text:MY NOTES ASK YOUR TEACHER You have landed on an alien planet and because you have nothing better to do with your time, you have decided to do a physics experiment with a block. Your experiment is shown above. A 60 kg block on a horizontal surface is attached to a rope. The normal force on the block is 378 N. The block is moving to the right, k = 0.6, & the acceleration of the block is 5.22 m/s² to the right. Determine g (the free fall acceleration on this planet) & the tension in the rope. g = FT =
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