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Published byJulianna Barton Modified over 9 years ago
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Newtonian Forces
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Tension is the pulling force away from an object usually by a string, rope, or cable Force is represented by mg ◦ M stands for the mass of the object ◦ G stands for the gravity constant on Earth (9.80 m/s 2 ) T -mg
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(down) m 2 g |a| Atwood Machine T T
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The difference in the weights makes the acceleration go up The sum of the weights makes the acceleration go down (m 2 + m 1 )a = (m 2 + m 1 )g Inertial mass = (m sys )a Gravitational mass = (m sys )g Inertial mass of the system ≠ gravitational mass of the system
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A new rope means you have two separate tensions T1T1 T1T1 T2T2
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Always acts against the motion θ θ mg || mg | -mg
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| F fr |= μ s N or | F fr |= μ k N ◦ Where μ s is the static friction constant and μ k ◦ is the kinetic friction constant ◦ μ k is like skating on ice Pure slippage ◦ μ s N is like rubber on concrete Very little motion
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| F fr |≤ μ s N ◦ The static friction has a maximum balancing force -mg sinθ mg sinθ θ
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