mass Friction less Pulley K L time M There is a mass Hanging from a rope. The rope then runs over a friction-less pulley

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mass Friction less Pulley K L time M There is a mass Hanging from a rope. The rope then runs over a friction-less pulley

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Mass Friction Less Pulley K L Time M There Is A Mass Hanging From A Rope The Rope Then Runs Over A Friction Less Pulley 1
Mass Friction Less Pulley K L Time M There Is A Mass Hanging From A Rope The Rope Then Runs Over A Friction Less Pulley 1 (25.68 KiB) Viewed 50 times
Mass Friction Less Pulley K L Time M There Is A Mass Hanging From A Rope The Rope Then Runs Over A Friction Less Pulley 2
Mass Friction Less Pulley K L Time M There Is A Mass Hanging From A Rope The Rope Then Runs Over A Friction Less Pulley 2 (21.34 KiB) Viewed 50 times
mass Friction less Pulley K L time M There is a mass Hanging from a rope. The rope then runs over a friction-less pulley before being attached to the end of a cantilever beam of length L. The rope makes an angle of to the horizontal as shown. There is a fixed support condition at the other end of the beam. The moment reaction at the support is denoted as "M". The mass = 33 kg
mass There is a mass hanging from a rope. The rope then runs over a friction-less pulley before being attached to the end of a cantilever beam of length L. The rope makes an angle of to the horizontal as shown. There is a fixed support condition at the other end of the beam. The moment reaction at the support is denoted as "M". The mass = 33 kg $ = 39 degrees L = 3.0 m What is the value of the reaction moment, M?
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