For the system shown below, the link OK is rotating at an anular velocity of w = ; acceleration of a =oo0 rad/s", and subjected to moment of which are firmly attached to each other. The first rigid body has a mass ofg kg and center of gravity ID rad/s, angular 60000 N.m. There are two rigid bodies ID at G; while the other one has a mass of: kg and center of gravity at G2. Point H is attached to a cable as shown. Neglect the mass of link Ok and the mass of the cable. Calculate the tention in the cable and pin reactions at K when the link OK is in the position shown. Connection at O is pin. 200000 M 570000 ID 2100 ID ID 350000 170000 570000
For the system shown below, the link OK is rotating at an anular velocity of w = ; acceleration of a =oo0 rad/s", and subjected to moment of which are firmly attached to each other. The first rigid body has a mass ofg kg and center of gravity ID rad/s, angular 60000 N.m. There are two rigid bodies ID at G; while the other one has a mass of: kg and center of gravity at G2. Point H is attached to a cable as shown. Neglect the mass of link Ok and the mass of the cable. Calculate the tention in the cable and pin reactions at K when the link OK is in the position shown. Connection at O is pin. 200000 M 570000 ID 2100 ID ID 350000 170000 570000
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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