1) A block (mass mi) can move horizontally on a smooth surface. A homogeneous rod (mass m2) is connected to the block by a pin. The rod is displaced from its equilibrium position and then released. Find the equations of motion for the special case mi = m2. (mi is the last two digits of the student number for example if student ID is 102560332 then m-32 kg. If the last two digits of the student number is 00 then m-12 kg) m1 2a m2
1) A block (mass mi) can move horizontally on a smooth surface. A homogeneous rod (mass m2) is connected to the block by a pin. The rod is displaced from its equilibrium position and then released. Find the equations of motion for the special case mi = m2. (mi is the last two digits of the student number for example if student ID is 102560332 then m-32 kg. If the last two digits of the student number is 00 then m-12 kg) m1 2a m2
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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