A solid disc with radius R is connected to spring at point (d) distance above the center of disc. The other end of the spring is fixed to the vertical wall. The dise is free to roll without slipping on the ground. The mass of disc is (M) and the spring constant is (K). The polar moment of inertia for disc about its center is = 1/2MR? , so the natural frequancy for the system is
A solid disc with radius R is connected to spring at point (d) distance above the center of disc. The other end of the spring is fixed to the vertical wall. The dise is free to roll without slipping on the ground. The mass of disc is (M) and the spring constant is (K). The polar moment of inertia for disc about its center is = 1/2MR? , so the natural frequancy for the system is
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:A solid dise with radius R is connected to spring at point (d) distance above
the center of disc. The other end of the spring is fixed to the vertical wall. The
disc is free to roll without slipping on the ground. The mass of disc is (M) and
the spring constant is (K). The polar moment of inertia for disc about its
center is = 1/2MR? , so the natural frequancy for the system is
M.J
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