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This behaviour is unlike fixed base structures as available in literature. 22, 42 To investigate this behaviour, further investigation was carried on into the platform motion with increasing mass ratio of the damper. Understandably, the motion of the platform increases when a heavier mass is placed on top of the tower.
Although conceptually simple, Scout II is a complex system exhibiting underactuated, highly nonlinear, inter-mittent dynamics. The complexity is further increased by TABLE I SCOUT II MECHANICAL PARAMETERS. Body Mass 21.65 kg Individual Leg Mass 0.97 kg Leg Spring Compliance 4.3 kN/m Body Length 0.837 m Leg Length 0.323 m Front Hip Width 0.498 m
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An investigation into chaotic responses of a weakly nonlinear multi-degree-of-freedom system is made. The specific system examined is a harmonically excited spring pendulum system, which is known to be a good model for a variety of engineering systems, including ship motions with nonlinear coupling between pitching and rolling motions. By the method of multiple scales the original ...
...simple harmonic motion with an amplitude A. Does the total energy change if the mass is Whether the total energy of an object-spring system changes if the mass is doubled but the Inquiry into Physics. What are the arguments for obtaining antioxidants from foods, supplements, or both? Calculate the atomic mass of each of the following elements using the given data for the percentage...
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For each measurement of the period T, determine the spring constant k using T = 2π (m/k)1/2. Note that in this equation m is the total mass attached to the spring. Average these 11 values for k together to get your spring constant value for Part II. Calculate the mean and the standard deviation of the mean for this k. QUESTIONS