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Using the Galerkin's method, the equation of motion is reduced to a time-dependent Mathieu equation.
The order of equations of motion is reduced using modal reduction method.
Thanks to this approach, high stabilization capabilities are obtained while the impact on the longitudinal motion is reduced.
Using the standard Galerkin procedure, the equation of motion is reduced to a set of ordinary differential equations.
With use of the Galerkin procedure the equation of motion is reduced to an equation for the time function.
After that, the microscopic scale vibration excited by the large-scale motion is reduced through the trajectory planning approach.
Similar(39)
Hip sagittal motion was reduced in both patients.
Knee motion was reduced, with a passive range of motion from full extension to 50° flexion.
Respiratory motion was reduced by imaging the animals in the supine position and with respiratory trigger.
Thus, the 3D elasticity equations of motion are reduced to 2D equations involving circumferential harmonics.
The governing equations of motion are reduced and solved by assumed mode model.
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