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By using Hamilton's principle, the governing equations of motion and corresponding boundary condition equations are derived.
The important result was the relationship between camera's 3D motion and corresponding image velocities with stereo constraints.
Using the nonlocal elasticity theory and Hamilton's principle, the nonlinear differential equations of motion and corresponding boundary conditions are derived.
The equation of motion and corresponding boundary conditions are derived using Hamilton's principle and presented in the dimensionless form.
The Hamilton's principle is utilized to derive the size-dependent nonlinear equations of motion and corresponding boundary conditions based on the Euler Bernoulli beam model, the von Kármán type nonlinearity and the nonlocal strain gradient theory.
Based on the nonlocal strain gradient theory (NLSGT) in conjunction with the first order shear deformation beam theory (FSDBT) and Hamilton's principle, governing equations of motion and corresponding boundary conditions were obtained.
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Using this task, a training dataset of motions and corresponding descriptive texts can thus be collected.
Through this simple task, a training data set of motions and corresponding descriptive sentences can be collected.
The basic compensation time or ratio is acquired by analyzing the relationship between practical human motions and corresponding virtual human motions.
In this study, I created a training dataset of motions and corresponding texts describing those motions by assigning a variety of text phrases to human bodily motions via crowdsourcing [15].
Fig. 3 Real measured motion error and corresponding residual RCMC envelope error.
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