Exact(1)
Therefore, the second formulation for CS becomes bar{mathbf{Y}} = boldsymbol{Psi} bar{mathbf{X}} + bar{mathbf{Z}}, (17).
Similar(59)
In the second formulation, appropriate for ac and dc with long insulator strings, the residual resistance is considered as a resistance between two small circular conductors modeling two arc roots where the arcs are on air gaps formed near the high voltage and ground electrodes.
This second formulation allows for an underlying error rate regardless of the precision of the genotyping assay, which is similar to allowing a certain number of mismatches when using an exclusion method.
Next, we show that the scheme proposed for the second formulation outperforms the best of existing schemes for heterogeneous clusters, TORQUE and MCT, by up to 42%.
The second formulation is meta learning for imitation learning, where the task is specified through an expert demonstration of the task, and the agent needs to mimic the behavior of the expert to achieve good performance under new situations of the same task, as measured by the underlying objective of the expert (which is not directly given to the agent).
Therefore, we will use the second formulation in the following for our calculations.
Li et al. (2003) presented the first formulation of the adjoint method for three-phase flow problems and pointed out that the coefficient matrix of the adjoint equations is simply the transpose of the Newton Raphson Jacobian matrix used in a fully implicit reservoir simulator.
After the solution of the ILP-Mapping is found, the values of Xn,m,i are used as input for the second formulation, entitled the ILP-Image formulation.
In the first formulation, appropriate for dc with a small insulator string, the residual resistance is considered as a resistance between a small circular conductor where it models the arc root and the ground electrode.
However, this trial required a second insulin formulation for persistent hyperglycemia.
In the first formulation, an expression for the modal system loss factor is derived as the ratio of energy dissipated per cycle to the maximum strain energy during a cycle of harmonic motion, the modes of vibration being assumed to be the same as that of the base beam.
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