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Based on our discussion in Section 'Line driver modeling', we study in this section class-G LDs with a set of internal charge pumps.
Using a combined ab initio density functional theory (DFT) and thermodynamic modeling, we study the stability of a variety of phases and the possible mechanism of the decomposition of the Al1−xSixNy solid solution and formation of nanocrystalline AlN/Si3N4 nanocomposites, which have been experimentally investigated in a number of recent publications.
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The system model we study is shown in Fig. 1.
For the model we study in this paper, we consider both horizontal and vertical transmission of the disease.
In an LTE compliant model, we study and propose a practical CoMP feedback design for different CoMP modes.
Based on the new model, we study conservation laws and the soliton solutions of the new equation.
Using a two-dimensional, incompressible magnetohydrodynamic (MHD) model, we study unsteady reconnection of antiparallel magnetic fields in the symmetric case.
Based on this time-dependent model, we study the resonant absorption properties when temperature gradients are significant.
By using this model, we study various discovery algorithms for locating data sets in a data grid system.
Taking the EAST ∗EEPAS model as the initial forecast model, we study the impact of highly noisy alarm-based models on the next-generation forecasts (Figure 3a).
To assess performance of the existing crosstalk cancelers on the proposed system model, we study characteristics of the equivalent CM-DM channel at each tone.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com