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The present findings are supported by a recent theoretical report for calculated enthalpy curves with different fragilities from a model of selenium using the enthalpy landscape approach.
This manuscript describes a theoretical report on the optimum design key parameters of an intracavity frequency doubled end-pumped solid-state laser based on the combination of space-dependent rate equations and nonlinear coupled-wave analysis of second-harmonic generation.
At least one "theoretical" report of mathematical models on the path of macrophages from blood and their potential as vehicles for drug delivery was previously reported [13].
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We report characteristics of observed waves and compare the results with existing theoretical reports.
There are published theoretical reports on modelling edge-effects in polishing, one studying the parametric tool influence functions [5].
The results show that the cation exchange capacities are 60.5 and 57.2 mEq/100 g, which are below the theoretical reported values.
Our results demonstrate a strong influence of both parameters on the SFE, in agreement with previous experimental and theoretical reports.
Additionally, we have noticed that there are some theoretical reports [31, 32] related to the size-dependent surface energy and interface energy.
Until now, there are numerous experimental and theoretical reports for the thermal conductivity and the viscosity of a variety of nanofluids [6, 7, 8, 9, 10, 11, 12].
We find the relaxed lattice parameters (a = b = 7.14 Å) of the pure gh-C3N4 agree well with the previous experimental and theoretical reports [40, 45].
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