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Numerical comparisons between the model and theoretical results of Wilson and Holzer-Saxon are presented.
A comparative study has proved the effectiveness and veracity of the kinematic model and theoretical framework for predicting the trajectory.
The system model and theoretical framework for FAP considers the following setup as shown in Figures 1c,d. Figure 1 Illustration of different investigation scenarios.
The specific model and theoretical calculations are designed for the Pt(111) surface, because this is the only face that exhibits a clear first order phase transition.
The present model and theoretical analysis are intended to elucidate the life-cycle management, life evaluation and degradation-resistant design of the spool valve.
This paper is organized as follows: In the 'Methods' section, we describe the model and theoretical tools that we used to calculate the local density of states, transmission, and current voltage curves of the system.
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The experimental results were compared to semi-theoretical models and theoretical models proposed by other researchers.
Among them are debates over experimentation and intervention, concepts of chance, the nature of scientific models, and theoretical terms.
These excellent optical performances are calculated by using FDTD numerical modeling and theoretical deduction.
The models for FWC heat transfer in the presence of NCG can be divided into two categories: semi-theoretical models and theoretical models.
The results provide significant physical models and theoretical validity in designing the thermal devices based on the graphene nano-junctions.
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