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The analytical formulation presented here is for the prediction of the performance of a solid-state lithium anode/lithium-insertion cathode cell that is limited by solid-state diffusion in the cathode active material.
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This analytical formulation is presented and its predictive performance is assessed.
Analytical formulation was presented for minimum reinforcement ratio and verified with experimental results.
For seismic loading a new analytical formulation is presented which provides the complete solution for the ground and the liner system for both dry and saturated ground conditions.
In the framework of linear elastic continuum mechanics, an analytical formulation is presented for the axisymmetric axial interaction of a rigid disk in frictionless contact with the face of a penny-shaped crack in a transversely isotropic solid.
Two original analytical formulations are presented which explicitly give the depths and extents of symmetric profile modifications minimising the fluctuations of quasi-static transmission error in narrow-faced spur and helical gears.
The modelling approach and formulation presented provide a valuable analytical tool for the optimisation of the spatial LC-bioethanol supply chain.
The purpose of this section is to verify the proposed formulation presented in Sect. 3 for simple problems where analytical solutions are existed in the literature.
The model is validated using both experimental results available in the literature and simplified analytical formulations recently presented by the authors in a previous paper.
A practical analytical formulation is herein presented to provide an accurate calculation tool for these cases.
A unified mixed, higher-order analytical formulation has been presented in this paper to predict general buckling as well as wrinkling of a general multi-layer, multi-core sandwich plate having any arbitrary sequence of stiff layers and cores.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com