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The shape of the isotherm is similar in all of the studied materials.
The results obtained throw light on the optimum volumes and storage times of the studied materials.
The origin of negative capacitance is attributed to the inductive behavior of the studied materials.
The results signify the great potential of the studied materials for various advanced applications.
Measurements of the tensile strength of the studied materials show a considerable increment in comparison with pure aluminium.
The electrical resistivity of the studied materials reveals a semiconducting-like behaviour.
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% of the studied material, 10 wt.
This study evidenced the influence of the reinforcement orientation on endurance of the studied material.
Experimentally determined data are then used to analyze the fatigue susceptibility of the studied material.
Tribochemical interaction, abrasion and spalling were observed to be the predominant wear mechanisms in most of the studied material combinations.
Enhancement of the field on frequency ωAS takes place when the frequency difference 2ωp - ωS coincides with the frequency of molecular vibrations of the studied material.
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CEO of Professional Science Editing for Scientists @ prosciediting.com