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metals is presented.
A new approach to predict athermal martensite formation in metals is presented.
A new analytical model for predicting the fatigue life of metals is presented.
In this paper a modelling of friction welding of elastic materials with elastic plastic metals is presented.
A numerical fitting procedure for developing embedded-atom-method (EAM) potentials for pure fcc and bcc metals is presented in this paper.
Corrosion fatigue in metals is presented as the result of the combined interaction of mechanical stress and stress-corrosion velocity caused by the aggressive environment.
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Several examples of such clusters of semiconductors and metals are presented.
In this paper the additional features of the model such as the possibility to simulate supercritical water and liquid metals are presented.
The results of the first steps in the design of coordination polymers based on penta- and heptacyanometallates of heavier d transitions metals are presented.
In recent times, a new production way based on the thermal decomposition of C60 in the presence of transition metals was presented [19, 20].
The mean concentrations of essential and non-essential metals are presented in Table 2 for the samples digested by the three different digestion methods.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com