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When subjected to three-dimensional loading, the model material is observed to display a variety of responses.
The agreement of model calculations with the measured temperature course during self-heating of potatoes or model material is shown.
At high homologous temperatures, however, a pronounced GB softening and, moreover, a high strain-rate sensitivity of the model material is found.
Shadowing model material is a good example of this, able to play a role as a 'powerful motivator', since the goal is set by native speech, which most L2 learners undoubtedly perceive as ideal.
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The tests with the lead as the model material were carried out at relatively low strain rates.
Apart from the operational variables, frictional characteristics of model material were also found to affect the flow patterns and hence the drying kinetics.
The major feature of the prepared model materials is their systematic variation with respect to surface area located in micro– and meso/macropores.
Samples of model materials were cut into pieces of 4 cm2 area.
Model materials were selected for an investigation of reinforcement design parameters in architectured materials.
The efficiency of sterilization was confirmed after randomly chosen samples of model materials were incubated on Potato Dextrose Agar (PDA, BTL, Poland) at 28 °C.
The absorption coefficients of the scale-model materials were measured to fit the absorption characteristics of real vegetation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com