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Elastic and plastic behaviour have been studied for both isotropic and anistropic cases.
The heat transfer and fluid friction behaviour have been studied along with the thermohydraulic performance in terms of performance index which plays simultaneously both these criteria.
In particular, the copper distribution and the precipitation behaviour have been studied in situ during thermal cycling between 323 and 773 K.
The phase transition and microphase separation behaviour have been studied by means of differential scanning calorimetry, polarizing microscopy, depolarizing transmittance and X-ray diffraction measurements for a series of thermotropic liquid crystalline random copolyethers.
Composition dependences of the glass transition temperature (Tg), the molecular weight between entanglements (Me) and the thin film deformation behaviour have been studied in two series of methyl methacrylate-based random copolymers.
Two main dimensions of parenting behaviour have been studied: warmth and control.
Similar(50)
The effect of these holes on the low velocity impact behaviour has been studied.
The influence of oxygen and SO2 on the catalyst behaviour has been studied.
In this work, this special behaviour has been studied, including a brief review of the main bone remodelling models.
The antimicrobial behaviour has been studied for E. coli and S. aureus for up to 4 h of "dry" contact.
The deformation behaviour has been studied using both ex- and in situ nanoindentation and transmission electron microscopy.
More suggestions(17)
behaviour have been explored
behavior have been studied
behaviour have been investigated
behaviour have been evaluated
attitudes have been studied
behaviour have been applied
behaviour have been achieved
behaviour have been ramped
behaviour have been characterised
behaviour have been published
behaviour have been hampered
behaviour have been intensified
behaviour have been discussed
behaviour have been developed
behaviour have been described
behaviour have been proposed
behaviour have been recognized
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com