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Necessary and sufficient conditions for the essential uniqueness of the Julia operator of a given transformation are found.
Size and temperature dependent deformation mechanisms which control ultimately the B2 → BCT phase transformation are found to be completely different for tensile and compressive loadings.
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The optimal bacterial density for transformation was found to be at 0.8 OD.
In general, transformation was found to be dependent on the study temperature; increasing temperatures simultaneously result in increasing transformation rates.
Prior martensite transformation was found to accelerate the subsequent nanobainite transformation.
The transformation was found to be incomplete in both directions upon cooling and heating.
Upon resuming the cooling, the step-wise transformation was found to be unaffected.
For both thin film and bulk, a two-step B2 → R-phase → B19′ transformation was found.
The half-width of certain reflexes appearing at diffusive α γ transformation was found to be much smaller than at non-diffusive α γ transformation.
During prolonged electrolyzes, the transformation is found to be highly selective towards the production of propargyl aldehyde (PAL).
The specific heat capacity during phase transformation was found to be significantly sensitive to the heating/cooling rate.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com