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Transmission electron microscopy observations have shown that plastic relaxation in the austenite adjacent to the bainite plates may control the final size of the bainitic ferrite plates.
Transmission electron microscopy observations have been performed on icosahedral Al Pd Mn quasi-crystal samples deformed at 20 °C under a high confining pressure.
Polarised light microscopy observations have revealed the existence of a skin/core structure, which is reduced with an increase in thickness and EC.
Also polarized light microscopy observations have revealed far-reaching residual strains extending beyond crack tips at impressions put into the (210) surface, thus giving additional evidence of the wedge-opening action of dislocation pile-ups.
Fluorescence microscopy observations have indicated that silicon-based QDs were present and accumulated in the hepatic tissue at all time intervals (1, 3, and 7 days) (Figure 1B,C,D).
The electron microscopy observations have shown that in the reverted austenite, additional sub-boundaries are formed by dislocations introduced during the cyclic γ-α and α-γ martensitic transformations.
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BF microscopy observation has revealed that the as-deposited MS-C20 binary LB film is found to emit intense red fluorescence over the whole film area by 540-nm excitation.
Additionally, fracture surfaces SEM observations, X-ray Diffraction (XRD) analyses, X-ray fluorescence (XRF), light microscopy (LM) and Transmission Electron Microscopy (TEM) observations have been done to understand mechanical properties variation revealed during mechanical testing.
Transmission electron microscopy (TEM) observations have been extensively applied to follow the route of luteovirids in their vectors.
Transmission electron microscopy (TEM) observations have shown that these anomalies are related to structural transformations from the parent cubic phase (P) to an intermediate cubic modulated phase (I) and from the I phase to the martensitic one (M).
The above light microscopic observations have also been confirmed by electron microscopy.
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