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In fact, the AFM analyses in connection with transmission electron microscopy analyses allow to conclude that the Au film is formed by three-dimensional nanometric grains that grows as "normal grains" for thickness in the 0.33 nm.
In addition, we also observed that young embryos (10 days after pollination) in the abnormal grains derived from the self-pollinated Ospie1-1 and Ospie1-2 heterozygous plants were much smaller than the embryos in the normal grains of WT plants.
Most discoloured (bleached) spikelets produced normal grains.
CSSL50-1 displays high chalkiness under normal field conditions whereas its parental line Asominori has normal grains.
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Otherwise normal grain growth occurs.
Bubbles were observed on low-angle grain boundaries but not on normal grain boundaries.
Further annealing results in a transient recrystallization followed by a normal grain growth.
The classical mean field approach for normal grain growth in polycrystalline materials is revisited.
The kinetics and thermodynamics of normal grain growth can be linked by two open questions.
Two different models for the simulation of normal grain growth in metals and alloys are presented.
After limited normal grain growth both the cube and the A component were strengthened.
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