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Full Record for Micrograph 481
https://www.doitpoms.ac.uk/miclib/full_record.php?id=481Length bar. 200 μm. Further information. As cast copper rich bronze showing copper dendrites in a matrix of a (copper) and b phases. -
Full Record for Micrograph 485
https://www.doitpoms.ac.uk/miclib/full_record.php?id=485Length bar. 200 μm. Further information. An good example of dendritic solidification, which occurs when the solidification front becomes unstable with respect to small perturbations. -
Full Record for Micrograph 627
https://www.doitpoms.ac.uk/miclib/full_record.php?id=627Length bar. 200 μm. Further information. This is an image of part of the crater on the impact side of the laminate. -
Full Record for Micrograph 676
https://www.doitpoms.ac.uk/miclib/full_record.php?id=676Length bar. 200 μm. Further information. 15% chromite - main phase magnesia with resolved spinel at boundary. -
Full Record for Micrograph 730
https://www.doitpoms.ac.uk/miclib/full_record.php?id=730Length bar. 200 μm. Further information. This RZ5 alloy is from an actual cast specimen. -
Full Record for Micrograph 732
https://www.doitpoms.ac.uk/miclib/full_record.php?id=732Length bar. 200 μm. Further information. This micrograph shows the ductility of magnesium under tensile loading, manifested by elongated grains parallel to the applied loading. -
Full Record for Micrograph 193
https://www.doitpoms.ac.uk/miclib/full_record.php?id=193Length bar. 200 μm. Further information. This micrograph is of a specimen which has been pressed from either side during fabrication, with the bright graphite flakes appearing edge on. -
Full Record for Micrograph 194
https://www.doitpoms.ac.uk/miclib/full_record.php?id=194Length bar. 200 μm. Further information. This micrograph is of a specimen which has been pressed parallel with your nose (into the screen) during fabrication, with the bright graphite flakes appearing -
Full Record for Micrograph 180
https://www.doitpoms.ac.uk/miclib/full_record.php?id=180Length bar. 200 μm. Further information. Oven-to-tableware ceramics have a low coefficient of thermal expansion, and therefore a high resistance to thermal shock, which makes them suitable for use -
Full Record for Micrograph 853
https://www.doitpoms.ac.uk/miclib/full_record.php?id=853Length bar. 200 nm. Further information. These colloidal particles (PMMA) are synthesized by polymerizing methyl-methacrylate, and have a nominal diameter of 120 nm.
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