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The morphology of Type B paleosols suggests they were formed in well-drained floodplain deposits on stable landforms.
The fibre structure of engineered matrix that mimic the morphology of type I collagen has exhibited good biological performance for bone regeneration.
As time progressed, larger numbers of immature hair cells could be seen along with some mature cells resembling surface morphology of type II hair cells.
The morphology of Type C paleosols suggests that they developed periodically rather than seasonally in poorly-drained deposits that nevertheless occupied a relatively stable part of the landscape such as the plains flanking ephemeral lakes or sabkhas.
All the concretes show high thermal conductivity and are good candidates for an efficient thermal storage unit, but the performances of type B concretes are better than those of type A. Moreover, the morphology of type B concretes appears compact and less cracked, even after thermal treatment at temperature higher than 300 °C.
Some positive alveolar epithelial cells had the morphology of type II pneumocytes.
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Atomic coordinates from reconstructed morphology of type-A nanocrystals.
Atomic coordinates from reconstructed morphology of type-B nanocrystals.
Atomic coordinates from symmetric morphology of type-A nanocrystals used for the HRSTEM image simulation procedure.
Atomic coordinates from symmetric morphology of type-B nanocrystals used for the HRSTEM image simulation procedure.
Video illustrating the reconstructed 3-D morphology of type-a nanocrystals and its comparison to the original images.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com