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Homogeneous deformation is not possible over the entire section of the specimen, because the grips prevent lateral deformation.
For freeze fracture and deep etching, the requirement for a larger specimen size precludes true vitrification throughout the specimen because the maximal cooling rate possible within the sample is limited by the rate of heat conduction through it.
It has been confirmed by many authors that the specific fracture energy of concrete determined by laboratory experiments depends on the shape and size of the specimen because the local energy in the fracture process zone is influenced by the free surface of the specimen.
No histological sample was taken from this specimen because the midshaft is not preserved.
No histological sample was taken from this specimen because the midshaft region is not preserved.
An important advantage of IC is the ability to quantify the number of tumour cells and normal cells in each specimen, because the total number of analysed cells defines the sensitivity of each individual investigation.
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A solution might be the cryogenic cooling of the specimen, because at 77 K the equilibrium pressure of MgH2 is reduced to 10−41 mbar, which is well below the hydrogen partial pressure of 10−10 mbar in the TEM.
The damage to the specimen because of the accumulated electron dose resulting from the many exposures puts a physical limit to the resolution that can be obtained by electron tomography.
In specimen taken by gastroduodenoscopy, the morphology of his upper gastrointestinal tract was normal, but a very low activity of lactase was found in the duodenal specimen (because of the small size of the specimen, the laboratory did not give any exact lactase value, but they could not detect any activity) [ 11].
Dr. Luo actually went to China to study the specimen because of the unusual number of thoracic and lumbar vertebrae (26, instead of the usual 20 found in most extinct and living mammals).
The results show that the maximum load of the proposed specimen with a 300 mm un-bonded length is increased by 15.8%, and the residual displacement was 9% smaller than that of the of the control specimen because of the un-bond length between concrete and SBFCB.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com