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In this study, a comprehensive experimental program is conducted to investigate the sample size effect associated with shear banding and specimen boundary conditions on the consolidation, drained and undrained shear behavior of very loose Ottawa sand specimens.
Due to the very small size of the sample and the very large amount of calcium oxalate identified by FTIR, it was decided not to investigate the sample using GC MS.
Descriptive statistics were applied to investigate the sample characteristics.
For this case we investigate the sample size issue in the following section.
A simple analysis was carried out, to investigate the sample size required to attain 80% power to detect a statistically significant difference, at p < 0.05, using an Mx script example 3 [see additional file 4].
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Scanning electron microscopy, X-ray diffraction, and positron annihilation spectroscopy were used to investigate the samples.
FTIR and Raman spectroscopy were employed to investigate the samples taken from these locations.
Transmission electron microscopy (TEM, Tecnai G2 F20 S-Twin, FEI Company, Hillsboro, OR, USA) was conducted to investigate the samples' morphology.
We also investigate the sampling performance of the CRF model with respect to the number of conformation states.
Here we investigated the sample quality requirements of FFPE tissues for massively parallel short-read sequencing approaches.
We investigated the sample size requirement of this approach and the cost-effectiveness under different scenarios.
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