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Burrow systems of earthworms contained in artificial cores were analysed through X-ray computed tomography and 3D skeleton reconstructions.
Cores were analysed using Silviscan® III Evanss 2006), an automated suite of instruments that provide quantitative measures of wood density by X-ray densitometry and of microfibril angle by X-ray diffraction.
The activities of 137Cs and 210Pbex at different depths, clay (grain size < 5 μm) contents, and sedimentary organic carbon (SOC) contents in the cores were analysed with reference to human activity and environmental change in the catchment.
Tissue slides were scanned with a Nanozoomer (Hamamatsu, Herrsching am Ammersee, Germany) and cores were analysed by VIS-TMA-software (Visiopharm, Hørsholm, Denmark).
At least three TMA cores were analysed for each tumour for each antibody, with the area of strongest staining in each core being assessed.
After the last gas sampling, the soil cores were analysed for gravimetric soil moisture content, soil mineral N content (N-NH4+ and N-NO3−) and water soluble organic carbon (WSOC).
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The radiocarbon dated core was analysed for pollen, testate amoebae, charcoal and loss-on-ignition (LOI).
First, the stator core made of SMC, which was of the same shape as the laminated core, was analysed.
The interaction between the steel tube and its concrete core was analysed and illustrated by using the FEA model.
In this paper, the out-of-plane shear behaviour of the novel hollow core is analysed and the expressions for the failure loads are developed.
Pin power distribution within the fuel elements, axial power peaking distribution along the fuel length and normalized distribution of fast/thermal neutron flux throughout the core are analysed.
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