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In addition, ∼20 mg of each microorganism without a soil matrix were analyzed.
The orientation relationships between the fine Cr particles and the Cu matrix were analyzed by observing Moiré fringes.
The matrix material, cross section of optical fiber, and the interface between fiber and matrix were analyzed by SEM.
The characteristics of the swollen PVA, intrinsic relation between the microstructure of the swollen PVA and the diffusion of water and ethanol in the PVA matrix were analyzed.
The effects of each polymer fiber on cell adhesivity, proliferation, morphological changes, and synthesis of the extracellular matrix were analyzed by quantitative a cell attachment test, DNA quantification, light and scanning electron microscopy, semi-quantitative RT-PCR, and immunohistochemical analysis.
The transport and retention processes of AgNPs in the porous media were elucidated by inverse modeling and possible particle size changes occurring during the transport through the soil matrix were analyzed with flow field-flow fractionation (FlFFF).
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AGG initiation in a pinned matrix is analyzed.
The drug polymer interaction in the optimized bead matrix was analyzed by FTIR and P-XRD.
The physical state of isoxsuprine HCl within the optimized microbead matrix was analyzed by FTIR and DSC.
Chemical bonding/oxidation state of constituent elements in INTO film matrix was analyzed by FTIR and X-ray photoelectron spectroscopies.
Under the hypothesis of periodicity, the properties of the resulted space differentiation matrix are analyzed in detail.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com