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All designed reactions were ignited and sustained using Ca(NO3 2 as the oxidant, and zirconolite-rich ceramic matrices were successfully prepared with pyrochlore (Ca2Ti2O6), perovskite (CaTiO3) and rutile (TiO2) as the minor phases.
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These matrices are successfully utilized to solve the generalized Burger Fisher equation.
Mixed matrix membranes or MMM comprising MWCNTs as dispersed phase and PIM-1 as polymer matrix were successfully prepared.
After these procedures, freestanding composite membranes with vertically aligned CNTs embedded in the parylene matrix were successfully fabricated.
Crystals of the inverse form that have a network of holes with the diamond structure in a dielectric matrix were successfully fabricated as well.
The organic material soluble polyimide (PI) and organic inorganic hybrid PI barium titanate (BaTiO3) nanoparticle dielectric materials (IBX, where X is the concentration of BaTiO3 nanoparticles in a PI matrix) were successfully synthesized through a sol gel process.
Ultrafine fibers of polyethylene glycol/cellulose acetate (PEG/CA) composite in which PEG acts as a model phase change material (PCM) and CA acts as a matrix, were successfully prepared as thermo-regulating fibers via electrospinning.
Results: the matrix was successfully repopulated with MFB and EC (n = 8).
The orientation of osteoblasts and the secreted collagen matrix was successfully regulated by applying a continuous mechanical stress on osteoblasts for a long period.
The matrix was successfully designed to match the complex and demanding mechanical requirements of a native human ACL, including adequate fatigue performance.
A FeCO3/graphene nanocomposite (FCO/GNS), in which FeCO3 nanoflakes aligned by nanowires well dispersed in graphene matrix, is successfully synthesized via a simple one-pot hydrothermal route.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com