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After vertical embedding, 2-μm paraffin sections of total brain (coronal orientation) were cut on a Leica RM 2135 microtome and mounted on Superfrost Plus slides.
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The unsteady natural convection heat transfer of nanofluid along a vertical plate embedded in porous medium is investigated.
Kim and Vafai [5] analyzed the natural convection about a vertical plate embedded in a porous medium.
Lai and Kulacki [15] considered the variable viscosity effect for mixed convection along a vertical plate embedded in a saturated porous medium.
In the present study, we have numerically investigated the natural convection heat transfer of nanofluids along the isothermal vertical plate embedded in a porous medium.
Bejan and Khair [7] presented a multiple scale analysis of heat and mass transfer about a vertical plate embedded in a porous medium.
This study has been undertaken to analyze the mixed convection past a vertical wedge embedded in a porous medium saturated by a nanofluid.
In this article, we presented a boundary layer analysis for the mixed convection past a vertical wedge embedded in a porous medium saturated with a nano fluid.
In this study, a three-dimensional (3D) finite element model of the L2-L3 disk vertebrae unit with 12 vertical fibers embedded into annulus fibrosis was constructed.
Uddin et al. [13] studied the natural convection heat transfer of various nanofluids along a vertical plate embedded in porous medium based on the Darcy-Forchheimer model.
Evans and Plumb [2] investigated natural convection about a vertical plate embedded in a medium composed of glass beads with diameters ranging from 0.85 to 1.68 mm.
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Justyna Jupowicz-Kozak
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