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Cells were suspended in 4 ml of 0.25 g/l glucose, 5% FBS medium and plated on solidified base layers.
In a 6-well plate, a solidified base was created using a 1 1 solution of RPMI 1640 (with 20% FBS) and 1% agarose solution.
All cell suspensions were mixed with the aforementioned assay medium and 1% agar stock, so that the final concentration of agar was 0.3%, and immediately plated on solidified base layers in a 1.5 ml volume.
The cell mixture was laid over a solidified base layer comprised of 0.6% bacteriological agar (Sigma, A5306) and IMDM growth medium and allowed to harden at room temperature for 1 h.
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A novel electrospark deposition technique has been successfully developed to deposit epitaxially MCrAlY coating onto a directionally solidified nickel base superalloy.
The crystal growth rate and the solidified height, based on thermal equilibrium on the melt crystal interface, were discussed.
Microstructural investigations on rapidly solidified Zr3Al based alloys (binary Zr3Al and ternary Zr3Al 3Nb and Zr3Al 10Nb) have revealed some unusual phase transformation sequences.
The low-cycle fatigue (LCF) behavior of the directionally solidified nickel-base superalloy DZ125 was studied in the uncoated state and in the Electron Beam Physical Vapor Deposition (EB-PVD) coated condition at 850 °C and 980 °C.
In-phase (IP) and out-of-phase (OP) thermomechanical fatigue tests with T = 100 750 °C and optional dwells of 20 min at 750 °C were carried out on directionally solidified Ni-base Alloy 247 LC DS.
Colorectal carcinoma cells were re-suspended in DMEM supplemented with 20% (v/v) FBS and containing 0.3% (w/v) Nobel agar (Sigma Ltd), and a volume of 3 ml was poured onto a 6-well plate containing a pre-solidified agar base layer (0.5% (w/v) agar and 20% (v/v) FBS in DMEM – 2 ml).
Using 1 ml of 0.6% media, 30,0000 cells are resuspended and plated on top of the solidified 0.8% agarose base.
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