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The injected volume was 0.1 mL from a concentration of 2 3 g mL−1 of each polymer solution.
Blood (0.2 ml) from a healthy adult rabbit was immediately dropped onto the surface of all samples.
Acclimated anaerobic sludge (50 mL) from a UASB reactor treating domestic sewage was transferred to the flasks containing crude wastewater (250 mL) and wastewater supplemented with PPL at different concentrations (from 1.0 to 3.0 g L−1).
ZnO nanoparticles were prepared by drop by drop addition of 0.3 M of KOH (19.03 g/100 mL) from a burette to 0.017 M solution of ZnSO47H2O (5 g/100 mL) with constant stirring (500 rpm).
Figure 6 Left: RHEED patterns observed during Ge growth at 600°C on stripe-patterned Si substrates with "V" geometry (see Fig. 2 b) at Ge thicknesses of 0, 2, 4.2, 4.8, and 6 ML from (a) to (f), respectively.
The objective of the numerical analysis in this study involved the design optimization of a heat spreader with a positive temperature coefficient (PTC) heater to obtain a liquid urea-water solution of 340 mL from a frozen urea-aqueous solution within 1200 s.
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The OD results from patient blood stimulated with B. burgdorferi antigen (corrected for the saline control) were converted into International Units per ml (IU/ml) from a standard curve of the human IFNγ standards.
To a separate Schlenk tube containing a suspension of freshly prepared KTMP in hexane (10 mL) [from a mixture of KCH2SiMe3 (0.24 g, 2 mmol) of and TMP(H) (0.34 mL, 2 mmol)], the solution was added through a cannula to give a tan-colored suspension.
Intradermal BCG was given in a dose of 0.05 ml (20×10 colony forming units/ml) from a single dose plastic syringe through a short bevelled 10 mm 25 gauge intradermal needle, into the lower deltoid region of the right arm at the insertion point of the muscle.
Growth of < 1000 CFU/mL from a catheter by quantitative method was considered as catheter contamination.
Equal volumes of erythrocytes (1.6 × 109 erythrocytes/mL) were treated with varying concentrations of AuNPs (0.1, 0.5, 1, 5, 10, and 20 μl/mL from a stock 15.56 mg/L) for 1 h and hemolytic activities of the nanoparticles at different concentrations were calculated.
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