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To prepare the second solution, 0.7 mL of nitric acid was added to 100 mL of deionized water, and the mixture was heated to 70 °C, after which the first solution was slowly added to the second one upon stirring.
We demonstrate that microwave-assisted heating in 5 mL of nitric acid eliminates impurities, such as amorphous carbon, carbon nanoparticles, and metals, from multi-walled carbon nanotubes (MWNTs).
Then, 1.4 ml of nitric acid was added to this mixture.
Ti OC3H7 4 (25 mL) was hydrolyzed in 300 mL of water containing 2.5 mL of nitric acid.
Samples (10 30 mg) were weighted directly into micro-vessels and 1 mL of nitric acid was added.
Seven mL of nitric acid were added to 1.0 g of dried homogenous powder sample in 100 mL beaker.
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Brain samples were digested in 12 mls of nitric acid∶ perchloric acid in a 4∶1 (v/v) ratio, heated to 250°C on a hot plate until 1 2 mls of liquid remained.
Nitric acid solution: 6 M nitric acid was prepared by careful and gradual adding 48.8 mL of concentrated nitric acid to 51.2 mL distilled de ionized water. 5.
Therefore, each of the samples was dissolved in 10 mL of concentrated nitric acid.
Hydrogenated oil (2.00 g) was taken in a beaker and dissolved in 15 mL of concentrated nitric acid with heating.
One gram of the homogenized fish feed samples was weighted into the polytetrafluoroethylene digestion vessel, and 6 mL of Suprapur nitric acid were added.
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