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Agglomeration is observed when a higher concentration <0.02 mmol of the electrolytes is used.
In a first step the silica ampoules were filled with 1.25 (± 0.13) mmol of the FeS suspension by means of a syringe equipped with a 15 cm needle.
C: 72.83, H: 3.88, Λm: 240 μS. 10 mmol of the dicoumarol compound was added to 20 cmethanolnol containing 25 mmol of sodium methoxide.
Thirty-six grams (40 mmol) of the synthesized iron-oleate complex and 5.7 g (20 mmol) oleic acid were dissolved in 200 g 1-octadecene at room temperature.
After centrifugation, the supernatant was removed and the product was washed twice with water, leading to 19 mg (0.03 mmol) of the final azido-folate 5 (Scheme 1).
The suspension contained 5 mmol of the dye at the beginning of the kinetic test, which is a substantial excess over what can be absorbed by the catalyst.
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There is approximately 1000 mmol of magnesium in the human body [ 12], with muscle and bone comprising approximately 80% of total body Mg [ 6].
Room temperature ionic conductivity of the polymer electrolyte containing 1.5 mmol of LiClO4 per gram of the blend and 40% PC is 10−4 S/cm.
With 40 mmol of aluminum powder as the starting material, the maximum theoretical amount of hydrogen production is 60 mmol, according to the possible reaction mechanisms [Eqs. (1)–(3)].
Solutions with 0.52 mmol dm−3 of the dye were completely decolorized in both cells, more rapidly at greater current density.
Indeed, given the limited solubility of CaO in glycerol, only at loadings up to 5 mmol all of the CaO can dissolve in the reaction mixture.
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