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Dissolved oxygen (DO) concentration was controlled at 2.0 ± 3 mg O2/L by using two mass flow controllers (one for air and other for nitrogen gas).
The tin concentration was controlled by varying the temperature of the tin source.
Oxygen concentration was controlled to 2 4 × 10−5 mass% although there was one exception.
Oxygen concentration was controlled individually in each microcosm to mimic the conditions at their corresponding depths.
The nitrogen concentration was controlled by varying the nitrogen flow rate and, hence, partial pressure.
Gérard et al. (2002) investigated the relationships between Si concentration, soil temperature, and H+ concentration, and concluded that silica concentration was controlled by soil temperature and H+ concentration.
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Nitrogen oxide concentration is controlled at the minimum level.
The initial proton concentration is controlled by changing the wt% of PSS in the reaction medium.
According to analysis results, hydrogen concentration is controlled below 10% during accidents, hydrogen risk is eliminated.
If the glucose concentration is controlled between (G_{U}) and (G_{L}), both hypoglycemia and hyperglycemia can be avoided.
Calcium ion concentration is controlled by the formation of apatite layer in SBF and its release from the samples (Martínez et al. 2000).
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CEO of Professional Science Editing for Scientists @ prosciediting.com