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A grafting yield higher than 85% was obtained by using an amount of isocyanate terminated oligo(oxypropylene) of 0.2 mmol per gram of gelatin.
Results are given in mmol per gram of pellet.
The results are reported in mmol per gram of wet caecal material.
Carbon source uptake fluxes were set at 10 mmol per gram dry cell weight per hour unless otherwise stated.
For carbon source utilization and gene deletion simulations, a maximum uptake rate of 10 mmol per gram of dry weight per hour (mmol/gDW cell/h) was used.
A maximum uptake rate of 5 mmol per gram of dry weight per hour (mmol/gDW cell/h) was used for the different carbon and nitrogen sources.
Similar(50)
Under these conditions, over 84% of conversion was obtained after 4 h of reaction in a batch reactor, with a productivity of 0.27 mmol g−1 h−1 per gram of derivative.
Analysis confirmed 0.28 mmol Cu per gram of the γ-Fe2O3@CuFAp.
The values multiplied with YXS equals the strain specific precursor demand for growth (mmol precursor per gram biomass).
Hydrogen gas yields of 6.52, 4.26 and 4.1 mmol per 1 gram of wheat straw, walnut shell, and almond shell were observed, respectively.
There was a dramatic increase in AO potential for field grown as compared to CE-grown watercress where the control accession increased from 130 mmol Fe2+ equivalent per gram fresh weight in a CE to 529 mmol Fe2+ equivalent per gram fresh weight in the field.
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