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The procedure included: (i) finding a suitable reference area with stable landforms and acquiring inputs from them; (ii) designing two first-order stream watersheds; (iii) building the planned landscape; and (iv) monitoring the hydrological and erosive – sedimentary response of the reclaimed watersheds.
These voxels were selected by i) finding the union of all voxels assigned a non-zero label in any of the atlases considered, and ii) intersecting that voxel set with the left hemisphere GM mask described above.
The complete peptide binding problem can be visualized as a three step process: (i) finding a path on the surface of the protein which defines a suitable region for the peptide to bind, (ii) finding the appropriate peptide for this path, and (iii) improving the peptide for a more stable binding required for inhibition.
The present study is aimed to (i) finding associations between routine parameters at the admission in the ICU and operative mortality following cardiac operations, and to (ii) verifying if the inclusion of these parameters improves the accuracy of the standard preoperative risk models in predicting operative mortality.
Other barriers included concern over: (i) finding qualified and reliable professionals, and (ii) home-life disruption whilst the work is done (#5, 13, 14).
We draw these conclusions from (i) finding metabolites to be highly concentrated between cells, (ii) demonstrating that cells take these up preferentially when they are available and (iii), showing that cells have a highly robust capacity for growing on the basis of this metabolite exchange.
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Step-I: finding the amount of TS mathrm{T}mathrm{S} = 10% mathrm{of} mathrm{slurry} = 0.1 times 10 mathrm{kg} = 1 mathrm{kg}.
Step-I: finding the amount of total solid (TS) in the slurry mathrm{T}mathrm{S} = 8.5% mathrm{of} mathrm{slurry} = 0.085 times 20 mathrm{kg} = 1.7 mathrm{kg}.
Step-I: finding the amount of TS mathrm{T}mathrm{S} = 10% mathrm{of} mathrm{slurry} = 0.1 times 10 mathrm{kg} = 1 mathrm{kg} Step-II: finding the VS mathrm{V}mathrm{S} = 0.8 mathrm{x} mathrm{T}mathrm{S} = 0.8 times 1 = 0.8 mathrm{kg} Step III: finding the biogas yield in terms of per kg of VS The total amount of degradable material present in the VS is about 50% only.
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