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The measurement between columns was calculated and expressed in terms of the diameters of the columns in the building i.e., two columns were expressed as being 3 diameters (3D) rather than 9 feet (2.7 metres) apart.
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Correlation coefficients of physico-chemical properties of residues between two coevolved sites/aligned columns were calculated.
Assuming a linear signal decay, a correction value for each column was calculated and added to the corresponding column.
The attenuation coefficient (K) in the water column was calculated based on PAR at different depths.
For the resulting list of probe sets a fold change column was calculated.
(A) Column 'AA1' and 'AA2' are the positions in the alignment of AGO sequences of respective Classes between which correlation coefficient (in the last column) were calculated by CAPS 2.0.
The NORMALIZED_COUNTS column is calculated by dividing the COUNTS column by the sum of the COUNTS column.
Changes in flow velocity throughout the water column were calculated based on the bed friction velocity, a parameter calculated directly in the hydrodynamic model.
The "axon home column ratio" was calculated as the ratio between the axonal path length of the L4 interneuron within the home barrel column and the total axon length.
The volume for column saturation V´R was calculated by adjusting for the void volume of the column.
The hydrostatic pressure of the blood column between heart and insonation levels was calculated as BPhydro = ρ × g × h, where ρ is the specific density of blood (1.06 g/cm) and g is the gravitational acceleration (9.81 m/s).
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