Sentence examples for concentrations normalized by from inspiring English sources

Exact(3)

Regional radioactivity concentrations normalized by the subjects' weights were compared between CT- and TCT-based attenuation correction techniques.

For each sample, the TU value was calculated as a summation of concentrations normalized by the corresponding sediment LC50 on an organic carbon (OC) basis.

Next we cast eqs 17 and 15 in dimensionless form as follows: c* and n* are free-target and bound-target concentrations normalized by initial probe concentration N; t* is the time normalized by the reaction time scale 1/ k1 N) and z* is the axial coordinate normalized by the advection-reaction length scale u/ k1 N); and β is the nondimensionalized equilibrium dissociation constant (β = k2/ k1 N)).

Similar(57)

In addition, the metric of exposure for hopanes still lacks consensus as hopanes can be measured in terms of loading (concentration normalized by surface area sampled) or expressed as the more traditional approach of normalized concentration to mass of dust collected.

His plasma sodium concentration normalized by POD 35, before discharge on POD 39.

The EIS results revealed a higher charge transfer resistance in 12-4-12 solutoon compared thathat in DTAB solution at the same concentration normalized by the cmc (c/cmc).

The percent accuracy was calculated from the difference between the predicted concentration and the known concentration normalized by the known concentration.

This assumption gives the extracellular DA concentration normalized by the dissociation constant, Y = [ DA]/ K DA, of 0.316 in healthy subjects and 0.695 in patients, respectively (Table four).

In this case, the extracellular DA concentration normalized by the dissociation constant, Y = [ DA]/ K DA, is 0.136 in the healthy subjects and 0.266 in the patients.

In Model 2, the extracellular DA concentration normalized by the dissociation constant, Y = [ DA]/ K DA, is 0.316 in healthy subjects and 0.695 in schizophrenia patients.

Alternatively, it can be found using the dose to AUC ratio, where AUC is the area under the concentration-time curve: (2) CL = dose AUC The dose is equal to the initial concentration normalized by the cell density.

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