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A comparison of models for characterizing the distribution of radionuclides with depth in soils
J. T. Smith
*
, D. G. Elder
*
Corresponding author for this work
School of the Environment, Geography & Geosciences
Centre for Ecology and Hydrology
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Earth and Planetary Sciences
Model
100%
Advection
80%
Depth
50%
Radioactive Isotope
20%
Radionuclide
20%
Value
20%
Soil
20%
Curve Fitting
10%
Soil Profile
10%
Goodness of Fit
10%
Simplification
10%
Versatility
10%
Vertical Migration
10%
Calculation
10%
Comparison
10%
Shape
10%
Rate
10%
Condition
10%
Good
10%
Show
10%
Agreement
10%
Correlation
10%
Residence Time
10%
INIS
dispersions
80%
advection
80%
depth
50%
equations
30%
soils
30%
radionuclides
30%
solutions
20%
values
20%
comparative evaluations
10%
boundary conditions
10%
correlations
10%
distribution
10%
residences
10%
curves
10%
migration
10%
cesium 137
10%
mathematical models
10%
numerical solution
10%
Physics
Model
100%
Advection
80%
Independent Variables
40%
Value
20%
Numerical Solution
10%
Goodness of Fit
10%
Curve Fitting
10%
Calculation
10%
Parameter
10%
Medicine and Dentistry
Radioisotope
30%
Cesium
10%
Fitting Curve
10%
Caesium-137
10%
Pharmacology, Toxicology and Pharmaceutical Science
Cesium 137
10%
Cesium
10%