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The variability analysis consists of seven model setups to compare model response to different input datasets.
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Before extrapolating the calibrated model setup to eight ungauged subcatchments, the feasibility of model parameter transferability was tested, using the proxy – catchment approach and evaluated using the Nash Sutcliffe (NSE) and Relative Volume Error (RVE) criterion.
All experiments from animal model setup to final analysis took 3 months.
In addition to exporting the compartmental model (see the "Model Builder" Subsection) the user can export a complete configuration of a simulation that includes the compartmental model and the entire simulation setup to a local file, which can be imported again later or shared with other users.
The objective of the model is to add value to existing monthly model setups and to provide daily water balance data for a water quality model.
In contrast, a recent study on hexapod phylogeny found mixed RNA/DNA model setups leading to a higher sensitivity to systematic problems ("long-branch attraction") [ 28].
Both fixed and a free surface model setups lead to lithosphere-scale shear zones that, given a suitable flow rheology, eventually trigger subduction initiation.
In the case of hexapods, no model setup led to the expected tree hypothesis.
Nevertheless it is noteworthy, that mixed RNA/DNA model setups frequently led to an increased support for probably correct clades in data sets without homoplastic loops (Mammalia and Primates), thus supporting previous studies on RNA models in phylogenetics [ 14, 19, 23].
All model setups were initialized according to the inventory data for Wetzstein and Tharandt (Table 1).
Performance of different model setups was compared according to recent morphological and molecular expectations of taxonomy.
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