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The tsunami heights on the Sanriku coast computed from this model are smaller than the observations (Figs. 2c, 3).
However, the peak response values of the tower line model are smaller than those of the single tower model.
It is also shown that the displacements of the 3D model are smaller and the resulting fundamental natural frequency is higher than calculated with the p y method.
It can be seen that the deflections and stresses obtained by the proposed beam model are smaller than those based on Timoshenko and Bernoulli Euler beam assumptions.
The tsunami heights on the Sanriku coast from this model are smaller (K = 1.63), while the tsunami waveforms at regional distances are similar to those from the previous uniform-slip model at 3.5 7 km depth.
Because the RMS of travel time residuals based on the three-dimensional model are smaller than those based on the JMA2001 model, we used hypocenter locations derived from the three-dimensional model in further analysis.
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(2) The coefficients of the linear RS model are small.
Essentially all sensitivities and gains in our model are small in magnitude, which is usually viewed as a good sign, because it affirms robustness of the model.
We assume the selection coefficients (s) involved in the model are small, so that simplifying approximations about relative fixation probabilities can be made.
Lastly, we note that AUC values associated with our model are small relative to some that have been reported in the literature for prediction of survival [ 60].
The new model is smaller and seemingly more rugged than the older model.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com