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Collected and evaluated experimental data for enthalpy of fusion (ΔHF) of 30 ILs were split into the training (to develop the QSPR model) and validation (to examine the model's ability to predict ΔHF for compounds other than those used for the calibration) sets [51].
Evaluated experimental data are presented for 13 known nuclides of mass 85 (Zn, Ga, Ge, As, Se, Br, Kr, Rb, Sr, Y, Zr, Nb, Mo).
The evaluated experimental data are presented for 14 known nuclides of mass 87 (Ga, Ge, As, Se, Br, Kr, Rb, Sr, Y, Zr, Nb, Mo, Tc, Ru).
The evaluated experimental data are presented for 14 known nuclides of mass 89 (Ge, As, Se, Br, Kr, Rb, Sr, Y, Zr, Nb, Mo, Tc, Ru, Rh).
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In the paper a classification of freely oscillating bubbles is given, methods for evaluating experimental data in research on bubble dynamics are reviewed, and data on bubble oscillation amplitudes, as obtained by analyses of all the accessible experiments (amplitude is defined as the ratio of the maximum to the equilibrium radius of a bubble), is summarized.
The aim of this narrative review is to summarize the current knowledge on this topic, evaluating experimental data and clinical trials.
The kinetic parameters were evaluated against experimental data.
The maximum level of attenuation is evaluated from experimental data, rather than pure theoretical methods.
This approach is evaluated against experimental data and results of multidimensional calculations.
Parameters of the models are evaluated from experimental data by means of Marquardt's method.
Enthalpies of formation of zinc amalgams are evaluated from experimental data and known energies of formation.
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