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The problem interested the U.S. chemist Harold C. Urey, who from theoretical principles predicted a difference in the vapour pressures of hydrogen (H2) and hydrogen deuteride (HD) and thus the possibility of separating these substances by distillation of liquid hydrogen.
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For BFO(111) films, theoretical studies of both thermodynamics and first-principle predicted a negligible effect of strain on polarization[22, 23]; however, the experimental results confirm that in BFO 001), the biaxial strain induces a rotation of spontaneous polarization, resulting in drastic increase in Pr[13].
These principles predict an optimal angular position for the ATP-binding transition close to the experimental value; an inverse relation between the optimal gearing ratio and the proton motive force (pmf); optimal operation at an inflection point in the curve of ATP synthesis rate versus pmf, enabling rapid metabolic control; and a high optimal free energy conversion efficiency.
A simple principle predicts a tendency, or vector, toward increasing organismal complexity in the history of life: As the parts of an organism accumulate variations in evolution, they should tend to become more different from each other.
Nonetheless, as has been established earlier, an alternative theoretical account does exist that would, in principle, predict a three-factor underlying structure to the HADS; the tripartite model of Clark & Watson [ 41].
However, if one sex is costlier to produce than the other, Fisher's principle predicts an investment ratio of 0.5, which leads to more of the cheaper sex being produced.
Through analysis of this data, we uncovered some new principles of gene regulation by miRNA and also further validated principles predicted by others [15], [20], [21] using experimental methods.
Experimentally measured wash liquor flow rates tend to be lower than what traditional colloid science principles predict by a factor of 5 10: reasons for this difference, supported by experimental work from other researchers, are discussed.
The proposed theory, derived from Lyapunov stability principles, predicts the time component of flutter, and provides a set of conditions for viscoelastic structural instabilities in general.
Scientists boast that these principles predict how most matter will behave in physical and chemical experiments.
Rowley, M. J. et al. Evolutionarily conserved principles predict 3D chromatin organization.
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