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The underlying mechanism is semi-quantitatively explained by the classical nucleation theory.
Sputtering effect was proposed as an explanation of high altitude ionization and luminosity, which are not explained by the classical ablation theory.
The high hardening rate cannot be explained by the classical substitutional solid solution hardening theories for metals based on atomic size misfit and elastic moduli mismatch.
Experimental results found in silicon nitride systems, which cannot be explained by the classical coarsening theories, are in good agreement with our model predictions.
Such a phenomenon can be well explained by the classical heat transfer theory, and the hypothesized 'nanobubble', i.e., steam produced around the heated nanoparticles, is unlikely to occur under normal solar concentrations.
In crosslinked gels the ice melting temperature and the amount of non-crystallizable water is explained by the classical variations of the glass temperature and the ice dissolution temperature with the concentration of water.
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But it is a truth about our world that entropy increases; if it cannot be explained by the laws of classical mechanics alone, then classical mechanics will be incomplete as a description of our world, and must needs be supplemented by a further postulate.
On an atomic scale, these interactions are governed by the quantum mechanical natures of matter and light, but many are adequately explained by the interactions of classical electromagnetic radiation with charged particles.
Therefore, the anticancer effect of aaptamine, 9-demethyl(oxy)aaptamine, and isoaaptamine, can be at least in part explained by the induction of classical apoptosis.
These are very interesting findings from a Complex Systems perspective and can be explained by the rich neo-classical and Schumpeterian literatures on convergence dynamics.
For example, Arabidopsis resistance to race Ac2V can at least in part be explained by the WRR4 gene, a classical NB-LRR R gene, which presumably recognizes an Ac2V effector (Borhan et al., 2008).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com