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In physical modelling the key quantity is the geoelectric field at the Earth's surface.
The growth restriction factor Q is the key quantity in current descriptions of the solutal effect on grain growth and grain refinement during solidification of alloys.
It is shown that the key quantity for extreme response prediction is the mean upcrossing rate function, which can be simply extracted from simulated response time histories.
The parameter θ is the key quantity that determines the degree of crystallinity.
The key quantity in determining reaction rates is the activation free energy (Δ‡G), not the enthalpy.
An important conclusion drawn in this paper is that the key quantity governing the type of quantization is the difference in chemical potentials between the two reservoirs.
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The key quantities are dielectric constants for every excited state, built into a hierarchy of nonlinear differential equations.
# Had these all defined on one line, and stupidly they STAY linked!! Provide a simple way of calculating the key quantities.
The key quantities predicted by the model are the critical strain, the critical temperature, the incubation time and the nucleation rate for recrystallization.
Distributions of the key quantities such as the local reaction current and electrolyte overpotential are exhibited at different ratios of the ionic conductivities, electrochemical kinetics, and layer thicknesses.
In the present work a generic nonlinear identification framework that enables the dynamics of the key quantities of a thermodynamic engine to be captured is proposed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com