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Unified treatment of phenomenological and atomistic kinetic processes in materials.
Figure 3: Schematic illustration of growth kinetic processes to explain the origin of the growth oscillation.
The appearance of a second component during AP trains suggests two kinetic processes in series.
These phenomena can be divided into two broad categories: equilibrium and rate (kinetic) processes.
We detect two rate-limiting kinetic processes at low (< 200 micromolar) ATP concentrations.
The kinetic processes on the sensing membrane were studied.
The kinetic processes of sensing monolayer formation were studied.
However, experimental results indicate that kinetic processes may be important.
Figure 3 schematically illustrates the growth rate (V) changes based on the kinetic processes that are expected to occur on growing interfaces under the effect of impurity molecules.
Altogether, PRD and aARRDyn demonstrate the extension of ReaxFF to low-temperature applications, where kinetic processes occur on timescales inaccessible to traditional MD trajectory integration.
Conversely, AMD methods are suitable for modelling kinetic processes, as arguments from transition state theory are employed to accelerate system evolution between rare events while maintain system determinism.
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