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In contrast with classical chemical kinetics, much evidence suggests that biological molecules often diffuse relatively slowly, causing biological reactions sometimes to be diffusion limited (Table 2).
The reaction is therefore considered to be diffusion controlled.
The electrode process is shown to be diffusion controlled.
Such process usually has low face velocity, causing the primary capture mechanism to be diffusion.
In both the cases the waves were found to be diffusion controlled and irreversible.
In all cases the reduction was found to be diffusion controlled but irreversible.
Similar(30)
Such a reaction is said to be diffusion-controlled, because it is dependent on the process of diffusion to bring the molecules together.
The waves were shown to be diffusion-controlled and irreversible on the basis of the usual criteria.
The two polarographic waves were found to be diffusion-controlled, the first wave being reversible and the second wave irreversible.
Water transport is seen to be diffusion-limited, with a barrier of only 1.6 kcal mol− 1, and the channel is more water-permeable than other known aquaporins.
G-protein activation and receptor phosphorylation were assumed to be diffusion-limited reactions in the membrane [45].
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