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As individual membrane-bound proteins are cross-linked into larger clusters of multiple proteins diffusing together, their diffusion is slowed.
Surprisingly, it was reported that neither the diffusion coefficient, relative amount of slowly diffusing EGFP, nor their diffusion coefficients, were dependent on the chromatin density.
Particles reach heights related to their diffusion coefficients.
Countries with policies preventing their diffusion lost out.
Their diffusion coefficient in sea water is 7.5 × 10−6 cm2/s38.
More complex technologies are harder to copy, so their diffusion has been slower.
Very high sensitivity detectors are therefore required, rising the systems' final costs and reducing their diffusion.
Yet, details regarding their diffusion and aggregation are still largely lacking beyond the monomer and dimer.
Economies, after all, benefit not from the invention of new products or services, but from their diffusion.
A high concentration of protons outside the membrane also creates the conditions for their diffusion back into the matrix.
We attribute the small increase in JSC to better collection of charge carriers as their lifetime is prolonged in the presence of the modulator augmenting their diffusion length.
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