Optical probe diffusion measurements were made on aqueous solutions of 2/3-neutralized poly(acrylic acid), molecular weights 5 and 150 kDa, both in salt-free systems and in systems containing 0.1 M NaCl. The probe particles were 204-angstrom-radius carboxylate-modified polystyrene latex spheres. The temperature dependence of the probe diffusion coefficient D(p) is entirely explained by the temperature dependence of the solvent viscosity, no correction for a distance from a hypothesized glass temperature T(g) of the solution being needed. For these systems, the hypothesis that the concentration dependence of D(p) (as described by the universal scaling law D(p) = D(p0) exp(-alpha-c-nu)) is due to the concentration dependence of T(g), rather than being due to hydrodynamic interactions between polymer chains, is clearly rejected by our measurements.
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Univ Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USAUniv Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USA
Martinez-Salas, J
Mendelssohn, R
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Univ Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USAUniv Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USA
Mendelssohn, R
Abraham, WM
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Univ Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USAUniv Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USA
Abraham, WM
Hsiao, B
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Univ Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USAUniv Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USA
Hsiao, B
Ahmed, T
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Univ Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USAUniv Miami, Div Pulm Dis, Mt Sinai Med Ctr, Sch Med, Miami Beach, FL 33140 USA