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[Concentration dependencies of W(ij) Peusner's coefficient for different composition and concentration of the
Background:
The network forms of Kedem-Katchalsky (K-K) equations for ternary non-electrolyte solutions may contain one of the eight Peusner's coefficients: R(ij), L(ij), H(ij), W(ij), N(ij), K(ij), S(ij) or P(ij) (i, J ∈ {1, 2, 3}). These coefficients form the third degree matrixes ofPeusner's coefficients [R], [L], [H], [W], [N], [K], [S] or [P].
Objectives:
Calculation of dependencies of the Peusner's coefficients W(ij) (i, j ∈ {1, 2, 3}) and det [W], on the average concentration of one component in the membrane solution (C1) for several different values of the second component set (C2).
Material And Methods:
Glucose transport in aqueous ethanol solutions through Nephrophan membrane transport with known transport parameters (L(p), σ, Ω), using the network K-K equations for the ternary non-electrolytes solutions containing Peusner's coefficient W(ij) (i, j ∈ {1, 2, 3}) were analyzed.
Results:
Family dependencies of Peusner's coefficients W(ij) (i, j ∈ {1, 2, 3}) on the average concentration of one component in the membrane solution (C1) for several different values of a second set of component (C2) for the homogeneity of the solutions were calculated. Conclusions. Calculations showed that coefficients W12, W21, W22, W23, W32 and det [W] are sensitive to concentrations (C1) and (C2) of solutions separated by a polymeric membrane.
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