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Titlebook: Electrical Fluctuations in Polyelectrolytes; José Antonio Fornés Book 2017 Springer International Publishing Switzerland 2017 molecular el

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https://doi.org/10.1007/978-3-658-18145-1known model for a biopolymer. They are shown plots of the potential and electric field fluctuations as a function of the Debye–Hückel length, .., and distance, ., from the polyelectrolyte surface for several molecular sizes.
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https://doi.org/10.1007/978-3-322-84123-0ons in the microwave region. For instance, considering the DNA length of 1000 Å, with its reduced linear charge density .. = 4. 25, and ionization factor . = 0. 5, immersed in a NaCl solution (40 mM) we predict a polarizability of the DH atmosphere at zero frequency . ( ≃ 6. 1 × 10. times greater th
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Der Wechselverkehr und seine Buchung,r of condensed but mobile counterions of valence ., and .. is the elementary capacitance, .. We obtain results that are consistent with the experimental data of Takashima for the dielectric dispersion of DNA solutions.
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Dielectric Relaxation Around a Charged Colloidal Cylinder in an Electrolyte,ons in the microwave region. For instance, considering the DNA length of 1000 Å, with its reduced linear charge density .. = 4. 25, and ionization factor . = 0. 5, immersed in a NaCl solution (40 mM) we predict a polarizability of the DH atmosphere at zero frequency . ( ≃ 6. 1 × 10. times greater th
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Farid Shahandehmistry, each written by the world renowned experts.Still valChristopher M. Cheatum and Amnon Kohen, Relationship of Femtosecond–Picosecond Dynamics to Enzyme-Catalyzed H-Transfer. Cindy Schulenburg and Donald Hilvert, Protein Conformational Disorder and Enzyme Catalysis. A. Joshua Wand, Veronica R.
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