Calculate the surface charge, o, using the Gouy-Chapman theory of the electric double layer where yo-75.3 mV and the electrolyte concentration is 0.500 moles/liter (monovalent cation). Use the surface charge density equation where co is the counter ion concentration in ions per cm' concentration x 10 x 6.022x 1023, D 8.89 x 1011 coulomb/(N m cm), z ion valence, k 1.38 x 10-23 N m/(ion OK), T-298°K (25.0°C), and e 1.60 x 10-19 coulomb/ion. Note: esu statcoulomb; 1.00 coulomb 3,00 x 10 statcoulomb; 1000.0 mV 1.00N m/coulomb; and N kg m/s; 0.00100 mole charge (monovalent) 96.3 coulomb.
Calculate the surface charge, o, using the Gouy-Chapman theory of the electric double layer where yo-75.3 mV and the electrolyte concentration is 0.500 moles/liter (monovalent cation). Use the surface charge density equation where co is the counter ion concentration in ions per cm' concentration x 10 x 6.022x 1023, D 8.89 x 1011 coulomb/(N m cm), z ion valence, k 1.38 x 10-23 N m/(ion OK), T-298°K (25.0°C), and e 1.60 x 10-19 coulomb/ion. Note: esu statcoulomb; 1.00 coulomb 3,00 x 10 statcoulomb; 1000.0 mV 1.00N m/coulomb; and N kg m/s; 0.00100 mole charge (monovalent) 96.3 coulomb.
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Surface Potential and Aggregate Size
Calculate the surface charge, o, using the Gouy-Chapman theory of the electric double
layer where yo-75.3 mV and the electrolyte concentration is 0.500 moles/liter
(monovalent cation). Use the surface charge density equation where co is the counter ion
concentration in ions per cm'concentration x 10x 6.022 x 103, D 8.89 x 1011
coulomb/(N m cm), z ion valence, k 1.38 x 1023 N m/(ion OK), T-298 K (25.0°C),
and e 1.60 x 1019 coulomb/ion. Note: esu statcoulomb; 1.00 coulomb 3.00 x 10
statcoulomb; 1000.0 mV 1.00 N m/coulomb; and N kg m/s: 0.00100 mole charge
(monovalent) 96.3 coulomb.
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