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Background: a 5.0 ml sample of a protein is in a solution of 0.5 M NaCl. This solution is placed in dialysis tubing to remove as much NaCl as possible. In theory, the final concentration of NaCl should be the same inside as outside of the dialusis tubing after equilibrium has been reached.
1a) If I were to put the dialysis tubing in 4.0 L of dH2O for 12hrs. What will the NaCl concentration be in mM?
1b) What would be the concentration of the NaCl be if I put the tube in 1.0 L od dH2O for 6.0 hrs. and then an additional 1.0 L of fresh dH2O for 6 hrs?
Calculate the weight percent composition of the mixture, using the same assumptions as in part A.
the slopes corresponding to standard Beer's Law plots were as follows: ?IA = 0.072 ?IB = 0.306 ?IIA = 0.760 ?IIB = 0.036 Using this data, calculate the ratio between the relative concentrations of MR- and HMR in this solution.
Calculate the energy change for the reaction K(g) + I(g) → K+(g) + I- (g) given the following ionization energy (IE) and electron affinity (EA) values. IE K = 419 kJ/mol, IE I = 1010 kJ/mol; EA K = 48 kJ/mol. EA I= 295 kJ/mol
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calculate the solubility of silver sulfate in water at 25 degree celcius, express answer in molarity; and how would the solubility of silver sulfate change
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