The pK, of monobasic phosophate is 7.21 H,PO,=HPO +H* K, = 10721 at infinite dilution. However, most practical phosphate buffers have a significant ionic strength. Let's say we made a phosphate buffer in a solution with an ionic strength of 0.05 M. Please calculate the new conditional pk, value, adjusted to this ionic strength. Note that the answer should be pK, and not K,

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The pK, of monobasic phosophate is 7.21
H,PO,=HPO +H K, = 10721
at infinite dilution. However, most practical phosphate buffers have a significant ionic strength. Let's say we made a
phosphate buffer in a solution with an ionic strength of 0.05 M. Please calculate the new conditional pk," value, adjusted to
this ionic strength.
Note that the answer should be pK, and not K,*
Lead chloride has limited aqueous solubility, based on the solubility product below. This Kp value is at infinite dilution.
PbCI, = Pb?+ + 2Cr Kip = 1.61 x 10*
What if you were dissolving lead chloride in a solution with an ionic strength of 0.05 M? Please determine the adjusted
conditional value of K, at u=0.05 M.
x 10^-5
Transcribed Image Text:The pK, of monobasic phosophate is 7.21 H,PO,=HPO +H K, = 10721 at infinite dilution. However, most practical phosphate buffers have a significant ionic strength. Let's say we made a phosphate buffer in a solution with an ionic strength of 0.05 M. Please calculate the new conditional pk," value, adjusted to this ionic strength. Note that the answer should be pK, and not K,* Lead chloride has limited aqueous solubility, based on the solubility product below. This Kp value is at infinite dilution. PbCI, = Pb?+ + 2Cr Kip = 1.61 x 10* What if you were dissolving lead chloride in a solution with an ionic strength of 0.05 M? Please determine the adjusted conditional value of K, at u=0.05 M. x 10^-5
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