* = MRT where R = 0.0821 L-atm/(mol-K) and T is the Kelvin temperature. Based on the stoichiometry of the salt dissociation process, you can determine the concentrations of the ions from the total ion concentration. Once you have the total ion concentrations, substitute them into the Kp expression and calculate the numerical value of Kup Part A Review | Constants | Periodic Table At 25 °C, the osmotic pressure of a solution of the salt XY is 38.0 torr. What is the solubility product of XY at 25°C? Express your answer numerically.

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* = MRT
where R=0.0821 L-atm/(mol-K) and T is the Kelvin temperature.
Based on the stoichiometry of the salt dissociation process, you can determine the concentrations of the ions from the total ion
concentration. Once you have the total ion concentrations, substitute them into the Kp expression and calculate the numerical value of
Ksp
Y
Part A
At 25 °C, the osmotic pressure of a solution of the salt XY is 38.0 torr. What is the solubility product of XY at 25 °C?
Express your answer numerically.
▸ View Available Hint(s)
1Η ΑΣΦΑ
Kp 4.16 10-6
Review | Constants I Periodic Table
?
Transcribed Image Text:* = MRT where R=0.0821 L-atm/(mol-K) and T is the Kelvin temperature. Based on the stoichiometry of the salt dissociation process, you can determine the concentrations of the ions from the total ion concentration. Once you have the total ion concentrations, substitute them into the Kp expression and calculate the numerical value of Ksp Y Part A At 25 °C, the osmotic pressure of a solution of the salt XY is 38.0 torr. What is the solubility product of XY at 25 °C? Express your answer numerically. ▸ View Available Hint(s) 1Η ΑΣΦΑ Kp 4.16 10-6 Review | Constants I Periodic Table ?
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