(a) Write the equation for the dissolution of sulphur dioxide in water. For this problem, assume that no other reaction other than dissolution takes place. Write the expression for the Henry's Law constant (KH) for this reaction. The average atmospheric sulphur dioxide concentration in Delhi, India is 13.4 µg/m³, which is equivalent to 5.11×109 atm. Calculate the concentration of sulphur dioxide dissolved in water in equilibrium with dry Delhi air at 25°C. Hint - you will need to look up the value of KH for sulphur dioxide. (b) (c)

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6.
@
(b)
(c)
Write the equation for the dissolution of sulphur dioxide in water. For this
problem, assume that no other reaction other than dissolution takes place.
Write the expression for the Henry's Law constant (KH) for this reaction.
The average atmospheric sulphur dioxide concentration in Delhi, India is 13.4
µg/m³, which is equivalent to 5.11×10-9 atm. Calculate the concentration of
sulphur dioxide dissolved in water in equilibrium with dry Delhi air at 25°C.
Hint - you will need to look up the value of KH for sulphur dioxide.
Transcribed Image Text:6. @ (b) (c) Write the equation for the dissolution of sulphur dioxide in water. For this problem, assume that no other reaction other than dissolution takes place. Write the expression for the Henry's Law constant (KH) for this reaction. The average atmospheric sulphur dioxide concentration in Delhi, India is 13.4 µg/m³, which is equivalent to 5.11×10-9 atm. Calculate the concentration of sulphur dioxide dissolved in water in equilibrium with dry Delhi air at 25°C. Hint - you will need to look up the value of KH for sulphur dioxide.
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