The concentration of hydrogen in the palladium depends on the pressure of H₂ gas applied, but in a more complex fashion than can be described by Henry's law. Under certain conditions, 0.94 g of hydrogen gas is dissolved in 215 g of palladium metal (solution density = 10.8 g/cm³). What is the molarity of this solution?

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The concentration of hydrogen in the palladium depends on the pressure of H₂ gas
applied, but in a more complex fashion than can be described by Henry's law. Under
certain conditions, 0.94 g of hydrogen gas is dissolved in 215 g of palladium metal
(solution density = 10.8 g/cm³). What is the molarity of this solution?
a) 23 M
b) 23 m
c) 12 M
d) 31 m
e) 12 m
f) 38 M
O g) 38 m
Oh) 31 M
Transcribed Image Text:The concentration of hydrogen in the palladium depends on the pressure of H₂ gas applied, but in a more complex fashion than can be described by Henry's law. Under certain conditions, 0.94 g of hydrogen gas is dissolved in 215 g of palladium metal (solution density = 10.8 g/cm³). What is the molarity of this solution? a) 23 M b) 23 m c) 12 M d) 31 m e) 12 m f) 38 M O g) 38 m Oh) 31 M
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