The nitrogen content of organic compounds can be determined by the Dumas method. The compound in question is first reacted by passage over hot CuO( s ): Compound → CuO( s ) Hot N 2 ( g ) + CO 2 ( g ) + H 2 O ( g ) The product gas is then passed through a concentrated solution of KOH to remove the CO 2 . After passage through the KOH solution, the gas contains N 2 and is saturated with water vapor. In a given experiment a 0.253-g sample of a compound produced 31.8 mL N 2 saturated with water vapor at 25°C and 726 torr. What is the mass percent of nitrogen in the compound? (The vapor pressure of water at 25°C is 23.8 torr.)
The nitrogen content of organic compounds can be determined by the Dumas method. The compound in question is first reacted by passage over hot CuO( s ): Compound → CuO( s ) Hot N 2 ( g ) + CO 2 ( g ) + H 2 O ( g ) The product gas is then passed through a concentrated solution of KOH to remove the CO 2 . After passage through the KOH solution, the gas contains N 2 and is saturated with water vapor. In a given experiment a 0.253-g sample of a compound produced 31.8 mL N 2 saturated with water vapor at 25°C and 726 torr. What is the mass percent of nitrogen in the compound? (The vapor pressure of water at 25°C is 23.8 torr.)
Solution Summary: The author explains the mass percentage of nitrogen in a given compound.
The nitrogen content of organic compounds can be determined by the Dumas method. The compound in question is first reacted by passage over hot CuO(s):
Compound
→
CuO(
s
)
Hot
N
2
(
g
)
+
CO
2
(
g
)
+
H
2
O
(
g
)
The product gas is then passed through a concentrated solution of KOH to remove the CO2. After passage through the KOH solution, the gas contains N2 and is saturated with water vapor. In a given experiment a 0.253-g sample of a compound produced 31.8 mL N2 saturated with water vapor at 25°C and 726 torr. What is the mass percent of nitrogen in the compound? (The vapor pressure of water at 25°C is 23.8 torr.)
If the dissociation energy of one mole of O2 is 5.17 eV, determine the wavelength that must be used to dissociate it with electromagnetic radiation. Indicate how many Einstein's of this radiation are needed to dissociate 1 liter of O2 at 25°C and 1 atm of pressure.Data: 1 eV = 96485 kJ mol-1; R = 0.082 atm L K-1; c = 2.998x108 m s-1; h = 6.626x10-34 J s; NA = 6.022x 1023 mol-1
Indicate the number of Einsteins that are equivalent to 550 kJ mol⁻¹ of absorbed energy (wavelength 475 nm).
Indicate the number of einsteins that are equivalent to 550 kJ mol⁻¹ of absorbed energy?
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