The amino acid glycine, C2H5NO2, is one of the compounds used by the body to make proteins. The equation for its combustion is 4C2H5NO2(s) + 9O2(5) → 8CO2(g) +10H2O(1) +2N2(g) For each mole of glycine that burns, 973.49 kJ of heat is liberated. Use this information, plus values of AH÷° for the products of combustion, to calculate AH;° for glycine.

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter5: Thermochemistry
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Problem 5.92QE: What mass of acetylene, C2H2(g), must be burned to produce 3420 kJ of heat, given that its enthalpy...
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The amino acid glycine, C2H5NO2, is one of the compounds used by the body to make proteins. The equation for its combustion is
4C2H5NO2(s) + 9O2(g) → 8CO2(g) +10H20(1) +2N2(g)
For each mole of glycine that burns, 973.49 kJ of heat is liberated. Use this information, plus values of AH° for the products of
combustion, to calculate AH;° for glycine.
AH = i
! kJ/mol
Transcribed Image Text:The amino acid glycine, C2H5NO2, is one of the compounds used by the body to make proteins. The equation for its combustion is 4C2H5NO2(s) + 9O2(g) → 8CO2(g) +10H20(1) +2N2(g) For each mole of glycine that burns, 973.49 kJ of heat is liberated. Use this information, plus values of AH° for the products of combustion, to calculate AH;° for glycine. AH = i ! kJ/mol
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