Use the molar DHf° under the formulas to calculate DH°rxn for the equations as balanced: 1. 2B2H6(g) + 3CO2(g) --> 2B2O3(s) + 3CH4(g)  ΔH°rxn = _______ kJ        ΔH°f = +36          –394         –1274       –75 kJ/mol exo ? endo_thermic 2. 2P2O5 + 2CaC2 -->P4 + 2CaCO3 + 2CO2   ΔH°rxn = _______ kJ      ΔH°f = –1505   –59      ___   –1207     –394 kJ/mol exo ? endo_thermic 3. 2Na2CrO4(s) + 10HCl(g) --> 4NaCl(s) + 3Cl2(g) + Cr2O3(s) + 5H2O(l) ΔH°f = –1342            –92            –411         ___        –1140     –286 kJ/mol ΔH°rxn = _______ kJ        exo ? endo_thermic

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter5: Thermochemistry
Section: Chapter Questions
Problem 5.61QE: When 7.11 g NH4NO3 is added to 100 mL water, the temperature of the calorimeter contents decreases...
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Use the molar DHf° under the formulas to calculate DH°rxn for the equations as balanced:

1. 2B2H6(g) + 3CO2(g) --> 2B2O3(s) + 3CH4(g)  ΔH°rxn = _______ kJ       

ΔH°f = +36          –394         –1274       –75 kJ/mol

exo ? endo_thermic

2. 2P2O5 + 2CaC2 -->P4 + 2CaCO3 + 2CO2   ΔH°rxn = _______ kJ     

ΔH°f = –1505   –59      ___   –1207     –394 kJ/mol

exo ? endo_thermic

3. 2Na2CrO4(s) + 10HCl(g) --> 4NaCl(s) + 3Cl2(g) + Cr2O3(s) + 5H2O(l)

ΔH°f = –1342            –92            –411         ___        –1140     –286 kJ/mol

ΔH°rxn = _______ kJ       

exo ? endo_thermic

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