) During volcanic eruptions, hydrogen sulfide gas is given off and oxidized by air according to 2H2S(g) + 302(g) → 25O2(g) + 2H2O(g) 10. (* .- the following chemical equation: Calculate the enthalpy change (in kJ/mol) for the above reaction given: 35(s) + 2H20(g) → 2H2S(g) + SO2(g) S(s) + O2(8) → S02(g) a) -1036.1 AHrxn = ?? kJ/mol AH = 146.9 kJ/mol AH = -296.4 kJ/mol b) –742.3 c) -149.5 d) 443.3

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Chapter1: Chemical Foundations
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:) During volcanic eruptions, hydrogen sulfide gas is given off and oxidized by air according to
2H2S(g) + 302(g) → 2502(g) + 2H20(g)
10. (*-
the following chemical equation:
Calculate the enthalpy change (in kJ/mol) for the above reaction given:
35(s) + 2H20(g) → 2H2S(g) + SO2(g)
S(s) + O2(g) → SO2(g)
a) –1036.1
ΔΗrxn -
?? kJ/mol
AH = 146.9 kJ/mol
AH = -296.4 kJ/mol
b) –742.3
c) –149.5
d) 443.3
Transcribed Image Text::) During volcanic eruptions, hydrogen sulfide gas is given off and oxidized by air according to 2H2S(g) + 302(g) → 2502(g) + 2H20(g) 10. (*- the following chemical equation: Calculate the enthalpy change (in kJ/mol) for the above reaction given: 35(s) + 2H20(g) → 2H2S(g) + SO2(g) S(s) + O2(g) → SO2(g) a) –1036.1 ΔΗrxn - ?? kJ/mol AH = 146.9 kJ/mol AH = -296.4 kJ/mol b) –742.3 c) –149.5 d) 443.3
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