H2O (g) → H (g) + OH (g) Reaction 1: 2 H2 (g) + ½ O2 (g) → OH (g) AH1 = 38.95 kJ Reaction 2: H2 (g) + ½ O2 (g) –→ H2O (g) AH2 = – 241.8 kJ Reaction 3: H2 (g) → 2 H (g) AH3 = 496.0 kJ Reaction 4: O2 (g) → 20 (g) AH4 = 498.3 kJ %3D

Chemistry: An Atoms First Approach
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Chapter7: Chemical Energy
Section: Chapter Questions
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Thé molecule OH is a free radical called detergent
It reacts with many hydrocarbons or other
molecules that enter the atmosphere to
oxidize them into forms that can be removed
from the atmosphere. It is present in very low
concentrations at all times in the
atmosphere, so the thermodynamics of its
production is difficult to measure directly.
To. Considering the enthalpy of the following
reactions, determine the AH of the reaction:
b) In which of the reactions listed (1 - 4)
would AH be an enthalpy of formation, AfH
°, and in which AH would be defined as
AHdissociation (also known as binding
energy)
Transcribed Image Text:It reacts with many hydrocarbons or other molecules that enter the atmosphere to oxidize them into forms that can be removed from the atmosphere. It is present in very low concentrations at all times in the atmosphere, so the thermodynamics of its production is difficult to measure directly. To. Considering the enthalpy of the following reactions, determine the AH of the reaction: b) In which of the reactions listed (1 - 4) would AH be an enthalpy of formation, AfH °, and in which AH would be defined as AHdissociation (also known as binding energy)
Н2О (g) — Н (g) + ОН (9)
Reaction 1: 1 H2 (g) + 1 О2 (g) — ОН (g)
AH1 = 38.95 kJ
Reaction 2: H2 (g) + ½ O2 (g)
H20 (g)
AH2 = – 241.8 kJ
Reaction 3: H2 (g) → 2 H (g)
AH3 = 496.0 kJ
Reaction 4: O2 (g) → 2 O (g)
AH4 = 498.3 kJ
Transcribed Image Text:Н2О (g) — Н (g) + ОН (9) Reaction 1: 1 H2 (g) + 1 О2 (g) — ОН (g) AH1 = 38.95 kJ Reaction 2: H2 (g) + ½ O2 (g) H20 (g) AH2 = – 241.8 kJ Reaction 3: H2 (g) → 2 H (g) AH3 = 496.0 kJ Reaction 4: O2 (g) → 2 O (g) AH4 = 498.3 kJ
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