At 25°C, the following heats of reaction are known: 2CIF (g) + O2 (9) > Cl₂0 (g) + F20 (9) A Hrxn = 167.4 kJ/mol 2CIF3 (9) +202 (9)>Cl₂0 (g) + 3F20 (9) A Hrxn=341.4 kJ/mol 2F2 (g) + O2 (9) > 2F₂0 (9) A Hrxn= -43.4 kJ/mol At the same temperature, use Hess' law to calculate A Hrxn for the following reaction: CIF (g) + F2 (g)-> CIF3 (g)

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section5.5: Enthalpy Changes For Chemical Reactions
Problem 1RC: 1. For the reaction 2 Hg(l) + O2(g) → 2 HgO(s), ∆rH° = 181.6 kJ/mol-rxn. What is the enthalpy change...
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At 25° C, the following heats of reaction are known:
2CIF (g) + 02 (9) -> Cl₂0 (g) + F₂0 (9)
2CIF3 (g) + 202 (g) > Cl₂0 (g) + 3F₂0 (g)
2F2 (g) + O2 (g) →>
2F₂0 (9)
A Hrxn -43.4 kJ/mol
At the same temperature, use Hess' law to calculate A Hrxn for the following reaction:
CIF (8)+ F2 (g) -
--> CIF3 (8)
A Hrxn = 167.4 kJ/mol
A Hrxn= 341.4 kJ/mol
Transcribed Image Text:At 25° C, the following heats of reaction are known: 2CIF (g) + 02 (9) -> Cl₂0 (g) + F₂0 (9) 2CIF3 (g) + 202 (g) > Cl₂0 (g) + 3F₂0 (g) 2F2 (g) + O2 (g) →> 2F₂0 (9) A Hrxn -43.4 kJ/mol At the same temperature, use Hess' law to calculate A Hrxn for the following reaction: CIF (8)+ F2 (g) - --> CIF3 (8) A Hrxn = 167.4 kJ/mol A Hrxn= 341.4 kJ/mol
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