Oxidation of gaseous ClF by F2 yields liquid CIF3, an important fluorinating agent. Use the following thermochemical equations to calculate AH for the production of CIF3: rxn (1) 2 СIF(g) + O2(g) (2) 2 F2(g)02(g) -»2 OF2(g) (3) 2 CIF3()2 O2(g)Cl20(g) +3 OF2(g) Cl20(g) OF2(g) + AH° 167.5 kJ AH 43.5 kJ AH 394.1 kJ kJ

Principles of Modern Chemistry
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Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter17: Electrochemistry
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Oxidation of gaseous ClF by F2 yields liquid CIF3, an important fluorinating agent. Use the following
thermochemical equations to calculate AH
for the production of CIF3:
rxn
(1) 2 СIF(g) + O2(g)
(2) 2 F2(g)02(g) -»2 OF2(g)
(3) 2 CIF3()2 O2(g)Cl20(g) +3 OF2(g)
Cl20(g) OF2(g)
+
AH° 167.5 kJ
AH 43.5 kJ
AH 394.1 kJ
kJ
Transcribed Image Text:Oxidation of gaseous ClF by F2 yields liquid CIF3, an important fluorinating agent. Use the following thermochemical equations to calculate AH for the production of CIF3: rxn (1) 2 СIF(g) + O2(g) (2) 2 F2(g)02(g) -»2 OF2(g) (3) 2 CIF3()2 O2(g)Cl20(g) +3 OF2(g) Cl20(g) OF2(g) + AH° 167.5 kJ AH 43.5 kJ AH 394.1 kJ kJ
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