Title: ?G?r (T) = -RTlnK
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2?G?r (T) -RTlnK ?G?r (T) ?H?r (T) - ?S?r
(T) How do we evaluate ?H?r (T) ? How do we
evaluate ?S?r (T) ?
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14Since both ethylene and cyclobutane are gases at
room temperature and above, all we need is the
heat capacity of the gas phase. How do we
measure the Cp(g)(298) of benzoic acid (solid),
or of methyl salicylate (liquid)?
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19Ethylene at 298 K ?Sf (298) Sethylene - 2 Sf
H2 -2 SfC Sethylene(298) 219.5 J mol-1K-1 2 Sf
H2 2(4.184)(31.2) 261.2 J mol-1K-1 2 SfC
2(4.184)(1.361) 11.4 J mol-1K-1 ?Sf (298)
(C2H4) 219.5-261.2-11.4 -53.1 J mol-1K-1
20Cyclobutane at 298 K ?Sf (298) Scyclobutane -
4 Sf H2 - 4 SfC Scyclobutane(298) 265.4 J
mol-1K-1 4 Sf H2 4(4.184)(31.2) 522.4 J
mol-1K-1 2 SfC 2(4.184)(1.361) 22.8 J
mol-1K-1 ?Sf (298) (C4H8) 265.4-522.4-22.8
-279.8 J mol-1K-1
21?Sf (298) (C4H8) -279.8 J mol-1K-1 ?Sf (298)
(C2H4) -53.1 J mol-1K-1 Cyclobutane ? 2
ethylene ?Sr (298) 2(-53.1) - (-279.8) 173.6
J mol-1K-1 ?Sr (298) 2 Sethylene -
Scyclobutane ?Sr (298) 2(219.5) - 265.4 173.6
22?Gf (298) ?Hf (298) - T ?Sf (298) Ethylene
?Hf (298) 52300 ?Sf (298) -53.1 ?Gf
(298) 52300 - (298)(-53.1) 68130 J
mol-1 Cyclobutane ?Hf (298) 28400 ?Sf
(298) -279.8 ?Gf (298) 28400 - (298)(-279.8)
111780 J mol-1 Cyclobutane ? 2 ethylene ?Gr
(298) 2(68.13) - 111.78 24.5 kJ mol-1 ?Gr
(298) 76200 - (298)(173.6) 24.5 kJ mol-1
23Ethylene
Cp(g) 67 J mol-1K-1
Sethylene(773) Sethylene(298) 219.5 J
mol-1K-1 Sethylene(773) Sethylene(298)
Sethylene(773) Sethylene(298) Cp(g)
ln(773/298)
Sethylene(773) 219.5 63.9 283.4 J mol-1 K-1
24Cyclobutane
Cp(g) 135 J mol-1K-1
Scyclobutane (298) 265.4 J mol-1K-1 Scyclobutan
e(773) Scyclobutane(298) Cp(g)ln(773/298) Scy
clobutane(773) 265.4 128.7 394 J mol-1K-1
25?Gf (773) ??Hf (773) - T ?S (773) Ethylene
?Hf (773) 84125 S (773)
-283.4 Cyclobutane ?Hf (773) 92525 S (773)
-394 ?Gf (773) ??Hf (773) - T ?S (773) ?Gf
(773) 2(84125)-92525-T2(-283.4)-(-394) ?Gf
(773) 75700 - (773)(-172.8) -57850 J mol-1