2. Calculate AH for the following in the same way you did in #1. a. CO2 (e) + 4 H2 (g) → CH4 (g) + 2 H2O (e) -164,9 KS/wol H2O (e) -9,6 Kjlnol -122.5ky b. CO2 (g) + 3 H2 (g) → CH;OH (g) 3 H20 (g) c. 2 CO2 (e + 6 H2 (g) → CH;OCH3 (g) + d. CO2 (g) + 2 H2 (g) → OCH2 (g) + H2O (g)

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c. 4 C2H5 (g) (unburnt hydrocarbon fragment) +
13 O2 (g) → 8 CO2 (g) +
2. Calculate AH for the following in the same way you did in #1.
a. CO2 (g) +
4 H2 (g) → CH4 (g) +
2 H20 (2) -164.9 KS/wol
b. CO2 (2) +
3 Н2 (9) СH3ОН (9)
H2O (2) -L19,6 Kjlnol
-122.5 k
c. 2 CO2 (e) + 6 H2 (g) → CH3OCH3 (g)
+
3 H2O (g)
d. CO2 (e) +
2 H2 (g) → OCH2 (g) +
H2O (g)
3. Identify the above reactions as exothermic or endothermic. What pattern do you see te
thermochemical behavior of theses reactions?
Transcribed Image Text:c. 4 C2H5 (g) (unburnt hydrocarbon fragment) + 13 O2 (g) → 8 CO2 (g) + 2. Calculate AH for the following in the same way you did in #1. a. CO2 (g) + 4 H2 (g) → CH4 (g) + 2 H20 (2) -164.9 KS/wol b. CO2 (2) + 3 Н2 (9) СH3ОН (9) H2O (2) -L19,6 Kjlnol -122.5 k c. 2 CO2 (e) + 6 H2 (g) → CH3OCH3 (g) + 3 H2O (g) d. CO2 (e) + 2 H2 (g) → OCH2 (g) + H2O (g) 3. Identify the above reactions as exothermic or endothermic. What pattern do you see te thermochemical behavior of theses reactions?
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