18. The combustion of methanol is shown by the following equation: →2C02(g) + 4H₂O(5) 2CH3OH(1) + 302(8) Given the data which follows: a. Find the heat of reaction for the equation above. b. State the molar heat of combustion of 2 moles methanol. C. How can you determine whether the reaction is endothermic or exothermic? C(s) + 02(8) →CO. + 393 kJ 2(g) H2(8) + 1 2 O2(5) C(s) + 2H2(8) + 1 2 > H₂O() +242 kJ 02(5) CH3OH (1) + 638 kJ
18. The combustion of methanol is shown by the following equation: →2C02(g) + 4H₂O(5) 2CH3OH(1) + 302(8) Given the data which follows: a. Find the heat of reaction for the equation above. b. State the molar heat of combustion of 2 moles methanol. C. How can you determine whether the reaction is endothermic or exothermic? C(s) + 02(8) →CO. + 393 kJ 2(g) H2(8) + 1 2 O2(5) C(s) + 2H2(8) + 1 2 > H₂O() +242 kJ 02(5) CH3OH (1) + 638 kJ
Chemistry
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
Transcribed Image Text:18. The combustion of methanol is shown by the following equation:
2(5) + 4H₂O (8)
2CH₂OH()+302(8) →200.
Given the data which follows:
a. Find the heat of reaction for the equation above.
b.
State the molar heat of combustion of 2 moles methanol.
C.
How can you determine whether the reaction is endothermic or exothermic?
C(s) + O2(8)
002)
+393 kJ
H₂(g) +
2
03(5)
C(s) + 2H₂
2(g)
+
→H₂O) + 242 kJ
(5)
O
2(g)
→ CH3OH() + 638 kJ
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