Whether catalyst will work on this reaction or not should be determined. Also, whether synthesis of benzene from graphite and gaseous hydrogen at 25 ° C or not should be determined. 2 C 2 H 2 ( g ) → C 6 H 6 ( l ) Concept introduction: Standard free-energy of formation use to define the free-energy change for formation of 1 mol of substance in its standard state. The reactants must be in their maximum stable form of constituent elements. It is denoted by Δ G ° f . The general expression for Δ G ° f is as follows: Δ G ° = Δ G ° f ( product ) − Δ G ° f ( reactant ) For example, formation reaction of ammonia is as follows: N 2 ( g ) + 3 H 2 ( g ) → 2 NH 3 ( g ) Standard free-energy change of 2 mol of ammonia is − 33.0 kJ , thus free-energy change of formation of 1 mol NH 3 is equal to − 16.5 kJ .
Whether catalyst will work on this reaction or not should be determined. Also, whether synthesis of benzene from graphite and gaseous hydrogen at 25 ° C or not should be determined. 2 C 2 H 2 ( g ) → C 6 H 6 ( l ) Concept introduction: Standard free-energy of formation use to define the free-energy change for formation of 1 mol of substance in its standard state. The reactants must be in their maximum stable form of constituent elements. It is denoted by Δ G ° f . The general expression for Δ G ° f is as follows: Δ G ° = Δ G ° f ( product ) − Δ G ° f ( reactant ) For example, formation reaction of ammonia is as follows: N 2 ( g ) + 3 H 2 ( g ) → 2 NH 3 ( g ) Standard free-energy change of 2 mol of ammonia is − 33.0 kJ , thus free-energy change of formation of 1 mol NH 3 is equal to − 16.5 kJ .
Solution Summary: The author explains that the free-energy of formation is defined by Delta G°_f.
Whether catalyst will work on this reaction or not should be determined. Also, whether synthesis of benzene from graphite and gaseous hydrogen at 25°C or not should be determined.
2C2H2(g)→C6H6(l)
Concept introduction:
Standard free-energy of formation use to define the free-energy change for formation of 1mol of substance in its standard state. The reactants must be in their maximum stable form of constituent elements. It is denoted by ΔG°f. The general expression for ΔG°f is as follows:
ΔG°=ΔG°f(product)−ΔG°f(reactant)
For example, formation reaction of ammonia is as follows:
N2(g)+3H2(g)→2NH3(g)
Standard free-energy change of 2 mol of ammonia is −33.0 kJ, thus free-energy change of formation of 1 mol
c)
3. Provide a common name for each of the following alcohols.
a)
a)
OH
b)
OH
c)
HO
b)
c)
4. Provide a common name for each of the following compounds.
b)
OH
a)
5
a)
Y
OH
c)
OH
Using the critical constants for water
(refer to the table in the lecture slides),
calculate the second virial coefficient.
Assume that the compression factor (Z)
is expressed as an expansion series in
terms of pressure.
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell