The value of Δ G ° for following reaction at 25 ° C is to be calculated. Also, whether catalyst will work on this reaction or not should be determined. 2 NH 3 ( g ) → H 2 ( g ) + N 2 H 4 ( 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 mole ammonia is equal to − 16.5 kJ .
The value of Δ G ° for following reaction at 25 ° C is to be calculated. Also, whether catalyst will work on this reaction or not should be determined. 2 NH 3 ( g ) → H 2 ( g ) + N 2 H 4 ( 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 mole ammonia is equal to − 16.5 kJ .
Solution Summary: The author explains the value of Delta G° for a given reaction at 25° C.
The value of ΔG° for following reaction at 25°C is to be calculated. Also, whether catalyst will work on this reaction or not should be determined.
2NH3(g)→H2(g)+N2H4(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 mole ammonia is equal to −16.5 kJ.
9.26 Explain in detail how you would distinguish between the following sets of compounds using the indicated method
of spectroscopy.
1H NMR
13 C and 1H NMR
13C NMR
9.21 How many 13C NMR signals would you predict for each of the compounds shown in Problem 9.20?
OH
Br
OH
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