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.
H2O2(aq) +3 I¯(aq) +2 H+(aq) → 13(aq) +2 H₂O(l)·
•••
Experiment [H2 O2]o (M)
[I]o (M) [H+]。 (M)
Initial rate (M/s)
1
0.15
0.15
0.05
0.00012
234
0.15
0.3
0.05
0.00024
0.3
0.15
0.05
0.00024
0.15
0.15
0.1
0.00048
Calculate the overall order of this reaction using the table data.
The U. S. Environmental Protection Agency (EPA) sets
limits on healthful levels of air pollutants. The
maximum level that the EPA considers safe for lead air
pollution is 1.5 μg/m³
Part A
If your lungs were filled with air containing this level of lead, how many lead atoms would be in your lungs? (Assume a total lung
volume of 5.40 L.)
ΜΕ ΑΣΦ
= 2.35 1013
?
atoms
! Check your rounding. Your final answer should be rounded to 2 significant figures in the last step.
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