The mathematical relationship between ΔG, E ° and K are should be given. Concept introduction: Gibbs Energy ΔG : The energy change of a system is given by Gibbs Energy ΔG in thermodynamics , in the energy difference between reactants and products are given by ΔG . Standard Cell Potential E ° : The maximum potential differences between two electrodes in a cell are measured at standard stats conditions to give a standard cell potential. The stats conditions are, 25°C Temperature , 1 atm Pressure and 1M Concentration It is given by, E° cell =E reduction +E oxidation E° cell =E cathode +E anode The Equilibrium Constant K : The equilibrium constant is given by the ratio between concentrations of produces with reactants and it is, aA+bB → cC+dD The equilibrium constant for the above reaction is, K c = [C] c [D] d [A] a [B] b
The mathematical relationship between ΔG, E ° and K are should be given. Concept introduction: Gibbs Energy ΔG : The energy change of a system is given by Gibbs Energy ΔG in thermodynamics , in the energy difference between reactants and products are given by ΔG . Standard Cell Potential E ° : The maximum potential differences between two electrodes in a cell are measured at standard stats conditions to give a standard cell potential. The stats conditions are, 25°C Temperature , 1 atm Pressure and 1M Concentration It is given by, E° cell =E reduction +E oxidation E° cell =E cathode +E anode The Equilibrium Constant K : The equilibrium constant is given by the ratio between concentrations of produces with reactants and it is, aA+bB → cC+dD The equilibrium constant for the above reaction is, K c = [C] c [D] d [A] a [B] b
Solution Summary: The author explains Gibbs Energy G in thermodynamics, the energy difference between reactants and products, and the standard cell potential.
Author: Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
(a
4 shows scanning electron microscope (SEM) images of extruded
actions of packing bed for two capillary columns of different diameters,
al 750 (bottom image) and b) 30-μm-i.d. Both columns are packed with the
same stationary phase, spherical particles with 1-um diameter.
A) When the columns were prepared, the figure shows that the column with
the larger diameter has more packing irregularities. Explain this observation.
B) Predict what affect this should have on band broadening and discuss your
prediction using the van Deemter terms.
C) Does this figure support your explanations in application question 33?
Explain why or why not and make any changes in your answers in light of
this figure.
Figure 4 SEM images of
sections of packed columns
for a) 750 and b) 30-um-i.d.
capillary columns.³
fcrip
= ↓ bandwidth Il temp
32. What impact (increase, decrease, or no change) does each of the following conditions have on the individual
components of the van Deemter equation and consequently, band broadening?
Increase temperature
Longer column
Using a gas mobile phase
instead of liquid
Smaller particle stationary phase
Multiple Paths
Diffusion
Mass Transfer
34. Figure 3 shows Van Deemter plots for a solute molecule using different column inner diameters (i.d.).
A) Predict whether decreasing the column inner diameters increase or decrease bandwidth.
B) Predict which van Deemter equation coefficient (A, B, or C) has the greatest effect on increasing or
decreasing bandwidth as a function of i.d. and justify your answer.
Figure 3 Van Deemter plots for hydroquinone using different column inner diameters (i.d. in μm). The data was
obtained from liquid chromatography experiments using fused-silica capillary columns packed with 1.0-μm particles.
35
20
H(um)
큰 20
15
90
0+
1500
100
75
550
01
02
594
05
μ(cm/sec)
30
15
10
Chapter 19 Solutions
General Chemistry - Standalone book (MindTap Course List)
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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