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Concept explainers
(a)
Interpretation:
The values of
Concept introduction:
Standard Gibbs free energy of a reaction is used to check whether the reaction is spontaneous or not. If the value of
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Answer to Problem 8.19E
The value of
Explanation of Solution
The given reaction is represented as,
From Table
The above equation is reversed and the value of
The number of moles of electrons transferred in the above reaction is
From Table
The number of moles of electrons transferred in the above reaction is
The relation between standard Gibbs free energy and standard electrical potential is represented as,
Where,
•
•
•
•
Substitute the values of the standard oxidation potential of
The value
Substitute the values of the standard reduction potential of
The value
The value of
Where,
•
•
Substitute the value of
Therefore, the value
The number of electrons transferred in the overall reaction is
Rearrange the equation (3) for the value of
Substitute the values of
The value of
The value of
(b)
Interpretation:
The values of
Concept introduction:
Standard Gibbs free energy of a reaction is used to check whether the reaction is spontaneous or not. If the value of

Answer to Problem 8.19E
The value of
Explanation of Solution
The given reaction is represented as,
From Table
The above equation is reversed and the value of
The number of moles of electrons transferred in the above reaction is
From Table
The number of moles of electrons transferred in the above reaction is
The relation between standard Gibbs free energy and standard electrical potential is represented as,
Where,
•
•
•
•
Substitute the values of the standard oxidation potential of
The value
Substitute the values of the standard reduction potential of
The value
The value of
Where,
•
•
Substitute the value of
Therefore, the value
The number of electrons transferred in the overall reaction is
Rearrange the equation (3) for the value of
Substitute the values of
The value of
The value of
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Chapter 8 Solutions
PHYSICAL CHEMISTRY-STUDENT SOLN.MAN.
- 1. Show that the change in entropy for a fixed amount of ideal gas held at a constant temperature undergoing a volume change is given by the simple equation AS = NkB In Hint: Start with the equation M dS = du + (Œ) dv - Ž (#) an, dU du+av-dN; j=1 Why doesn't the equation for the entropy of an ideal gas depend on the strength of the intermolecular forces for the gas?arrow_forward2. Make an ice cube at 1 bar pressure by freezing an amount of liquid water that is 2 cm x 2 cm x 2 cm in volume. The density of liquid water at 0 °C is 1.000 g cm³ and the density of ice at 0 °C is 0.915 g cm³. Note that this difference in density is the reason your water pipes burst if they freeze and why you shouldn't forget to take your bottle of pop out of the freezer if you put it in there to try and cool it down faster. A. What is the work of expansion upon freezing? B. Is work done on the system or by the system?arrow_forwardI have a excitation/emission spectra of a quinine standard solution here, and I'm having trouble interpreting it. the red line is emission the blue line is excitation. i'm having trouble interpreting properly. just want to know if there is any evidence of raman or rayleigh peaks in the spectra.arrow_forward
- Give the major product of the following reaction. excess 1. OH, H₂O 1.OH H CH3CH2CH21 H 2. A.-H₂O Draw the molecule on the canvas by choosing buttons from the Tools (for bonds), Atoms, and Advanced Template toolbars. The single bond is active by default.arrow_forward2. Use Hess's law to calculate the AH (in kJ) for: rxn CIF(g) + F2(g) → CIF 3 (1) using the following information: 2CIF(g) + O2(g) → Cl₂O(g) + OF 2(g) AH = 167.5 kJ ΔΗ 2F2 (g) + O2(g) → 2 OF 2(g) 2C1F3 (1) + 202(g) → Cl₂O(g) + 3 OF 2(g) о = = -43.5 kJ AH = 394.1kJarrow_forwardci Draw the major product(s) of the following reactions: (3 pts) CH3 HNO3/H2SO4 HNO3/ H2SO4 OCH3 (1 pts)arrow_forward
- What is the molecular formula of the bond-line structure shown below OH HO ○ C14H12O2 ○ C16H14O2 ○ C16H12O2 O C14H14O2arrow_forwardCheck all molecules that are acids on the list below. H2CO3 HC2H3O2 C6H5NH2 HNO3 NH3arrow_forwardFrom the given compound, choose the proton that best fits each given description. a CH2 CH 2 Cl b с CH2 F Most shielded: (Choose one) Least shielded: (Choose one) Highest chemical shift: (Choose one) Lowest chemical shift: (Choose one) ×arrow_forward
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