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The densities of graphite and diamond are
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Interpretation:
The pressure required for
Concept introduction:
The change in Gibbs free energy for a reaction when reactants and products are present in their standard states of pressure, forms and concentration is represented by
Answer to Problem 5.35E
The pressure required for
Explanation of Solution
The density of graphite is
The density of diamond is
Graphite and diamond exists in equilibrium as,
The standard Gibbs free energy change for the above reaction is calculated by the formula,
Where,
•
•
The Gibbs free energy of formation of diamond and graphite is
Substitute the value of Gibbs free energy of formation of diamond and graphite in equation (1).
According to the given equation,
The value of
The above equation can also be written as,
According to equation 5.14, the value of
Where,
•
•
Substitute the value of
The molar volume of diamond is calculated by the formula,
Where,
•
•
Substitute the molar mass and density of diamond in above formula.
The molar volume of graphite is calculated by the formula,
Where,
•
•
Substitute the molar mass and density of graphite in above formula.
Substitute equation (4) and equation (5) in equation (3).
Convert
Therefore, the pressure required for
The pressure required for
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Chapter 5 Solutions
PHYSICAL CHEMISTRY-STUDENT SOLN.MAN.
- %Reflectance 95 90- 85 22 00 89 60 55 50 70 65 75 80 50- 45 40 WA 35 30- 25 20- 4000 3500 Date: Thu Feb 06 17:21:21 2025 (GMT-05:0(UnknownD Scans: 8 Resolution: 2.000 3000 2500 Wavenumbers (cm-1) 100- 2981.77 1734.25 2000 1500 1000 1372.09 1108.01 2359.09 1469.82 1181.94 1145.20 1017.01 958.45 886.97 820.49 668.25 630.05 611.37arrow_forwardNonearrow_forwardCH3 CH H3C CH3 H OH H3C- -OCH2CH3 H3C H -OCH3 For each of the above compounds, do the following: 1. List the wave numbers of all the IR bands in the 1350-4000 cm-1 region. For each one, state what bond or group it represents. 2. Label equivalent sets of protons with lower-case letters. Then, for each 1H NMR signal, give the 8 value, the type of splitting (singlet, doublet etc.), and the number protons it represents. of letter δ value splitting # of protons 3. Redraw the compound and label equivalent sets of carbons with lower-case letters. Then for each set of carbons give the 5 value and # of carbons it represents. letter δ value # of carbonsarrow_forward
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