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(a)
Interpretation:
In accordance with the given conditions the residual entropy in the
Concept Introduction:
Entropy is the measure of randomness in the system. According to the third law of
A thermodynamic system can have degenerate and non-degenerate energy levels. There can be different possible arrangements of the particles in the various energy levels. These possible arrangements are defined as thermodynamic probability
Where,
The entropy and thermodynamic probability is related by Boltzmann equation. As the number of possible arrangements increases the entropy also increases.
Where,
(b)
Interpretation:
In accordance with the given conditions the residual entropy in the
Concept Introduction:
Entropy is the measure of randomness in the system. According to the third law of thermodynamics entropy of a perfectly crystalline substance at zero Kelvin is zero. The substances which are not perfectly crystalline, possess entropy even at zero Kelvin. The entropy of a substance at zero Kelvin is known as residual entropy.
A thermodynamic system can have degenerate and non-degenerate energy levels. There can be different possible arrangements of the particles in the various energy levels. These possible arrangements are defined as thermodynamic probability
Where,
The entropy and thermodynamic probability is related by Boltzmann equation. As the number of possible arrangements increases the entropy also increases.
Where,
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Chapter 18 Solutions
General Chemistry
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- 3. a. Use the MS to propose at least two possible molecular formulas. For an unknown compound: 101. 27.0 29.0 41.0 50.0 52.0 55.0 57.0 100 57.5 58.0 58.5 62.0 63.0 64.0 65.0 74.0 40 75.0 76.0 20 20 40 60 80 100 120 140 160 180 200 220 m/z 99.5 68564810898409581251883040 115.0 116.0 77404799 17417M 117.0 12.9 118.0 33.5 119.0 36 133 0 1.2 157.0 2.1 159.0 16 169.0 219 170.0 17 171.0 21.6 172.0 17 181.0 1.3 183.0 197.0 100.0 198.0 200. 784 Relative Intensity 2 2 8 ō (ppm) 6 2arrow_forwardSolve the structure and assign each of the following spectra (IR and C-NMR)arrow_forward1. For an unknown compound with a molecular formula of C8H100: a. What is the DU? (show your work) b. Solve the structure and assign each of the following spectra. 8 6 2 ō (ppm) 4 2 0 200 150 100 50 ō (ppm) LOD D 4000 3000 2000 1500 1000 500 HAVENUMBERI -11arrow_forward
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