Modules / Lectures
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1Lec 1: Cocepts of heat and work; First Law of ThermodynamicsDownloadPDF unavailable
2Lec 2: Concepts of enthalpy and heat capacityDownloadPDF unavailable
3Lec 3: Introduction to entropyDownloadPDF unavailable
4Lec 4: Calculation of entropy for various processesDownloadPDF unavailable
5Lec 5: Gibbs and Helmholtz free energyDownloadPDF unavailable
6Lec 6: Introduction to chemical potentialDownloadPDF unavailable
7Lec 7: Clapeyron equation and phase transition; concept of fugacityDownloadPDF unavailable
8Lec 8: Calculation of fugacity; free energy of mixingDownloadPDF unavailable
9Lec 9: Partial molar quantities; excess thermodynamic quantitiesDownloadPDF unavailable
10Lec 10: Concept of activity and activity coefficients; Debye-Huckel limiting lawDownloadPDF unavailable
11Lec 11: Phase Diagram of one component systemsDownloadPDF unavailable
12Lec 12: Phase Diagram of two component systemsDownloadPDF unavailable
13Lec 13: Phase Diagram of three component system; one dimensional random walkDownloadPDF unavailable
14Lec 14: Macroscopic and microscopic states; Boltzmann distribution; Canonical partition functionDownloadPDF unavailable
15Lec 15: Calculation of different thermodynamical quantities using canonical partition functionDownloadPDF unavailable
16Lec 16: Introduction to molecular partition functionDownloadPDF unavailable
17Lec 17: Translational, electronic and nuclear partition functionDownloadPDF unavailable
18Lec 18: Rotational partition functionDownloadPDF unavailable
19Lec 19: Vibrational partitition function; Introduction to grand canonical ensembleDownloadPDF unavailable
20Lec 20: Grand canonical distribution; Introduction to microcanonical ensembleDownloadPDF unavailable
21Lec 21: Problems on classical thermodynamics-1DownloadPDF unavailable
22Lec 22: Problems on classical thermodynamics-2DownloadPDF unavailable
23Lec 23: Problems on statistical thermodynamics-1DownloadPDF unavailable
24Lec 24: Problems on statistical thermodynamics-2DownloadPDF unavailable