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SIR C R REDDY (A) COLLEGE, ELURU
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Curricular Plan for the Academic Year :: 2020-21
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Name of the Faculty MemberM.RajuName of the DepartmentPG Department of Physics
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ProgramM.Sc PHYSICSGroup:
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Title of the CoursePHY201: STATISTICAL MECHANICS
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Year ISemesterIIHrs allotted:90
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SectionHours/Week6hrs
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Unit No. & NameHourDayDateTopic to be CoveredMethodologyRemarks
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Adopted
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Unit I Basic Methods and Results of Statistical Mechanics1THU1/7/2021Inroduction Lecture Method
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2FRI2/7/2021Basic Methods Lecture Method
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3SAT3/7/2021Foundations of statistical mechanicsLecture Method
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4MON5/7/2021Specification of the state of a systemLecture Method
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5TUE6/7/2021phase spaceLecture Method
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6WED7/7/2021phase spaceLecture Method
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7THU8/7/2021Basic postulatesLecture Method
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8FRI9/7/2021Probability calculationsLecture Method
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9MON12/7/2021Liouvilles theoremLecture Method
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10TUE13/7/2021Liouvilles theoremLecture Method
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11WED14/7/2021concept of ensembles.Lecture Method
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12THU15/7/2021Micro canonical ensembleLecture Method
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13FRI16/7/2021Isolated systemsLecture Method
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14SAT17/7/2021Entropy of a perfect gas in micro canonical ensembleLecture Method
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15MON19/7/2021Entropy of a perfect gas in micro canonical ensembleLecture Method
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16TUE20/7/2021Canonical ensembleLecture Method
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17WED21/7/2021system in contact with heat reservoirLecture Method
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18THU22/7/2021system in contact with heat reservoirLecture Method
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19FRI23/7/2021system in contact with heat reservoirLecture Method
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20SAT24/7/2021Grand canonical ensembleLecture Method
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21MON26/7/2021Thermodynamic function for the grand canonical ensembleLecture Method
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22TUE27/7/2021
Density and energy fluctuations in the grand canonical ensemble
Lecture Method
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Unit II Simple Applications of Statistical Mechanics23WED28/7/2021introductionLecture Method
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24THU29/7/2021Partition functions and their propertiesLecture Method
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25FRI30/7/2021Partition functions and their propertiesLecture Method
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26SAT31/7/2021Proof of the equipartition theoremLecture Method
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27MON2/8/2021Proof of the equipartition theoremLecture Method
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28TUE3/8/2021Simple applications Lecture Method
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29WED4/8/2021mean K.E. of a molecule in a gasLecture Method
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30THU5/8/2021Brownian motionLecture Method
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31FRI6/8/2021Harmonic OscillatorLecture Method
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32SAT7/8/2021Harmonic OscillatorLecture Method
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33MON9/8/2021Partition function for polyatomic moleculesLecture Method
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34TUE10/8/2021Partition function for polyatomic moleculesLecture Method
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35WED11/8/2021Electronic energy, vibrational energy and rotational energy of a diatomic moleculeLecture Method
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36THU12/8/2021Electronic energy, vibrational energy and rotational energy of a diatomic moleculeLecture Method
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37FRI13/8/2021Calculation of thermo dynamic quantities to an ideal mono atomic gasLecture Method
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38MON8/16/2021Calculation of thermo dynamic quantities to an ideal mono atomic gasLecture Method
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39TUE17/8/2021Specific heats of solidsLecture Method
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40WED18/8/2021Einstein model of solidsLecture Method
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41FRI20/8/2021Einstein model of solidsLecture Method
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42SAT21/8/2021Debye model of solidsLecture Method
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43MON23/8/2021Debye model of solidsLecture Method
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44TUE24/8/2021Debye model of solidsLecture Method
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45WED25/8/2021Gibbs paradoxLecture Method
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46THU26/8/2021Gibbs paradoxLecture Method
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47FRI27/8/2021Effect of Nuclear spin-ortho and Para HydrogenLecture Method
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48SAT28/8/2021Effect of Nuclear spin-ortho and Para HydrogenLecture Method
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Unit III Quantum Statistics49TUE31/8/2021 Introduction to Quantum StatisticsLecture Method
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50WED1/9/2021Formulation of the statistical problemLecture Method
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51THU2/9/2021Maxwell–Boltzmann statisticsLecture Method
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52FRI3/9/2021Maxwell–Boltzmann statisticsLecture Method
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53SAT4/9/2021Photon statisticsLecture Method
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54MON6/9/2021Photon statisticsLecture Method
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55TUE7/9/2021Bose-Einstein statisticsLecture Method
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56WED8/9/2021Bose-Einstein statisticsLecture Method
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57THU9/9/2021Fermi–Dirac statisticsLecture Method
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58MON13/9/2021Fermi–Dirac statisticsLecture Method
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59TUE14/9/2021calculation of dispersion for MB, BE & FD statisticsLecture Method
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60WED15/9/2021calculation of dispersion for MB, BE & FD statisticsLecture Method
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61THU16/9/2021calculation of dispersion for MB, BE & FD statisticsLecture Method
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62FRI17/9/2021Bose-Einstein condensationLecture Method
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63SAT18/9/2021Bose-Einstein condensationLecture Method
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64MON20/9/2021Thermionic emissionLecture Method
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65TUE21/9/2021Thermionic emissionLecture Method
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66WED22/9/2021Thermionic emissionLecture Method
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67THU23/9/2021Black body radiationLecture Method
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68FRI24/9/2021Black body radiationLecture Method
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69SAT25/9/2021Black body radiationLecture Method
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70MON27/9/2021 theory of white dwarf stars.Lecture Method
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71TUE28/9/2021 theory of white dwarf stars.Lecture Method
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72WED29/9/2021theory of white dwarf stars.Lecture Method
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UNIT-IV Phase Transitions and Critical Phenomena73THU30/9/2021introduction-Lecture Method
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74FRI1/10/2021Phase Transitions Lecture Method
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75MON4/10/2021Critical PhenomenaLecture Method
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76TUE5/10/2021Phase transitionsLecture Method
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77WED6/10/2021conditions for Phase equilibriumLecture Method
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78THU7/10/2021conditions for Phase equilibriumLecture Method
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79FRI8/10/2021First order Phase transition Lecture Method
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80MON11/10/2021First order Phase transition Lecture Method
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81TUE12/10/2021the Clausius–Clayperon equationLecture Method
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82THU14/10/2021the Clausius–Clayperon equationLecture Method
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83FRI15/10/2021Second order phase transitionLecture Method
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84SAT16/10/2021Second order phase transitionLecture Method
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85MON18/10/2021Second order phase transitionLecture Method
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86TUE19/10/2021the critical indicesLecture Method
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87WED20/10/2021Van der Waals theory of liquid gas transitionLecture Method
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88THU21/10/2021Van der Waals theory of liquid gas transitionLecture Method