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Sl.No Chapter Name MP4 Download Transcript Download
1Lecture 01 : Introductory ConceptsDownloadDownload
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2Lecture 02 : Properties of Pure SubstancesDownloadDownload
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3Lecture 03 : Properties of Pure Substances (contd.)DownloadDownload
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4Lecture 04 : Introduction to Property TablesDownloadDownload
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5Lecture 05 : Properties of Pure Substances: Example problems (contd.)DownloadDownload
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6Lecture 06: Properties of Pure Substances: Example problems (contd.)DownloadDownload
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7Lecture 07: Use of Computer as Means of Learning ThermodynamicsDownloadDownload
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8Lecture 08: Properties of Pure Substances (Contd.)DownloadDownload
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9Lecture 09: Properties of Pure Substances Spring - Piston ProblemDownloadDownload
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10Lecture 10: Heat and WorkDownloadDownload
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11Lecture 11 : Heat and Work : Representative ProblemsDownloadDownload
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12Lecture 12 : Heat and Work : Representative Problems (Contd.)DownloadDownload
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13Lecture 13 : Heat and Work : Representative Problems (Contd.)DownloadDownload
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14Lecture 14 : First Law of Thermodynamics for a Control Mass SystemDownloadDownload
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15Lecture 15 : Enthalpy and Specific HeatsDownloadDownload
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16Lecture 16 : First Law for a Control Mass System : Representative ExamplesDownloadDownload
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17Lecture 17 : First Law for a Control Mass System : Representative Examples (Contd.)DownloadDownload
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18Lecture 18 : First Law for a Control Mass System : Representative Examples (Contd.)DownloadDownload
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19Lecture 19 : Control Volume Conservation Reynolds Transport TheoremDownloadDownload
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20Lecture 20 : Control Volume Mass and Energy BalanceDownloadDownload
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21Lecture 21 : Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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22Lecture 22 : First Law for Steady State Steady Flow (SSSF) ProcessDownloadDownload
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23Lecture 23 : First Law for SSSF Process : Example ProblemDownloadDownload
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24Lecture 24 : First Law for SSSF Process : Example Problem (contd.)DownloadDownload
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25Lecture 25 : First Law for SSSF Process : Example Problem (contd.)DownloadDownload
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26Lecture 26 : First Law for SSSF Process : Example Problem (contd.)DownloadDownload
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27Lecture 27 : Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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28Lecture 28 : First Law of Thermodynamics for Unsteady Processes in a Control VolumeDownloadDownload
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29Lecture 29 : First Law for Unsteady Problems - Examples DownloadDownload
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30Lecture 30 : First Law for Unsteady Problems - Examples (Contd.)DownloadDownload
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31Lecture 31 : First Law for Unsteady Problems - Examples (Contd.)DownloadDownload
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32Lecture 32 : Supplementary Lecture : Problem Solving with the Aid of a ComputerDownloadDownload
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33Lecture 33: Introduction to Second Law of ThermodynamicsDownloadDownload
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34Lecture 34: Statements of the Second Law of ThermodynamicsDownloadDownload
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35Lecture 35: Perpetual Motion Machines; Reversible and Irreversible ProcessesDownloadDownload
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36Lecture 36: Factors for Irreversibility and Introduction to Reversible CyclesDownloadDownload
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37Lecture 37: Carnot Theorem and Absolute Temperature ScaleDownloadDownload
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38Lecture 38: Second Law: Illustrative ProblemsDownloadDownload
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39Lecture 39: Clausius Inequality and Introduction to EntropyDownloadDownload
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40Lecture 40: "Thermodynamic Property Relationships; Entropy change for Solids, Liquids and Ideal gases"DownloadDownload
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41Lecture 41: Entropy balance for Reversible and Irreversible ProcessesDownloadDownload
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42Lecture 42: What is Entropy?DownloadDownload
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43Lecture 43: Entropy Change in closed system: ExamplesDownloadDownload
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44Lecture 44: Entropy Change in closed system: ExamplesDownloadDownload
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45Lecture 45: Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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46Lecture 46: Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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47Lecture 47: Entropy Transport for a flow processDownloadDownload
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48Lecture 48: Entropy Transport for flow process: ExamplesDownloadDownload
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49Lecture 49: Entropy Transport for flow process: ExamplesDownloadDownload
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50Lecture 50: Entropy Transport for flow process: ExamplesDownloadDownload
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51Lecture 51: Entropy Transport for flow process: ExamplesDownloadDownload
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52Lecture 52: Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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53Lecture 53: Exergy (Availability)DownloadDownload
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54Lecture 54: Exergy (Availability) (Contd.)DownloadDownload
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55Lecture 55: Exergy Analysis : ExamplesDownloadDownload
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56Lecture 56: Exergy Analysis : Examples (Contd.)DownloadDownload
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57Lecture 57: Thermodynamic RelationshipsDownloadDownload
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58Lecture 58: Thermodynamic Relationships (Contd.)DownloadDownload
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59Lecture 59: Otto CycleDownloadDownload
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60Lecture 60: Diesel CycleDownloadDownload
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61Lecture 61: Example Problems : Otto Cycle and Diesel CycleDownloadDownload
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62Lecture 62: Brayton CycleDownloadDownload
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63Lecture 63: Carnot Cycle and Rankine CycleDownloadDownload
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64Lecture 64: Carnot Cycle and Rankine Cycle (Contd.)DownloadDownload
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65Lecture 65: Vapour Compression Refrigeration CycleDownloadDownload
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66Lecture 66: Review of Learning ConceptsDownloadDownload
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67Lecture 67: Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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68Lecture 68: Supplementary Lecture: Problem solving with the aid of a computerDownloadDownload
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