Sl.No | Chapter Name | MP4 Download |
---|---|---|
1 | Introduction and review | Download |
2 | Review contd. | Download |
3 | Need for analysis | Download |
4 | Additional Thermodynamic Functions | Download |
5 | State and Path Variables | Download |
6 | Equations for a Closed System | Download |
7 | Chemical Potential | Download |
8 | Gibbs Duhem equation | Download |
9 | Maxwell’s relations | Download |
10 | Inter-relationships between thermodynamic variables contd | Download |
11 | Some useful mathematical manipulations | Download |
12 | Thermodynamic relations for a closed system with 1 mole of pure substance | Download |
13 | Maximum work | Download |
14 | Open systems | Download |
15 | Equations of state – virial equations | Download |
16 | Equations of state – cubic equations | Download |
17 | Volume estimation | Download |
18 | Volume estimation, contd | Download |
19 | Generalized correlations | Download |
20 | Generalized correlations (contd) | Download |
21 | Residual properties | Download |
22 | Residual properties contd. | Download |
23 | Generalized correlations and residual properties | Download |
24 | Fugacity coefficient estimation | Download |
25 | Review of module 3 | Download |
26 | Learning aspects | Download |
27 | Chemical potential formulations | Download |
28 | Lewis and Randall rule | Download |
29 | Partial molar properties | Download |
30 | Partial molar property estimation from mixing experiments | Download |
31 | Partial molar property estimation (contd.) | Download |
32 | Activity coefficient from excess property | Download |
33 | Activity coefficient from excess property (contd.) | Download |
34 | Models for activity coefficient in a binary system | Download |
35 | Models for activity coefficient for a binary system (contd.) | Download |
36 | Review of module 4 | Download |
37 | Criteria for phase equilibrium | Download |
38 | Phase rule for non-reacting systems | Download |
39 | Clausius Clayperon equation | Download |
40 | Clausius Clayperon equation (contd.) | Download |
41 | Vapour liquid equilibrium | Download |
42 | Vapour-liquid equilibrium (contd.) | Download |
43 | Estimation of fugacity coefficient from P-V-T data at equilibrium | Download |
44 | Liquid-liquid and solid-liquid equilibria | Download |
45 | Review of module 5 | Download |
46 | Criteria for bioreaction equilibria | Download |
47 | Phase rule for reacting biosystems | Download |
48 | Equilibrium constants | Download |
49 | Effect of temperature on the equilibrium constants | Download |
50 | Reaction in liquid or solid phases | Download |
51 | Free energy changes for some bioreactions | Download |
52 | Electrolytes | Download |
53 | Review of the classical thermodynamics part | Download |
54 | Introduction to Statistical thermodynamics | Download |
55 | Concepts of macro and microstates | Download |
56 | Thermodynamic probability | Download |
57 | Boltzmann distribution law | Download |
58 | Defining β in Boltzmann distribution law | Download |
59 | Relationship between partition function and thermodynamic quantities | Download |
60 | Partition function of mono atomic gases | Download |
61 | Entropy in terms of probablity | Download |
62 | Gibbs paradox | Download |
63 | Thermodynamic probability for distinguishable particles | Download |
64 | Thermodynamic probability for indistinguishable particles | Download |
65 | Sackur – Tetrode equation | Download |
66 | Partition function and Helmholtz and Gibbs free energy | Download |
67 | Ensemble approach | Download |
68 | Ensemble average, time average, Ergodic hypothesis | Download |
69 | Partition function for classical systems | Download |
70 | Pair potentials for atomic systems | Download |
71 | Potential for molecular systems | Download |
72 | Computer code for LJ potential | Download |
73 | Introduction to computer simulations | Download |
74 | Computer simulations of macromolecules | Download |
75 | MD simulation examples | Download |
76 | Link between theory and experiments | Download |
77 | MD protocol | Download |
78 | Computer simulation tricks | Download |
79 | Understanding force fields | Download |
80 | Idea of Z-matrix | Download |
81 | Basics of MD simulations | Download |
82 | Integration algorithms | Download |
83 | Calculation of Columbic force | Download |
84 | Calculation of LJ force | Download |
85 | Monte Carlo simulations | Download |
86 | Analysis of MD trajectory | Download |
87 | Case study (water) | Download |
Sl.No | Chapter Name | English |
---|---|---|
1 | Introduction and review | Download Verified |
2 | Review contd. | Download Verified |
3 | Need for analysis | Download Verified |
4 | Additional Thermodynamic Functions | Download Verified |
5 | State and Path Variables | Download Verified |
6 | Equations for a Closed System | Download Verified |
7 | Chemical Potential | Download Verified |
8 | Gibbs Duhem equation | Download Verified |
9 | Maxwell’s relations | Download Verified |
10 | Inter-relationships between thermodynamic variables contd | Download Verified |
11 | Some useful mathematical manipulations | Download Verified |
12 | Thermodynamic relations for a closed system with 1 mole of pure substance | Download Verified |
13 | Maximum work | Download Verified |
14 | Open systems | Download Verified |
15 | Equations of state – virial equations | Download Verified |
16 | Equations of state – cubic equations | Download Verified |
17 | Volume estimation | Download Verified |
18 | Volume estimation, contd | Download Verified |
19 | Generalized correlations | Download Verified |
20 | Generalized correlations (contd) | Download Verified |
21 | Residual properties | Download Verified |
22 | Residual properties contd. | Download Verified |
23 | Generalized correlations and residual properties | Download Verified |
24 | Fugacity coefficient estimation | Download Verified |
25 | Review of module 3 | Download Verified |
26 | Learning aspects | Download Verified |
27 | Chemical potential formulations | Download Verified |
28 | Lewis and Randall rule | Download Verified |
29 | Partial molar properties | Download Verified |
30 | Partial molar property estimation from mixing experiments | Download Verified |
31 | Partial molar property estimation (contd.) | Download Verified |
32 | Activity coefficient from excess property | Download Verified |
33 | Activity coefficient from excess property (contd.) | Download Verified |
34 | Models for activity coefficient in a binary system | Download Verified |
35 | Models for activity coefficient for a binary system (contd.) | Download Verified |
36 | Review of module 4 | Download Verified |
37 | Criteria for phase equilibrium | Download Verified |
38 | Phase rule for non-reacting systems | Download Verified |
39 | Clausius Clayperon equation | Download Verified |
40 | Clausius Clayperon equation (contd.) | Download Verified |
41 | Vapour liquid equilibrium | Download Verified |
42 | Vapour-liquid equilibrium (contd.) | Download Verified |
43 | Estimation of fugacity coefficient from P-V-T data at equilibrium | Download Verified |
44 | Liquid-liquid and solid-liquid equilibria | Download Verified |
45 | Review of module 5 | Download Verified |
46 | Criteria for bioreaction equilibria | Download Verified |
47 | Phase rule for reacting biosystems | Download Verified |
48 | Equilibrium constants | Download Verified |
49 | Effect of temperature on the equilibrium constants | Download Verified |
50 | Reaction in liquid or solid phases | Download Verified |
51 | Free energy changes for some bioreactions | Download Verified |
52 | Electrolytes | Download Verified |
53 | Review of the classical thermodynamics part | Download Verified |
54 | Introduction to Statistical thermodynamics | Download Verified |
55 | Concepts of macro and microstates | Download Verified |
56 | Thermodynamic probability | Download Verified |
57 | Boltzmann distribution law | Download Verified |
58 | Defining β in Boltzmann distribution law | Download Verified |
59 | Relationship between partition function and thermodynamic quantities | Download Verified |
60 | Partition function of mono atomic gases | Download Verified |
61 | Entropy in terms of probablity | Download Verified |
62 | Gibbs paradox | Download Verified |
63 | Thermodynamic probability for distinguishable particles | Download Verified |
64 | Thermodynamic probability for indistinguishable particles | Download Verified |
65 | Sackur – Tetrode equation | Download Verified |
66 | Partition function and Helmholtz and Gibbs free energy | Download Verified |
67 | Ensemble approach | Download Verified |
68 | Ensemble average, time average, Ergodic hypothesis | Download Verified |
69 | Partition function for classical systems | Download Verified |
70 | Pair potentials for atomic systems | Download Verified |
71 | Potential for molecular systems | Download Verified |
72 | Computer code for LJ potential | Download Verified |
73 | Introduction to computer simulations | Download Verified |
74 | Computer simulations of macromolecules | Download Verified |
75 | MD simulation examples | Download Verified |
76 | Link between theory and experiments | Download Verified |
77 | MD protocol | Download Verified |
78 | Computer simulation tricks | Download Verified |
79 | Understanding force fields | Download Verified |
80 | Idea of Z-matrix | Download Verified |
81 | Basics of MD simulations | Download Verified |
82 | Integration algorithms | Download Verified |
83 | Calculation of Columbic force | Download Verified |
84 | Calculation of LJ force | Download Verified |
85 | Monte Carlo simulations | Download Verified |
86 | Analysis of MD trajectory | Download Verified |
87 | Case study (water) | Download Verified |
Sl.No | Language | Book link |
---|---|---|
1 | English | Download |
2 | Bengali | Not Available |
3 | Gujarati | Not Available |
4 | Hindi | Not Available |
5 | Kannada | Not Available |
6 | Malayalam | Not Available |
7 | Marathi | Not Available |
8 | Tamil | Not Available |
9 | Telugu | Not Available |