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Week_02_Assignment_02 | Week_02_Assignment_02 |
Week_03_Assignment_03 | Week_03_Assignment_03 |
Week_04_Assignment_04 | Week_04_Assignment_04 |
Week_05_Assignment_05 | Week_05_Assignment_05 |
Week_06_Assignment_06 | Week_06_Assignment_06 |
Week_07_Assignment_07 | Week_07_Assignment_07 |
Week_08_Assignment_08 | Week_08_Assignment_08 |
Week_09_Assignment_09 | Week_09_Assignment_09 |
Week_10_Assignment_10 | Week_10_Assignment_10 |
Week_11_Assignment_11 | Week_11_Assignment_11 |
Week_12_Assignment_12 | Week_12_Assignment_12 |
Sl.No | Chapter Name | MP4 Download |
---|---|---|
1 | Lecture 1 : Basic concepts | Download |
2 | Lecture 2 : Resonance absorption | Download |
3 | Lecture 3 : Bloch Equations | Download |
4 | Lecture 4 : Relaxation | Download |
5 | Lecture 5 : Introduction to Chemical Shift | Download |
6 | Lecture 6 : Factors affecting Isotropic Chemical Shifts | Download |
7 | Lecture 7 : Spin-Spin Coupling | Download |
8 | Lecture 8 : Interpretation of multiplet structure using first order analysis | Download |
9 | Lecture 9 : Analysis of NMR spectra of molecules | Download |
10 | Lecture 10 : Quantum Mechanical Analysis-Part I | Download |
11 | Lecture 11 : Quantum Mechanical Analysis-Part I I | Download |
12 | Lecture 12 : Dynamic effects in the NMR Spectra | Download |
13 | Lecture 13 : Fourier Transform NMR | Download |
14 | Lecture 14 : Theorems on Fourier Transform | Download |
15 | Lecture 15 : Practical aspects of Fourier Transform NMR spectra | Download |
16 | Lecture 16 : Data Processing in Fourier Transform NMR | Download |
17 | Lecture 17 : Dynamic range in Fourier Transform NMR | Download |
18 | Lecture 18 : Spin Echo and Solvent Suppression | Download |
19 | Lecture 19 : Spin Decoupling in FT NMR and Relaxation Measurements | Download |
20 | Lecture 20 : Polarization Transfer | Download |
21 | Lecture 21 : Nuclear Overhauser Effect | Download |
22 | Lecture 22 : Steady state NOE and Transient NOE | Download |
23 | Lecture 23 : Distance and NOE | Download |
24 | Lecture 24 : Selective Population Inversion | Download |
25 | Lecture 25 : INEPT and Sensitivity Enhancement | Download |
26 | Lecture 26 : Rotating Frame Experiments | Download |
27 | Lecture 27 : Density matrix description of NMR - I | Download |
28 | Lecture 28 : Density matrix description of NMR - II | Download |
29 | Lecture 29 : Density matrix description of NMR - III | Download |
30 | Lecture 30 : Time evolution of density operator | Download |
31 | Lecture 31 : Density matrix description of NMR - IV | Download |
32 | Lecture 32 : Evolution of density operator in the presence of RF | Download |
33 | Lecture 33 : Product operator formalism | Download |
34 | Lecture 34 : Product operator formalism Continued | Download |
35 | Lecture 35 : Product operator formalism Continued | Download |
36 | Lecture 36 : Time evolution of basis operators | Download |
37 | Lecture 37 : Observable and Non-observable basis operators, Spin echo | Download |
38 | Lecture 38 : Spin echo Continued | Download |
39 | Lecture 39 : INEPT | Download |
40 | Lecture 40 : Multidimensional NMR Spectroscopy | Download |
41 | Lecture 41 : Two Dimensional NMR- Part I | Download |
42 | Lecture 42 : Two Dimensional NMR- Part II | Download |
43 | Lecture 43 : Types of 2D NMR Spectra | Download |
44 | Lecture 44 : Two Dimensional Separation of Interaction in NMR | Download |
45 | Lecture 45 : Two Dimensional Correlation Experiments | Download |
46 | Lecture 46 : Two Dimensional Correlation Experiments II | Download |
47 | Lecture 47 : Two Dimensional Correlation Experiments III | Download |
48 | Lecture 48 : Double Quantum Filtered COSY (DQF-COSY) | Download |
49 | Lecture 49 : Two Dimensional Nuclear Overhauser Effect Spectroscopy (2D- NOESY) | Download |
50 | Lecture 50 : Constant-time COSY | Download |
51 | Lecture 51 : Scaling in 2D NMR | Download |
52 | Lecture 52 : Total Correlation Spectroscopy | Download |
53 | Lecture 53 : 2D Heteronuclear Experiment I | Download |
54 | Lecture 54 : 2D Heteronuclear Experiment II | Download |
55 | Lecture 55 : Multidimensional NMR | Download |
56 | Lecture 56: Structure Determination of Peptides by NMR- I | Download |
57 | Lecture 57: Structure Determination of Peptides by NMR- II | Download |
58 | Lecture 58: Protein-Ligand Interaction- I | Download |
59 | Lecture 59: Protein-Ligand Interaction- II | Download |
60 | Lecture 60: Diffusion Ordered Spectroscopy | Download |
Sl.No | Chapter Name | English |
---|---|---|
1 | Lecture 1 : Basic concepts | Download Verified |
2 | Lecture 2 : Resonance absorption | Download Verified |
3 | Lecture 3 : Bloch Equations | Download Verified |
4 | Lecture 4 : Relaxation | Download Verified |
5 | Lecture 5 : Introduction to Chemical Shift | Download Verified |
6 | Lecture 6 : Factors affecting Isotropic Chemical Shifts | Download Verified |
7 | Lecture 7 : Spin-Spin Coupling | Download Verified |
8 | Lecture 8 : Interpretation of multiplet structure using first order analysis | Download Verified |
9 | Lecture 9 : Analysis of NMR spectra of molecules | Download Verified |
10 | Lecture 10 : Quantum Mechanical Analysis-Part I | Download Verified |
11 | Lecture 11 : Quantum Mechanical Analysis-Part I I | Download Verified |
12 | Lecture 12 : Dynamic effects in the NMR Spectra | Download Verified |
13 | Lecture 13 : Fourier Transform NMR | Download Verified |
14 | Lecture 14 : Theorems on Fourier Transform | Download Verified |
15 | Lecture 15 : Practical aspects of Fourier Transform NMR spectra | Download Verified |
16 | Lecture 16 : Data Processing in Fourier Transform NMR | Download Verified |
17 | Lecture 17 : Dynamic range in Fourier Transform NMR | Download Verified |
18 | Lecture 18 : Spin Echo and Solvent Suppression | Download Verified |
19 | Lecture 19 : Spin Decoupling in FT NMR and Relaxation Measurements | Download Verified |
20 | Lecture 20 : Polarization Transfer | Download Verified |
21 | Lecture 21 : Nuclear Overhauser Effect | Download Verified |
22 | Lecture 22 : Steady state NOE and Transient NOE | Download Verified |
23 | Lecture 23 : Distance and NOE | Download Verified |
24 | Lecture 24 : Selective Population Inversion | Download Verified |
25 | Lecture 25 : INEPT and Sensitivity Enhancement | Download Verified |
26 | Lecture 26 : Rotating Frame Experiments | Download Verified |
27 | Lecture 27 : Density matrix description of NMR - I | Download Verified |
28 | Lecture 28 : Density matrix description of NMR - II | Download Verified |
29 | Lecture 29 : Density matrix description of NMR - III | Download Verified |
30 | Lecture 30 : Time evolution of density operator | Download Verified |
31 | Lecture 31 : Density matrix description of NMR - IV | Download Verified |
32 | Lecture 32 : Evolution of density operator in the presence of RF | Download Verified |
33 | Lecture 33 : Product operator formalism | Download Verified |
34 | Lecture 34 : Product operator formalism Continued | Download Verified |
35 | Lecture 35 : Product operator formalism Continued | Download Verified |
36 | Lecture 36 : Time evolution of basis operators | Download Verified |
37 | Lecture 37 : Observable and Non-observable basis operators, Spin echo | Download Verified |
38 | Lecture 38 : Spin echo Continued | Download Verified |
39 | Lecture 39 : INEPT | Download Verified |
40 | Lecture 40 : Multidimensional NMR Spectroscopy | Download Verified |
41 | Lecture 41 : Two Dimensional NMR- Part I | Download Verified |
42 | Lecture 42 : Two Dimensional NMR- Part II | Download Verified |
43 | Lecture 43 : Types of 2D NMR Spectra | Download Verified |
44 | Lecture 44 : Two Dimensional Separation of Interaction in NMR | Download Verified |
45 | Lecture 45 : Two Dimensional Correlation Experiments | Download Verified |
46 | Lecture 46 : Two Dimensional Correlation Experiments II | Download Verified |
47 | Lecture 47 : Two Dimensional Correlation Experiments III | Download Verified |
48 | Lecture 48 : Double Quantum Filtered COSY (DQF-COSY) | Download Verified |
49 | Lecture 49 : Two Dimensional Nuclear Overhauser Effect Spectroscopy (2D- NOESY) | Download Verified |
50 | Lecture 50 : Constant-time COSY | Download Verified |
51 | Lecture 51 : Scaling in 2D NMR | Download Verified |
52 | Lecture 52 : Total Correlation Spectroscopy | Download Verified |
53 | Lecture 53 : 2D Heteronuclear Experiment I | Download Verified |
54 | Lecture 54 : 2D Heteronuclear Experiment II | Download Verified |
55 | Lecture 55 : Multidimensional NMR | Download Verified |
56 | Lecture 56: Structure Determination of Peptides by NMR- I | Download Verified |
57 | Lecture 57: Structure Determination of Peptides by NMR- II | Download Verified |
58 | Lecture 58: Protein-Ligand Interaction- I | Download Verified |
59 | Lecture 59: Protein-Ligand Interaction- II | Download Verified |
60 | Lecture 60: Diffusion Ordered Spectroscopy | 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 |