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Lecture NoteDownload as zip file5.5M
Module NameDownloadDescriptionDownload Size
Week 5Video Tutorial IChemistry II video tutorial I98
Week 6Video Tutorial IIVideo Tutorials 2: Vibrational (Infrared) spectroscopy2392


Sl.No Chapter Name MP4 Download
1Lecture 1: Electromagnetic radiationDownload
2Lecture 2: Interaction of radiation with matterDownload
3Lecture 3: Introduction to chemical applicationsDownload
4Lecture 4: Analysis of spectraDownload
5Lecture 5: Radiation densities and Einstein's semi classical modelDownload
6Lecture 6 : Introduction to quantum mechanics IDownload
7Lecture 7 : Introduction to quantum mechanics IIDownload
8Lecture 8 : Born-Oppenheimer approximationDownload
9Lecture 9 : Beer-Lambert lawDownload
10Lecture 10 : Diatomic Vibration Spectra Hermonic ModelDownload
11Lecture 11 : Diatomic Vibration Morse Oscillator ModelDownload
12Lecture 12 : Normal Vibrational modes Triatomic moleculesDownload
13Lecture 13 : Normal Vibrational modes Polyatomic moleculesDownload
14Lecture 14 : Vibrational Polyatomic Infrared Spectroscopy Local Modes and Group FrequenciesDownload
15Lecture 15: Microwave spectra of di-atomic moleculesDownload
16Lecture 16: Diatomic Molecules Microwave Energies and TransitionsDownload
17Lecture 17 : Methodology of solving problemsDownload
18Lecture 18 : Rotational and Vibrational Line IntensitiesDownload
19Lecture 19 : Microwave Spectra of Polyatomic molecules (Symmetric tops)Download
20Video Tutorial 2 : Part-IDownload
21Video Tutorial 2 : Part-IIDownload
22Lecture 20 : Introduction to TensorsDownload
23Lecture 21 : Polarizability TensorDownload
24Lecture 22 : Introduction to Rotational Raman Spectra.Download
25Lecture 23 : Review of basic concepts in Molecular SpectroscopyDownload
26Lecture 24 : Review of Microwave SpectroscopyDownload
27Lecture 25 : Review of Elementary Vibrational SpectroscopyDownload

Sl.No Chapter Name English
1Lecture 1: Electromagnetic radiationDownload
Verified
2Lecture 2: Interaction of radiation with matterDownload
Verified
3Lecture 3: Introduction to chemical applicationsDownload
Verified
4Lecture 4: Analysis of spectraDownload
Verified
5Lecture 5: Radiation densities and Einstein's semi classical modelDownload
Verified
6Lecture 6 : Introduction to quantum mechanics IDownload
Verified
7Lecture 7 : Introduction to quantum mechanics IIDownload
Verified
8Lecture 8 : Born-Oppenheimer approximationDownload
Verified
9Lecture 9 : Beer-Lambert lawDownload
Verified
10Lecture 10 : Diatomic Vibration Spectra Hermonic ModelDownload
Verified
11Lecture 11 : Diatomic Vibration Morse Oscillator ModelDownload
Verified
12Lecture 12 : Normal Vibrational modes Triatomic moleculesDownload
Verified
13Lecture 13 : Normal Vibrational modes Polyatomic moleculesDownload
Verified
14Lecture 14 : Vibrational Polyatomic Infrared Spectroscopy Local Modes and Group FrequenciesDownload
Verified
15Lecture 15: Microwave spectra of di-atomic moleculesDownload
Verified
16Lecture 16: Diatomic Molecules Microwave Energies and TransitionsDownload
Verified
17Lecture 17 : Methodology of solving problemsDownload
Verified
18Lecture 18 : Rotational and Vibrational Line IntensitiesDownload
Verified
19Lecture 19 : Microwave Spectra of Polyatomic molecules (Symmetric tops)Download
Verified
20Video Tutorial 2 : Part-IDownload
Verified
21Video Tutorial 2 : Part-IIDownload
Verified
22Lecture 20 : Introduction to TensorsDownload
Verified
23Lecture 21 : Polarizability TensorDownload
Verified
24Lecture 22 : Introduction to Rotational Raman Spectra.Download
Verified
25Lecture 23 : Review of basic concepts in Molecular SpectroscopyDownload
Verified
26Lecture 24 : Review of Microwave SpectroscopyDownload
Verified
27Lecture 25 : Review of Elementary Vibrational SpectroscopyDownload
Verified


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1EnglishDownload
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3GujaratiNot Available
4HindiNot Available
5KannadaNot Available
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