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noc20_mm14_assigment_9noc20_mm14_assigment_9


Sl.No Chapter Name MP4 Download
1Lecture 1- properties of light, Image formationDownload
2Lecture 2- Magnification and resolutionDownload
3Lecture 3-Depth of field,focus and field of viewDownload
4Lecture 4-Lens defects,filters and light microscopy introductionDownload
5Lecture 5-Optical microscope demo., Bright field imaging, opaque specimen illuminationDownload
6Lecture 6-Opaque stop microscopy, Phase contrast microscopyDownload
7Lecture 7- Dark field microscopy, Polarization microscopyDownload
8Lecture 8- Differential interference contrast and fluorescence microscopyDownload
9Lecture 9-Sample preparation techniques for optical microscopyDownload
10Lecture 10-Tutorial problemsDownload
11Lecture 10 continuation-Tutorial problemsDownload
12Lecture 11-Introduction to scanning electron MicroscopyDownload
13Lecture 12- Lens aberrations, Object resolution, Image qualityDownload
14Lecture 13 Interaction between electrons and sample, Imaging capabilities, Structural analysis, Elemental analysisDownload
15Lecture 14-SEM and its mode of operation, Effect of aperture size,Working distance,condenser lens strengthDownload
16Lecture 15- SEM and its mode of operation- continuation, Relation between probe current and probe diameter, SummaryDownload
17Lecture 16- Factors affecting Interaction volume, Demonstration of SEMDownload
18Lecture 17-Image formation and interpretationDownload
19Lecture 18- Image formation and interpretation continued, EDS, WDSDownload
20Lecture 19-Special contrast mechanisms, Monte Carlo simulations of Interaction volumeDownload
21Lecture 20-Electron channeling contrast imaging (ECCI), Electron back scattered diffraction(EBSD)-Theory & instrument demonstrationDownload
22Lecture 21- Tutorial Problems on SEMDownload
23Lecture 22- Basics of X-ray emission from source, electron excitation and X-ray interaction with materials in generalDownload
24Lecture 23 Properties of X-raysDownload
25Lecture 24 Bragg's Law DerivationDownload
26Lecture 25 Diffraction relationship with reciprocal spaceDownload
27Lecture 26 X-ray scatteringDownload
28Lecture 27 Factors affecting intensities of X-ray peaksDownload
29Lecture 28 Factors affecting intensities of X-ray peaks- continuationDownload
30Lecture 29 Effect of crystallite size and strain on intensity of X-raysDownload
31Lecture 30 Profile fit, Factors affecting peak brodeningDownload
32Lecture 31 Indexing of diffraction pattern, Quantitative analysisDownload
33Lecture 32 Indexing, Quantitative analysis-continuation, Residual stress measurementsDownload
34Lecture 33 XRD and Residual stress measurement- lab demonstration Download
35Lecture 34 Introduction to Transmission Electron Microscopy (TEM)Download
36Lecture 35 Fundementals of Transmission Electron Microscopy (TEM)Download
37Lecture 36 Basics of Diffraction-1Download
38Lecture 37-Basics of Diffraction-2Download
39Lecture 38-TEM imaging-1Download
40Lecture 39 TEM imaging-2Download
41Lecture 40 TEM instrument demonstrationDownload
42Lecture 41 TEM sample preparation-1TEM sample preparation-1Download
43Lecture 42-TEM sample preparation-2Download
44Lecture 13 - XRD Tutorial - 1Download
45Lecture 14 - XRD tutorial - 2Download
46Lecture 24 - TEM Tutorial - 1Download
47Lecture 25 - TEM Tutorial - 2Download
48Lecture 48 - Quantitative metallography - Tutorial 1Download
49Lecture 49 - Quantitative metallography - Tutorial 2Download
50Lecture 50 - Quantitative metallography - Tutorial 3Download
51Lecture 51 - Quantitative metallography - Tutorial 4Download
52Lecture 52 - Quantitative metallography - Tutorial 5Download
53Lecture 53 - Quantitative metallography - Tutorial 6Download
54Lecture 54 - Quantitative metallography - Tutorial 7Download

Sl.No Chapter Name English
1Lecture 1- properties of light, Image formationDownload
Verified
2Lecture 2- Magnification and resolutionDownload
Verified
3Lecture 3-Depth of field,focus and field of viewDownload
Verified
4Lecture 4-Lens defects,filters and light microscopy introductionDownload
Verified
5Lecture 5-Optical microscope demo., Bright field imaging, opaque specimen illuminationDownload
Verified
6Lecture 6-Opaque stop microscopy, Phase contrast microscopyDownload
Verified
7Lecture 7- Dark field microscopy, Polarization microscopyDownload
Verified
8Lecture 8- Differential interference contrast and fluorescence microscopyDownload
Verified
9Lecture 9-Sample preparation techniques for optical microscopyDownload
Verified
10Lecture 10-Tutorial problemsDownload
Verified
11Lecture 10 continuation-Tutorial problemsDownload
Verified
12Lecture 11-Introduction to scanning electron MicroscopyDownload
Verified
13Lecture 12- Lens aberrations, Object resolution, Image qualityDownload
Verified
14Lecture 13 Interaction between electrons and sample, Imaging capabilities, Structural analysis, Elemental analysisDownload
Verified
15Lecture 14-SEM and its mode of operation, Effect of aperture size,Working distance,condenser lens strengthDownload
Verified
16Lecture 15- SEM and its mode of operation- continuation, Relation between probe current and probe diameter, SummaryDownload
Verified
17Lecture 16- Factors affecting Interaction volume, Demonstration of SEMDownload
Verified
18Lecture 17-Image formation and interpretationDownload
Verified
19Lecture 18- Image formation and interpretation continued, EDS, WDSDownload
Verified
20Lecture 19-Special contrast mechanisms, Monte Carlo simulations of Interaction volumeDownload
Verified
21Lecture 20-Electron channeling contrast imaging (ECCI), Electron back scattered diffraction(EBSD)-Theory & instrument demonstrationDownload
Verified
22Lecture 21- Tutorial Problems on SEMDownload
Verified
23Lecture 22- Basics of X-ray emission from source, electron excitation and X-ray interaction with materials in generalDownload
Verified
24Lecture 23 Properties of X-raysDownload
Verified
25Lecture 24 Bragg's Law DerivationDownload
Verified
26Lecture 25 Diffraction relationship with reciprocal spaceDownload
Verified
27Lecture 26 X-ray scatteringDownload
Verified
28Lecture 27 Factors affecting intensities of X-ray peaksDownload
Verified
29Lecture 28 Factors affecting intensities of X-ray peaks- continuationDownload
Verified
30Lecture 29 Effect of crystallite size and strain on intensity of X-raysDownload
Verified
31Lecture 30 Profile fit, Factors affecting peak brodeningDownload
Verified
32Lecture 31 Indexing of diffraction pattern, Quantitative analysisDownload
Verified
33Lecture 32 Indexing, Quantitative analysis-continuation, Residual stress measurementsDownload
Verified
34Lecture 33 XRD and Residual stress measurement- lab demonstration Download
Verified
35Lecture 34 Introduction to Transmission Electron Microscopy (TEM)Download
Verified
36Lecture 35 Fundementals of Transmission Electron Microscopy (TEM)Download
Verified
37Lecture 36 Basics of Diffraction-1Download
Verified
38Lecture 37-Basics of Diffraction-2Download
Verified
39Lecture 38-TEM imaging-1Download
Verified
40Lecture 39 TEM imaging-2Download
Verified
41Lecture 40 TEM instrument demonstrationDownload
Verified
42Lecture 41 TEM sample preparation-1TEM sample preparation-1Download
Verified
43Lecture 42-TEM sample preparation-2Download
Verified
44Lecture 13 - XRD Tutorial - 1Download
Verified
45Lecture 14 - XRD tutorial - 2Download
Verified
46Lecture 24 - TEM Tutorial - 1Download
Verified
47Lecture 25 - TEM Tutorial - 2Download
Verified
48Lecture 48 - Quantitative metallography - Tutorial 1Download
Verified
49Lecture 49 - Quantitative metallography - Tutorial 2Download
Verified
50Lecture 50 - Quantitative metallography - Tutorial 3Download
Verified
51Lecture 51 - Quantitative metallography - Tutorial 4Download
Verified
52Lecture 52 - Quantitative metallography - Tutorial 5Download
Verified
53Lecture 53 - Quantitative metallography - Tutorial 6Download
Verified
54Lecture 54 - Quantitative metallography - Tutorial 7Download
Verified


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