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Material Science and Engineering - IITR @UCbuRPq0WYr1iAAZsvmSq1qw@youtube.com

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38:22
Lecture 40: Alloy designation and properties
34:58
Lecture 39: Electrical and magnetic properties
39:11
Lecture 38: Ceramics, polymers, composites
32:15
Lecture 37: NDT: Hardness measurement
40:25
Lecture 36: Creep
28:28
Lecture 35: Fatigue
32:30
Lecture 34: Fracture: Part 2
28:41
Lecture 33: Fracture: Part 1
20:37
Lecture 32: Strengthening mechanism 4
25:15
Lecture 31: Strengthening mechanism 3
38:08
Lecture 29: Strengthening mechanism 1
24:09
Lecture 28: Plastic deformation 2
25:32
Lecture 27: Plastic deformation 1
28:05
Lecture 26: Engineering and true stress and strain
25:18
Lecture 30: Strengthening mechanism 2
38:21
Lecture 25: Tensile test
22:30
Lecture 24: Elastic behaviour
29:31
Lecture 23: Precipitation
31:18
Lecture 22: Heat treatment
38:55
Lecture 21: TTT and CCT curves
23:09
Lecture 20: Nucleation and growth
27:43
Lecture 19: Iron-carbon phase diagram
36:59
Lecture 18: Solidification structure
21:30
Lecture 17: Equilibrium cooling of eutectic system
24:22
Lecture 16: Equilibrium and non-equilibrium cooling
21:50
Lecture 15: Eutectic phase diagram
29:40
Lecture 14: Phase diagram 2
30:07
Lecture 13: Phase diagram 1
33:54
Lecture 12: Diffusion
37:24
Lecture 11: Crystallographic defects
30:06
Lecture 10: Quantitative metallography
19:45
Lecture 09: Microstructure: Understanding
32:38
Lecture 08: Metallography
21:53
Lecture 07: Optical aberration
33:22
Lecture 06: Optical microscope
01:01:24
Lecture 05: Crystal planes and directions: Indexing
30:57
Lecture 04: X-ray diffraction: Crystal structure determination
34:17
Lecture 03: Crystal systems and structures: Lattice
34:09
Lecture 02: Atomic structure and bonding
40:51
Lecture 01: Introduction
01:56
Materials Science and Engineering