No. | Subject | Course | Topic | User Category | Telecast Date / Day | Telecast Time | Repeat Time |
---|---|---|---|---|---|---|---|
1 | Material Science Engineering, Mining and Ocean Engineering | CORROSION I | 08:00:00 - 08:29:01 || | ||||
2 | Material Science Engineering, Mining and Ocean Engineering | CORROSION II | 08:29:01 - 09:02:40 || | ||||
3 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 09:02:40 - 09:30:24 || | |||
4 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 09:30:24 - 09:56:51 || | |||
5 | Material Science Engineering, Mining and Ocean Engineering | OF CORROSION | 09:56:51 - 10:26:16 || | ||||
6 | Material Science Engineering, Mining and Ocean Engineering | GALVANIC CORROSION | 10:26:16 - 10:56:35 || | ||||
7 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 10:56:35 - 11:24:04 || | |||
8 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 11:24:04 - 12:01:42 || | ||||
9 | Material Science Engineering, Mining and Ocean Engineering | PITTING CORROSION | 12:01:42 - 12:31:55 || | ||||
10 | Material Science Engineering, Mining and Ocean Engineering | CORROSION: EXPLANATION WITH EXAMPLES | 12:31:55 - 13:03:15 || | ||||
11 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Rate and Temperature | 13:03:15 - 13:31:15 || | |||
12 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Evolution | 13:31:15 - 13:58:08 || | |||
13 | Material Science Engineering, Mining and Ocean Engineering | NATURE OF CORROSION AND ITS THERMODYNAMICS | 13:58:08 - 14:26:28 || | ||||
14 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONI | 14:26:28 - 14:58:44 || | ||||
15 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 14:58:44 - 15:21:40 || | ||||
16 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Recrystallization | 15:21:40 - 16:00:00 || | |||
17 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | TO R | 16:00:00 - 16:21:52 || | |||
18 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | GETTING HELP | 16:21:52 - 16:49:45 || | |||
19 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | 16:49:45 - 17:16:51 || | ||||
20 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY | 17:16:51 - 17:47:03 || | |||
21 | Engineering and Material Science | multicomponent solids | ENERGY-COMPOSITION CURVES, PHASE DIAGRAMS AND GIBBS PHASE RULE | 17:47:03 - 18:42:21 || | |||
22 | Engineering and Material Science | steelmaking process in continuous casting | ISOTHERMAL AND NON-ISOTHERMAL SYSTEM | 18:42:21 - 19:15:19 || | |||
23 | Engineering and Material Science | steelmaking process in continuous casting | AQUEOUS MODELING | 19:15:19 - 20:00:00 || | |||
24 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION III | 20:00:00 - 20:23:21 || | |||
25 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION IV | 20:23:21 - 20:38:14 || | |||
26 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRAIN | 20:38:14 - 21:06:54 || | |||
27 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY AND ELASTIC PROPERTIES | 21:06:54 - 21:40:25 || | |||
28 | Engineering and Material Science | multicomponent solids | MULTICOMPONENT IDEAL SOLUTION | 21:40:25 - 22:03:04 || | |||
29 | Engineering and Material Science | multicomponent solids | MODEL: APPLICATION TO TERNARY SYSTEM | 22:03:04 - 22:39:47 || | |||
30 | Engineering and Material Science | steelmaking process in continuous casting | SIMILARITY IN PHYSICAL MODELING | 22:39:47 - 23:13:36 || | |||
31 | Engineering and Material Science | steelmaking process in continuous casting | 23:13:36 - 00:00:00 || | ||||
32 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION I | 00:00:00 - 00:17:10 (2024-10-13) || | |||
33 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION II | 00:17:10 - 00:38:34 (2024-10-13) || | |||
34 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | AND ENGINEERING STRESS & STRAIN | 00:38:34 - 01:10:54 (2024-10-13) || | |||
35 | Engineering and Material Science | multicomponent solids | model : Application to ternary system | 01:10:54 - 01:37:56 (2024-10-13) || | |||
36 | Engineering and Material Science | multicomponent solids | ACTIVITY AND GIBBS FREE ENERGY OF MIXING | 01:37:56 - 02:20:05 (2024-10-13) || | |||
37 | Engineering and Material Science | steelmaking process in continuous casting | CONTINUOUS CASTING UNIT | 02:20:05 - 02:53:06 (2024-10-13) || | |||
38 | Engineering and Material Science | steelmaking process in continuous casting | 02:53:06 - 03:25:28 (2024-10-13) || | ||||
39 | Engineering and Material Science | steelmaking process in continuous casting | PHYSICAL MODELING | 03:25:28 - 04:00:00 (2024-10-13) || | |||
40 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | DISTRIBUTION | 04:00:00 - 04:30:17 (2024-10-13) || | |||
41 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRESS & TRANSFORMATION OF AXES | 04:30:17 - 05:00:14 (2024-10-13) || | |||
42 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | AXES AND PRINCIPLE STRESSES | 05:00:14 - 05:31:06 (2024-10-13) || | |||
43 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRESS & STRAIN | 05:31:06 - 06:00:28 (2024-10-13) || | |||
44 | Engineering and Material Science | multicomponent solids | SECOND LAW AND ILLUSTRATION OF INTERMIXING AS IRREVERSIBLE PROCESS | 06:00:28 - 06:37:33 (2024-10-13) || | |||
45 | Engineering and Material Science | multicomponent solids | STABILITY AND PHASE DIAGRAMS IN SINGLE COMPONENT SYSTEMS | 06:37:33 - 07:22:38 (2024-10-13) || | |||
46 | Engineering and Material Science | steelmaking process in continuous casting | CASTING MACHINE | 07:22:38 - 08:00:00 (2024-10-13) || | |||
47 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONII | 08:00:00 - 08:28:56 || | ||||
48 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OFCORROSIONIII | 08:28:56 - 09:00:55 || | ||||
49 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization : Critical Stress and Strain | 09:00:55 - 09:25:22 || | |||
50 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization (CDRX) and Geometrical Dynamic Recrystallization (GDRX) | 09:25:22 - 09:56:50 || | |||
51 | Material Science Engineering, Mining and Ocean Engineering | FREE ENERGY AND EQUILIBRIUM CONSTANT | 09:56:50 - 10:25:30 || | ||||
52 | Material Science Engineering, Mining and Ocean Engineering | NERNST EQUATION | 10:25:30 - 10:57:07 || | ||||
53 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 10:57:07 - 11:23:15 || | |||
54 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 11:23:15 - 11:57:03 || | |||
55 | Material Science Engineering, Mining and Ocean Engineering | REDUCTION POTENTIAL SERIES FOR PURE METALS | 11:57:03 - 12:27:15 || | ||||
56 | Material Science Engineering, Mining and Ocean Engineering | POTENTIALS IN ACIDIC AND NEUTRAL SOLUTIONS | 12:27:15 - 12:58:30 || | ||||
57 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture | 12:58:30 - 13:35:21 || | |||
58 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture:Texture Components | 13:35:21 - 13:52:19 || | |||
59 | Material Science Engineering, Mining and Ocean Engineering | IN TERMS OF PH | 13:52:19 - 14:22:05 || | ||||
60 | Material Science Engineering, Mining and Ocean Engineering | STANDARD REDUCTION POTENTIAL SERIES OF PURE METALS | 14:22:05 - 14:51:29 || | ||||
61 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture: Application | 14:51:29 - 15:10:49 || | |||
62 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis | 15:10:49 - 16:00:00 || | |||
63 | Material Science Engineering, Mining and Ocean Engineering | CORROSION I | 16:00:00 - 16:29:01 || | ||||
64 | Material Science Engineering, Mining and Ocean Engineering | CORROSION II | 16:29:01 - 17:02:40 || | ||||
65 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 17:02:40 - 17:30:24 || | |||
66 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 17:30:24 - 17:56:51 || | |||
67 | Material Science Engineering, Mining and Ocean Engineering | OF CORROSION | 17:56:51 - 18:26:16 || | ||||
68 | Material Science Engineering, Mining and Ocean Engineering | GALVANIC CORROSION | 18:26:16 - 18:56:35 || | ||||
69 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 18:56:35 - 19:24:04 || | |||
70 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 19:24:04 - 20:01:42 || | ||||
71 | Material Science Engineering, Mining and Ocean Engineering | PITTING CORROSION | 20:01:42 - 20:31:55 || | ||||
72 | Material Science Engineering, Mining and Ocean Engineering | CORROSION: EXPLANATION WITH EXAMPLES | 20:31:55 - 21:03:15 || | ||||
73 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Rate and Temperature | 21:03:15 - 21:31:15 || | |||
74 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Evolution | 21:31:15 - 21:58:08 || | |||
75 | Material Science Engineering, Mining and Ocean Engineering | NATURE OF CORROSION AND ITS THERMODYNAMICS | 21:58:08 - 22:26:28 || | ||||
76 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONI | 22:26:28 - 22:58:44 || | ||||
77 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 22:58:44 - 23:21:40 || | ||||
78 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Recrystallization | 23:21:40 - 00:00:00 || | |||
79 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | TO R | 00:00:00 - 00:21:52 (2024-10-15) || | |||
80 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | GETTING HELP | 00:21:52 - 00:49:45 (2024-10-15) || | |||
81 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | 00:49:45 - 01:16:51 (2024-10-15) || | ||||
82 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY | 01:16:51 - 01:47:03 (2024-10-15) || | |||
83 | Engineering and Material Science | multicomponent solids | ENERGY-COMPOSITION CURVES, PHASE DIAGRAMS AND GIBBS PHASE RULE | 01:47:03 - 02:42:21 (2024-10-15) || | |||
84 | Engineering and Material Science | steelmaking process in continuous casting | ISOTHERMAL AND NON-ISOTHERMAL SYSTEM | 02:42:21 - 03:15:19 (2024-10-15) || | |||
85 | Engineering and Material Science | steelmaking process in continuous casting | AQUEOUS MODELING | 03:15:19 - 04:00:00 (2024-10-15) || | |||
86 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION III | 04:00:00 - 04:23:21 (2024-10-15) || | |||
87 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION IV | 04:23:21 - 04:38:14 (2024-10-15) || | |||
88 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRAIN | 04:38:14 - 05:06:54 (2024-10-15) || | |||
89 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY AND ELASTIC PROPERTIES | 05:06:54 - 05:40:25 (2024-10-15) || | |||
90 | Engineering and Material Science | multicomponent solids | MULTICOMPONENT IDEAL SOLUTION | 05:40:25 - 06:03:04 (2024-10-15) || | |||
91 | Engineering and Material Science | multicomponent solids | MODEL: APPLICATION TO TERNARY SYSTEM | 06:03:04 - 06:39:47 (2024-10-15) || | |||
92 | Engineering and Material Science | steelmaking process in continuous casting | SIMILARITY IN PHYSICAL MODELING | 06:39:47 - 07:13:36 (2024-10-15) || | |||
93 | Engineering and Material Science | steelmaking process in continuous casting | 07:13:36 - 08:00:00 (2024-10-15) || | ||||
94 | Material Science Engineering, Mining and Ocean Engineering | CELL FORMATION AND GALVANIC SERIES | 08:00:00 - 08:30:59 || | ||||
95 | Material Science Engineering, Mining and Ocean Engineering | CONCENTRATION CELL AND SPONTANEITY OF CORROSION PROCESS | 08:30:59 - 09:01:50 || | ||||
96 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis: Low Strain Rate | 09:01:50 - 09:32:45 || | |||
97 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Hot Working | 09:32:45 - 10:13:09 || | |||
98 | Material Science Engineering, Mining and Ocean Engineering | CORROSION PROCESS AND INTRODUCTION TO POURBAIX DIAGRAM | 10:13:09 - 10:41:40 || | ||||
99 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM | 10:41:40 - 11:27:40 || | ||||
100 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Model : Physical Based Model | 11:27:40 - 11:48:12 || | |||
101 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | analysis : Case Study | 11:48:12 - 12:19:27 || | |||
102 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMI | 12:19:27 - 12:45:57 || | ||||
103 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMII | 12:45:57 - 13:19:16 || | ||||
104 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Deformation Mechanism maps | 13:19:16 - 13:57:08 || | |||
105 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Material Model | 13:57:08 - 14:35:37 || | |||
106 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMIII | 14:35:37 - 15:03:42 || | ||||
107 | Material Science Engineering, Mining and Ocean Engineering | OF NIH2O AND AIH2O | 15:03:42 - 15:34:45 || | ||||
108 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Application | 15:34:45 - 16:00:00 || | |||
109 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONII | 16:00:00 - 16:28:56 || | ||||
110 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OFCORROSIONIII | 16:28:56 - 17:00:55 || | ||||
111 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization : Critical Stress and Strain | 17:00:55 - 17:25:22 || | |||
112 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization (CDRX) and Geometrical Dynamic Recrystallization (GDRX) | 17:25:22 - 17:56:50 || | |||
113 | Material Science Engineering, Mining and Ocean Engineering | FREE ENERGY AND EQUILIBRIUM CONSTANT | 17:56:50 - 18:25:30 || | ||||
114 | Material Science Engineering, Mining and Ocean Engineering | NERNST EQUATION | 18:25:30 - 18:57:07 || | ||||
115 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 18:57:07 - 19:23:15 || | |||
116 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 19:23:15 - 19:57:03 || | |||
117 | Material Science Engineering, Mining and Ocean Engineering | REDUCTION POTENTIAL SERIES FOR PURE METALS | 19:57:03 - 20:27:15 || | ||||
118 | Material Science Engineering, Mining and Ocean Engineering | POTENTIALS IN ACIDIC AND NEUTRAL SOLUTIONS | 20:27:15 - 20:58:30 || | ||||
119 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture | 20:58:30 - 21:35:21 || | |||
120 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture:Texture Components | 21:35:21 - 21:52:19 || | |||
121 | Material Science Engineering, Mining and Ocean Engineering | IN TERMS OF PH | 21:52:19 - 22:22:05 || | ||||
122 | Material Science Engineering, Mining and Ocean Engineering | STANDARD REDUCTION POTENTIAL SERIES OF PURE METALS | 22:22:05 - 22:51:29 || | ||||
123 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture: Application | 22:51:29 - 23:10:49 || | |||
124 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis | 23:10:49 - 00:00:00 || | |||
125 | Material Science Engineering, Mining and Ocean Engineering | CORROSION I | 00:00:00 - 00:29:01 (2024-10-16) || | ||||
126 | Material Science Engineering, Mining and Ocean Engineering | CORROSION II | 00:29:01 - 01:02:40 (2024-10-16) || | ||||
127 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 01:02:40 - 01:30:24 (2024-10-16) || | |||
128 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 01:30:24 - 01:56:51 (2024-10-16) || | |||
129 | Material Science Engineering, Mining and Ocean Engineering | OF CORROSION | 01:56:51 - 02:26:16 (2024-10-16) || | ||||
130 | Material Science Engineering, Mining and Ocean Engineering | GALVANIC CORROSION | 02:26:16 - 02:56:35 (2024-10-16) || | ||||
131 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 02:56:35 - 03:24:04 (2024-10-16) || | |||
132 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 03:24:04 - 04:01:42 (2024-10-16) || | ||||
133 | Material Science Engineering, Mining and Ocean Engineering | PITTING CORROSION | 04:01:42 - 04:31:55 (2024-10-16) || | ||||
134 | Material Science Engineering, Mining and Ocean Engineering | CORROSION: EXPLANATION WITH EXAMPLES | 04:31:55 - 05:03:15 (2024-10-16) || | ||||
135 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Rate and Temperature | 05:03:15 - 05:31:15 (2024-10-16) || | |||
136 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Evolution | 05:31:15 - 05:58:08 (2024-10-16) || | |||
137 | Material Science Engineering, Mining and Ocean Engineering | NATURE OF CORROSION AND ITS THERMODYNAMICS | 05:58:08 - 06:26:28 (2024-10-16) || | ||||
138 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONI | 06:26:28 - 06:58:44 (2024-10-16) || | ||||
139 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 06:58:44 - 07:21:40 (2024-10-16) || | ||||
140 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Recrystallization | 07:21:40 - 08:00:00 (2024-10-16) || | |||
141 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Different Models | 08:00:00 - 08:34:03 || | |||
142 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM OF FEH2O AND AIH2O | 08:34:03 - 09:05:51 || | ||||
143 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE I | 09:05:51 - 09:34:31 || | ||||
144 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Case Study | 09:34:31 - 10:03:35 || | |||
145 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Angular Pressing (ECAP) | 10:03:35 - 10:39:49 || | |||
146 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE II | 10:39:49 - 11:08:19 || | ||||
147 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE III | 11:08:19 - 11:53:36 || | ||||
148 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Processing (FSP) | 11:53:36 - 12:34:08 || | |||
149 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Bonding (ARB) | 12:34:08 - 12:58:51 || | |||
150 | Material Science Engineering, Mining and Ocean Engineering | DENSITY | 12:58:51 - 13:27:35 || | ||||
151 | Material Science Engineering, Mining and Ocean Engineering | DENSITY AND STANDARD HYDROGEN ELECTRODE | 13:27:35 - 14:10:52 || | ||||
152 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | (MAF) | 14:10:52 - 14:32:54 || | |||
153 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Deformation : Case Study | 14:32:54 - 14:59:11 || | |||
154 | Material Science Engineering, Mining and Ocean Engineering | DOUBLE LAYER AND POLARIZATION | 14:59:11 - 15:28:29 || | ||||
155 | Material Science Engineering, Mining and Ocean Engineering | BETWEEN CURRENT DENSITY AND OVERVOLTAGE | 15:28:29 - 16:00:00 || | ||||
156 | Material Science Engineering, Mining and Ocean Engineering | CELL FORMATION AND GALVANIC SERIES | 16:00:00 - 16:30:59 || | ||||
157 | Material Science Engineering, Mining and Ocean Engineering | CONCENTRATION CELL AND SPONTANEITY OF CORROSION PROCESS | 16:30:59 - 17:01:50 || | ||||
158 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis: Low Strain Rate | 17:01:50 - 17:32:45 || | |||
159 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Hot Working | 17:32:45 - 18:13:09 || | |||
160 | Material Science Engineering, Mining and Ocean Engineering | CORROSION PROCESS AND INTRODUCTION TO POURBAIX DIAGRAM | 18:13:09 - 18:41:40 || | ||||
161 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM | 18:41:40 - 19:27:40 || | ||||
162 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Model : Physical Based Model | 19:27:40 - 19:48:12 || | |||
163 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | analysis : Case Study | 19:48:12 - 20:19:27 || | |||
164 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMI | 20:19:27 - 20:45:57 || | ||||
165 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMII | 20:45:57 - 21:19:16 || | ||||
166 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Deformation Mechanism maps | 21:19:16 - 21:57:08 || | |||
167 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Material Model | 21:57:08 - 22:35:37 || | |||
168 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMIII | 22:35:37 - 23:03:42 || | ||||
169 | Material Science Engineering, Mining and Ocean Engineering | OF NIH2O AND AIH2O | 23:03:42 - 23:34:45 || | ||||
170 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Application | 23:34:45 - 00:00:00 || | |||
171 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONII | 00:00:00 - 00:28:56 (2024-10-17) || | ||||
172 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OFCORROSIONIII | 00:28:56 - 01:00:55 (2024-10-17) || | ||||
173 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization : Critical Stress and Strain | 01:00:55 - 01:25:22 (2024-10-17) || | |||
174 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Recrystallization (CDRX) and Geometrical Dynamic Recrystallization (GDRX) | 01:25:22 - 01:56:50 (2024-10-17) || | |||
175 | Material Science Engineering, Mining and Ocean Engineering | FREE ENERGY AND EQUILIBRIUM CONSTANT | 01:56:50 - 02:25:30 (2024-10-17) || | ||||
176 | Material Science Engineering, Mining and Ocean Engineering | NERNST EQUATION | 02:25:30 - 02:57:07 (2024-10-17) || | ||||
177 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 02:57:07 - 03:23:15 (2024-10-17) || | |||
178 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Projection | 03:23:15 - 03:57:03 (2024-10-17) || | |||
179 | Material Science Engineering, Mining and Ocean Engineering | REDUCTION POTENTIAL SERIES FOR PURE METALS | 03:57:03 - 04:27:15 (2024-10-17) || | ||||
180 | Material Science Engineering, Mining and Ocean Engineering | POTENTIALS IN ACIDIC AND NEUTRAL SOLUTIONS | 04:27:15 - 04:58:30 (2024-10-17) || | ||||
181 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture | 04:58:30 - 05:35:21 (2024-10-17) || | |||
182 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture:Texture Components | 05:35:21 - 05:52:19 (2024-10-17) || | |||
183 | Material Science Engineering, Mining and Ocean Engineering | IN TERMS OF PH | 05:52:19 - 06:22:05 (2024-10-17) || | ||||
184 | Material Science Engineering, Mining and Ocean Engineering | STANDARD REDUCTION POTENTIAL SERIES OF PURE METALS | 06:22:05 - 06:51:29 (2024-10-17) || | ||||
185 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Texture: Application | 06:51:29 - 07:10:49 (2024-10-17) || | |||
186 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis | 07:10:49 - 08:00:00 (2024-10-17) || | |||
187 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermo-Chemical treatments | 08:00:00 - 08:30:18 || | |||
188 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermo-Chemical treatments (Contd.) | 08:30:18 - 09:08:52 || | |||
189 | Material Science Engineering, Mining and Ocean Engineering | BUTTLERVOLMER EQUATION | 09:08:52 - 09:46:20 || | ||||
190 | Material Science Engineering, Mining and Ocean Engineering | TAFEL EQUATION | 09:46:20 - 10:13:34 || | ||||
191 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | aspects of thermo-chemical treatments: Preliminaries | 10:13:34 - 10:40:00 || | |||
192 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Gaseous Nitriding - I | 10:40:00 - 11:27:59 || | |||
193 | Material Science Engineering, Mining and Ocean Engineering | ACTIVATION POLARIZATION | 11:27:59 - 11:58:37 || | ||||
194 | Material Science Engineering, Mining and Ocean Engineering | POLARIZATION, CONCENTRATION POLARIZATION AND TOTAL POLARIZATION | 11:58:37 - 12:27:47 || | ||||
195 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Gaseous Nitriding - II | 12:27:47 - 12:59:29 || | |||
196 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Pure Iron | 12:59:29 - 13:33:14 || | |||
197 | Material Science Engineering, Mining and Ocean Engineering | concentration polarization (CP) and introduction to mixed potential theory-I | 13:33:14 - 14:10:59 || | ||||
198 | Material Science Engineering, Mining and Ocean Engineering | THEORYII | 14:10:59 - 14:38:24 || | ||||
199 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Iron based alloys | 14:38:24 - 15:07:48 || | |||
200 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Phase microstructures through nitriding | 15:07:48 - 15:29:01 || | |||
201 | Material Science Engineering, Mining and Ocean Engineering | MIXED POTENTIAL THEORY THROUGH THE CASE STUDIES AND EVENTS OF CORROSIONI | 15:29:01 - 16:00:00 || | ||||
202 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Different Models | 16:00:00 - 16:34:03 || | |||
203 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM OF FEH2O AND AIH2O | 16:34:03 - 17:05:51 || | ||||
204 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE I | 17:05:51 - 17:34:31 || | ||||
205 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Case Study | 17:34:31 - 18:03:35 || | |||
206 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Angular Pressing (ECAP) | 18:03:35 - 18:39:49 || | |||
207 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE II | 18:39:49 - 19:08:19 || | ||||
208 | Material Science Engineering, Mining and Ocean Engineering | CORROSION RATE III | 19:08:19 - 19:53:36 || | ||||
209 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Processing (FSP) | 19:53:36 - 20:34:08 || | |||
210 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Bonding (ARB) | 20:34:08 - 20:58:51 || | |||
211 | Material Science Engineering, Mining and Ocean Engineering | DENSITY | 20:58:51 - 21:27:35 || | ||||
212 | Material Science Engineering, Mining and Ocean Engineering | DENSITY AND STANDARD HYDROGEN ELECTRODE | 21:27:35 - 22:10:52 || | ||||
213 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | (MAF) | 22:10:52 - 22:32:54 || | |||
214 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Deformation : Case Study | 22:32:54 - 22:59:11 || | |||
215 | Material Science Engineering, Mining and Ocean Engineering | DOUBLE LAYER AND POLARIZATION | 22:59:11 - 23:28:29 || | ||||
216 | Material Science Engineering, Mining and Ocean Engineering | BETWEEN CURRENT DENSITY AND OVERVOLTAGE | 23:28:29 - 00:00:00 || | ||||
217 | Material Science Engineering, Mining and Ocean Engineering | CELL FORMATION AND GALVANIC SERIES | 00:00:00 - 00:30:59 (2024-10-18) || | ||||
218 | Material Science Engineering, Mining and Ocean Engineering | CONCENTRATION CELL AND SPONTANEITY OF CORROSION PROCESS | 00:30:59 - 01:01:50 (2024-10-18) || | ||||
219 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Analysis: Low Strain Rate | 01:01:50 - 01:32:45 (2024-10-18) || | |||
220 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Hot Working | 01:32:45 - 02:13:09 (2024-10-18) || | |||
221 | Material Science Engineering, Mining and Ocean Engineering | CORROSION PROCESS AND INTRODUCTION TO POURBAIX DIAGRAM | 02:13:09 - 02:41:40 (2024-10-18) || | ||||
222 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM | 02:41:40 - 03:27:40 (2024-10-18) || | ||||
223 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Model : Physical Based Model | 03:27:40 - 03:48:12 (2024-10-18) || | |||
224 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | analysis : Case Study | 03:48:12 - 04:19:27 (2024-10-18) || | |||
225 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMI | 04:19:27 - 04:45:57 (2024-10-18) || | ||||
226 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMII | 04:45:57 - 05:19:16 (2024-10-18) || | ||||
227 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Deformation Mechanism maps | 05:19:16 - 05:57:08 (2024-10-18) || | |||
228 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Material Model | 05:57:08 - 06:35:37 (2024-10-18) || | |||
229 | Material Science Engineering, Mining and Ocean Engineering | POURBAIX DIAGRAM FOR NIH2O SYSTEMIII | 06:35:37 - 07:03:42 (2024-10-18) || | ||||
230 | Material Science Engineering, Mining and Ocean Engineering | OF NIH2O AND AIH2O | 07:03:42 - 07:34:45 (2024-10-18) || | ||||
231 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Application | 07:34:45 - 08:00:00 (2024-10-18) || | |||
232 | Material Science Engineering, Mining and Ocean Engineering | CORROSION I | 08:00:00 - 08:29:01 || | ||||
233 | Material Science Engineering, Mining and Ocean Engineering | CORROSION II | 08:29:01 - 09:02:40 || | ||||
234 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 09:02:40 - 09:30:24 || | |||
235 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 09:30:24 - 09:56:51 || | |||
236 | Material Science Engineering, Mining and Ocean Engineering | OF CORROSION | 09:56:51 - 10:26:16 || | ||||
237 | Material Science Engineering, Mining and Ocean Engineering | GALVANIC CORROSION | 10:26:16 - 10:56:35 || | ||||
238 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Thermomechanical Processes | 10:56:35 - 11:24:04 || | |||
239 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 11:24:04 - 12:01:42 || | ||||
240 | Material Science Engineering, Mining and Ocean Engineering | PITTING CORROSION | 12:01:42 - 12:31:55 || | ||||
241 | Material Science Engineering, Mining and Ocean Engineering | CORROSION: EXPLANATION WITH EXAMPLES | 12:31:55 - 13:03:15 || | ||||
242 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Rate and Temperature | 13:03:15 - 13:31:15 || | |||
243 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Evolution | 13:31:15 - 13:58:08 || | |||
244 | Material Science Engineering, Mining and Ocean Engineering | NATURE OF CORROSION AND ITS THERMODYNAMICS | 13:58:08 - 14:26:28 || | ||||
245 | Material Science Engineering, Mining and Ocean Engineering | ASPECTS OF CORROSIONI | 14:26:28 - 14:58:44 || | ||||
246 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | 14:58:44 - 15:21:40 || | ||||
247 | Material Science Engineering, Mining and Ocean Engineering | AND THERMOCHEMICAL PROCESSES | Dynamic Recrystallization | 15:21:40 - 16:00:00 || | |||
248 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | TO R | 16:00:00 - 16:21:52 || | |||
249 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | GETTING HELP | 16:21:52 - 16:49:45 || | |||
250 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | 16:49:45 - 17:16:51 || | ||||
251 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY | 17:16:51 - 17:47:03 || | |||
252 | Engineering and Material Science | multicomponent solids | ENERGY-COMPOSITION CURVES, PHASE DIAGRAMS AND GIBBS PHASE RULE | 17:47:03 - 18:42:21 || | |||
253 | Engineering and Material Science | steelmaking process in continuous casting | ISOTHERMAL AND NON-ISOTHERMAL SYSTEM | 18:42:21 - 19:15:19 || | |||
254 | Engineering and Material Science | steelmaking process in continuous casting | AQUEOUS MODELING | 19:15:19 - 20:00:00 || | |||
255 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION III | 20:00:00 - 20:23:21 || | |||
256 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION IV | 20:23:21 - 20:38:14 || | |||
257 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRAIN | 20:38:14 - 21:06:54 || | |||
258 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | ELASTICITY AND ELASTIC PROPERTIES | 21:06:54 - 21:40:25 || | |||
259 | Engineering and Material Science | multicomponent solids | MULTICOMPONENT IDEAL SOLUTION | 21:40:25 - 22:03:04 || | |||
260 | Engineering and Material Science | multicomponent solids | MODEL: APPLICATION TO TERNARY SYSTEM | 22:03:04 - 22:39:47 || | |||
261 | Engineering and Material Science | steelmaking process in continuous casting | SIMILARITY IN PHYSICAL MODELING | 22:39:47 - 23:13:36 || | |||
262 | Engineering and Material Science | steelmaking process in continuous casting | 23:13:36 - 00:00:00 || | ||||
263 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION I | 00:00:00 - 00:17:10 (2024-10-19) || | |||
264 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | EXPECTATION II | 00:17:10 - 00:38:34 (2024-10-19) || | |||
265 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | AND ENGINEERING STRESS & STRAIN | 00:38:34 - 01:10:54 (2024-10-19) || | |||
266 | Engineering and Material Science | multicomponent solids | model : Application to ternary system | 01:10:54 - 01:37:56 (2024-10-19) || | |||
267 | Engineering and Material Science | multicomponent solids | ACTIVITY AND GIBBS FREE ENERGY OF MIXING | 01:37:56 - 02:20:05 (2024-10-19) || | |||
268 | Engineering and Material Science | steelmaking process in continuous casting | CONTINUOUS CASTING UNIT | 02:20:05 - 02:53:06 (2024-10-19) || | |||
269 | Engineering and Material Science | steelmaking process in continuous casting | 02:53:06 - 03:25:28 (2024-10-19) || | ||||
270 | Engineering and Material Science | steelmaking process in continuous casting | PHYSICAL MODELING | 03:25:28 - 04:00:00 (2024-10-19) || | |||
271 | Engineering and Material Science | MATERIALS DATA: COLLECTION, ANALYSIS AND INTERPRETATION | DISTRIBUTION | 04:00:00 - 04:30:17 (2024-10-19) || | |||
272 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRESS & TRANSFORMATION OF AXES | 04:30:17 - 05:00:14 (2024-10-19) || | |||
273 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | AXES AND PRINCIPLE STRESSES | 05:00:14 - 05:31:06 (2024-10-19) || | |||
274 | Engineering and Material Science | MATERIALS (NATURE AND PROPERTIES OF MATERIALS: III) | STRESS & STRAIN | 05:31:06 - 06:00:28 (2024-10-19) || | |||
275 | Engineering and Material Science | multicomponent solids | SECOND LAW AND ILLUSTRATION OF INTERMIXING AS IRREVERSIBLE PROCESS | 06:00:28 - 06:37:33 (2024-10-19) || | |||
276 | Engineering and Material Science | multicomponent solids | STABILITY AND PHASE DIAGRAMS IN SINGLE COMPONENT SYSTEMS | 06:37:33 - 07:22:38 (2024-10-19) || | |||
277 | Engineering and Material Science | steelmaking process in continuous casting | CASTING MACHINE | 07:22:38 - 08:00:00 (2024-10-19) || |
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