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Mathieu Bauchy @UCT6I2JS2k5tMYV9zg1Yq98A@youtube.com

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Learn modeling materials with simulations and machine learni


09:19
Concrete mix design optimization with Concrete Copilot
02:10
How Prairie Material and Concrete.ai Reduced Concrete's GWP by 20%: A Customer Success Story
06:31
Concrete Copilot Demo | Optimize your concrete mix designs with AI
03:10
Concrete.ai – Building Tomorrow, Sustaining Today
19:52
Concrete has a HIDDEN COST – But AI can help
01:41
How Artificial Intelligence will Decarbonize Concrete | Concrete.ai
56:25
Behind-the-Scenes at NASA's JPL: Unveiling the Secrets of Space Exploration
28:30
Solving deflection problems (UCLA CEE 108 - Mechanics of Deformable Materials)
32:19
Graphically solving bending problems (UCLA CEE 108 - Mechanics of Deformable Materials)
05:33:47
Introduction to Machine Learning for Materials Science And Engineering
41:45
Solving deflection problems (UCLA CEE 108 - Mechanics of Deformable Materials)
54:20
How to use the methods of sections to calculate the internal load, shear, and moment
56:10
Toughness of glasses
01:10:24
Hardness of glasses
01:05:20
Elasticity of glasses
46:07
Topological constraint of glass: Application
23:35
Chalcogenide glasses
44:10
Topological constraint of glass: Determining glass rigidity
39:58
Topological constraint of glass: Mechanical stability
23:48
Zachariasen's rules for the glass formation: Application
43:29
Zachariasen's rules for the glass-forming ability of oxides
40:52
Pair distribution function of glasses
23:34
The Age of Glass
14:08
Natural glasses
03:55
Presentation of the ConcreteAI platform
02:40
ConcreteAI: Reduce concrete cost and carbon footprint
02:40
ConcreteAI: Reduce concrete cost and carbon footprint
03:49
Demo of the ConcreteAI platform
58:32
Neighbor list algorithm in molecular dynamics simulations
59:44
Interatomic energy in molecular dynamics simulations
01:02:06
8.2 Mohr's Circle in Plane Stress
48:00
8.1 Stress Transformations in Plane Stress
31:30
7.6 Deflections
59:42
7.5 Flexure Formula
43:26
7.4 Moment of Inertia
34:05
7.3 Graphical Method
53:41
7.2 Integration Method
15:14
7.1 Internal Shear and Moment under Bending
36:03
6.4 Angle of Twist under Torsion
44:18
6.3 Torsion Formula
13:26
6.2 Polar Moment of Inertia
20:02
6.1 Internal Torque under Torsion
26:50
5.2 Thermal Expansion in Confined Conditions
20:51
5.1 Thermal Expansion in Unconfined Conditions
41:47
4.3 Solving Statically Indeterminate Problems
24:53
4.2 Elongation Formula
24:22
4.1 Internal Load upon Axial Deformation
29:23
3.4 Poisson's ratio
19:47
3.3 Hooke's law
26:55
3.2 Stress-Strain Diagram
32:27
3.1 Introduction to Strain
26:07
2.3 Ultimate Stress and Factor of Safety
14:37
2.2 Average Normal and Shear Stress
55:03
2.1 Introduction to Stress and State of Stress in 2D
48:05
1.3 Equilibrium of Bodies - Method of Sections
22:09
1.2 Equilibrium of Bodies - Unknown Forces
25:42
1.1 Equilibrium of Bodies - Known Forces
33:06
0 - Introduction to Mechanics of Deformable Solids
01:33:52
Implementing a Breadth-First Search to Solve Games with Matlab – Machine Learning for Engineers
28:15
Topology-Informed Machine Learning to Predict Glass Properties