Materials : How They Behave Under Load /

What forces are structural materials subjected to? How do materials behave under load? How suitable are they for particular uses? And how are key properties of materials determined? This program examines forces in action, discussing translational and rotational forces and looking at cantilevers. It...

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Bibliographic Details
Corporate Author: Rees Films (Firm)
Format: Electronic Video
Language:English
Published: [Place of publication not identified] : Rees Films, [2008]
Subjects:
Online Access: Streaming video (Wentworth users only)

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505 0 0 |t Material Behavior (2:18);   |t Forces in Action (4:25);   |t Translational and Rotational Forces (3:22);   |t Cantilevers (1:07);   |t Stable Equilibrium and Free-body Diagrams (2:20);   |t Materials and Their Properties (2:47);   |t Different Forms of Carbon (0:53);   |t Measuring the Properties of Materials (2:06);   |t Stress/Strain Graphs (3:29);   |t Stress/Strain Graphs: The Plastic Region (3:02);   |t Stress/Strain Graphs: Area Under the Curve (1:01);   |t Stress/Strain Graph: Units (1:11);   |t Young's Modulus (0:37);   |t Brittle vs. Ductile (2:40);   |t Composites: Reinforced Concrete (0:59);   |t Composites: Carbon Fibers (0:31);   |t Worked Examples (1:01);   |t Question 1 (0:42);   |t Question 2 (0:57);   |t Question 3 (1:48);   |t Types of Bonding (Metallic, Ionic, and Covalent) (2:28);   |t Materials and Nanotechnology (3:16);   |t Credits: Materials: How They Behave Under Load (0:23);  
520 |a What forces are structural materials subjected to? How do materials behave under load? How suitable are they for particular uses? And how are key properties of materials determined? This program examines forces in action, discussing translational and rotational forces and looking at cantilevers. It explains how to measure the properties of materials and looks at stress/strain graphs, Young's modulus, and brittle and ductile materials. It also discusses forms of carbon, composites, types of bonding, and nanotechnology. 
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