SOunds like a homework question. But ok I'll answer. Ceramics is one major material used for resistance. BUT if you want to impress your teacher, you can say that ALL materials (even gold) offers some level or resistance, just very little)
Insulation is directly proportional to resistance. More resistance means more insulation. And if a material is denser (i.e. the particles are situated closer to each other), then the resistance is more. Hence, more density-->more resistance-->better insulation And since different materials have different density, hence they also have different insulations. hope it helps.. :)
Yes, all conductors have resistance to some degree. Resistance is a property of materials that impedes the flow of electric current. However, some materials have lower resistance (e.g., copper) while others have higher resistance (e.g., rubber).
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Some alternative options to marine plywood for water-resistant applications include fiber cement board, plastic lumber, and composite materials like fiberglass-reinforced plastic. These materials offer similar durability and water resistance as marine plywood but may have different cost and installation requirements.
A perfect insulator has infinite ohms of resistance.
what are some different materials that produced textiles
The element that has the property of zero resistance is superconductors. Superconductors are materials that can conduct electricity without any resistance when they are cooled to very low temperatures.
because of the gravity of the earth -Jade
Common nonmetallic engineering materials include polymers, ceramics, and composites. Polymers, such as plastics and elastomers, offer flexibility and resistance to chemicals. Ceramics, known for their hardness and thermal resistance, are often used in applications like insulators and cutting tools. Composites, which combine materials like fibers and resins, provide enhanced strength-to-weight ratios, making them ideal for aerospace and automotive industries.
When choosing materials for bathroom floors, it is important to consider factors such as water resistance, durability, slip resistance, ease of maintenance, and aesthetic appeal.
The resistance of a material to the flow of energy is influenced by its conductivity, temperature, dimensions, and the presence of impurities or defects in the material's structure. Materials with high conductivity and low temperature tend to have lower resistance to energy flow, while the opposite is true for materials with low conductivity and high temperature. Additionally, materials with smaller dimensions and fewer impurities typically offer less resistance to the flow of energy.
The coefficient of friction varies depending on the materials in contact. Some examples of coefficients of friction for different materials include rubber on concrete (0.6-1.0), steel on steel (0.3-0.8), and ice on ice (0.1-0.3). These values represent the resistance to motion when one material moves or tries to move over another material.