Want this question answered?
Electrical conductivity is not a change but is a physical property.
Copper is the metal that conducts electricity well and is commonly used for wires and pipes due to its high electrical conductivity and corrosion resistance.
Copper wire with a larger diameter (lower gauge number) conducts electricity better than wire with a smaller diameter (higher gauge number). Thicker wire has lower resistance, allowing more current to flow through it efficiently. Additionally, copper is an excellent conductor of electricity compared to other materials like aluminum.
Yes, I agree. Copper metal conducts electricity through the movement of electrons, which are negatively charged particles. In contrast, a solution containing dissolved ions can conduct electricity because the ions can move and carry charge through the solution.
Yes, it is highly conductive.
Electrical conductivity is not a change but is a physical property.
Copper is the metal that conducts electricity well and is commonly used for wires and pipes due to its high electrical conductivity and corrosion resistance.
Gold conducts electricity well and also copper but it's cheaper than gold.
=copper=
Copper wire is a good conductor of electricity. It allows electric current to flow through it with minimal resistance, making it an ideal material for use in electrical circuits.
copper
copper conducts electricity so their can be electronics
Copper metal conducting electricity is a physical property, not a physical or chemical change. Conductivity relates to how electrons move within a material, which does not alter the chemical composition of the copper itself.
Copper wire with a larger diameter (lower gauge number) conducts electricity better than wire with a smaller diameter (higher gauge number). Thicker wire has lower resistance, allowing more current to flow through it efficiently. Additionally, copper is an excellent conductor of electricity compared to other materials like aluminum.
Copper
Silver
Copper conducting electricity is a physical change because it involves the movement of electrons within the material, without changing its chemical composition.