Conductor resistance = Conductor resistivity * Length of conductor / Cross sectional area of conductor.
So. It is directly proportional to material & conductor length. And inversely proportional to the cross sectional area of conductor.
temperature
ALL resistance are conductors. just the magnitude value changes
It is called resistance Good conductors have a bad resistance While bad conductors or insulators have good resistance against the flow of electricity
area of the conductor, length of the conductor and temperature around the conductor..........
Wire. conductors. Wire made into a coil, an inductor.
Low resistance. Think of Ohm's law. Voltage drop is directly proportional to resistance. The higher the resistance, the higher the voltage drop, and the less voltage that is available for the load. Think of conductor resistance as a resistance in series with the load. Also, higher conductor resistance means more power lost, going to heating the conductors. The "line loss" formula is P=I2R. The greater the resistance, the greater the electrical power being converted into thermal power heating the conductors.
Factors affecting the resistance of a conductor include the material from which it is made, its length, its cross-sectional area, and its temperature.
The availability of food is an example of a factor that affects environmental resistance. Other factors include climate and predators.
The material, the length, the cross section.
Conductors have a (low) Electrical resistance.
1. Friction 2. Wind resistance 3. Velocity
The availability of food is an example of a factor that affects environmental resistance. Other factors include climate and predators.
The factors are: length, cross-sectional area and nature of substance.
Good conductors have low resistance
ALL resistance are conductors. just the magnitude value changes
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Three factors that affect movement are friction, wind resistance, and velocity. Friction is the resistance that a single object encounters when moving over another object. Velocity is speed, and wind resistance is the opposing force on an object.
The resistance of pure metallic conductors increases with temperature, because the resistivity of these conductors increase with temperature.