Becomes heat.
Yes, electric energy can be converted to heat energy through the resistance in a material. When an electric current flows through a resistor, such as a heating element in a toaster or electric stove, the resistance causes the electrical energy to be dissipated as heat.
That is the result of resistance in the wire. In energy terms, some of the energy in the electric current is converted into heat.
A wire carrying electric current becomes hot due to the resistance in the wire. As the electric current flows through the wire, the resistance causes some of the electrical energy to be converted into heat energy, which raises the temperature of the wire.
Electric energy is converted to heat and light through the process of resistance heating. When electric current flows through a resistance, such as a filament in a light bulb or a coil in a heating element, it encounters resistance that generates heat and light as energy is lost in the form of thermal and radiant energy.
Electrical energy is converted into thermal energy through the process of resistance heating. This occurs when an electric current flows through a material with resistance, such as a heating element in a toaster or an electric stove. The resistance causes the material to heat up and emit thermal energy in the form of heat.
Mass
Opposition to the flow of electric current in a resistance is caused by the collisions of the electrons with the atoms in the material. This interaction converts some of the electrical energy into heat, leading to a loss of energy through the resistance.
Electricity can be turned into heat through resistance heating. This occurs when an electric current passes through a material with resistance, such as a heating element or coil. The resistance in the material causes the electric energy to be converted into heat energy, which warms up the material and its surroundings.
The electric current encounters resistance while flowing through a conductor, which results in the conversion of electrical energy into heat. This resistance is impacted by factors like the material of the conductor and its dimensions.
In an electric cooker, electrical energy is transferred into heat energy through resistance in the heating element. The electrical current passing through the element encounters resistance, which generates heat as a byproduct. This heat energy is then used for cooking food.
Electric resistance is a measure of how much a material impedes the flow of electrical current. It is denoted by the symbol R and is measured in Ohms. Conductors with higher resistance require more energy to push current through them.
energy