A light bulb connected between to wires, each having 300 volts to ground that are in phase, will not light, because there is no differential voltage available to do any work. If each wire has 300 volts to ground and are out of phase (600 volts between them) the light bulb will be lit, if it is rated at least for 600 volts, otherwise it will burn out.
The Simplest Difference is that LED emits Light, & Photodiode converts Light energy into electrical Energy
TV- Electrical energy to light and sound energy Radio and stereo - Electrical energy to sound energy Fan- electrical energy to mechanical energy Toaster - Electrical energy to heat energy Light bulb- Electrical energy to Light energy Battery or cell - Chemical energy to electrical energy
Bulbs convert an electrical energy to produce light
The energy used to power a computer is Electrical Energy.
light energy :) ANSWER: THERMAL ENERGY
When a battery is connected to a car headlamp, it primarily contains electrical energy. This electrical energy is converted into light energy by the headlamp, allowing it to produce illumination.
When a battery is connected to a bulb, chemical energy in the battery is converted into electrical energy, which flows through the circuit and into the bulb. The electrical energy is then converted into light and heat energy by the filament in the bulb, allowing the bulb to light up.
In a torch battery, chemical energy is converted to electrical energy when the battery is connected to the circuit in the torch. The electrical energy then powers the light bulb, converting the electrical energy into light energy and heat energy.
In a torch, chemical energy stored in the battery is converted into electrical energy when the battery is connected. The electrical energy then powers the light bulb, where it is converted into light and thermal energy.
The battery produces electrical energy. If the light bulb is connected between the terminals of the battery, then the bulb will change the electrical energy into heat, and if you're lucky and you have the correct voltage, also maybe some light.
Inside a battery, chemical energy is converted into electrical energy as a result of chemical reactions occurring between the electrodes and electrolyte. When the battery is connected to a circuit, this electrical energy is then transformed into another form, such as light in a flashlight or kinetic energy in a motor.
The battery connected to the bulb has the potential chemical energy in it when it is connected by means of wire to the bulb the chemical energy in the battery is converted to the electrical energy which flows through the wire to the bulb glows the bulb which is a form of light energy after some time the bulb starts emitting heat which is heat energy.
Energy is transferred from the battery to the bulb of a torch or flashlight through a closed circuit. When the battery is connected to the bulb, it provides electrical energy to the filament in the bulb, which then converts the electrical energy into light energy through the process of electrical resistance. This light energy is what produces the glow in the bulb.
In a simple system, such as a light bulb connected to a battery, energy is transferred through electrical currents. When the battery is connected to the light bulb, it provides the energy needed for the bulb to emit light. This energy transfer occurs as the electrons flow through the wire from the battery to the light bulb.
A plug typically uses electrical energy to power devices when connected to an outlet. The electrical energy is converted into the necessary form of energy required by the device, such as light energy for a lamp or kinetic energy for a motor.
electrical, chemical, heat, and light energy
When a battery is used, chemical energy stored in the battery is converted to electrical energy that powers the device it is connected to. This electrical energy is then converted into other forms of energy depending on the device, such as light, heat, or kinetic energy.