i'm not very sure, but i know it has magnets. as for zinc, you will have to see if someone else answers it. Yeah...;.
Yes, when you push repelling magnets together, there is potential energy stored in the system due to the work done to compress the magnetic field. This potential energy is stored in the magnetic field surrounding the magnets. When you release the magnets, this stored energy is converted back to kinetic energy as the magnets repel each other.
The energy stored in a flashlight is typically in the form of chemical energy in the batteries. When you turn on the flashlight, this chemical energy is converted into electrical energy, which powers the light bulb or LED in the flashlight to produce light.
A flashlight transforms electrical energy from batteries into light energy and heat energy.
Chemical energy is stored in a flashlight in the form of batteries. When the flashlight is turned on, the chemical energy is converted into electrical energy, which powers the light bulb.
Nuclear energy is not useful in powering a flashlight because it is not readily convertible into electrical energy that can power the light bulb in a flashlight.
Yes, when a flashlight is turned on, the stored chemical energy in the batteries is converted into electrical energy, which then gets converted into light energy by the bulb. The light energy is what we perceive as the beam of light emitted from the flashlight.
neither. they separate because of magnetic fields. its not kinetic. its not potential. If you hold them together.. the "push" of them trying to get apart is storing some potential energy.. kind of like a spring. I guess you'd call it elastic potential energy because i dont know if there is such a thing as magnetic potential energy... hmm..
flashlight: the battery in the flashlight transforms it's chemical stored Energy into electrical Energy which is then transformed into radiant energy because of the light the flashlight gives off.
In a flashlight, energy comes from the batteries. The batteries provide electrical energy to power the light bulb or LED in the flashlight, producing light as a result.
A flashlight battery contains stored chemical potential energy that is converted into electrical energy when the flashlight is turned on. This electrical energy is then used to produce light energy, which is a form of radiant energy.
The battery uses chemical energy, to produce electrical energy, to produce heat energy in the bulb, which releases electro-magnetic energy. And get to know more details of flashlight energy here: http://forum.fonarevka.ru/showthread.php?t=7498
The popular energy of flashlight are Rechargeable Li-on battery, Alkaline battery.