The flashlight can not be turned on as it no power now.
Potential energy
Energy in a flashlight changes from stored chemical energy in the battery to electrical energy when the battery powers the light bulb, which then converts electrical energy into light and heat energy.
In a solar panel flashlight, the energy transformation involves converting solar energy into electrical energy. The solar panel captures sunlight and converts it into electricity, which is then stored in a rechargeable battery in the flashlight for later use. When the flashlight is turned on, the electrical energy stored in the battery powers the light source.
A flashlight battery stores chemical energy. When the battery is connected in a circuit, this chemical energy is converted into electrical energy, which powers the flashlight. The flow of this electrical energy energizes the light bulb or LED, producing light.
When a battery-operated flashlight is turned on, the chemical energy stored in the battery is converted into electrical energy, which powers the light bulb, producing light energy and heat energy.
Chemical energy stored in a battery changes into electrical energy.... Not so complicated
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.
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.
Energy is stored in the battery in a flashlight. When switched off, the energy is chemical potential energy. When you switch on, chemical reactions occur, the chemical energy is changed to electrical energy in the circuit, and then electrical energy is changed to light energy in the bulb.
A flashlight that you shake to charge works by converting the mechanical energy from shaking into electrical energy. This energy is stored in a rechargeable battery, which powers the light when needed.
In a flashlight, chemical energy stored in the battery is converted into electrical energy when the circuit is closed by turning on the switch. The electrical energy then powers the light bulb, where it is transformed into light and heat energy. This allows the flashlight to produce illumination.
When a battery is inserted into a flashlight, chemical energy stored in the battery is converted to electrical energy, which powers the light bulb through a circuit. The electrical energy is converted into light and heat energy as the bulb emits light, demonstrating the transfer of energy from the battery to the light source.