gravity
Chemical energy to electrical energy.
Batteries function within an electrical circuit by converting chemical energy into electrical energy. When connected to a circuit, the battery's chemical reactions create a flow of electrons, which generates a voltage that powers the circuit.
electrical, chemical, heat, and light energy
None of them Chemical energy stored in the battery is converted into Electrical (with some heat / thermal 'wasted'). However if you recharge a battery you would get electrical to Chemical.
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.
In a battery, the energy transformation is: chemical energy -----> electrical energy.
A battery converts chemical energy into electrical energy. Inside a battery, chemical reactions occur that generate electrons, resulting in an electrical potential difference between the battery terminals. This allows for the flow of electrons and the generation of electrical energy.
What comes out is electrical energy, while what is in the battery is chemical energy.
The electrical energy provides power. When the chemical energy is depleted, the battery will not longer generate electrical energy.
The chemical energy in the battery is converted into electrical energy to power up the phone.
Electrolytes in battery acid help conduct electricity by carrying charged particles between the battery's electrodes, allowing the chemical reactions that generate electrical energy to occur. They are essential for the battery to function properly and efficiently.
An example of a change from chemical energy to electrical energy is when a battery powers a device such as a smartphone. The chemical reactions inside the battery generate electrical energy that is then used to power the device.