In a gizmo, the energy conversion from chemical to thermal usually occurs in a battery where the chemical energy is converted to heat. The thermal energy then powers a generator to produce electrical current through electromagnetic induction, completing the conversion chain. In real life, this process is seen in everyday appliances like smartphones or laptops where the battery provides electrical energy by converting chemical energy into heat and then electricity.
In a gizmo, chemical to thermal to electrical current may occur in a battery where chemical reactions produce heat and electricity. In real life, this process can be seen in fuel cells, where chemical reactions between a fuel and oxidizer generate heat and electricity.
A battery or a fuel cell converts chemical energy directly to electrical energy
A battery produces an electric current by converting chemical energy into electrical energy. The chemical reactions inside the battery drive the flow of electrons through an external circuit, generating electricity.
In a dry cell, chemical energy is converted into electrical energy. This energy conversion occurs through chemical reactions within the cell that produce a flow of electrons, generating an electric current.
A battery converts chemical energy stored in its cells into electrical energy. When a circuit is connected to the battery, chemical reactions occur within the battery that release electrons, generating an electric current.
cell
An ampere is the unit of (electrical) current.
chemical energy
No, electrical conductivity is a physical property that depends on the ability of a material to carry an electric current. It is not a chemical change because the chemical composition of the substance remains the same.
A battery uses chemical reactions to create an electrical current. This occurs through the movement of ions between two electrodes (anode and cathode) in the battery, generating a flow of electrons that can be used as electrical power.
A battery stores chemical energy creating a voltage or potential difference that is the potential to do work.When a battery is connected to an electrical device, current flow and is so the conversion of chemical energy into electrical energy.
Chemical energy can be converted into electrical energy through a chemical reaction in a battery. When the battery is connected to a circuit, the reaction releases electrons, which flow through the circuit as an electric current, producing electrical energy.
chemical energy
In a gizmo, chemical to thermal to electrical current may occur in a battery where chemical reactions produce heat and electricity. In real life, this process can be seen in fuel cells, where chemical reactions between a fuel and oxidizer generate heat and electricity.
A battery or a fuel cell converts chemical energy directly to electrical energy
Batteries have chemical energy stored inside them. Of course, when they provide a current, this chemical energy is transformed (in part) into electrical energy.
A battery produces an electric current by converting chemical energy into electrical energy. The chemical reactions inside the battery drive the flow of electrons through an external circuit, generating electricity.