solar
Phosphoric acid can produce electricity in a fuel cell by reacting with hydrogen in the presence of a catalyst. The reaction between phosphoric acid and hydrogen generates electrons and protons, which can then be used to produce electrical energy. The movement of these electrons through an external circuit creates an electric current, resulting in the production of electricity.
Chemoautotrophs. They use inorganic molecules such as hydrogen sulfide or ammonia as energy sources to produce their own food. These bacteria do not require sunlight for energy production.
Electric energy is produced by the movement of electrons. When electrons flow through a conductor, such as a wire, they create an electric current which can be harnessed to power electrical devices. This movement of electrons is the basis for generating electricity in many everyday applications.
Electrons combine with protons from the hydrogen atom to produce an energy-carrying molecule called ATP (adenosine triphosphate) through a process known as oxidative phosphorylation in the mitochondria. ATP is the primary energy currency of the cell, providing energy for various cellular processes.
Some examples of converting chemical energy to electrical energy include batteries, fuel cells, and voltaic cells. In batteries, chemical reactions occur to produce a flow of electrons, generating electrical energy. Fuel cells use hydrogen and oxygen reactions to produce electricity, while voltaic cells generate electricity through redox reactions between two different metals.
solar
The type of energy that works by removing electrons from atoms to produce electricity is called electrical energy. This is typically achieved through processes like chemical reactions in batteries or the movement of electrons through conductive materials in electrical circuits.
by using electrons to solar energy
Phosphoric acid can produce electricity in a fuel cell by reacting with hydrogen in the presence of a catalyst. The reaction between phosphoric acid and hydrogen generates electrons and protons, which can then be used to produce electrical energy. The movement of these electrons through an external circuit creates an electric current, resulting in the production of electricity.
Current is associated with the kinetic energy of electricity. It is the flow of electric charge carriers, such as electrons, through a conductor. As the current flows, it carries energy that can be used to do work.
There might be some misconception in the question. Electricity is the flow of energy from translating of electrons. Electricity itself doesn't produce electrons. How an electron as mass emerged from pure energy would required a lot further research in particles physic for the answer.
Produce electricity
It is electricity, produced by the movement of electrons, that is a form of energy we use in homes.
True. Photosynthetic bacteria obtain energy by removing electrons from inorganic molecules through a process called photosynthesis. This allows them to generate ATP and ultimately produce organic compounds for their growth and metabolism.
It is not a matter. It is one of seven kind of energy. Electricity is produce generator.
Solar energy can be used to produce electricity.
Electric energy / electricity