it is current per unit time
a salt bridge
The Anode in electrochemical cell has negative charge (-ve).
Basically there are three. 100% electric and hybrid electric that uses a small engine to charge the batteries. There is also at least one vehicle that uses a solar cell to help charge the battery.
You plug them in and charge then like a cell phone, Their trying to create charging stations like gas stations but for electric car(:
An electrical cell is the basic unit from which electrical batteries are made. The cell is composed of two plates made of different conductive materials and a liquid electrolyte (in "dry" cells this liquid is in the form of a moist paste). Electric charge is produced between the two plates by the electrolyte interacting with and causing corrosion of one or both plates. Once the electric charge is produced the corrosion process slows or stops, unless an external circuit is connected between the plates. When an external circuit is connected between the plates, current flows through that circuit and the electric charge is slightly reduced. The corrosion process continues at a rate necessary to maintain the electric charge, until the chemicals in the cell are used up.
The purpose of the salt bridge in an electrochemical cell is to maintain electrical neutrality by allowing the flow of ions between the two half-cells, preventing the buildup of charge and enabling the continuous flow of electrons in the cell.
There will be a buildup of pyruvate in the cell
The diffusion of water into a cell by osmosis results in a buildup of water content within the cell, potentially causing it to swell or burst if not regulated by the cell's mechanisms.
A salt bridge
In short, the light (electromagnetic energy) shining on the solar cell is converted directly to electric charge (potential energy). The increase in the electric charge can promote the flow of electric current in an external circuit, in much the same way as an ordinary electrical battery would.
An electrical cell is the basic unit from which electrical batteries are made. The cell is composed of two plates made of different conductive materials and a liquid electrolyte (in "dry" cells this liquid is in the form of a moist paste). Electric charge is produced between the two plates by the electrolyte interacting with and causing corrosion of one or both plates. Once the electric charge is produced the corrosion process slows or stops, unless an external circuit is connected between the plates. When an external circuit is connected between the plates, current flows through that circuit and the electric charge is slightly reduced. The corrosion process continues at a rate necessary to maintain the electric charge, until the chemicals in the cell are used up.
The salt bridge allows the flow of ions between the two half-cells in an electrochemical cell, completing the circuit and maintaining charge balance. It prevents the mixing of the solutions in the two half-cells while allowing the transfer of ions to balance the charge buildup during the redox reactions.