Volta used Galvani's observation and hypothesized that it was not electricity but it was a chemical reaction. The two metals and the salty fluids in the frogs leg tissue made a current. So chemical energy and electrical energy are related because the chemical energy can be made into electrical energy. I hope that this information helped you in understanding the relationship between chemical energy and electrical energy.
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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.
The study of the chemical effects of electrical action is called electrochemistry. This field focuses on the relationship between chemical reactions and electricity, including redox reactions and electrolysis. It has applications in batteries, corrosion prevention, and fuel cells.
In a battery, the energy transformation is: chemical energy -----> electrical energy.
Yes, it is possible to interconvert chemical and electrical energy. For example, in a battery, chemical energy is converted into electrical energy during discharging, and electrical energy can be used to generate chemical reactions during charging. This interconversion is what allows batteries to store and release energy.
A device that turns chemical energy into electrical energy is called a battery. Batteries store and release electrical energy through chemical reactions happening inside them.
well what had happen was..... it makes generate heat, electrical, mechanical, and sound energies
Electrical to chemical and chemical to electrical 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.
electrical, chemical, heat, and light energy
No, they turn chemical or electrical into kenetic energy
Be careful, it is possible.
In an electrical cell, chemical energy is converted into electrical energy through a chemical reaction between the electrodes and the electrolyte. This electrical energy can then be used to power devices connected to the cell.
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.
The study of the chemical effects of electrical action is called electrochemistry. This field focuses on the relationship between chemical reactions and electricity, including redox reactions and electrolysis. It has applications in batteries, corrosion prevention, and fuel cells.
In a battery, the energy transformation is: chemical energy -----> electrical energy.
Batteries transform chemical energy to electrical energy. The electrical energy is released during a chemical reaction inside the battery.
This is a very old observation, from the prehistoric times.