When chemical bonds are broken, energy is absorbed rather than released. This endothermic process requires input energy to overcome the attractive forces holding the atoms together in the bonds. Conversely, when new bonds are formed during a chemical reaction, energy is released, which is often associated with an exothermic process. Thus, the heat released is primarily related to the formation of bonds rather than their breaking.
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in chemical reactions, energy is absorbed or released when chemical bonds are broken and new ones are formed.
Chemical bonds are broken and new ones are formed
Chemical energy is stored in the bonds between atoms within a molecule. When these bonds are broken, energy is released in the form of heat or light. This energy can then be used to power various processes in living organisms or in chemical reactions.
Chemical bonds are broken.
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It is stored in bonds and released in energy. Energy is needed to break the chemical bonds, and energy is released when bonds are broken.
in chemical reactions, energy is absorbed or released when chemical bonds are broken and new ones are formed.
Chemical bonds are broken and new ones are formed
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Potential chemical energy is stored in chemical bonds.
A normal battery also a car battery, oil, food and etc.
Chemical energy is a type of potential energy that is stored in the bonds of chemical compounds. It is released when those bonds are broken during a chemical reaction. An example is the energy released when you burn wood in a fire, as the chemical bonds in the wood are broken down to release heat and light.
energy
Chemical energy is stored in the bonds between atoms within a molecule. When these bonds are broken, energy is released in the form of heat or light. This energy can then be used to power various processes in living organisms or in chemical reactions.
The energy stored in the chemical bonds between atoms is potential chemical energy.
Yes, chemical bonds store potential energy that is released when the bonds are broken. This energy can be released in the form of heat, light, or other forms of energy, depending on the type of bond and the elements involved.