Endothermic reactions require energy while exothermic reactions release energy.
Energy (in the form of heat), also free neutrons.Binding energy
The answer is heat engine.
No. It takes energy to boil a substance.
A catalyst. It does do by decreasing the energy required for the reaction to take place (activation energy).
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Activation energy describes the energy that is required to get chemical reactions started.
exothermic reactions release energy, like a fire, which releases heat ( also endothermic reactions requires and takes/absorbs energy for its reaction like photosynthesis which requires sunlight)
A battery is a device that stores and produces electrical energy by converting chemical energy into electrical energy through electrochemical reactions.
No they do not. An endergonic reaction requires a net input of energy to force it to occur.
It is in respiration in aerobic reactions where it usually requires energy. It also requires water and oxygen. It occurs inside every cell to the formation of energy-rich ATP.
Endothermic reactions require a net input of energy from their surroundings to proceed. These reactions absorb heat from their surroundings, resulting in a decrease in temperature of the surroundings.
Anabolic because it requires the input of energy.
Endergonic reactions require energy input to proceed, as they involve the absorption of energy from the surroundings. The endergonic process stores this energy within the system for chemical reactions or other forms of energy utilization.
Catalysts
Endothermic reactions typically require more activation energy compared to exothermic reactions. This is because in an endothermic reaction, energy is absorbed from the surroundings to break bonds and form new ones, which requires more energy input to overcome the activation barrier.
An endergonic reaction requires a net input of energy from its surroundings. This is because the energy needed to drive the reaction forward is greater than the energy released during the reaction.
Polymerization reactions are endergonic because they involve the formation of large molecules (polymers) from smaller monomer units, which requires the input of energy to overcome the activation energy barrier for bond formation. This energy input is needed to drive the reaction forward and build the polymer chain.