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In an endothermic reaction energy absorb...

In an endothermic reaction energy absorbed is more than the energy released.

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To determine whether the statement "In an endothermic reaction, energy absorbed is more than the energy released" is true or false, we can break it down step by step. ### Step-by-Step Solution: 1. **Understanding Endothermic Reactions**: - An endothermic reaction is a type of chemical reaction that absorbs energy from its surroundings, usually in the form of heat. This means that the reactants require an input of energy to proceed to the products. 2. **Energy Changes in Reactions**: - In any chemical reaction, bonds in the reactants must be broken before new bonds can form in the products. Breaking bonds requires energy input, while forming bonds releases energy. 3. **Energy Absorption vs. Energy Release**: - In an endothermic reaction, the energy absorbed to break the bonds in the reactants is greater than the energy released when new bonds are formed in the products. This is because the reaction needs additional energy to proceed, which is why it absorbs heat. 4. **Conclusion**: - Since the energy absorbed (to break the bonds) is greater than the energy released (when forming the products), the statement "In an endothermic reaction, energy absorbed is more than energy released" is indeed **true**. ### Final Answer: The statement is **true**. ---
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