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Question
explosive reactions have a high activation energy and explosive substances can be safely stored for years. the potential energy diagram for these reactions is given by
Brief Explanations
- For explosive reactions, they are exothermic (release energy, so products have lower potential energy than reactants) and have high activation energy (\(E_a\)).
- Analyze each diagram:
- First diagram: Shows \(E_a(\text{fwd})\), \(E_a(\text{rev})\), and \(\Delta_n H\) (exothermic as products lower). Also has high \(E_a\) (since explosive needs high activation to be stable).
- Second diagram: Incorrectly labels \(\Delta_n H\) as equal to \(E_a\) in a wrong way.
- Third diagram: Products have higher PE (endothermic), not explosive (explosive is exothermic).
- Fourth diagram: Missing reverse activation energy label and doesn't show the correct relationship for explosive (needs to show high \(E_a\) and exothermic).
- So the first diagram (with \(E_a(\text{fwd})\), \(E_a(\text{rev})\), and \(\Delta_n H\) showing exothermic and high \(E_a\)) is correct.
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The first potential energy diagram (the one with \(E_a(\text{fwd})\), \(E_a(\text{rev})\), and \(\Delta_n H\) labeled, where reactants are at higher PE than products and a large activation energy peak)