Mechanisms of shock-induced reactions in high explosives
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Reference32 articles.
1. Detonation Performance and Sensitivity
2. Shocked molecular solids: Vibrational up pumping, defect hot spot formation, and the onset of chemistry
3. Chemical reaction initiation and hot-spot formation in shocked energetic molecular materials
4. Energy Transfer Dynamics and Impact Sensitivity
5. Energy Transfer Rates in Primary, Secondary, and Insensitive Explosives
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