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Titlebook: Acoustic, Electromagnetic, Neutron Emissions from Fracture and Earthquakes; Alberto Carpinteri,Giuseppe Lacidogna,Amedeo Manue Book 2015 S

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https://doi.org/10.1007/978-3-030-64544-1uency that is close to the resonance frequency of the atomic lattices and an energy that is close to that of thermal neutrons. A series of fracture experiments on natural rocks has recently demonstrated that the TeraHertz phonons are able to induce fission reactions on medium weight elements with ne
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Basilar Membrane Tuning in the Pigeon Earck specimens loaded up to failure. All the signals were acquired by a National Instruments Digitizer with eight channels simultaneously sampling. The aim was to find a time correlation between these three different forms of energy emission from rocks under compression. The tests were performed on ma
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Brian C. J. Moore,Roy D. Pattersonquency are reported. These results confirm that appreciable neutron emissions, greater than the background level, may be observed during damage accumulation in iron-bearing rocks: granite (Fe oxides ~1.5 %), basalt (Fe oxides ~15 %), and magnetite (Fe oxides ~75 %). The neutron detection, together w
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J. J. Art,A. C. Crawford,R. Fettiplaceons − due to piezonuclear reactions involving fission of iron into aluminum – this phenomenon did not appear in marble crushing tests. On the other hand, significant alpha particle fluctuations were detected by a 6150 AD-k probe during the same compression tests..The external and fracture surfaces b
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E. Saldaña,J. Carro,M. Merchan,F. Colliaecently been detected in liquid solutions and brittle solids. In the present paper, the investigation is extended to a more ductile material, as steel is, subjected to different loading conditions. Although piezonuclear reactions are more likely to take place during the failure of brittle materials,
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