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Journal articles on the topic 'Piezonuclear reaction'

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1

Cardone, Fabio, Roberto Mignani, and Andrea Petrucci. "Piezonuclear Reactions." Journal of Advanced Physics 1, no. 1 (2012): 3–36. http://dx.doi.org/10.1166/jap.2012.1015.

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2

CARDONE, F., and R. MIGNANI. "PIEZONUCLEAR REACTIONS AND LORENTZ INVARIANCE BREAKDOWN." International Journal of Modern Physics E 15, no. 04 (2006): 911–24. http://dx.doi.org/10.1142/s0218301306004600.

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In the last years experiments of cavitating water and of explosions of foils in water have provided possible evidence for production of stable, unstable and artificial nuclides induced by ultrasounds and shock waves, i.e. for nuclear reactions induced by pressure waves (piezonuclear reactions). We propose a possible mechanism for the explanation of these findings, that is constituted by two parts: a classical one, based on the bubble implosion due to cavitation, and a non-classical, related to a possible breakdown of Lorentz invariance for nuclear interactions. Such a mechanism allows one to g
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3

Ericsson, G., S. Pomp, H. Sjöstrand, and E. Traneus. "Piezonuclear reactions – do they really exist?" Physics Letters A 374, no. 5 (2010): 750–53. http://dx.doi.org/10.1016/j.physleta.2009.11.067.

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4

Cardone, F., R. Mignani, and A. Petrucci. "Generalized Nuclear Reactions KEYWORDS: Piezonuclear Reactions, Local Lorentz Invariance, Nuclear Cycle." Journal of Advanced Physics 3, no. 2 (2014): 150–52. http://dx.doi.org/10.1166/jap.2014.1113.

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5

Cardone, F., A. Manuello, R. Mignani, et al. "Ultrasonic Piezonuclear Reactions in Steel and Sintered Ferrite Bars." Journal of Advanced Physics 5, no. 1 (2016): 69–75. http://dx.doi.org/10.1166/jap.2016.1245.

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6

Cardone, F., and S. Duro. "Anisotropy angle of the DST-emissions." Modern Physics Letters B 28, no. 19 (2014): 1450156. http://dx.doi.org/10.1142/s0217984914501565.

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In our previous experiments, it has been found that an angle of asymmetry is present when the breakdown of the Lorenz invariance occurs. We want to make sure that this angle is present as a preferred direction of emission for α-rays and neutrons emitted as a result of piezonuclear reactions, or better, the reactions in deformed spacetime (DST-reactions: deformed spacetime reactions, for more details on the DST-reactions [see G. Albertini et al., Material and Process for Energy, ed. A. Mendez-Vilas (Formatex, 2013)]. For this purpose, we analyze the experiment of Ancona for α-ray emission and t
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7

Cardone, F., A. Carpinteri, A. Manuello, et al. "RETRACTED ARTICLE: Ultrasonic piezonuclear reactions in steel and sintered Ferrite bars." Meccanica 50, no. 6 (2014): 1639. http://dx.doi.org/10.1007/s11012-014-9921-1.

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8

Carpinteri, A., and A. Manuello. "Geomechanical and Geochemical Evidence of Piezonuclear Fission Reactions in the Earth’s Crust." Strain 47 (August 18, 2010): 267–81. http://dx.doi.org/10.1111/j.1475-1305.2010.00766.x.

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9

Carpinteri, A., G. Lacidogna, A. Manuello, and O. Borla. "Energy emissions from brittle fracture: Neutron measurements and geological evidences of piezonuclear reactions." Strength, Fracture and Complexity 7, no. 1 (2011): 13–31. http://dx.doi.org/10.3233/sfc-2011-0120.

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10

Carpinteri, A., G. Lacidogna, A. Manuello, and O. Borla. "Piezonuclear Fission Reactions in Rocks: Evidences from Microchemical Analysis, Neutron Emission, and Geological Transformation." Rock Mechanics and Rock Engineering 45, no. 4 (2012): 445–59. http://dx.doi.org/10.1007/s00603-011-0217-7.

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11

Carpinteri, Alberto, and A. Manuello. "An indirect evidence of piezonuclear fission reactions: Geomechanical and geochemical evolution in the Earth’s crust." Physical Mesomechanics 15, no. 1-2 (2012): 37–46. http://dx.doi.org/10.1134/s1029959912010043.

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12

Carpinteri, A., A. Chiodoni, A. Manuello, and R. Sandrone. "Compositional and Microchemical Evidence of Piezonuclear Fission Reactions in Rock Specimens Subjected to Compression Tests." Strain 47 (August 18, 2010): 282–92. http://dx.doi.org/10.1111/j.1475-1305.2010.00767.x.

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13

Carpinteri, Alberto, and A. Manuello. "Retraction Note: “An indirect evidence of piezonuclear fission reactions: Geomechanical and geochemical evolution in the Earth’s crust”." Physical Mesomechanics 20, no. 4 (2017): 480. http://dx.doi.org/10.1134/s1029959917040142.

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14

Carpinteri, A., G. Lacidogna, A. Manuello, and O. Borla. "Piezonuclear Fission Reactions from Earthquakes and Brittle Rocks Failure: Evidence of Neutron Emission and Non-Radioactive Product Elements." Experimental Mechanics 53, no. 3 (2012): 345–65. http://dx.doi.org/10.1007/s11340-012-9629-x.

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15

Bardi, U., and G. Comoretto. "Comments on ‘Geomechanical and Geochemical Evidence of Piezonuclear Fission Reactions in the Earth's Crust’ by A. Carpinteri and A. Manuello." Strain 49, no. 6 (2013): 544–47. http://dx.doi.org/10.1111/str.12036.

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16

Carpinteri, A., and A. Manuello. "Reply to “Comments on ‘Geomechanical and Geochemical Evidence of Piezonuclear Fission Reactions in the Earth's Crust’ by A. Carpinteri and A. Manuello” by U. Bardi and G. Comoretto." Strain 49, no. 6 (2013): 548–51. http://dx.doi.org/10.1111/str.12071.

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17

Carpinteri, A., O. Borla, A. Manuello, D. Veneziano, and A. Goi. "Hydrogen Embrittlement and Piezonuclear Reactions in Electrolysis Experiments." Journal of Condensed Matter Nuclear Science 15, no. 1 (2015). https://doi.org/10.70923/001c.72334.

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A great deal of evidence of anomalous nuclear reactions occurring in condensed matter has been observed using electrolysis, fracture (with solids), and cavitation (with liquids). Despite the large amount of experimental results from so-called cold nuclear fusion and Low Energy Nuclear Reaction research activities, researchers still do not understand these phenomena. On the other hand, as reported by most of the articles devoted to Cold Nuclear Fusion, one of the principal features is the appearance of micro-cracks on the electrode surfaces after the experiments. In the present paper, a mechani
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18

Carpinteri, A., A. Manuello, D. Veneziano, and N. D. Cook. "Piezonuclear Fission Reactions Simulated by the Lattice Model." Journal of Condensed Matter Nuclear Science 15, no. 1 (2015). https://doi.org/10.70923/001c.72332.

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Recent experiments conducted on natural rocks subjected to different mechanical loading conditions have shown energy emissions in the form of neutrons and anomalous chemical changes. In the present study, a numerical model is used to simulate the anomalous nuclear products according to the fission interpretation. Specifically, the reactions were simulated by means of a nuclear lattice model assuming that nucleons are ordered in an antiferromagnetic face-centered-cubic (fcc) array. The simulations indicate that small and middle-sized nuclei can be fractured along weakly bound planes of the latt
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