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Titlebook: Cosmic Rays; Multimessenger Astro Alessandro De Angelis Book 2023 The Editor(s) (if applicable) and The Author(s), under exclusive license

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Weird Fiction in Britain 1880–1939rticles passed through the gold foil with little to no deflection. This indicated that the gold atoms were mostly empty spaces and that the atom’s positive charge was concentrated in a small, dense nucleus at the center. This marked the beginning of elementary particle physics, the science that expl
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Book 2023es an illuminating state-of-the-art introduction to the current state of high-energy astrophysics. The book was written in straightforward yet rigorous language, so as to be accessible to the greater public. For those curious about the cosmos and cosmic gamma rays, nuclei, neutrinos, and gravitation
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1614-659X physics. The book was written in straightforward yet rigorous language, so as to be accessible to the greater public. For those curious about the cosmos and cosmic gamma rays, nuclei, neutrinos, and gravitation978-3-031-38559-9978-3-031-38560-5Series ISSN 1614-659X Series E-ISSN 2197-6651
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The Mystery of Cosmic Rays,ion, it would seem at first glance that an electroscope must hold its charge forever. In 1785, Charles-Augustin de Coulomb (Angoulème 1736–Paris 1806), the father of electrology, suspected that reality was more complicated.
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The Physics of Elementary Particles,rticles passed through the gold foil with little to no deflection. This indicated that the gold atoms were mostly empty spaces and that the atom’s positive charge was concentrated in a small, dense nucleus at the center. This marked the beginning of elementary particle physics, the science that expl
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The Highest Energies in the Universe,cientific observations and reasoning. The depth of our observations is ultimately related to our ability to “see” the largest and the smallest distances, and to analyze the greatest energies. During the last century, enormous scientific theoretical and experimental advances have changed our vision o
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The Mystery of Cosmic Rays,y about the origins of such radiation. The quest to solve this enigma became one of the most thrilling intellectual pursuits in the history of science. Despite some fundamental questions that remain unanswered to this day, this pursuit ultimately led to the conclusion that a significant amount of na
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The Physics of Elementary Particles,e Earth’s atmosphere. This fact prompted the investigation into the nature of these projectiles and their use as probes for studying matter in detail, along the idea of the famous experiment by Ernest Rutherford and collaborators in 1900. Rutherford, who was awarded for his idea the 1908 Nobel Prize
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The Colors of the Universe, eye, and later instruments (such as telescopes derived from the Galilean and Newtonian telescopes) sensitive to light visible to the human eye. The study of cosmic messengers begins with photons, the particles that make up light and that we now know to represent the “quanta” of the electromagnetic
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