# Atomic Processes in Basic and Applied Physics by V. L. Bychkov (auth.), Viacheslav Shevelko, Hiro Tawara

By V. L. Bychkov (auth.), Viacheslav Shevelko, Hiro Tawara (eds.)

The ebook is a entire version which considers the interactions of atoms, ions and molecules with charged debris, photons and laser fields and displays the current knowing of atomic tactics equivalent to electron catch, aim and projectile ionisation, photoabsorption and others taking place in such a lot of laboratory and astrophysical plasma assets together with many-photon and many-electron procedures. the fabric involves chosen papers written by means of top scientists in a number of fields.

By V. L. Bychkov (auth.), Viacheslav Shevelko, Hiro Tawara (eds.)

The ebook is a entire version which considers the interactions of atoms, ions and molecules with charged debris, photons and laser fields and displays the current knowing of atomic tactics equivalent to electron catch, aim and projectile ionisation, photoabsorption and others taking place in such a lot of laboratory and astrophysical plasma assets together with many-photon and many-electron procedures. the fabric involves chosen papers written by means of top scientists in a number of fields.

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It releases high energy and creates the fulgurite area— a cavity in the Earth. In it, chemical reactions with participation of soil consisting of sand, organic, and other components take place. A sand includes silica (SiO2 ) in its composition. A recovery of silica to metal silicon takes place, namely, in the reaction: SiO2 C 2C ! 5) Here, C is carbon and Si is silicon atoms. At high temperature, this leads to the formation of metallic chains, and those, appearing in air, create a ball-like formation of the type predicted by Smirnov [29].

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A Silberg, Appl. Phys. 49, 1111 (1978) 41. G. C. Dijkhuis, in Proceedings IX International Wroclaw Symposium on Electromagnetic Compatibility, Wroslaw, 1988, P. 166 42. K. , J. Geoph. Res. 99(D5), 10679–10681 (1994) 43. E. S. L. K. P. Kovshyk, Tech. Phys. 42(3), 269 (1997) 44. L. V. B. Timofeev, Tekh. Phys. 49(1), 128 (2004) 45. V. Konev, Physical Grounds of Plant Materials Combustion (Nauka, Novosibirsk, 1977) (In Russian) 46. K. V. A. E. Borisenko, JETP Lett. 84(11), 581 (2006) 47. S. C. A. de Vasconcelos, O.