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Автор Bates, J. F.
Дата выпуска 1981
dc.description The microscopic planetary ring particles around Jupiter are possibly the result of internal void formation and fracture of initially larger particles. The void formation is thought to be the result of high electron and proton fluences attained by the particles during their lifetimes in orbit. The constant irradiation produces defect species which coalesce to form voids, which provide fracture paths for the particles.
Формат application.pdf
Копирайт Copyright 1981 by the American Geophysical Union.
Тема PLANETARY SCIENCES: SOLID SURFACE PLANETS
Тема Planetology: General or miscellaneous
Тема SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY
Тема Solar Physics, Astrophysics, and Astronomy: Particle radiation
Тема General or miscellaneous
Название The origin of microscopic planetary ring particles
Тип article
DOI 10.1029/GL008i007p00835
Electronic ISSN 1944-8007
Print ISSN 0094-8276
Журнал Geophysical Research Letters
Том 8
Первая страница 835
Последняя страница 836
Выпуск 7
Библиографическая ссылка , AGU, See papers in the series, “ASTM International Symposium on the Effects of Radiation on Structural Materials,”, e.g. Proc. of June 1975 SymposiumASTM‐STP‐570, Gatlinburg, TNFebruary, 1975.
Библиографическая ссылка Hollenberg, G. W., W. V.Cummings, “Effects of Fast Neutron Irradiation on the Structure of Boron Carbide,”, Journal American Ceramics Society, 60, 520, 1977.
Библиографическая ссылка Laidler, J. J., B.Mastel, F. A.Garner, “Swelling in Electron‐Irradiated Type 316 Stainless Steel,” ibid ref. 1.
Библиографическая ссылка Schlue, J., Galileo Orbiter Functional Requirements BookNo. GLL‐3‐240, May, 1979.
Библиографическая ссылка Srivastava, A., “On Saturation of Radiation Induced Swelling in 316 Stainless Steel,”, Annual ReportLBL‐4550, 79, Materials and Molecular Research Division, Lawrence Berkeley Laboratory, University of California, 1975.

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