Prediction of materials charging in magnetospheric plasmas

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050 1 4 ‡aQ11 U582e6 no. 734
086 0 ‡aD 301.45/39:734
088 ‡aADA 102906
088 ‡aAFGL TR 81-88
100 1 ‡aRubin, A. G.
245 0 0 ‡aPrediction of materials charging in magnetospheric plasmas / ‡cA.G. Rubin, M. F. Tautz, K. H. Bhavnani, N. A. Saflekos.
264 1 ‡aHanscom AFB, Massachusetts : ‡bAir Force Geophysics Laboratories, Air Force Systems Command, United States Air Force, ‡c1981.
300 ‡a20 pages : ‡billustrations ; ‡c28 cm.
336 ‡atext ‡btxt ‡2rdacontent
337 ‡aunmediated ‡bn ‡2rdamedia
338 ‡avolume ‡bnc ‡2rdacarrier
490 0 ‡aAFGL-TR ; ‡v81-88
490 0 ‡aEnvironmental Research Papers ; ‡vNo. 734
500 ‡a"Space Physics Division Project 7661."
500 ‡aADA102906 (from http://www.dtic.mil).
500 ‡a"19 March 1981."
504 ‡aIncludes bibliographical references.
520 ‡aBasic materials charging in magnetospheric plasmas may be predicted based on material properties that define capacitance, conduction, and emission for the surface, and on plasma species, temperatures and densities. This report summarizes results obtained using MATCHG, a program that embodies the basic formulations of the NASCAP program without the 3-dimensional (3-D) complexities. Plasma temperature and material property variation effects on surface potentials are considered. A graphical procedure for predicting voltage response from the general no bulk conductivity characteristics is presented.
538 ‡aMode of access: Internet.
650 0 ‡aPlasma (Ionized gases)
650 0 ‡aSpace vehicles ‡xElectrostatic charging.
650 0 ‡aMagnetosphere.
700 1 ‡aSaflekos, N. A.
700 1 ‡aBhavnani, K. H.
700 1 ‡aTautz, M. F.
710 2 ‡aU.S. Air Force Geophysics Laboratory.
730 0 ‡aTechnical Report Archive & Image Library (TRAIL)
899 ‡a39015095141522
CID ‡a102325754
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