يعرض 1 - 20 نتائج من 129 نتيجة بحث عن '"Spiro, R. W."', وقت الاستعلام: 0.47s تنقيح النتائج
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    المؤلفون: Erickson, G. M, Spiro, R. W, Wolf, R. A

    المصدر: Journal of Geophysical Research. 96

    مصطلحات موضوعية: Geophysics

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    المصدر: Inner Magnetosphere Interactions: New Perspectives From Imaging ; Geophysical Monograph Series ; page 127-139 ; ISSN 0065-8448

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    المؤلفون: Wolf, R. A., Spiro, R. W.

    المصدر: Transport Across the Boundaries of the Magnetosphere ; page 199-216 ; ISBN 9789401065092 9789400900455

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    مصطلحات موضوعية: Geological Sciences, Science

    وصف الملف: application/pdf

    Relation: Sazykin, S.; Wolf, R. A.; Spiro, R. W.; Gombosi, T. I.; DeZeeuw, D. L.; Thomsen, M. F. (2004). "Correction to “Interchange instability in the inner magnetosphere associated with geosynchronous particle flux decreases”." Geophysical Research Letters 31(5): n/a-n/a.; https://hdl.handle.net/2027.42/94678; Geophysical Research Letters

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    وصف الملف: application/pdf

    Relation: Khazanov, G. V.; Liemohn, M. W.; Newman, T. S.; Fok, M.‐c.; Spiro, R. W. (2003). "Selfâ consistent magnetosphereâ ionosphere coupling: Theoretical studies." Journal of Geophysical Research: Space Physics 108(A3): n/a-n/a.; https://hdl.handle.net/2027.42/96283; Journal of Geophysical Research: Space Physics; Ridley, A. J., and M. W. Liemohn, A model‐derived description of the penetration electric field, J. Geophys. Res., 107 ( A8 ), doi:10.1029/2001JA000051, 2002.; Khazanov, G. V., M. W. Liemohn, J. U. Kozyra, and T. E. Moore, Global superthermal electron transport: Photoelectron and plasma sheet electron sources, J. Geophys. Res., 103, 23,485, 1998.; Khazanov, G. V., M. W. Liemohn, E. N. Krivorutsky, J. M. Albert, J. U. Kozyra, and B. E. Gilchrist, Relativistic electron beam propagation in the Earth's magnetosphere, J. Geophys. Res., 104, 28,587, 1999.; Khazanov, G. V., K. V. Gamayunov, V. K. Jordanova, and E. N. Krivorutsky, A self‐consistent model of the interacting ring current ions and electromagnetic ion cyclotron waves, initial results: Waves and precipitating fluxes, J. Geophys. Res., 107 ( A6 ), 1085, 10.1029/2001JA000180, 2002.; Liemohn, M. W., J. U. Kozyra, M. F. Thomsen, J. L. Roeder, G. Lu, J. E. Borovsky, and T. E. Cayton, Dominant role of the asymmetric ring current in producing the stormtime Dst *, J. Geophys. Res., 106, 10,883, 2001 a.; Liemohn, M. W., J. U. Kozyra, C. R. Clauer, and A. J. Ridley, Computational analysis of the near‐Earth magnetospheric current system, J. Geophys. Res., 106, 29,531, 2001 b.; Liemohn, M. W., D. L. Gallagher, D. M. Ober, A. J. Ridley, J. U. Kozyra, P. C:son Brandt, G. V. Khazanov, and M. L. Adrian, Nightside plasmasphere variations produced by the stormtime ring current, Eos Trans. AGU, 83 ( 19 ), Spring Meet. Suppl., Abstract SM42E‐02, 2002.; Lyons, L. R., R. M. Thorne, and C. F. Kennel, Pitch‐angle diffusion of radiation belt electrons with the plasmasphere, J. Geophys. Res., 77, 3455, 1972.; Mitchell, D. G., K. C. Hsieh, C. C. Curtis, D. C. Hamilton, H. D. Voss, E. C. Roelof, and P. C:son Brandt, Imaging two geomagnetic storms in energetic neutral atoms, Geophys. Res. Lett., 28, 1151, 2001.; Newman, T. S., and G. V. Khazanov, Self‐consistent large‐scale magnetosphere‐ionosphere coupling: Computational aspects and experiments, in 2002 NASA/ASEE Faculty Fellowship Program, edited by L. M. Freeman et al., pp. XXI‐1 – XXI‐5, NASA, Washington, D. C., 2002.; Pollock, C. J., et al., Initial Medium Energy Neutral Atom (MENA) images of Earth's magnetosphere during substorms and storm‐time, Geophys. Res. Lett., 28, 1147, 2001.; Richmond, A. D., and Y. Kamide, Mapping electrodynamic features of the high‐latitude ionosphere from localized observations: Technique, J. Geophys. Res., 93, 5741, 1988.; Robinson, R. M., R. R. Vondrak, K. Miller, T. Dabbs, and D. Hardy, On calculating ionospheric conductances from the flux and energy of precipitating electrons, J. Geophys. Res., 92, 2565, 1987.; Sandel, B. R., R. A. King, W. T. Forrester, D. L. Gallagher, A. L. Broadfoot, and C. C. Curtis, Initial Results from the IMAGE Extreme Ultraviolet Imager, Geophys. Res. Lett., 28, 1439, 2001.; Stern, D. P., The motion of a proton in the equatorial magnetosphere, J. Geophys. Res., 80, 595, 1975.; Takahashi, S., T. Iyemori, and M. Takeda, A simulation of the storm‐time ring current, Planet. Space Sci., 38, 1133, 1990.; Vasyliunas, V. M., Mathematical models of magnetospheric convection and its coupling to the ionosphere, in Particles and Fields in the Magnetosphere, edited by B. M. McCormac, p. 60, D. Reidel. Norwell, Mass., 1970.; Volland, H., A semiempirical model of large‐scale magnetospheric electric fields, J. Geophys. Res., 78, 171, 1973.; Weimer, D. R., Models of high‐latitude electric potentials derived with a least error fit of spherical coefficients, J. Geophys. Res., 100, 19,595, 1995.; Wolf, R. A., and R. W. Spiro, Particle behaviour in the magnetosphere, in Computer Simulation of Space Plasmas: Advances in Earth and Planetary Sciences, p. 227, Terra Sci., Tokyo, 1984.; Young, D. T., H. Balsiger, and J. Geiss, Correlations of magnetospheric ion composition with geomagnetic and solar activity, J. Geophys. Res., 87, 9077, 1982.; Zhang, H., and T. S. Newman, High performance MIMD computation for out‐of‐core volume visualization, in Proceedings, Supercomputing 2001 Conference (Poster Abstracts), Assoc. for Comput. Mach., New York, 2001.; Birn, J., M. F. Thomsen, J. E. Borovsky, G. D. Reeves, D. J. McComas, and R. D. Belian, Characteristic plasma properties during dispersionless substorm injections at geosynchronous orbit, J. Geophys. Res., 102, 2309, 1997.; Borovsky, J. E., M. F. Thomsen, and R. C. Elphic, The driving of the plasma sheet by the solar wind, J. Geophys. Res., 103, 17,617, 1998.; Chen, M. W., M. Schulz, L. R. Lyons, and D. J. Gorney, Stormtime transport of ring current and radiation belt ions, J. Geophys. Res., 98, 3835, 1993.; Ebihara, Y., and M. Ejiri, Modeling of solar wind control of the ring current buildup: A case study of the magnetic storms in April 1997, Geophys. Res. Lett., 25, 3751, 1998.; Ejiri, M., Trajectory traces of charged particles in the magnetosphere, J. Geophys. Res., 83, 4798, 1978.; Fok, M.‐C., J. U. Kozyra, A. F. Nagy, C. E. Rasmussen, and G. V. Khazanov, Decay of equatorial ring current ions and associated aeronomical consequences, J. Geophys. Res., 98, 19,381, 1993.; Fok, M.‐C., T. E. Moore, and M. E. Greenspan, Ring current development during storm main phase, J. Geophys. Res., 101, 15,311, 1996.; Fok, M.‐C., R. A. Wolf, R. W. Spiro, and T. E. Moore, Comprehensive computational model of Earth's ring current, J. Geophys. Res., 106, 8417, 2001.; Galand, M., and A. D. Richmond, Ionospheric electrical conductances produced by auroral proton precipitation, J. Geophys. Res., 106, 117, 2001.; Hardy, D. A., M. S. Gussenhoven, R. Raistrick, and W. J. McNeil, Statistical and functional representations of the pattern of auroral energy flux, number flux, and conductivity, J. Geophys. Res., 92, 12,275, 1987.; Harel, M., R. A. Wolf, P. H. Reiff, R. W. Spiro, W. J. Burke, F. J. Rich, and M. Smiddy, Quantitative simulation of a magnetospheric substorm, 1, Model logic and overview, J. Geophys. Res., 86, 2217, 1981.; Jordanova, V. K., L. M. Kistler, J. U. Kozyra, G. V. Khazanov, and A. F. Nagy, Collisional losses of ring current ions, J. Geophys. Res., 101, 111, 1996.; Jordanova, V. K., J. U. Kozyra, A. F. Nagy, and G. V. Khazanov, Kinetic model of the ring current‐atmosphere interactions, J. Geophys. Res., 102, 14,279, 1997.

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    Academic Journal

    مصطلحات موضوعية: Geological Sciences, Science

    وصف الملف: application/pdf

    Relation: Sazykin, S.; Wolf, R. A.; Spiro, R. W.; Gombosi, T. I.; De Zeeuw, D. L.; Thomsen, M. F. (2002). "Interchange instability in the inner magnetosphere associated with geosynchronous particle flux decreases." Geophysical Research Letters 29(10): 88-1-88-4.; https://hdl.handle.net/2027.42/95370; Geophysical Research Letters