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Titlebook: Exploration of Halley’s Comet; Michael Grewing,Françoise Praderie,Rüdeger Reinhar Conference proceedings 1988 Springer-Verlag Berlin Heide

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,Anhang mit Bildtafeln zu den Lötversuchen,oidal trajectories such that they were nonuniformly distributed over a spherical shell in velocity space. The shell radius (relative to its expected radius) and thickness increased as the bow shock was approached. Down-stream of the shock, the cometary protons could not be distinguished from the heated solar wind protons.
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,Schutz gegen Unfälle beim Spanablauf,e environment of the comet directly taking the opportunity of the re-revisiting of the first class comet, Halley. Plasma and neutral hydrogen environments were selected for scientific exploration. This article gives the overview of recent scientific results of our missions
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Perspective: The Hereditary Longing,mation of these structures and boundaries. The paper reviews the observations of these phenomena from spacecraft and the kinetic theories of cometary plasma that were developed recently and that are able to provide a natural explanation of observed puzzling phenomena.
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https://doi.org/10.1007/978-3-642-93385-1 km. There is evidence for a further excursion back into the cometary ion foot after the initial shock crossing. The cometary ion density is inferred from the solar wind speed changes and is compared with measurements.
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Einleitung und Geschichte der Hartstoffe,oard Vega-1 and as expected from quasilinear theory. The entrance into the cometary bow shock is furthermore characterized by an order of magnitude increase of the fluctuation level, both on the in- and outbound pass of Giotto.
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Samson Mil’shtein,Dhawal Asthanaely, and with an IMF sector boundary observed by Vega-1 on March 7.9 UT. Additional work is needed to determine the possible role of solarwind plasma effects in producing the DE. Relationships between other occurrences of plasma-tail activity and Halley Armada spacecraft measurements remain to be explored.
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Encounters with comets: discoveries and puzzles in cometary plasma physicsmation of these structures and boundaries. The paper reviews the observations of these phenomena from spacecraft and the kinetic theories of cometary plasma that were developed recently and that are able to provide a natural explanation of observed puzzling phenomena.
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Solar wind flow through the comet P/Halley bow shock km. There is evidence for a further excursion back into the cometary ion foot after the initial shock crossing. The cometary ion density is inferred from the solar wind speed changes and is compared with measurements.
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