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Transport and electrodynamical coupling of nano-grains ejected from the Saturnian rings and their possible ionospheric signatures
W. H. Ip
, C. M. Liu, K. C. Pan
天文研究所
研究成果
:
雜誌貢獻
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期刊論文
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同行評審
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引文 斯高帕斯(Scopus)
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深入研究「Transport and electrodynamical coupling of nano-grains ejected from the Saturnian rings and their possible ionospheric signatures」主題。共同形成了獨特的指紋。
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Keyphrases
Bombardment
33%
Charged Dust
33%
Charging Effect
33%
Dust
33%
Dust Particles
33%
Ejection
33%
Electromagnetic Force
33%
Electromagnetic Mass
33%
Electron Impact
33%
Electrostatic Discharge
66%
Emission Pattern
33%
Escape Route
33%
Ionosphere
33%
Ionospheric Total Electron Content
33%
Loading Mechanism
33%
Low Inclination
33%
Low Velocity
33%
Mass Transport Effect
33%
Meteoroids
33%
Mid-latitude Region
33%
Nanograins
100%
Nanometer Size
33%
Negatively Charged Dust
33%
Neutral Gas
33%
Northern Hemisphere
33%
Opacity
33%
Orbital Motion
33%
Oxygen-bearing
33%
Photoemission
33%
Plasma Environment
33%
Positively Charged
66%
Quasi-periodic
33%
Rain Effect
33%
Ring Rain
33%
Saturn
66%
Source Mechanism
33%
Transport Mechanism
33%
Water Loading
33%
Earth and Planetary Sciences
Electromagnetism
100%
Electron Impact
50%
Electrostatic Force
100%
Emissions
50%
Ionospherics
100%
Mass Transfer
50%
Meteor
50%
Neutral Gas
50%
Northern Hemisphere
50%
Orbit
50%
Physics
Blood Plasma
50%
Electromagnetism
100%
Electrostatics
100%
Mass Transfer
50%
Meteor
50%
Neutral Gas
50%
Orbit
50%
Photoelectric Emission
50%
Engineering
Bombardment
50%
Electrostatic Force
100%
Mass Transfer
50%
Nanometre
50%
Orbit
50%
Parametric Study
50%
Photoemission
50%
Size Range
50%
Transport Mechanism
50%
Material Science
Dust Particle
100%