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Experimental determination of remanent magnetism of dusty ice deposits
Yuval Grossman
, Oded Aharonson
, Ron Shaar
, Gunther Kletetschka
Weizmann Institute of Science
Planetary Science Institute
Hebrew University of Jerusalem
Czech Academy of Sciences
Charles University
University of Alaska Fairbanks
Research output
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peer-review
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Keyphrases
Magnetization
100%
Experimental Determination
100%
Ice Deposit
100%
Remanent Magnetism
100%
Field Strength
66%
Magnetic Moment
66%
Ice Particles
66%
Dust
33%
Maximal Value
33%
Parameter Space
33%
Particle Concentration
33%
Preferential Orientation
33%
Magnetic Remanence
33%
Magnetic Grain
33%
Remanent Magnetization
33%
Magnetic Particles
33%
Particle Size Distribution
33%
Electromagnetic Torque
33%
Field Intensity
33%
Magnetic Inclusions
33%
Sedimentary Rocks
33%
Ambient Magnetic Field
33%
Aerodynamic Force
33%
Deposition Simulation
33%
Paleomagnetic Record
33%
Natural Ice
33%
Dust Mixtures
33%
Earth and Planetary Sciences
Magnetic Moment
100%
Field Strength
100%
Remanence
50%
Remanent Magnetization
50%
Retraining
50%
Planetary Atmosphere
50%
Sedimentary Rock
50%
Aerodynamic Force
50%
Physics
Magnetic Moment
100%
Field Strength
100%
Planetary Atmosphere
50%
Magnetic Field
50%
Remanent Magnetization
50%
Aerodynamic Force
50%
Sedimentary Rock
50%
Material Science
Magnetism
100%
Mechanical Strength
100%
Magnetic Particle
50%
Sedimentary Rock
50%