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Igneous differentiation by deformation
Nick Petford
, M A Koenders
, John D. Clemens
Office of Vice Chancellor
Research output
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Contribution to Journal
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Article
›
peer-review
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Keyphrases
Magma
100%
Mush
100%
Igneous Differentiation
100%
Fractional Crystallization
66%
Dilatancy
66%
CRISTAL
66%
Shear Strain Rate
33%
Hydraulics
33%
Melt Flow
33%
Large Volume
33%
Quantitative Model
33%
Shear Zone
33%
Rheological Properties
33%
Melt Fraction
33%
Igneous Rocks
33%
Resorption
33%
Crystallization
33%
Buoyancy Force
33%
Compaction
33%
Chemical Constituents
33%
Granular Materials
33%
Shear Modulus
33%
Mechanical Effect
33%
Compositional Changes
33%
Causes of Variation
33%
Critical Links
33%
Volume Increase
33%
Liquid Phase
33%
Reverse Zoning
33%
Shear Deformation
33%
Tectonic Background
33%
Contact Geometry
33%
Dilation Angle
33%
Alkaline Rocks
33%
Melt Pressure
33%
Post-failure
33%
Failure Instability
33%
Internal Friction
33%
Aplite
33%
Granophyre
33%
Mother Liquor
33%
Pegmatite
33%
Suction Effect
33%
Dilatancy Effect
33%
Interstitial Fluid
33%
Miarolitic
33%
Contact Mechanics
33%
Mechanical Compaction
33%
Solid Materials
33%
Melt Composition
33%
Elastic Properties
33%
Discontinuous Variation
33%
Material Parameters
33%
Magma Bodies
33%
Rigid Skeleton
33%
Geological Time Scale
33%
Gravitational Effect
33%
Poroelastic
33%
Material Science
Hydraulics
100%
Elastic Moduli
100%
Internal Friction
100%
Strain Rate
100%
Contact Mechanics
100%
Granular Material
100%
Shear Strain
100%
Elastic Property
100%
Igneous Rocks
100%
Solid Material
100%
Earth and Planetary Sciences
Magma
100%
Dilatancy
75%
Fractional Crystallization
50%
Crystal
50%
Mechanics
50%
Strain Rate
25%
Shear Strain
25%
Tectonics
25%
Shear Zone
25%
Resorption
25%
Fracturing
25%
Shear Modulus
25%
Internal Friction
25%
Gravitational Effect
25%
Granophyre
25%
Alkaline Rock
25%
Aplite
25%
Liquid Phase
25%
Igneous Rocks
25%
Rheology
25%
Granular Material
25%