Macquarie Island preserves largely in-situ Miocene oceanic crust and mantle formed at a slow-spreading ridge. The crustal section on the island does not conform to a simple 'layer cake pseudo-stratigraphy', but is the result of multiple magmatic episodes. Macquarie Island crust did not grow by top-down cooling, but rather from the base up. Peridotites cooled first and formed the basement into which gabbro plutons were intruded. This was followed by cooling and deformation, and by intrusion of dykes that fed a sheeted dyke-basalt complex. Finally, lava-filled grabens were formed. These relative age relations rule out simple cogenetic relations between rock units.</p
Empirical thesis.Bibliography: pages 87-90.Chapter 1. Introduction -- Chapter 2. Stratigraphy and pe...
Oceanic plateaus form by mantle processes distinct from those farming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Uplift, exhumation, and denudation of the lower oceanic crust are recorded by sedimentary rocks of M...
Upper Miocene to lower Pliocene sedimentary rocks on Macquarie Island are dominantly volcaniclastic ...
Upper Miocene to lower Pliocene sedimentary rocks on Macquarie Island are dominantly volcaniclastic ...
Macquarie Island consists of uplifted oceanic crust, uniquely situated in the ocean basin where it f...
textMacquarie Island (54º30’S, 158º54’E) is unique, consisting of a section of uplifted oceanic cru...
Theoretical thesis.CD-Rom contains complete copy of thesis in .pdf format and appendices A-G in .pdf...
Macquarie Island, in the Southern Ocean, was formed by oceanic crust uplift due to transpressive for...
Macquarie Island is an emergent part of the Macquarie Ridge, which runs south from New Zealand to jo...
Basalts associated with the formation of the Macquarie Ridge have been radiometrically dated at betw...
Macquarie Island is composed of a complete section of oceanic crust that formed in a slow-spreading ...
Macquarie Island (Southern Ocean) is a fragment of Miocene ocean crust and upper mantle formed at a ...
Macquarie Island (Southern Ocean) is a fragment of Miocene ocean crust and upper mantle formed at a ...
Empirical thesis.Bibliography: pages 87-90.Chapter 1. Introduction -- Chapter 2. Stratigraphy and pe...
Oceanic plateaus form by mantle processes distinct from those farming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Uplift, exhumation, and denudation of the lower oceanic crust are recorded by sedimentary rocks of M...
Upper Miocene to lower Pliocene sedimentary rocks on Macquarie Island are dominantly volcaniclastic ...
Upper Miocene to lower Pliocene sedimentary rocks on Macquarie Island are dominantly volcaniclastic ...
Macquarie Island consists of uplifted oceanic crust, uniquely situated in the ocean basin where it f...
textMacquarie Island (54º30’S, 158º54’E) is unique, consisting of a section of uplifted oceanic cru...
Theoretical thesis.CD-Rom contains complete copy of thesis in .pdf format and appendices A-G in .pdf...
Macquarie Island, in the Southern Ocean, was formed by oceanic crust uplift due to transpressive for...
Macquarie Island is an emergent part of the Macquarie Ridge, which runs south from New Zealand to jo...
Basalts associated with the formation of the Macquarie Ridge have been radiometrically dated at betw...
Macquarie Island is composed of a complete section of oceanic crust that formed in a slow-spreading ...
Macquarie Island (Southern Ocean) is a fragment of Miocene ocean crust and upper mantle formed at a ...
Macquarie Island (Southern Ocean) is a fragment of Miocene ocean crust and upper mantle formed at a ...
Empirical thesis.Bibliography: pages 87-90.Chapter 1. Introduction -- Chapter 2. Stratigraphy and pe...
Oceanic plateaus form by mantle processes distinct from those farming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...