The Experts below are selected from a list of 24 Experts worldwide ranked by ideXlab platform

Markus Tschersich - One of the best experts on this subject based on the ideXlab platform.

Klaus Gessner - One of the best experts on this subject based on the ideXlab platform.

  • Passive seismic studies Show Configuration of Paleoproterozoic subduction zones and their role in craton assembly in Western Australia
    ASEG Extended Abstracts, 2016
    Co-Authors: Ruth Murdie, Huaiyu Yuan, Mike Dentith, Simon P. Johnson, Klaus Gessner
    Abstract:

    The Capricorn Orogen Passive source Array (COPA) is the passive source seismic component of a major Science and Industry Endowment Fund (SIEF) project, “The distal footprints of giant ore systems: Capricorn case study”. COPA focuses on the deep crustal and shallow lithospheric structure in the Capricorn Orogen with the aim to better understand the tectonic amalgamation of the Western Australian Craton. The objective of COPA is to produce 3D multiple scale seismic images across the orogeny, that together with other geological and geophysical datasets help constrain the timing and kinematic evolution of Capricorn Orogen’s fault zones, and their role in the metallogenic history.

Ruth Murdie - One of the best experts on this subject based on the ideXlab platform.

  • Passive seismic studies Show Configuration of Paleoproterozoic subduction zones and their role in craton assembly in Western Australia
    ASEG Extended Abstracts, 2016
    Co-Authors: Ruth Murdie, Huaiyu Yuan, Mike Dentith, Simon P. Johnson, Klaus Gessner
    Abstract:

    The Capricorn Orogen Passive source Array (COPA) is the passive source seismic component of a major Science and Industry Endowment Fund (SIEF) project, “The distal footprints of giant ore systems: Capricorn case study”. COPA focuses on the deep crustal and shallow lithospheric structure in the Capricorn Orogen with the aim to better understand the tectonic amalgamation of the Western Australian Craton. The objective of COPA is to produce 3D multiple scale seismic images across the orogeny, that together with other geological and geophysical datasets help constrain the timing and kinematic evolution of Capricorn Orogen’s fault zones, and their role in the metallogenic history.

Huaiyu Yuan - One of the best experts on this subject based on the ideXlab platform.

  • Passive seismic studies Show Configuration of Paleoproterozoic subduction zones and their role in craton assembly in Western Australia
    ASEG Extended Abstracts, 2016
    Co-Authors: Ruth Murdie, Huaiyu Yuan, Mike Dentith, Simon P. Johnson, Klaus Gessner
    Abstract:

    The Capricorn Orogen Passive source Array (COPA) is the passive source seismic component of a major Science and Industry Endowment Fund (SIEF) project, “The distal footprints of giant ore systems: Capricorn case study”. COPA focuses on the deep crustal and shallow lithospheric structure in the Capricorn Orogen with the aim to better understand the tectonic amalgamation of the Western Australian Craton. The objective of COPA is to produce 3D multiple scale seismic images across the orogeny, that together with other geological and geophysical datasets help constrain the timing and kinematic evolution of Capricorn Orogen’s fault zones, and their role in the metallogenic history.

Mike Dentith - One of the best experts on this subject based on the ideXlab platform.

  • Passive seismic studies Show Configuration of Paleoproterozoic subduction zones and their role in craton assembly in Western Australia
    ASEG Extended Abstracts, 2016
    Co-Authors: Ruth Murdie, Huaiyu Yuan, Mike Dentith, Simon P. Johnson, Klaus Gessner
    Abstract:

    The Capricorn Orogen Passive source Array (COPA) is the passive source seismic component of a major Science and Industry Endowment Fund (SIEF) project, “The distal footprints of giant ore systems: Capricorn case study”. COPA focuses on the deep crustal and shallow lithospheric structure in the Capricorn Orogen with the aim to better understand the tectonic amalgamation of the Western Australian Craton. The objective of COPA is to produce 3D multiple scale seismic images across the orogeny, that together with other geological and geophysical datasets help constrain the timing and kinematic evolution of Capricorn Orogen’s fault zones, and their role in the metallogenic history.