2013. szeptember 12., csütörtök
PhD Opportunities in Detrital Geochronology/Sedimentary Provenance and Clastic Sedimentology/Basin Analysis, Brisbane, Australia
Project Descriptions (Further details can be found on the following link: http://www.earthworks-jobs.com/geoscience/qut13091.html) :
PhD Project 1: Detrital Geochronology and Sedimentary Provenance
Sediments are one of the main recorders of tectonic events and provide a sample of large regions of continental crust not easily accessible in outcrop or that have been removed by uplift and erosion in response to major mountain building events. While U/Pb dating of zircon has become an increasingly standard means of interpreting mountain building events and tracing sediment sources, ambiguity in interpreting source regions results when candidate source terranes have similar ages for a given radioisotopic system. Recent advances in multi-dating - applying different geochronologic and thermochronologic systems to mineral grains in sedimentary rocks, now allow for unprecedented levels of detail in provenance and tectonic studies of sediments. New insights on the location, age, and exhumation history of source terranes, and dynamics of orogenic processes can therefore be gained.
The Late Devonian to Early Carboniferous (~380-320 Ma) period in Australia was characterised by intraplate orogenic events in central Australia (Alice Springs Orogeny), from which a major sheet of cratonic-derived quartz-rich sand spread outwards, principally across central and western Australia. A missing link in our understanding and record of this enigmatic intraplate mountain building event has been the huge volumes of quartz sediment also shed eastwards at this time. For example, the Drummond Basin of northeastern Australia has stored >40,000 km^2 and up to 7 km thickness of quartz sandstone. However, the Drummond Basin was developing as a wide volcanic-rift basin in board of the active plate boundary.
This project is to test the hypothesis that craton-derived quartz sand sedimentation in eastern Australia was a far-field response to the final stages of the coeval central Australian Alice Springs Orogeny. It will involve the application of multiple dating techniques to enable source differentiation for these sandstones, revealing both the igneous and high-grade metamorphic history by focussing on U/Pb zircon and rutile ages by Laser Ablation Inductively Coupled Mass Spectrometry (LA-ICP-MS) analysis. These new data will provide novel insights into the relationship and timing of sedimentation and deformation events on the distal margin of one of the world's best examples of an intracratonic orogen. Two expected outcomes of this study are that: 1) the distal sedimentary record will provide new constraints on the duration and nature of unroofing by intraplate deformation; and 2) the effects of intracratonic deformation via a high sediment flux on the tectonic development of the northeastern Australian margin will be emphasised, with implications for back-arc deformational style of continental margins.
Students will use stratigraphy, field mapping/drill core logging, sedimentary petrology, and geochronological techniques to address the research questions. A student with recent research experience in detrital geochronology and/or provenance analysis will be preferred. All research costs for this PhD Project will be supported by an Australian Research Council Discovery grant.
Project Supervisors: Dr Scott Bryan & Dr Charlotte Allen.
PhD Project 2: Clastic Sedimentology and Basin Analysis
Sediments are one of the main recorders of tectonic events and provide a sample of large regions of continental crust not easily accessible in outcrop or that have been removed by uplift and erosion in response to major mountain building events. One important consequence of recent zircon dating provenance studies is the recognition of large, continent-wide sediment dispersal systems operating in response to major mountain-building events. These systems delivered large volumes of sediment to geographically remote continental margins and basins with no connection to the source region undergoing tectonism. The orogenic forcing, paleogeographic dynamics and type of sediment transport systems operating remain poorly understood. Furthermore, recent studies are implicating that sediment fluxes, often thought of as a consequence of tectonic deformation, may act to amplify or dampen rifting. Consequently, the depositional and rift history of a sedimentary basin may be altered by high sediment fluxes introduced by transcontinental sediment dispersal systems carrying detritus from distant, rising mountain belts 1000's km away. Critically, such basin-fill histories can provide valuable temporal links between tectonic processes operating in different parts of a continent or supercontinent, giving greater insight into tectonic and crustal evolution, as well as continental-scale paleogeography.
The Late Devonian to Early Carboniferous (~380-320 Ma) period in Australia was characterised by intraplate orogenic events in central Australia (Alice Springs Orogeny), from which a major sheet of cratonic-derived quartz-rich sand spread outwards, principally across central and western Australia. A missing link in our understanding and record of this enigmatic intraplate mountain building event has been the huge volumes of quartz sediment also shed eastwards at this time. For example, the Drummond Basin of northeastern Australia has stored >40,000 km^2 and up to 7 km thickness of quartz sandstone. However, the Drummond Basin was developing as a wide volcanic-rift basin in board of an active plate boundary.
This project is to test the hypothesis that craton-derived quartz sand sedimentation in eastern Australia was a far-field response to the final stages of the coeval central Australian Alice Springs Orogeny. It will involve stratigraphic, sedimentologic and facies analysis of key basins to: 1) define vectors to sediment source regions (e.g., by lateral coarsening trends in conjunction with paleocurrent data), particularly for the Drummond Basin; 2) provide well-constrained stratigraphic controls on age dated samples in companion PhD projects; 3) reveal spatial and temporal variations of sediment provenance within the quartz sandstone formations based on stratal architecture; 4) provide new insights into the interaction of extrabasinal quartz sandstone with intrabasinal volcanism and volcanogenic sedimentation; and 5) identify likely sediment pathways that deliver quartz sand to the continental margin edge, from which new paleogeographic maps of the region can be constructed. Two expected outcomes of this study are that: 1) the distal sedimentary record will provide new constraints on the duration and nature of unroofing by intraplate deformation; and 2) the effects of intracratonic deformation via a high sediment flux on the tectonic development of the northeastern Australian margin will be emphasised, with implications for back-arc deformational style of continental margins.
Students will use stratigraphy, field mapping/drill core logging, sedimentology and basin analysis, sedimentary petrology, and geochronological techniques to address the research questions. A student with recent research experience in sedimentology and stratigraphy or basin analysis will be preferred. All research costs for this PhD Project will be supported by an Australian Research Council Discovery grant.
Project Supervisors: Dr Scott Bryan, Professor Chris Fielding & Dr Charlotte Allen
2013. szeptember 9., hétfő
Characterization of Early Cretaceous depositional systems along the Atlantic Passive Margin, Morocco, PhD at the Uni. Manchester, UK
Funded PhD opportunities at the University of Manchester, UK
Details can be found on the following link:
http://www.seaes.manchester.ac.uk/media/eps/schoolofearthatmosphericandenvironmentalsciences/researchtopics/Funded-PhD-Opportunities-Moroccan-Project-2013.pdf
Details can be found on the following link:
http://www.seaes.manchester.ac.uk/media/eps/schoolofearthatmosphericandenvironmentalsciences/researchtopics/Funded-PhD-Opportunities-Moroccan-Project-2013.pdf
2013. szeptember 8., vasárnap
Összegyetemi terepgyakorlat a Tokaji-hegységben
2013. augusztus 26–31. között a Magyarhoni Földtani Társulat
Ifjúsági Bizottsága és Oktatási és Közművelődési Szakosztálya az ME
Ásványtani-Földtani Intézetével együttműködve, a Tokaji-hegységben szervezte meg
az Összegyetemi terepgyakorlatot, amely az MFT-nek harmadik ilyen jellegű
rendezvénye volt. A gyakorlatra bármely hazai egyetem hallgatói
jelentkezhettek. A gyakorlat központja az Ásványtani-Földtani Intézet
telkibányai terepi oktatóbázisa volt
A rendezvény 6 napos programján három egyetem 16 hallgatója
vett részt, jó hangulatban és ideális terepi körülmények között.
A terepgyakorlat első része érintette a Tokaj-hegység és a
Zemplénikum (Szlovákia) legfontosabb feltárásait, bányáit, valamint a hegység főbb
kulturális emlékekeit és Kassát is. A gyakorlat második felében a
vágatszelvényezést, a felszíni geofizikai méréseket, valamint a geokémiai
talajmintavételezést ismerhették meg és gyakorolhatták a hallgatók a
Kánya-hegyen, majd részt vettek a terepi mérések számítógépes feldolgozásában.
A terepen megfigyelt kőzetek polarizációs mikroszkópos bemutatása után önálló
mikroszkópos vizsgálatra is volt lehetőség. A terepgyakorlat utolsó napján
Rudabánya földtanával, bányászatával, kutatásával ismerkedtek a résztvevők.
A programon szakmai vezetést biztosítottak a következő
oktatók: Földessy János, Hartai Éva, Mádai Ferenc, Németh Norbert, Pethő Gábor,
Szabó Norbert, Szentpétery Ildikó, Zajzon Norbert, Zelenka Tibor.
A terepgyakorlathoz 30 oldalas kirándulásvezető készült
Németh Norbert szerkesztésében.
A terepgyakorlatot az alábbi intézmények, cégek támogatták:
Miskolci Egyetem Pelegrinatio IV. alapítvány, Colas-Északkő KFT, Geokomplex
KFT, Geomega KFT, Geonardo KFT, Kárpátia-Geogold KFT, MOL Rt, Rotaqua KFT. Ezúton
is köszönjük segítségüket!
Miskolc, 2013. szeptember 5. Zajzon
Norbert
Az
MFT IB elnöke
2013. augusztus 16., péntek
IODP Research Associate, University of Leicester, UK
Job Purpose
Salary Grade 7 - £31,331 to £36,298 per annum.
A Research Associate (Earth Scientist) is required to join an established team engaged in the acquisition and analysis of core petrophysical and borehole measurement data for the Integrated Ocean Drilling Program.
The appointment is open ended subject to fixed term funding. Funding is available from 1 October 2013 to 31 December 2016.
Informal enquiries are welcome and should be made to Professor Sarah Davies on sjd27@le.ac.uk or 0116 252 3624.
The closing date for this post is midnight on 26 August 2013.
Interviews will be held on 9 September 2013.
Details can be found here: http://www.le.ac.uk/jobs/external/SEN00391_Job_Summary.pdf
The closing date for this post is midnight on 26 August 2013.
Interviews will be held on 9 September 2013.
Postdoc position at University of Bergen, Norway
Postdoctoral fellow (2.5 years) in coupled source-to-sink and geodynamic
modelling of extensional basins: Gulf of Corinth, Greece
Department of Earth Science, University of Bergen, Norway
The Department of Earth Science has a vacancy for a postdoctoral fellow (2.5 years) integrating source-to-sink and geodynamic studies to Quaternary rift basins, Gulf of Corinth. The successful candidate will be responsible for integrating offshore seismic, tectonic geomorphology and outcrop (structure and sedimentary) data and for applying coupled geodynamic-landscape evolution modelling to understand the tectonic, landscape and sedimentary evolution of the Corinth Rift. The aim of the project is 1) to develop understanding of erosion, sediment transfer and deposition, from source to sink, in the Corinth Rift, and 2) to investigate structural development of the rift and the potential role of coupling of tectonics and surface processes in the rifts evolution. The project will involve collaboration with University of Southampton and CRPG, Nancy, France.
This sub-project is part of a larger Earth System Modelling (ESM) project, which has as a main goal to study links and feedbacks between geodynamics, source to sink studies, and palaeoclimate modelling. The ESM project involves in total 12 post-doctoral fellows and senior researchers at the Department of Earth Science and the Bjerknes Centre for Climate Research and is funded by Statoil ASA.
Starting salary on grade 57 (code 1352/LR 24.1) in the Civil Service pay grade table, currently NOK 473,400 gross p.a., following ordinary meriting regulations (wage range 57- 65). In the case of particularly highly qualified applicants a higher salary may be considered.
Applicants must have achieved a PhD degree in Earth Science that is relevant to the postdoctoral research position, or have presented the dissertation for assessment by the closing date for applications. It is a prerequisite that the dissertation has been approved before appointment is granted. Letters of reference from three geoscientists who know the candidate and his/her work must be provided.
Applicants should submit a brief (1 page) statement of their research experience and intended research goals within the scope of this post doc project. This and other application materials should demonstrate that the candidate possesses good skills in tectonic geomorphology and/or sedimentology and/or structural geology with experience in geological fieldwork. Experience of tectonic and/or surface process modelling is an advantage. Applicants are expected to have excellent oral and written English communication skills.
Closing date for applications: 15 September 2013. Application information and further details can be found at: http://www.jobbnorge.no/job. aspx?jobid=95628
For further information contact:
Prof. William Helland-Hansen, phone +47 92663806 william.helland-hansen@geo. uib.no
Prof. Ritske Huismans, phone +47 92270930 ritske.huismans@geo.uib.no
Prof. Rob Gawthorpe, phone +47 45392790 rob.gawthorpe@geo.uib.no
Department of Earth Science, University of Bergen, Norway
The Department of Earth Science has a vacancy for a postdoctoral fellow (2.5 years) integrating source-to-sink and geodynamic studies to Quaternary rift basins, Gulf of Corinth. The successful candidate will be responsible for integrating offshore seismic, tectonic geomorphology and outcrop (structure and sedimentary) data and for applying coupled geodynamic-landscape evolution modelling to understand the tectonic, landscape and sedimentary evolution of the Corinth Rift. The aim of the project is 1) to develop understanding of erosion, sediment transfer and deposition, from source to sink, in the Corinth Rift, and 2) to investigate structural development of the rift and the potential role of coupling of tectonics and surface processes in the rifts evolution. The project will involve collaboration with University of Southampton and CRPG, Nancy, France.
This sub-project is part of a larger Earth System Modelling (ESM) project, which has as a main goal to study links and feedbacks between geodynamics, source to sink studies, and palaeoclimate modelling. The ESM project involves in total 12 post-doctoral fellows and senior researchers at the Department of Earth Science and the Bjerknes Centre for Climate Research and is funded by Statoil ASA.
Starting salary on grade 57 (code 1352/LR 24.1) in the Civil Service pay grade table, currently NOK 473,400 gross p.a., following ordinary meriting regulations (wage range 57- 65). In the case of particularly highly qualified applicants a higher salary may be considered.
Applicants must have achieved a PhD degree in Earth Science that is relevant to the postdoctoral research position, or have presented the dissertation for assessment by the closing date for applications. It is a prerequisite that the dissertation has been approved before appointment is granted. Letters of reference from three geoscientists who know the candidate and his/her work must be provided.
Applicants should submit a brief (1 page) statement of their research experience and intended research goals within the scope of this post doc project. This and other application materials should demonstrate that the candidate possesses good skills in tectonic geomorphology and/or sedimentology and/or structural geology with experience in geological fieldwork. Experience of tectonic and/or surface process modelling is an advantage. Applicants are expected to have excellent oral and written English communication skills.
Closing date for applications: 15 September 2013. Application information and further details can be found at: http://www.jobbnorge.no/job.
For further information contact:
Prof. William Helland-Hansen, phone +47 92663806 william.helland-hansen@geo.
Prof. Ritske Huismans, phone +47 92270930 ritske.huismans@geo.uib.no
Prof. Rob Gawthorpe, phone +47 45392790 rob.gawthorpe@geo.uib.no
2013. augusztus 8., csütörtök
Planetology and Geochemistry Symposium Program
Az előző bejegyzésben meghirdetett előadóülés időpontja 2013. augusztus 23., péntek, 10:00, helyszíne az MTA Földtani és Geokémiai Intézetének könyvtára, 1112, Budapest, Budaörsi út 45., II. em. 213.
Planetology and Geochemistry Symposium Program
10:00 Nicole Cates: Component Geochronology of the ca. 3920 Ma Acasta Gneiss
10:20 Elizabeth Frank: Metakomatiites, Dynamical Modeling and the Late Veneer
10:40 Michelle Hopkins: Ancient Thermal Events on 4 Vesta Recorded in Zircon U‐Th‐Pb‐Ti
Depth Profiles from a Brecciated Eucrite
10:00 Jennika Greer: Multiple Generations of TTG Gneisses Host Eoarchean Supracrustals
in the Innukjuak Domain (Québec, Canada)
11:20 Matthew Wielicski: Sieve Textures in Impact Zircon from Vredefort, South Africa:
Implications to Impact Geochronology
11:40 Krebsz Melinda: New Insights into the composition of wax‐like materials in
chondrites
Planetology and Geochemistry Symposium Program
10:00 Nicole Cates: Component Geochronology of the ca. 3920 Ma Acasta Gneiss
10:20 Elizabeth Frank: Metakomatiites, Dynamical Modeling and the Late Veneer
10:40 Michelle Hopkins: Ancient Thermal Events on 4 Vesta Recorded in Zircon U‐Th‐Pb‐Ti
Depth Profiles from a Brecciated Eucrite
10:00 Jennika Greer: Multiple Generations of TTG Gneisses Host Eoarchean Supracrustals
in the Innukjuak Domain (Québec, Canada)
11:20 Matthew Wielicski: Sieve Textures in Impact Zircon from Vredefort, South Africa:
Implications to Impact Geochronology
11:40 Krebsz Melinda: New Insights into the composition of wax‐like materials in
chondrites
2013. július 30., kedd
Geokémiai témájú előadások az MTA CSFK FGI-ben
Az esemény felhívását alább olvashatjátok:
Kedves Kollégák!
MTA meghívottunk, Steve
Mojzsis amerikai hallgatói ellátogatnak hozzánk, néhány napot itt töltenek,
majd a firenzei Goldschmidt konferenciára mennek. Az itteni tartózkodásuk
alkalmával szívesen bemutatnák a Goldschmidt konferenciára vitt prezentációikat,
fejenként 15 percben.
Természetesen a bemutatónak akkor van értelme, ha elegendő
hallgatóság gyűlik össze, ezért kérem, hogy aki augusztus 21. és 23. között
eljönne a rendezvényre az intézetünkbe (MTA CsFK FGI, 1112 Budapest, Budaörsi
út 45.), jelezze nekem e-mailben (Demény Attila, demeny.attila@csfk.mta.hu). A nyári
szabadságok miatt a pontos időpontot a visszajelzések alapján határoznánk meg.
Nagyon örülnék, ha az egyetemi hallgatók körében is terjesztenék/terjesztenétek
az információt.
Az előadások címei alábbiakban olvashatóak:
Dr. Nicole Cates:
Component Geochronology of the ca. 3920 Ma Acasta Gneiss
Elizabeth Frank:
Metakomatiites, Dynamical Modeling and the Late Veneer
Michelle Hopkins:
Ancient Thermal Events on 4 Vesta Recorded in Zircon U-Th-Pb-Ti Depth Profiles
from a Brecciated Eucrite
Jennika Greer:
Multiple Generations of TTG Gneisses Host Eoarchean Supracrustals in the
Innukjuak Domain (Québec, Canada)
Matthew Wielicski:
Sieve Textures in Impact Zircon from Vredefort, South Africa: Implications to
Impact Geochronology
Üdvözlettel,
Demény Attila
2013. július 23., kedd
Three years speleo-related PhD position in Vienna
3 years PhD student position within a project funded by the Austrian Science Foundation (FWF)
PIs: Lukas Plan, Ivo Baron (NHM-Wien), Bernhard Grasemann (Univie)
SPELEOTECT - Active tectonics and recent dynamics of micro-displacements along major fault systems of the Eastern Alps registered in caves
Start: November/December 2013
Numerous field studies, seismic data, and GPS observations suggest ongoing activity along major tectonic fault systems in the Eastern Alps. This project uses caves in Austria as field laboratories to map displacements of cave passages, monitor micro-displacements and to date active faulting by applying the U-series disequilibrium method on damaged and sealed speleothems.
Key tasks comprise
identifying, documenting and dating active faults in Austrian caves
investigating the kinematics of active faults and reconstructing the (paleo)strain field
discriminating between fault displacements caused by seismic slip or aseismic creep
monitoring the recent dynamics of micro-displacements along single faults
updating the paleoseismic data for the Eastern Alps
The PhD student will be mainly involved in mapping, sampling and sample preparation of damaged speleothems for U/ Th-dating, palaeostrain quantification on faults and in high-resolution microtectonic studies (SEM, CL, EMPA, EBSD) of faulted flowstones for discriminating between fault displacements caused by seismic slip or aseismic creep.
Applicants with a completed Master’s degree with basic knowledge in speleology (and the will and the physical ability to work in vertical Alpine caves), (micro)tectonics and/or high resolution analytical techniques (e.g. SEM, CL, EMPA, EBSD) are preferred. We are especially keen to promote the careers of women, and we therefore look forward to receiving applications from female candidates.
Payment will be according to the FWF (“DoctorandIn”):
The applications including a motivation letter and CV should be sent to lukas.plan@nhm-wien.ac.at and/or Bernhard.Grasemann@univie.ac.at not later than September, 30th 2013. You can also contact us for more information!
Forrás: http://speleogenesis.info/news/?id=269
2013. július 7., vasárnap
PhD position on "Physical modelling of submarine channel-levee development" at the University of Leeds, UK
Details can be found here:
http://www.see.leeds.ac.uk/admissions-and-study/research-degrees/essi/2013/mccaffrey/
Deadline is August 16th.
2013. július 3., szerda
PhD Fellow in Carbonate Geology/Seismic Modelling, University of Bergen, Norway
The Department of Earth Science at the University of Bergen has a vacancy for a research fellow (PhD candidate) in the field of carbonate geology/seismic modelling. He/she is expected to develop sedimentological and sequence stratigraphic models for mixed carbonate-siliciclastic-
Applicants must have achieved master’s degree or equivalent in sedimentology/structural geology/seismic modelling that is relevant to the PhD topic, or have submitted their master thesis for assessment by the application deadline. Candidates must have a suitable background in earth science and should have practical experience in field-based sedimentology. Experience in carbonate petrography and seismic modelling is an advantage.
In total, the fellowship period is 4 years. For positions with 4-year duration, with 25% of the period designated to teaching and/or administrative duties. Starting salary on grade 50 (code 1017/pay framework 20.8) in the Civil Service pay grade table; currently NOK 421,100 gross p.a.; following ordinary meriting regulations.
For further information about the position please contact one of the following:
Associate Professor Gunnar Sælen, telephone +47 55 58 33 95 / e-mail Gunnar.Saelen@geo.uib.no
Professor Robert Gawthorpe, telephone +47 55 58 34 38 / e-mail Rob.Gawthorpe@geo.uib.no
Associate Professor Henk Keers, telephone +47 55 58 87 48 / e-mail Henk.Keers@geo.uib.no
Applications must be made using the Jobbnorge.no website at:
http://www.jobbnorge.no/job.
Closing date for applications: 23 July 2013
Visit the BSRG at www.bsrg.org.uk
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