PhD THESIS TOPICS AND MATERIALS IN GEOLOGY

ATTENTION:

BEFORE YOU READ THE PROJECT TOPICS BELOW, PLEASE READ THE INFORMATION BELOW.THANK YOU!

NOTE:

WE WILL SEND YOU THE ABSTRACT AND TABLE OF CONTENT OF YOUR APPROVED TOPIC FOR FREE.

CHOOSE FROM THE LIST OF TOPICS BELOW. SEND YOUR EMAIL ADDRESS AND THE APPROVED PROJECT TOPIC TO ANY OF THESE NUMBERS-08068231953, 08168759420

WE WILL THEN SEND THE ABSTRACT AND TABLE OF CONTENT TO YOU FOR FREE

NOTE ALSO:

WE CAN ALSO DEVELOP THE FULL PROJECT WORK

CALL: 08068231953, 08168759420

PhD THESIS TOPICS AND MATERIALS IN GEOLOGY

  • – Sulphur compounds in deep groundwater in the shale formation of the Liminka area
  • – Suolaiset kalliopohjavedet ja niiden alkuperä /Characterization and the origin of saline groundwater in bedrock (F, E)
  • – Physical and chemical heterogeneity on waste rocks watering in a real scale pile (E)

Mine waste modeling, Comsol software

  • – Environmental effects of drilling chemicals in deep bedrock drilling hole/
  • – Groundwater recharge estimation in Finland
  • – Groundwater – surface water interaction in mining environments (F, E)
  • – Natural geochemical and isotopic tracers in hydrogeology (F, E)
  • – Quaternary history of Lauhavuori
  • – Glacier erosion in the hard bed zones of Finland Lake District Ice Stream Lobe (F, E)
  • – Prediction of geochemical evolution of water and gas during lab scale multibarrier bioreactor test (F, E)
  • – Climatic drivers of the global human distribution during the Last Glacial Maximum (F, E)
  • – Climate change and gaps in human occupation history in the Levant between 300ka and 40ka (F, E)
  • – Patterns of European palaeoclimate in the Holocene and Eemian interglacial periods
  • – Age and origin of the mysterious crinoid limestones from Åland
  • – Spatial distribution and clustering of benthic skeletal organisms in a shallow marine limestone on Vormsi Island, Estonia
  • – Peatland dynamics-climate feedbacks
  • – Origin and stability of the surface landforms on a raised bog in Valkmusa national park, eastern Finland (involves fieldwork in Finland)
  • – Using charcoal piece analysis for fire history reconstruction in the boreal coniferous forest (involves fieldwork in Finland)
  • – A novel approach for vegetation biomass reconstructions using pollen data from a lake sediment core from southern Finland (involves fieldwork in Finland)
  • – Quantifying the rate of temperature change in Europe during the rapid climate changes of the late-glacial period (no fieldwork)
  • – Spatio-temporal climate reconstructions using new lipid biomarker methods (no fieldwork)
  • – Holocene Thermal Maximum as an analogue for the predicted future warming in Finland
  • – Developing digital standards for topographic methods to analyse fossils
  • – Identifying the Pleistocene hypercarnivorous canids based on carnassial morphometrics –
  • – A palaeo-diet study using angle-based mesowear of fossil mammals from X (details to be agreed on)
  • – An ecometric analysis of fossil mammals from Y (details to be agreed on)
  • – The fossil rhinoceros remains from Orce, early Pleistocene of Andalucia, Spain
  • – The fossil rhinoceros remains from OBUU, Western Mongolia – taxonomic and palaeoenvironmental context
  • – Trace element characterization of titanite in the Kumpula drill core
  • – Trace element characterisation of chromites from mafic-ultramafic lithologies
  • – The chemical evolution of olivine xenocrysts in Heard Island samples, Australia
  • – Platinum group elements in Antarctic norite samples
  • – The evolution of Cr-spinel hosted melt inclusions in 2Ga Finnish komatiite samples

Description: Major, trace element and PGE geochemistry of Cr-spinels and major and trace element geochemistry of melt inclusions, ± including volatiles

  • – Thermodynamic constraints for assimilation in basaltic and picritic magmas
  • – “Provide your own igneous petrology subject for which you would use Magma Chamber Simulator or MELTS modeling tools”
  • – Petrology of mantle xenoliths from Southern African kimberlites (Oleg von Knorring collection)
  • – Geochemical fingerprinting of gold deposits in Ostrobothia Gold Camp, Finland
  • – Distribution of cobalt and tungsten in Kopsa Au-deposit, Ostrobothnia, Finland
  • – Geochemistry of moss – new tool for mineral exploration under cover
  • – Chemical and stable isotope composition of ground waters from 1800-metres-deep drill hole at Kevitsa mine, Northern Finland
  • – Green Mining: Distribution of gold and cobalt in the tailings of historical Haveri gold mine, Ylöjärvi, southern Finland
  • – Petrology/mineralogy/geochemistry topic on Kuusamo Deep Drill Hole
  • – Topic on Ni-Cu-PGE exploration in Northern Finland (TBD)
  • – Geochemistry, mineralogy and petrogenesis of the Leppävirta “hornblende gneisses” (F, E)
  • – Petrology and mineral chemistry of the 2.1 Ga Tanhua mafic intrusion, Savukoski, Lapland (F, E)
  • – Heat and mass transfer in coaxial drill hole casings for geothermal energy applications
  • – Inverse solution of conductive heat transfer in 3D anisotropic medium: Heating experiment in an underground research laboratory
  • – Hydrothermally altered mineralized systems: Seismic reflection properties of rocks
  • – Effect of geological structure on rock stress: a modelling approach (using Matlab and Coulomb software)
  • – Cosmogenic isotopes in age dating of glacial bedrock morphology
  • – Interpretation of fission track age data in the 2.5 km deep Outokumpu drill hole
  • – Hydraulic properties of crystalline rocks: Injection tests in deep boreholes
  • – Prediction of permafrost evolution under warming climate: a modelling approach
  • – Processing and analysis of seismic reflection data from exploration and mining camps
  • – Thermal properties of meteorites
  • – Inversion of subsurface drill hole temperature profiles for ground surface temperature history (combination of geothermal data analysis and glaciation dynamics)
  • – Induced seismicity in enhanced geothermal systems
  • – Geoneutrinos and radiogenic heat production of the Earth
  • – Fracture orientation analysis of the Outokumpu deep drill hole with acoustic televiewer data
  • – Low temperature thermochronology Fission track & (U-Th)/He methods
  • – Modeling of thermochronological data
  • – Study of microscopic shock effects in meteorites – insight into collision history of asteroids
  • – Use of artificial intelligence in characterization of asteroid spectra to derive their mineral composition
  • – Development of hyperspectral imager calibration procedure for ESA Hera mission
  • – Cretaceous-Paleogene mass extinction. Environmental magnetic study on carbonate sequence recording the K-T transition (Brazil)
  • – Seismicity and tectonothermal environment of the Wiborg rapakivi batholith
  • – Geophysical properties of the Pyhäsalmi area
  • – Applicability of Open quake software to Finnish conditions
  • – Automatic assessment of seismic intensity for felt earthquakes in Finland
  • – Harmonization of internet macroseismology in Fennoscandia
  • – Projects associated with the analysis of seismic data collected by 100+ stations around the 2018 and 2020 geothermal reservoir stimulations in Otaniemi/Espoo
  • – Projects associated with crustal and fault zone monitoring and imaging using ambient noise correlations
  • – Magnitude-yield relationships for underwater explosions
  • – Detection and identification of glacier based seismic signals in Antarctica using unsupervised machine learning
  • – Automatic detection of seismic events in urban areas, comparison of methods
  • – Seismic signal onset estimation by combining different methods and machine learning
  • – Study of dissimilarities of microearthquakes in concise earthquake populations with self-organizing maps
  • – Ablative subduction in the Andes: An alternative mechanism for removal of mantle lithosphere?
  • – Quantifying rates of bedrock landsliding in mountainous regions and their implications for landscape erosion
  • – Effects of orographic precipitation on mountain evolution in 3D
  • – Where does landslide-derived sediment go and how long does it take?
  • – Mapping erosion in steep mountain landscapes using detrital thermochronology
  • – Paleoproterozoic plateaus: Implications for lithospheric evolution and crustal metamorphism
  • – Application of probabilistic seismic event location software, with a focus on the impact of station geometry and station position uncertainty on location uncertainty
  • – Quantitative interpretation of geophysical data from Sakatti Ni-Cu-PGE deposit for aiding hydrogeological 3D modelling (for mine planning)
  • – Comparison of results of anisotropy of magnetic susceptibility (AMS), anisotropy of remanent magnetization (ARM) and micro tomography
  • – Comparison of IP results measured with MAFRIP (frequency domain) and SCIP (time domain)
  • – Factors affecting the measuring results of seismic p-wave velocities in the laboratory
  • – Re-processing and 3D modelling of reflection seismic data of HIRE formations
  • – Use of reflection seismic data to model near surface layers and structures in the groundwater area
  • – Testing of different migration algorithms in the last stages of processing reflection seismic data
  • – Theoretical modelling of seismic response of geological structures of interest
  • – Can airborne TEM data observe conductors better than GTK’s airborne data?
  • – Joint use of seismics, petrophysics and AMS in studies of a Ni-Cu-PGE ore
  • – Analysis of airborne national magnetic data
  • – Usage of machine learning for petrophysical and geochemical analysis
  • – Joint interpretation of airborne and ground EM data from the Outokumpu area
  • – Anisotropy (if any) and characterization of flake graphites vs uneconomic/impure graphites + implications for geophysical exploration

HOW TO RECEIVE PROJECT MATERIAL(S)

After paying the appropriate amount (#5,000) into our bank Account below, send the following information to

08068231953 or 08168759420

(1)    Your project topics

(2)     Email Address

(3)     Payment Name

(4)    Teller Number

We will send your material(s) after we receive bank alert

BANK ACCOUNTS

Account Name: AMUTAH DANIEL CHUKWUDI

Account Number: 0046579864

Bank: GTBank.

OR

Account Name: AMUTAH DANIEL CHUKWUDI

Account Number: 3139283609

Bank: FIRST BANK

FOR MORE INFORMATION, CALL:

08068231953 or 08168759420

AFFILIATE LINKS:

myeasyproject.com.ng

easyprojectmaterials.com

easyprojectmaterials.net.ng

easyprojectsmaterials.net.ng

easyprojectsmaterial.net.ng

easyprojectmaterial.net.ng

projectmaterials.com.ng

googleprojectsng.blogspot.com

myprojectsng.blogspot.com.ng

https://projectmaterialsng.blogspot.com.ng/
https://foreasyprojectmaterials.blogspot.com.ng/
https://mypostumes.blogspot.com.ng/
https://myeasymaterials.blogspot.com.ng/
https://eazyprojectsmaterial.blogspot.com.ng/
https://easzprojectmaterial.blogspot.com.ng/

By admin

Leave a Reply

Your email address will not be published. Required fields are marked *