Geologist jobs in Finland
Geologists research the materials that form the earth. Their observations depend on the purpose of the research. Depending on their specialisation, geologists study how the Earth has been shaped over time, its geological layers, the quality of minerals for mining purposes, earthquakes and volcanic activity for private services, and similar phenomena.
Geologist - Which skills are essential?
Carry out tests in a laboratory to produce reliable and precise data to support scientific research and product testing.
Participate in the collection of geological data such as core logging, geological mapping, geochemical and geophysical surveying, digital data capture, etc.
The study of interpreting the elements depicted in maps, the measures and technical specifications.
Apply mathematical methods and make use of calculation technologies in order to perform analyses and devise solutions to specific problems.
Record data which has been identified specifically during preceding tests in order to verify that outputs of the test produce specific results or to review the reaction of the subject under exceptional or unusual input.
Use models (descriptive or inferential statistics) and techniques (data mining or machine learning) for statistical analysis and ICT tools to analyse data, uncover correlations and forecast trends.
Mathematics is the study of topics such as quantity, structure, space, and change. It involves the identification of patterns and formulating new conjectures based on them. Mathematicians strive to prove the truth or falsity of these conjectures. There are many fields of mathematics, some of which are widely used for practical applications.
Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.
Make sure that laboratory equipment is used in a safe manner and the handling of samples and specimens is correct. Work to ensure the validity of results obtained in research.
System of chronological measurement dividing geologic history into several temporal divisions and subdivisions that take ancient life, geography, and climates into account.
Apply scientific methods and techniques to investigate phenomena, by acquiring new knowledge or correcting and integrating previous knowledge.
The study of statistical theory, methods and practices such as collection, organisation, analysis, interpretation and presentation of data. It deals with all aspects of data including the planning of data collection in terms of the design of surveys and experiments in order to forecast and plan work-related activities.
Calibrate laboratory equipment by comparing between measurements: one of known magnitude or correctness, made with a trusted device and a second measurement from another piece of laboratory equipment. Make the measurements in as similar a way as possible.
Solid earth, rock types, structures and the processes by which they are altered.
Perform exploration activities for mines and fields with the aim of analysing the properties of the area and finding ores.
Analyse and test soil samples; determine gas chromatography and gather relevant isotope and carbon information; determine viscosity.
Present the hypothesis, findings, and conclusions of your scientific research in your field of expertise in a professional publication.
Operate devices, machinery, and equipment designed for scientific measurement. Scientific equipment consists of specialised measuring instruments refined to facilitate the acquisition of data.
Scientific activity consisting in selecting the relevant aspects of a situation and aiming to represent physical processes, empirical objects and phenomena to allow a better understanding, visualisation or quantification, and to enable simulation that shows how this particular subject would behave under given circumstances.
The theoretical methodology used in scientific research involving doing background research, constructing an hypothesis, testing it, analysing data and concluding the results.
Geologist - Which skills are useful but not essential?
The technique used to create maps that clearly illustrate the geological features and rock layers of an area that may be useful for mining projects and geological explorations.
Analyse laboratory samples using equipment such as spectrometers, gas chromatographs, microscopes, microprobes and carbon analysers. Determine the age and characteristics of environmental samples such as minerals, rock or soil.
Manage sediment control processes and projects. Plan sediment control actions to prevent eroded soil from polluting nearby waterways.
Synthetise and write proposals aiming to solve research problems. Draft the proposal baseline and objectives, the estimated budget, risks and impact. Document the advances and new developments on the relevant subject and field of study.
Write a survey report containing information on property boundaries, the height and depth of the terrain, etc..
Be aware of the impact of geological factors, such as faults and rock movements, on mining operations.
The tools involved in geographical mapping and positioning, such as GPS (global positioning systems), GIS (geographical information systems), and RS (remote sensing).
Conduct surveys to determine the location and features of natural and man-made structures, on surface level as well as underground and underwater. Operate electronic distance-measuring equipment and digital measuring instruments.
Provide advice on building matters to the various parties involved in construction projects. Bring to their awareness important building considerations and consult on construction budgets.
The scientific field of geology that studies the composition, structure, texture, other characteristics, and regional gradations of rocks.
Work with computer data systems such as Geographic Information Systems (GIS).
Collect samples of materials or products for laboratory analysis.
Develop geological databases in order to acquire and organise information.
The environmental policies and legislation applicable in a certain domain.
The scientific discipline that studies the presence and distribution of chemical elements in the geological systems of Earth.
Use aerial photos to study phenomena on Earth's surface.
The study of sediments, namely sand, clay, and silt, and the natural processes undergone in their formation.
Formulate scientific theories based on empirical observations, gathered data and theories of other scientists.
The scientific field that deals with the physical processes and properties of, and spatial environment surrounding Earth. Geophysics also deals with the quantitative analysis of phenomena such as magnetic fields, the internal structure of Earth, and its hydrological cycle.
The field of science that studies soil as a natural resource, its characteristics, formation, and classification. It also examines the physical, biological, and chemical potential of soil.
Make maps by formatting compiled data into a virtual image that gives a precise representation of a specific area.
Develop and record the procedural method used for a specific scientific experiment in order to enable its replication.
Interpret data of a geophysical nature: Earth's shape, its gravitational and magnetic fields, its structure and composition, and geophysical dynamics and their surface expression in plate tectonics.
Conduct field work or research which is the collection of information outside of a laboratory or workplace setting. Visit places in order to collect specific information about the field.
Provide expert knowledge in a particular field, especially concerning mechanical or scientific subjects, to decision makers, engineers, technical staff or journalists.
The branch of geology and scientific field specialised in dating the age of rocks, rock formations, and sediments in order to determine geological events and map the chronology of Earth.
Provide information on geological structures, host rock quality, groundwater implications and details on the mineralogical and textural composition of ores to enable mining and processing to be planned efficiently. The geological model is used to design the mine workings for minimum dilution and maximum ore extraction.
Monitor environmental impacts and carry out assessments in order to identify and to reduce the organisation's environmental risks while taking costs into account.
The process of felling, cutting trees and transforming them into timber, including mechanical felling and processing.
Provide advice of the impact of geological factors on the development of mineral production. Take into account factors such as cost, safety, and characteristics of deposits.
Design new equipment or adapt existing equipment to aid scientists in gathering and analysing data and samples.
Enter information into a data storage and data retrieval system via processes such as scanning, manual keying or electronic data transfer in order to process large amounts of data.
Collect soil samples from the railway site, using bores and test pits in order to determine ground stress capability and stability.
Prepare geological sections, a vertical view of the local geology.