
Geological Training
Master the full spectrum of geological science, from Earth's internal structure to applied resource and hazard assessment. This comprehensive training covers petrology, structural geology, stratigraphy, geophysics, and field mapping techniques. Build the technical skills that professional geologists rely on every day in exploration, engineering, and environmental practice.
What you will learn:
This course takes you through the core disciplines of geology in a structured, practical sequence. You will learn to classify rocks and minerals, interpret geologic maps, and reconstruct deformation histories from structural data. Stratigraphy and sedimentary environments are covered in depth, giving you tools to correlate sequences and predict subsurface geology. Geophysical methods, including seismic reflection, gravity, and electrical surveys, are explained so you can select and interpret the right technique for any project. Applied chapters address mineral deposit geology, petroleum systems, hydrogeology, and geological hazard assessment. Supplementary modules cover GIS, remote sensing, geostatistics, and professional communication to round out your skill set.
How you study in practice Geological Training
How you practise Geological Training
For companies looking to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Earth Science
Foundations of Earth Science
Lesson 1 • Minerals and Their Properties
Examines mineral chemistry, crystal structure, and physical identification properties. Mineral recognition underpins rock classification throughout the course.
Lesson 2 • Introduction to Geologic Maps
Teaches map symbols, strike and dip notation, and basic cross-section construction. Students gain the spatial literacy required for field and subsurface interpretation.
Lesson 3 • Geologic Time and Dating
Introduces relative and absolute dating methods used to establish rock ages. Provides the temporal framework essential for interpreting stratigraphic sequences.
Lesson 4 • Earth's Internal Structure
Covers crust, mantle, and core composition and their physical properties. Establishes the structural framework needed for all subsequent rock and mineral studies.
Lesson 5 • Rock Classification Overview
Surveys igneous, sedimentary, and metamorphic rock categories and their formation environments. Sets the stage for detailed petrographic study in later chapters.
Chapter 2HideHide detailsSee detailsPetrology and Rock Analysis
Petrology and Rock Analysis
Lesson 1 • Metamorphic Petrology
Analyzes pressure-temperature conditions, metamorphic grade, and index mineral zones. Provides tools for reconstructing burial and tectonic histories from rock assemblages.
Lesson 2 • Igneous Petrology
Covers magma composition, crystallization sequences, and igneous texture classification. Connects magmatic processes to tectonic settings introduced later.
Lesson 3 • Sedimentary Petrology
Examines clastic, chemical, and biogenic sediment types, grain size analysis, and diagenesis. Sedimentary facies concepts link rock description to depositional environment interpretation.
Lesson 4 • Geochemical Rock Analysis
Introduces major and trace element analysis methods and geochemical classification diagrams. Geochemical data interpretation supports provenance and tectonic environment studies.
Lesson 5 • Thin Section Microscopy
Trains optical microscope use for mineral identification under plane and cross-polarized light. Microscopy skills are applied in all subsequent petrographic laboratory exercises.
Chapter 3HideHide detailsSee detailsStructural Geology Principles
Structural Geology Principles
Lesson 1 • Stress and Strain Fundamentals
Defines stress tensors, strain ellipsoids, and rheological behavior of rocks under load. These concepts underpin all structural feature interpretation in the chapter.
Lesson 2 • Faults and Fault Systems
Examines normal, reverse, and strike-slip fault kinematics, indicators, and displacement measurement. Fault interpretation is essential for subsurface resource and hazard assessment.
Lesson 3 • Folds: Geometry and Classification
Covers fold terminology, hinge geometry, and classification by style and symmetry. Fold analysis skills are directly applied in map interpretation exercises.
Lesson 4 • Structural Map Interpretation
Applies stereonet projection and map analysis to reconstruct three-dimensional structural geometry. Integrates fold, fault, and fracture data into coherent deformation histories.
Lesson 5 • Fractures and Joints
Analyzes joint sets, fracture networks, and their relationship to stress fields. Fracture characterization informs fluid flow modeling in reservoir and hydrogeology contexts.
Chapter 4HideHide detailsSee detailsStratigraphy and Sedimentary Environments
Stratigraphy and Sedimentary Environments
Lesson 1 • Stratigraphic Principles and Methods
Reviews superposition, lateral continuity, and unconformity types as the basis for correlation. These principles govern all stratigraphic interpretation tasks in the chapter.
Lesson 2 • Depositional Environments
Characterizes continental, transitional, and marine depositional settings using facies models. Environment recognition drives reservoir and source rock prediction in applied geology.
Lesson 3 • Well-Log Interpretation Basics
Teaches gamma-ray, resistivity, and porosity log reading for lithology and fluid identification. Log interpretation connects surface stratigraphy to subsurface data sets.
Lesson 4 • Basin Analysis and Subsidence
Examines tectonic subsidence mechanisms, sediment supply, and basin-fill modeling. Basin analysis integrates stratigraphy and structure to reconstruct geological history.
Lesson 5 • Sequence Stratigraphy
Introduces systems tracts, sequence boundaries, and sea-level cycle interpretation. Sequence stratigraphy provides a predictive framework for subsurface reservoir mapping.
Chapter 5HideHide detailsSee detailsField Geology and Mapping Techniques
Field Geology and Mapping Techniques
Lesson 1 • Geological Mapping Procedures
Covers contact tracing, unit boundary mapping, and progressive map compilation in the field. Mapping procedures integrate all prior rock and structure knowledge into spatial products.
Lesson 2 • Field Report Writing
Guides structured field report composition including maps, sections, and interpretive text. Report writing translates raw field data into professional geological deliverables.
Lesson 3 • Field Safety and Planning
Establishes hazard identification, risk assessment, and logistical planning for field campaigns. Safe, well-planned fieldwork is the prerequisite for all data collection activities.
Lesson 4 • Outcrop Description and Measurement
Trains systematic outcrop logging, structural measurement, and photographic documentation. Consistent description protocols ensure data comparability across field teams.
Lesson 5 • Sample Collection and Management
Defines sampling strategies, labeling standards, and chain-of-custody procedures for field specimens. Proper sample management preserves data integrity from field to laboratory.
Chapter 6HideHide detailsSee detailsGeophysical Methods in Geology
Geophysical Methods in Geology
Lesson 1 • Seismic Reflection Fundamentals
Covers wave propagation, reflection coefficients, and 2-D seismic data acquisition. Seismic reflection is the primary subsurface imaging tool used in resource exploration.
Lesson 2 • Electrical and Electromagnetic Methods
Covers resistivity surveying, induced polarization, and electromagnetic induction techniques. These methods map shallow geology, groundwater, and mineralized zones effectively.
Lesson 3 • 3-D Seismic and Attribute Analysis
Extends reflection concepts to 3-D volumes and seismic attribute extraction. Attribute analysis reveals stratigraphic and structural features invisible on 2-D sections.
Lesson 4 • Integrated Geophysical Interpretation
Combines multiple geophysical data sets with geological constraints for subsurface modeling. Integration reduces interpretation ambiguity and improves geological model confidence.
Lesson 5 • Gravity and Magnetic Surveys
Explains Bouguer anomaly calculation, magnetic susceptibility, and potential field modeling. These methods delineate basement structure and igneous bodies at regional scale.
Chapter 7HideHide detailsSee detailsApplied Resource Geology
Applied Resource Geology
Lesson 1 • Petroleum System Analysis
Evaluates source rock maturity, migration pathways, reservoir quality, and trap integrity. Petroleum system thinking integrates stratigraphy, structure, and geochemistry for exploration.
Lesson 2 • Exploration Data Integration
Combines geological, geophysical, and geochemical data to rank exploration targets. Data integration reduces exploration risk and prioritizes drilling or sampling programs.
Lesson 3 • Hydrogeology and Groundwater Resources
Covers aquifer types, hydraulic conductivity, and groundwater flow modeling fundamentals. Hydrogeological assessment supports water supply, contamination, and dewatering projects.
Lesson 4 • Mineral Deposit Geology
Classifies ore deposit types by genesis, host rock, and structural control. Deposit classification guides exploration targeting and resource estimation workflows.
Lesson 5 • Resource Estimation Methods
Introduces geostatistical and volumetric methods for estimating mineral and hydrocarbon resources. Estimation methods must meet professional reporting standards for public disclosure.
Chapter 8HideHide detailsSee detailsGeological Hazard Assessment
Geological Hazard Assessment
Lesson 1 • Seismic Hazard Evaluation
Covers fault activity assessment, ground-motion prediction, and probabilistic seismic hazard analysis. Seismic hazard results directly inform structural design and land-use planning.
Lesson 2 • Volcanic Hazard Assessment
Evaluates lava flow, pyroclastic, lahar, and ashfall hazards using eruptive history data. Volcanic hazard maps guide evacuation planning and infrastructure siting decisions.
Lesson 3 • Hazard Communication and Reporting
Trains hazard map production, uncertainty communication, and stakeholder briefing techniques. Effective communication translates technical hazard data into actionable risk decisions.
Lesson 4 • Subsidence and Ground Instability
Addresses karst dissolution, mining subsidence, and compaction-driven ground movement. Subsidence assessment is critical for infrastructure integrity and insurance risk evaluation.
Lesson 5 • Landslide and Mass Movement Hazards
Classifies slope failure types, triggering mechanisms, and susceptibility mapping methods. Mass movement assessment protects infrastructure and communities in steep terrain.
Your valid completion certificate
This course is for you:
Geology graduates: seeking to consolidate and formalize their foundational technical knowledge.
Mining or petroleum technicians: wanting geological context to strengthen their field contributions.
Environmental consultants: needing structured geoscience grounding for site assessment work.
Civil engineers: working on projects where subsurface conditions directly affect design decisions.
Career changers: transitioning into geoscience from adjacent science or engineering backgrounds.
Hobbyist rockhounds: ready to move beyond identification into professional-level geological thinking.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.

I like the content and the presentation style and video transcription, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.

Top training programs
FAQ
Who is Dedika?
Is the certificate valid in Canada?
Are the courses free?
What is the course workload?
What are the courses like?
How do the courses work?
What is the duration of the courses?
What is the cost or price of the courses?
What is an EAD or online course and how does it work?
PDF Course




















