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Mining and Exploration Geology Course
More than 2 million students worldwide

Mining and Exploration Geology Course

4.9

Master the full exploration geology workflow, from reading rocks in the field to estimating mineral resources in 3D software. This course covers ore deposit genesis, drilling, sampling, geophysics, and project management in one rigorous program. Whether you're entering the industry or advancing your career, you'll gain the technical depth that mining companies demand.

Dedika for Business

What you will learn:

You will build a solid foundation in geological mapping, structural interpretation, and ore deposit classification across magmatic, hydrothermal, sedimentary, and supergene systems. You will design and manage sampling programs, apply QAQC protocols, and interpret geophysical and geochemical survey data to vector toward concealed mineralization. The course trains you in diamond and RC drilling supervision, core logging, and borehole geophysics. You will construct block models, run geostatistical analyses, and prepare resource statements to international reporting standards. Project evaluation, budgeting, regulatory compliance, and technical reporting round out a complete professional skill set.

How you study in practice Mining and Exploration Geology Course

How you practise Mining and Exploration Geology Course

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Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Geology for Mining

  • Lesson 1 • Earth Structure and Plate Tectonics

    Covers Earth's internal layers, lithospheric plates, and tectonic settings. Links plate boundary types to metallogeny and ore deposit formation.

  • Lesson 2 • Rock-Forming Minerals and Identification

    Teaches physical and optical properties of common rock-forming minerals. Builds identification skills critical for field logging and sample description.

  • Lesson 3 • Structural Geology Fundamentals

    Explains folds, faults, joints, and foliations as controls on fluid flow and ore localization. Introduces measurement conventions used in field mapping.

  • Lesson 4 • Geologic Time and Stratigraphy

    Introduces the geologic timescale, relative and absolute dating methods, and stratigraphic principles. Provides temporal context for interpreting ore deposit ages.

  • Lesson 5 • Igneous, Sedimentary, and Metamorphic Rocks

    Classifies the three rock families by origin, texture, and composition. Connects rock types to their roles as hosts or sources of ore deposits.

Chapter 2See details

Ore Deposit Classification and Genesis

  • Lesson 1 • Principles of Ore Deposit Formation

    Examines the source, transport, and precipitation of ore-forming fluids and metals. Establishes the genetic framework used throughout the course.

  • Lesson 2 • Metamorphic and Supergene Deposits

    Covers orogenic gold, metamorphic remobilization, and supergene enrichment profiles. Connects weathering processes to economic upgrading of primary ore.

  • Lesson 3 • Magmatic and Magmatic-Hydrothermal Deposits

    Covers orthomagmatic segregation, porphyry, skarn, and epithermal systems. Students distinguish deposit subtypes by alteration and metal assemblage.

  • Lesson 4 • Sediment-Hosted and Stratabound Deposits

    Analyzes sedimentary exhalative, Mississippi Valley-type, and sediment-hosted gold systems. Emphasizes stratigraphic and diagenetic controls on ore localization.

  • Lesson 5 • Industrial Minerals and Bulk Commodities

    Surveys non-metallic mineral deposits including phosphate, potash, coal, and construction materials. Broadens deposit literacy beyond metallic ore systems.

Chapter 3See details

Geological Mapping and Field Methods

  • Lesson 1 • Core and Chip Logging

    Trains systematic description of drill core and reverse-circulation chips. Logging accuracy directly controls resource estimation and exploration targeting.

  • Lesson 2 • Field Data Management and Reporting

    Introduces field notebook standards, digital data capture, and preliminary report writing. Ensures data integrity from collection through to office interpretation.

  • Lesson 3 • Topographic Maps and Navigation

    Teaches map reading, grid systems, and GPS navigation for field positioning. Accurate location recording underpins all subsequent mapping and sampling work.

  • Lesson 4 • Geological Mapping Techniques

    Covers traverse mapping, contact tracing, and unit boundary delineation. Students produce field maps that accurately represent lithology and structure.

  • Lesson 5 • Field Safety and Planning

    Establishes safety protocols, risk assessment, and logistical planning for remote fieldwork. Ensures students operate safely before any technical field instruction.

Chapter 4See details

Sampling, Assaying, and Quality Control

  • Lesson 1 • Data Validation and Assay Reporting

    Covers database validation, outlier detection, and assay result reporting conventions. Prepares students to deliver defensible analytical datasets.

  • Lesson 2 • Quality Assurance and Quality Control

    Establishes QAQC protocols using standards, blanks, and duplicates. Students interpret QAQC charts to detect contamination, bias, and precision failures.

  • Lesson 3 • Sample Preparation and Analytical Methods

    Describes crushing, pulverizing, and splitting workflows and common assay techniques. Links preparation quality to analytical accuracy and detection limits.

  • Lesson 4 • Sampling Theory and Design

    Explains the theory of sampling error, nugget effect, and sample support. Students design programs that minimize bias and meet exploration objectives.

  • Lesson 5 • Surface and Subsurface Sampling Methods

    Covers channel, chip, grab, and soil sampling alongside core and RC chip collection. Matches method to deposit type and exploration stage.

Chapter 5See details

Geophysical and Geochemical Exploration

  • Lesson 1 • Gravity and Magnetic Surveys

    Explains the physical basis, acquisition, and interpretation of gravity and magnetic data. Connects anomaly patterns to lithological and structural targets.

  • Lesson 2 • Electrical and Electromagnetic Methods

    Covers induced polarization, resistivity, and time-domain EM surveys for sulfide detection. Students interpret chargeability and conductivity responses in exploration contexts.

  • Lesson 3 • Geochemical Survey Design and Interpretation

    Covers pathfinder element selection, sample media, and anomaly interpretation. Students design geochemical surveys appropriate to deposit type and terrain.

  • Lesson 4 • Seismic Methods in Mining Exploration

    Introduces reflection and refraction seismic techniques applied to deep ore deposit targeting. Emphasizes seismic data interpretation for structural and lithological mapping.

  • Lesson 5 • Integrated Geoscience Data Interpretation

    Synthesizes geophysical and geochemical datasets into coherent exploration models. Students prioritize drill targets using multi-dataset integration workflows.

Chapter 6See details

Drilling Programs and Subsurface Investigation

  • Lesson 1 • Downhole Surveying and Deviation Control

    Covers gyroscopic and magnetic downhole survey tools and deviation correction strategies. Accurate hole trajectories are essential for correct ore body geometry.

  • Lesson 2 • Drill Program Design and Planning

    Teaches collar location, azimuth, dip, and spacing decisions for effective ore body testing. Links drill program geometry to deposit model and resource confidence.

  • Lesson 3 • Borehole Geophysics and Downhole Testing

    Covers downhole geophysical logging tools and hydrogeological testing methods. Borehole data extends geological interpretation beyond core observations.

  • Lesson 4 • Drilling Method Selection

    Compares diamond, RC, rotary air blast, and percussion drilling for different exploration stages. Students match drilling method to geological objective and budget.

  • Lesson 5 • Geotechnical Logging and Rock Mass Assessment

    Introduces RQD, fracture frequency, and rock mass classification from drill core. Geotechnical data informs mine design and slope stability assessments.

Chapter 7See details

Resource Estimation and Geological Modeling

  • Lesson 1 • Resource Classification and Reporting

    Applies international reporting standards to classify inferred, indicated, and measured resources. Students prepare resource statements that meet professional reporting requirements.

  • Lesson 2 • Three-Dimensional Geological Modeling

    Teaches construction of lithological, structural, and alteration wireframes from drill data. 3D models form the geometric foundation for all resource estimation work.

  • Lesson 3 • Exploratory Data Analysis and Statistics

    Covers univariate and bivariate statistics, histograms, and probability plots for assay data. Statistical understanding guides compositing, capping, and estimation decisions.

  • Lesson 4 • Geostatistics and Variogram Analysis

    Introduces spatial continuity analysis through experimental and modeled variograms. Variogram parameters directly control kriging interpolation quality and block model accuracy.

  • Lesson 5 • Block Model Construction and Grade Interpolation

    Covers block model setup, kriging, inverse distance, and nearest-neighbor estimation methods. Students evaluate interpolation performance using cross-validation and swath plots.

Chapter 8See details

Exploration Project Evaluation and Management

  • Lesson 1 • Exploration Budgeting and Program Management

    Teaches work program design, cost estimation, scheduling, and contractor management. Effective program management ensures exploration objectives are met on time and within budget.

  • Lesson 2 • Economic Evaluation of Exploration Projects

    Covers cut-off grade, metal price sensitivity, and preliminary economic assessment methods. Students apply economic filters to prioritize exploration targets and allocate budgets.

  • Lesson 3 • Regulatory Compliance and Land Access

    Covers mineral tenure systems, exploration permit conditions, and environmental compliance obligations. Students navigate regulatory frameworks to maintain project access and good standing.

  • Lesson 4 • Exploration Target Generation and Ranking

    Applies deposit models, geoscience data, and prospectivity analysis to generate ranked targets. Students build systematic target inventories that guide exploration investment decisions.

  • Lesson 5 • Technical Reporting and Disclosure Standards

    Trains preparation of exploration results reports and resource disclosures to professional standards. Accurate public reporting protects investors and upholds professional integrity.

Certification

Your valid completion certificate

This course is for you:

  • Geology graduates: ready to specialize in mineral exploration and mining.

  • Junior exploration geologists: seeking structured knowledge to accelerate field performance.

  • Mining engineers: wanting geological fluency to collaborate more effectively on site.

  • Career changers from environmental science: drawn to the resource extraction sector.

  • Prospectors and independent explorers: aiming to professionalize their technical approach.

  • Geoscience technicians: looking to move into geologist roles with stronger credentials.

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