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The GATE 2025 syllabus for Mining Engineering has been officially released by IIT Roorkee. This national-level examination is essential for admission into postgraduate programs in engineering and technology, including ME/M. Tech will feature a syllabus tailored to the specialized field of Mining Engineering.
The GATE 2025 exam is scheduled for the 1st, 2nd, 15th, and 16th of February 2025. The Mining Engineering syllabus includes critical topics such as mining methods, mineral processing, geology, and environmental management. This comprehensive coverage is intended to assess candidates’ expertise and readiness for advanced study and research in mining engineering.
For complete and detailed information about the GATE 2025 syllabus for Mining Engineering, candidates should refer to the official guidelines provided by IIT Roorkee. Adequate preparation according to this syllabus will be crucial for achieving a strong performance in the exam and securing a place in a competitive postgraduate program.
GATE 2025 Mining Engineering Syllabus – PDF Released
GATE 2025 Mining Engineering Syllabus has been Released. Click to Download Mining Engineering Syllabus PDF.
Section 1: Engineering Mathematics
Linear Algebra: Matrices and Determinants; Systems of linear equations; Eigenvalues and Eigenvectors.
Calculus: Limit, continuity, and differentiability; Partial Derivatives; Maxima and minima; Sequences and series; Test for convergence; Fourier series.
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Vector Calculus: Gradient; Divergence and Curl; Line; surface and volume integrals; Stokes, Gauss and Green’s theorems.
Differential Equations: Linear and non-linear first-order ODEs; Higher order linear ODEs with constant coefficients; Cauchy’s and Euler’s equations.
Probability and Statistics: Measures of central tendency; Random variables; Poisson, normal and binomial distributions; Correlation and regression analysis.
Numerical Methods: Solutions of linear algebraic equations; Integration of trapezoidal and Simpson’s rule; single and multi-step methods for differential equations.
Section 2: Mine Development & Surveying
Mine Development: Methods of access to deposits; Underground drives; Drilling methods and machines; Explosives, blasting devices, and practices.
Mine Surveying: Levels and leveling, theodolite, Tacheometry, triangulation; Contouring; Errors and adjustments; Correlation; Underground surveying; Curves; Photogrammetry; Field astronomy; EDM and Total Station; Introductory GPS.
Section 3: Geomechanics & Ground Control
Engineering Mechanics: Equivalent force systems; Equations of equilibrium; Two-dimensional frames and trusses; Free body diagrams; Friction forces; Particle kinematics and dynamics; Beam analysis.
Geomechanics: Geotechnical properties of rocks; Rock mass classification; Instrumentation and stress measurement techniques; Theories of rock failure; Ground vibrations; Stress distribution around mine openings; Subsidence; Rock bursts and coal bumps; Slope stability.
Ground Control: Design of pillars; Roof supporting systems; Mine filling.
Section 4: Mining Methods & Machinery
Mining Methods: Surface mining: layout, development, loading, transportation and mechanization, continuous surface mining systems; Underground coal mining: bord and pillar systems, room and pillar mining, longwall mining, thick seam mining methods; high wall mining; Underground metal mining: open, supported and caved stoping methods, stope mechanization, ore handling systems.
Mining Machinery: Generation and transmission of mechanical, hydraulic, and pneumatic power; Materials handling: haulages, conveyors, face and development machinery, hoisting systems, pumps, crushers.
Section 5: Surface Environment, Mine Ventilation, and Underground Hazards
Surface Environment: Air, water, and soil pollution: Standards of quality, causes, and dispersion of contamination, and control; Noise; Land reclamation.
Mine Ventilation: Underground atmosphere; Heat load sources and thermal environment, air cooling; Mechanics of airflow, distribution, natural and mechanical ventilation; Mine fans and their usage; Auxiliary ventilation; Ventilation planning; Ventilation networks.
Subsurface Hazards: Mine Gases. Underground hazards from fires, explosions, dust, and inundation; Rescue apparatus and practices; Safety in mines; Accident data analysis; Mine lighting; Mine legislation; Occupational safety.
Section 6: Mine Economics, Mine Planning, Systems Engineering
Mine Economics: Mineral resource classification; Discounted cash flow analysis; Mine valuation; Mine investment analysis; Mineral taxation.
Mine Planning: Sampling methods, practices, and interpretation; Reserve estimation techniques: Basics of geostatistics and quality control; Optimization of facility location; Work-study.
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Systems Engineering: Concepts of reliability; Reliability of simple systems; Maintainability and availability; Linear programming, transportation and assignment problems; Network analysis; Inventory models; Queueing theory; Basics of simulation.
Other GATE Related Syllabus PDF
Syllabus | Code | Syllabus | Code |
Data Science & Artificial Intelligence | (DA) | Biotechnology | (BT) |
Agricultural Engineering | (AG) | Civil Engineering | (CE) |
Architecture and Planning | (AR) | Chemical Engineering | (CH) |
Computer Science and Information Technology | (CS &IT) | Chemistry | (CY) |
Electronics and Communication Engineering | (EC) | Electrical Engineering | (EE) |
If you have any queries regarding the GATE 2025 Mining Engineering Syllabus, you can ask your query and leave comments below.
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