Every manufactured object in modern life is either grown or mined, and turning rock in the ground into the metals and minerals a low-carbon economy now needs in greater volume than ever calls for engineers who can think across an unusually wide span of disciplines at once — geology, rock mechanics, mechanical and electrical engineering, economics, and environmental science together.
That breadth is exactly where most learning materials fall short. Rock mechanics, ventilation, drilling and blasting, mineral processing, project economics, and mine safety are each usually taught and published as separate specialties, leaving a student or early-career engineer to assemble a patchwork of narrow references with little help connecting how a steeper pit slope changes a stripping ratio, how a cutoff-grade decision moves through resource classification into a discounted cash flow model, or how a ventilation network interacts with auto-compression as a mine goes deeper.
This book is organized to close that gap by following the actual logic of a mine, across twenty-six chapters, from prospecting through post-closure stewardship: resource and reserve estimation and sampling theory; the project economics and discounted cash flow analysis that decide what gets mined; rock mechanics, blast design, and ground control; surface and underground mining methods; materials handling, hoisting, ventilation, and dewatering; mineral processing; mine health and safety; environmental management and closure; mine surveying, development, and mechanical excavation; power supply; advanced resource estimation, scheduling, and feasibility studies; advanced slope stability, explosives, and comminution-circuit engineering; mineral economics and marketing; and, finally, how automation and digitalization are reshaping every one of these systems.
Readers will be able to:
Every chapter follows the same disciplined structure: stated learning objectives, theory developed from first principles, worked numerical examples, end-of-chapter practice problems with a complete answer key, and a summary of key relations, supported by a glossary, a symbols list, and reference appendices.
This book is written for upper-level undergraduate mining engineering students building a rigorous foundation across the discipline, for instructors seeking a text organized around clear learning objectives and complete answer keys, and for practicing engineers who want a structured, calculation-focused reference spanning exploration, design, extraction, processing, safety, and modern digital operations.
Begin building a genuinely integrated command of mining engineering, one worked calculation and one connected chapter at a time — open this book and start putting the whole discipline together.
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