Dual Degree Mineral and Energy Economics
Master of Science
Delivery Options
Fall 2026 Deadline
Domestic: August 1st
International: March 1st
Department
Program Overview
Energy systems are evolving at an unprecedented pace. Navigating that transition requires professionals who understand the technology behind energy resources as well as the economics, markets and policies that shape them. The dual degree in Energy Technology Economics and Management from Colorado School of Mines and IFP School prepares you to lead in this complex global landscape. In just 16 months, you’ll earn two graduate credentials while studying in two countries and learning alongside a highly selective international cohort.
This program blends mineral and energy economics with management and quantitative business skills. You build a strong economics foundation, learn how technology choices affect markets and costs and gain the institutional context that shapes energy systems worldwide. The international structure strengthens your perspective and sharpens your ability to work across cultures, regulations and business practices.
Industry and government employers value professionals who can evaluate projects, manage risk and make decisions grounded in data and economics. This dual degree positions you to do exactly that. Mines brings depth in applied economics and resource analysis, while IFP School contributes engineering-informed management training rooted in industry practice. Together, the program stands out for its rigor, pace and global relevance.
If you want to turn your interest in engineering, science or economics into a graduate-level skill set that travels well across borders and sectors, this dual degree offers a focused and efficient path.
Program Detail
The curriculum is split evenly between Mines in Golden, Colorado and IFP School in Paris, France. You’ll complete 48 credit hours of graduate-level coursework over 16 months, with instruction delivered in English throughout the program.
At Mines, you take core courses in mineral and energy economics along with electives in economics and business. These courses emphasize market analysis, policy impacts, project evaluation and quantitative decision-making. At IFP School, you complete a structured sequence of management and technology-focused courses that connect economic theory to operational and strategic choices in energy industries.
Research and applied analysis are central to the program. You engage in project-based work that integrates economics, technology and management, often drawing on real-world industry data and case studies.
This approach helps you practice turning complex information into clear recommendations. The portion of this program offered at Colorado School of Mines is on campus and is housed in the Department of Economics and Business. Those who complete the program earn Master of Science in Mineral and Energy Economics from Mines and a Diplôme D’Ingénieur or Mastère Spécialisé from IFP.
Program Opportunities
International immersion:
Live and study in the United States and France while completing one integrated degree plan. This experience strengthens intercultural communication and global professional readiness.
Industry-connected learning:
Courses at both institutions are shaped by current industry needs and frequently use applied projects and case studies.
Interdisciplinary collaboration:
You’ll learn alongside peers with backgrounds in engineering, economics and science, reflecting how decisions are made in practice.
Faculty Expertise
Meet three distinguished faculty authorities who provide the advanced analytical toolkit you need to solve the world’s most pressing energy and minerals challenges.
Application Requirements
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Bachelor's degree
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GRE: Not Required
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Letters of Recommendations (3 letters). 1 letter is required for current Mines students and Mines alumni.
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Resume or Curriculum Vitae (CV)
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Statement of Purpose
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Transcripts
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International students please review the English proficiency requirements
Program Curriculum
View Academic CatalogWorld-Class Labs, Centers & Facilities
The Mineral and Energy Economics program at Colorado School of Mines is the only program of its kind in the U.S., integrating economics, finance and operations research within the mining and energy sectors.
A focused graduate learning environment with strong ties to industry and government organizations, plus strong faculty engagement.
Purpose-built classrooms and project spaces that support management and technology-focused graduate education.
Longstanding relationships with energy and resource organizations inform curriculum and applied projects.
Employers who seek Mines graduates include
Energy and natural resources
Companies such as Shell, TotalEnergies, BP, Chevron, ExxonMobil, ConocoPhillips, Equinor, Saudi Aramco
Consulting and advisory
Companies such as McKinsey & Company, Boston Consulting Group, Bain & Company, Wood Mackenzie, Rystad Energy
Engineering and services
Companies such as SLB, Halliburton, Baker Hughes, Bechtel, Technip Energies
Government and public sector
U.S. Department of Energy, International Energy Agency, national energy ministries, regulatory commissions
Frequently Asked Questions
What is Mineral and Energy Economics?
Mineral and energy economics is an interdisciplinary field that combines economics, engineering, policy and data analysis to understand and manage the production, distribution and use of natural resources and energy. The field focuses on how markets, technology and policy interact to shape decisions about resource extraction, energy generation, environmental impact and sustainable development.
Students and researchers in mineral and energy economics study topics such as commodity markets, resource depletion, energy transitions, critical minerals and environmental regulation, preparing them to navigate the complex economics behind the global energy and mineral sectors. The field is particularly valuable at a time when the world is shifting toward cleaner energy and grappling with the economics of sustainability, resource scarcity and technological change.
What are the most interesting advances and technologies shaping the field of mineral and energy economics?
Recent advances are transforming how economists and engineers analyze, value and optimize energy and mineral systems. Among the most influential developments are:
- Big data analytics and artificial intelligence for modeling resource markets, optimizing production and forecasting commodity prices.
- Energy systems modeling and integrated assessment tools, used to understand the economics of energy transitions and decarbonization.
- Carbon accounting and life-cycle analysis, quantifying emissions and environmental costs across value chains.
- Critical minerals and supply chain analytics, addressing the economics of strategic resources essential to renewable and digital technologies.
- Renewable energy integration and storage economics, including cost modeling for solar, wind, hydrogen and batteries.
- Blockchain and digital ledger technologies, improving transparency in resource trading and emissions tracking.
- Geospatial and satellite data tools, used to assess resource potential and monitor environmental compliance.
- Policy simulation models, helping governments and firms evaluate taxation, subsidy and regulation strategies.
Together, these advances allow professionals to make data-driven, policy-relevant decisions in resource management and sustainable energy planning.
What career options are available with a degree in mineral and energy economics?
A degree in Mineral and Energy Economics opens diverse and impactful career pathways in both the public and private sectors. Graduates are equipped with strong quantitative, analytical and policy evaluation skills that allow them to influence decision-making in resource and energy industries. Typical career roles include:
- Energy or resource economist, analyzing production, pricing and policy impacts.
- Market analyst or commodity specialist, forecasting trends in oil, gas, minerals and renewables.
- Policy advisor or consultant, shaping energy, environmental and resource regulations.
- Sustainability or carbon management analyst, helping organizations meet emissions and efficiency goals.
- Financial or investment analyst, focusing on energy infrastructure, mining or renewable technology portfolios.
- Data scientist or modeler, applying quantitative models to optimize operations and assess risk.
- Corporate strategist or planner, guiding decisions on exploration, production and diversification.
- Academic researcher or lecturer, contributing to scholarship in resource economics, energy transitions and sustainable development.
Graduates often work in government agencies, international organizations, consulting firms and private industry, where they analyze and design systems that balance economic growth, energy access and environmental stewardship.
What industries hire graduates with a degree in mineral and energy economics?
Because mineral and energy economics integrates economics, technology and environmental science, graduates are in demand across multiple sectors, including:
- Energy production and utilities (oil and gas, renewables, nuclear, electricity markets).
- Mining and mineral resources, including exploration, extraction and critical materials.
- Consulting and advisory services, providing economic and policy analysis for governments and corporations.
- Government and regulatory agencies, such as energy commissions, environmental protection departments and geological surveys.
- Financial and investment institutions, including banks, private equity and risk analysis firms.
- International organizations and NGOs, focused on energy policy, resource governance and sustainability (e.g., World Bank, IEA, UNDP).
- Technology and clean energy firms, engaged in carbon reduction, battery production and supply chain resilience.
- Research institutions and think tanks, conducting policy and market analysis.
The field’s cross-disciplinary nature allows graduates to bridge economic modeling, technical understanding and strategic planning, making them valuable to both traditional and emerging industries.
What are the current research directions in mineral and energy economics?
Current research in mineral and energy economics reflects the global transition toward sustainable, low-carbon and resilient energy systems, as well as ongoing challenges in resource efficiency and environmental policy. Key areas of active research include:
- Energy transition modeling and decarbonization pathways, exploring how economies can shift toward renewable energy while maintaining stability and growth.
- Critical mineral supply chains, evaluating the economic and geopolitical dynamics of materials essential to batteries, electronics and green technologies.
- Carbon pricing, taxation and emissions markets, studying the effectiveness of policy tools for climate mitigation.
- Integration of renewable energy and storage technologies, assessing market incentives and infrastructure needs.
- Resource governance and environmental regulation, analyzing how policies influence sustainability and social outcomes.
- Energy access and equity, particularly in developing regions where economic growth depends on affordable and reliable energy.
- Technological innovation and risk assessment, including digital transformation, automation and AI-driven resource optimization.
- Financial modeling and investment under uncertainty, evaluating risk in volatile energy and mineral markets.
These research directions are united by a shared goal: to understand and optimize the economic systems that support responsible energy use, sustainable resource extraction and global environmental balance.
Featured Alumni
Meet Juliet Akamboe
As a graduate student in the Mineral and Energy Economics program at Mines, Juliet Akamboe was named one of the 100 Global Inspirational Women in Mining by Women in Mining UK. Her work bridges mining, finance, and sustainability, with a focus on ESG frameworks, critical minerals, and advancing inclusive leadership in the global mining industry.