Humanitarian Engineering and Science (Non-Thesis)
Master of Science
Delivery Options
Fall 2026 Deadline
Domestic: August 1st
International: March 1st
Department
Program Overview
Engineer Global Solutions. Empower Communities.
The Master of Science in Humanitarian Engineering and Science (Non-Thesis) at Colorado School of Mines is a sociotechnical, interdisciplinary graduate program where engineers and scientists work directly with communities to define problems and co-create sustainable, context-sensitive solutions.
More and more technical professionals are striving to align their careers with social and environmental impact. Simply put, they have a desire to use their technical expertise to make the world a better place. Since 2003, Mines has been at the forefront of humanitarian engineering education in the U.S. – now offering advanced graduate opportunities through the Humanitarian Engineering and Science program.
This unique degree is built on the understanding that engineering impact requires both technical proficiency and contextual awareness of the social, environmental and cultural dimensions of problem-solving. By integrating rigorous academic training with transformative field engagement, the Humanitarian Engineering and Science program equips graduates to lead ethical, inclusive and resilient development efforts worldwide. Whether working for a nonprofit, government agency or corporation, you’ll graduate prepared to contribute meaningfully to global development goals and design resilient, equitable solutions for the most pressing challenges of our time.
Program Detail
The Master of Science in Humanitarian Engineering and Science (non-thesis) builds on a rigorous foundation of engineering design, social science and ethical frameworks, bridging the gap between technical innovation and community-driven development. By integrating co-design principles with socio-technical analysis, the program develops the precision needed to address global inequality.
You will master collaborative problem-solving and corporate social responsibility modeling, gaining the ability to design resilient infrastructure that honors local knowledge and culture. Graduates develop the technical expertise and cross-cultural communication skills required to lead multidisciplinary teams in NGOs, government agencies, and global industries focused on sustainable, equitable development.
As a student in Humanitarian Engineering and Science, you will complete 30 credits of graduate-level coursework, including a hands-on practicum where you get the opportunity to apply what you have learned to a real-world challenge. Students in the program can also choose a specialized track of study to pursue, including Environmental Engineering, Robotics, Geological Engineering, Data Science and Geophysics.
Faculty Expertise
Meet three faculty experts with real-world experience in humanitarian design, global health, resilience planning and sustainable entrepreneurship who empower students to design equitable solutions that serve communities and address global challenges.
Application Requirements
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Bachelor's degree
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GRE: Not Required
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Letters of Recommendation (3 Letters)
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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 and Facilities
Peace Corps Prep is a partnership between Mines and the U.S. Peace Corps designed to prepare students for potential Peace Corps service. Through focused coursework, hands-on experiences and leadership development, the program helps students become more competitive Peace Corps volunteer candidates and better global citizens.
Associate Professor Dorit Hammerling leverages the power of computation and mathematical modeling to solve vexing problems relating to energy, climate, engineering, and society. Her research group builds innovative modeling architectures and openly develops original software.
The Mines Interactive Robotics Research Lab (MIRRORLab) develops intelligent agents designed to interact naturally with human teammates. Led by Associate Professor Tom Williams, the lab seeks to combine computational methods and insights from artificial intelligence, cognitive science, and human-robot interaction with robotic and augmented reality technologies.
Career Outlook
Median salary for recent program graduates is $80,000. Learn more about Mines' comprehensive career development resources and this degree's salary potential.
Employers who seek Mines graduates include
Corporate Social Responsibility (CSR) & Extractive Industries
Government, Policy & Research
Organizations such as Colorado Department of Public Health and Environment (CDPHE), National Academy of Engineering, National Renewable Energy Laboratory (NREL), Peace Corps, U.S. Agency for International Development (USAID), U.S. Geological Survey (USGS) and United Nations
International Development & Non-Profit Organizations
Social Enterprise & Sustainable Consulting
Companies such as AECOM, Angaza, Build Change, Kimley-Horn, Posner Center for International Development and Tetra Tech
Frequently Asked Questions
What is humanitarian engineering and science?
Humanitarian engineering and science is an interdisciplinary field that applies engineering principles, scientific methods and systems thinking to improve human well-being — particularly in underserved, resource-limited or crisis-affected communities.
It combines technical innovation with social responsibility, focusing on sustainable, inclusive solutions to challenges such as clean water access, renewable energy, public health, food security, disaster resilience, housing and climate adaptation.
Students and researchers in this field integrate engineering design, environmental science, data analytics and community engagement to co-create technologies that are not only effective, but also ethical, culturally appropriate and sustainable over time.
What are the most interesting advances and technologies shaping the field of humanitarian engineering and science?
Modern humanitarian engineering and science is being reshaped by a new generation of technologies designed to enhance equity, resilience and sustainability. Key advances include:
- Decentralized renewable energy systems — such as microgrids, solar desalination and off-grid battery technologies for rural electrification.
- Low-cost water purification and sanitation innovations, using nanomaterials, biofiltration and community-scale treatment systems.
- Circular economy and waste-to-resource engineering, converting waste into fuel, fertilizer or building materials.
- Digital mapping and data science for humanitarian logistics, improving aid distribution and disaster response through geospatial intelligence.
- Sensors and IoT systems for environmental and health monitoring, enabling early warning and data-driven public health interventions.
- Additive manufacturing (3D printing) for local production of medical devices, infrastructure components and emergency supplies.
- Participatory design and co-creation platforms, empowering local communities to guide technology development.
- AI and mobile platforms for crisis forecasting and coordination, supporting everything from refugee management to disease surveillance.
These technologies reflect a shift toward human-centered innovation — prioritizing social impact, ethical deployment and long-term community ownership.
What career options will I have with a degree in humanitarian engineering and science?
Graduates in humanitarian engineering and science pursue meaningful careers that bridge technology, policy and global development. Typical roles include:
- Humanitarian engineer or development engineer, designing sustainable infrastructure and technologies for low-resource settings.
- Water, sanitation and hygiene (WASH) specialist, improving access to safe drinking water and sanitation systems.
- Renewable energy systems designer or technician, working on solar, wind or hybrid systems for off-grid communities.
- Disaster risk reduction or resilience planner, developing infrastructure and recovery plans for climate adaptation.
- Sustainability consultant or systems analyst, advising governments and organizations on equitable technology deployment.
- Public health technologist, integrating data and engineering to improve health delivery in developing regions.
- Research scientist or policy advisor, shaping evidence-based strategies for international development and sustainability.
- NGO or social enterprise innovator, leading initiatives in clean technology, agriculture or humanitarian logistics.
Graduates often find themselves working across disciplines and borders, uniting engineering, social science and human-centered design for global good.
What industries hire graduates with a degree in humanitarian engineering and science?
A wide range of organizations value the interdisciplinary and problem-solving skills of Humanitarian Engineering and Science graduates, including:
- International development agencies (e.g., USAID, UNDP, World Bank)
- Humanitarian and relief organizations (e.g., Red Cross, Médecins Sans Frontières, CARE, Oxfam)
- Nonprofits and NGOs focused on global health, energy access and climate adaptation
- Engineering and consulting firms with sustainability and infrastructure divisions
- Renewable energy, water and environmental technology companies
- Research institutions and think tanks studying sustainable development and resilience
- Government agencies in public works, disaster management and environmental protection
- Social enterprises and startups designing scalable solutions for global challenges
The field offers opportunities to work locally and internationally, often in cross-sector collaborations that blend technology, community development and environmental stewardship.