University of Vermont

USA
3 Scholarships 73 Programs 2 Degree levels
Bachelor

Bachelor's in Energy Systems Technologies

Offered at University of Vermont, USA
DegreeBachelor
FieldEnergy Systems Technologies/Technicians.
B

Cost & earnings at University of Vermont What students borrow here, and what they go on to earn

You borrow $20,951 median federal debt
You repay $238/mo over 10 years
Graduates earn $62,472 10 yrs after entry
Debt clears in 0.9 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor in Energy Systems Technologies at the University of Vermont is an interdisciplinary undergraduate degree that prepares students to design, analyse and implement low‑carbon energy systems. It suits students who enjoy hands‑on engineering and applied science, want to work on renewable energy, grid integration and energy efficiency, and seek practical lab experience plus industry engagement.

What you'll study

This programme combines core engineering and physical science subjects with applied energy technology and policy. You will study foundations such as calculus, physics, circuit theory and materials, then progress to specialised modules in power systems, thermodynamics, heat transfer, controls and instrumentation, energy conversion, energy storage technologies (including batteries and thermal storage), and renewable energy technologies (wind, solar PV, hydro and bioenergy).

Hands‑on learning is central: coursework typically includes laboratory classes in electrical and mechanical systems, simulation and modelling projects, and a team capstone design project addressing a real energy challenge. Elective options allow you to explore related areas such as energy economics and policy, sustainable building systems, smart grids and microgrids, energy auditing and retrofitting, and data analytics for energy systems.

Students also have opportunities for fieldwork, industry placements or internships, and engagement with campus sustainability initiatives to gain practical experience in installation, commissioning and performance assessment of energy systems.

Entry requirements

  • Successful completion of secondary education equivalent to a U.S. high school diploma with a strong emphasis on mathematics (calculus or precalculus) and at least one laboratory science (physics or chemistry).
  • Demonstrated competence in mathematics and science through transcripts; applicants typically present evidence of strong performance in algebra, trigonometry, calculus and physics.
  • Standardised tests are considered according to university admissions policies; applicants should check current guidance from the University of Vermont regarding submission of scores.
  • International applicants must demonstrate equivalent academic preparation and meet the university's English proficiency requirements (for example through recognised English tests or approved exemptions).
  • Admissions may consider personal statements, letters of recommendation and any relevant practical experience (e.g. internships, technician work, maker projects) that demonstrate interest and aptitude in energy or engineering fields.
  • Transfer applicants are assessed on college coursework; prospective students with previous technical or vocational qualifications should contact admissions for guidance on course equivalency and credit transfer.

Career prospects

  • Graduates are prepared for technical and professional roles across the energy sector: renewable energy technician, field engineer, systems integrator, energy systems designer and commissioning engineer.
  • Opportunities exist in utilities, private engineering consultancies, renewable project developers, distributed energy companies, energy services firms (ESCOs), and manufacturers of energy conversion and storage equipment.
  • Roles in policy, planning and analysis are also common for graduates who combine technical training with electives in energy economics and policy; job titles include energy analyst, grid planning assistant and sustainability coordinator.
  • Many graduates progress to postgraduate study in engineering, energy systems, sustainable engineering or business and policy programmes, or pursue professional engineering credentials where applicable.

Why study at University of Vermont

The University of Vermont offers an educational environment that emphasises experiential learning, interdisciplinary collaboration and sustainability — all well matched to energy systems studies. The campus has active sustainability programmes and demonstration projects that provide real‑world learning opportunities, and the university collaborates with regional utilities, industry partners and research centres to support internships and applied projects.

Students benefit from access to engineering and science laboratories, faculty engaged in energy research, and a community that values outdoor and applied learning in a state with significant renewable energy activity. The programme’s combination of practical labs, capstone design and industry engagement is designed to prepare graduates to contribute immediately in technical roles or to pursue further specialised training.

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Programme details are indicative and may change — always verify current information with the official university website before applying.