UC’s Energy Engineering major integrates thermodynamics, electrochemistry, and power-electronics to create next-generation renewable-energy technologies and policy solutions.
Techno-economic analysis of green hydrogen production via PEM electrolysis
Machine-learning forecast of solar-farm output using satellite irradiance data
Design of DC microgrid powering rural clinics with second-life EV batteries
Policy brief on California’s path to 100 % clean electricity by 2045
CFD simulation optimizing airflow in vertical-axis wind turbines
Battery-management system with neural-network state-of-health prediction
Crowdsourced dashboard mapping community solar subscription equity
Life-cycle carbon audit of perovskite PV manufacturing
VR safety training for offshore wind-farm technicians
Power-electronics converter with GaN transistors for fast EV charging
GIS siting study for pumped-hydro storage repurposing abandoned mines
Hydrogen leakage sensor using optical fiber Bragg gratings
Interactive web tool comparing rooftop vs. community-solar ROI for tenants
Electrochemical reactor prototype converting CO₂ to methanol fuel
Workshop on energy-justice impacts of peaker-plant retirements
Network analysis of global green-hydrogen trade routes and diplomacy
Augmented-reality overlay for field diagnostics on solar inverters
Microgrid resilience study for wildfire-prone mountain towns
Distributed ledger prototype enabling peer-to-peer energy trading
Critical essay on rare-earth supply chains for wind-turbine magnets
Power the clean-energy transition with UC’s interdisciplinary Energy Engineering program.
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