UC’s MS in Energy Engineering equips engineers to innovate across renewable generation, storage, and smart-grid integration, tackling the world’s most urgent decarbonization challenges.
Perovskite-silicon tandem cell pilot achieving 30 % module efficiency
Second-life EV-battery scheduling algorithm for community microgrids
Power-electronics converter reducing harmonic distortion in rooftop PV arrays
Hydrogen hub feasibility study coupling offshore wind electrolysis
Machine-learning predictor of Li-ion cell aging under variable cycling
3D-printed heat-exchanger geometry for supercritical CO₂ Brayton cycles
Techno-economic LCOE analysis of wave-energy farms on California’s coast
Blockchain-based peer-to-peer energy-trading smart-contract prototype
GIS siting tool for agrivoltaic installations optimizing crop yield and revenue
Flow-battery electrolyte formulation using recycled vanadium catalysts
Life-cycle carbon assessment of modular nuclear micro-reactors
Demand-response mobile app gamifying household load shifting
CFD study of airborne wind-energy kite aerodynamics
Policy brief on renewable portfolio standards for Southwest balancing areas
Thermoelectric waste-heat recovery unit for data-center servers
Direct-air-capture sorbent regeneration powered by concentrated solar
VR safety training module for offshore wind turbine maintenance
Hybrid solar-biogas microgrid design for rural clinics in East Africa
Public outreach exhibit on just-transition workforce strategies
White paper on critical-mineral circularity in battery supply chains
Power the clean-energy revolution with UC’s systems-driven MS.
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