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Etusivu > Ajankohtaiset koulutukset > Energia- ja ympäristötekniikan koulutus (EY) > 2025V > Vuosi 4 > Battery Chemistry (ET00BT96)

Battery Chemistry

Rakennetyyppi: Opintojakso
Koodi: ET00BT96
OPS: EY 2025V
Taso: Insinööri (AMK)
Opiskeluvuosi: 4 (2028-2029)
Lukukausi: Syksy
Laajuus: 5 op
Vastuuopettaja: Songok, Joel
Opetuskieli: Englanti

Osaamistavoitteet

Course Description:
The rapid growth of renewable energy sources, such as solar and wind, has heightened the demand for efficient and reliable energy storage solutions to manage their intermittent nature. Battery Chemistry course will address the need by providing an in-depth exploration of the chemical principles and technologies behind modern battery systems.
Students will examine the fundamentals of electrochemical cells, including electrode materials, electrolytes, and reaction mechanisms, with a focus on lithium-ion, lead-acid, and emerging battery technologies. The course covers battery design, performance optimization, and safety considerations, integrating real-world applications in renewable energy storage. Through hands-on experiments and case studies, students will gain practical skills in battery testing and analysis.

Learning Outcomes
By the end of the course, students will be able to:
- Explain the chemical processes governing battery operation and energy storage
- Evaluate the suitability of different battery types for specific renewable energy applications
- Assess the environmental and economic impacts of battery technologies in the context of sustainable energy systems

Opiskelijan työmäärä

135 hours including contact teaching and self-studies.

Edeltävät opinnot / Suositellut valinnaiset opinnot

Chemistry

Sisältö

- Introduction to Energy Storage and Renewable Energy
- Fundamentals of Electrochemical Cells
- Battery Types and Chemistries
- Electrode Materials and Electrolytes
- Battery Design and Performance Optimization
- Safety and Failure Mechanisms
- Applications in Renewable Energy and Beyond

Opetusmuoto / Opetusmenetelmät

Contact lectures and laboratory work

Arviointikriteerit

Grade 1 (Pass) 2: Basic understanding of course concepts relevant for future studies and work.
Grade 3 (Good Pass) 4: Strong ability to apply course material effectively.
Grade 5 (Excellent Pass): Excellent creativity in applying course concepts.

Arviointimenetelmät

Course assignments, exams and laboratory report.


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