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Develop the student's understanding of the needs and importance of energy storage.
– Develop the student's ability to evaluate different types of thermal storage systems.
Developing critical awareness of the role of batteries, hydropower, and air in storage systems.
Developing students' ability to study energy storage problems.
– Developing critical awareness of thermal storage materials and conversion efficiency.
Developing critical awareness about the capabilities and costs of energy storage systems.
1.1 Determining the necessity of energy storage for sustainable development.
1.2 Classification of Material Properties Related to Different Energy Storage.
1.3 Determine the efficiencies of various energy storage systems.
1.4 Description and Discussion of Operating Principles for Different Energy Storage Technologies.
2.1 Solving complex problems in the principle of energy storage for applications.
2.2 Converting physical problems into mathematical problems to enable stress estimation and safety assessment.
2.3 Demonstrate principles and theories related to the benefits and limitations of energy storage systems for real-world problems.
2.4 Presenting analyzed data for advanced mechanics in energy storage problems.
2.5 Using information technology to enhance the performance of energy-efficient storage technologies.
3.1 Demonstrate integrity and professional and academic values when dealing with the performance of renewable energy systems.
3.2 Collaborate effectively within multidisciplinary teams to improve energy systems and storage integration.
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