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Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection
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E. S. Altuntop Et Al. , "Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection," Thermal Science and Engineering Progress , vol.56, 2024

Altuntop, E. S. Et Al. 2024. Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection. Thermal Science and Engineering Progress , vol.56 .

Altuntop, E. S., ERDEMİR, D., Kaplan, Y., & ÖZCEYHAN, V., (2024). Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection. Thermal Science and Engineering Progress , vol.56.

Altuntop, Enis Et Al. "Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection," Thermal Science and Engineering Progress , vol.56, 2024

Altuntop, Enis S. Et Al. "Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection." Thermal Science and Engineering Progress , vol.56, 2024

Altuntop, E. S. Et Al. (2024) . "Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection." Thermal Science and Engineering Progress , vol.56.

@article{article, author={Enis Selcuk Altuntop Et Al. }, title={Enhancing Li-ion battery efficiency: An experimental study on hybrid cooling approach with paraffin and forced air convection}, journal={Thermal Science and Engineering Progress}, year=2024}