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Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation
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E. Cuce, "Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation," SOLAR ENERGY , vol.176, pp.211-219, 2018

Cuce, E. 2018. Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation. SOLAR ENERGY , vol.176 , 211-219.

Cuce, E., (2018). Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation. SOLAR ENERGY , vol.176, 211-219.

Cuce, ERDEM. "Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation," SOLAR ENERGY , vol.176, 211-219, 2018

Cuce, ERDEM. "Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation." SOLAR ENERGY , vol.176, pp.211-219, 2018

Cuce, E. (2018) . "Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation." SOLAR ENERGY , vol.176, pp.211-219.

@article{article, author={ERDEM CÜCE}, title={Improving thermal power of a cylindrical solar cooker via novel micro/nano porous absorbers: A thermodynamic analysis with experimental validation}, journal={SOLAR ENERGY}, year=2018, pages={211-219} }