E. Cuce Et Al. , "Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research," ENERGY CONVERSION AND MANAGEMENT , vol.214, 2020
Cuce, E. Et Al. 2020. Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research. ENERGY CONVERSION AND MANAGEMENT , vol.214 .
Cuce, E., Guclu, T., & Cuce, P. M., (2020). Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research. ENERGY CONVERSION AND MANAGEMENT , vol.214.
Cuce, ERDEM, Tamer Guclu, And AYŞE PINAR MERT CÜCE. "Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research," ENERGY CONVERSION AND MANAGEMENT , vol.214, 2020
Cuce, ERDEM Et Al. "Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research." ENERGY CONVERSION AND MANAGEMENT , vol.214, 2020
Cuce, E. Guclu, T. And Cuce, P. M. (2020) . "Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research." ENERGY CONVERSION AND MANAGEMENT , vol.214.
@article{article, author={ERDEM CÜCE Et Al. }, title={Improving thermal performance of thermoelectric coolers (TECs) through a nanofluid driven water to air heat exchanger design: An experimental research}, journal={ENERGY CONVERSION AND MANAGEMENT}, year=2020}