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Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube
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A. S. Dalkılıç Et Al. , "Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube," HEAT AND MASS TRANSFER , vol.48, no.1, pp.123-139, 2012

Dalkılıç, A. S. Et Al. 2012. Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube. HEAT AND MASS TRANSFER , vol.48, no.1 , 123-139.

Dalkılıç, A. S., Kürekci, N. A., & Wongwises, S., (2012). Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube. HEAT AND MASS TRANSFER , vol.48, no.1, 123-139.

Dalkılıç, Ahmet, Nuri Alpay KÜREKCİ, And S. Wongwises. "Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube," HEAT AND MASS TRANSFER , vol.48, no.1, 123-139, 2012

Dalkılıç, Ahmet S. Et Al. "Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube." HEAT AND MASS TRANSFER , vol.48, no.1, pp.123-139, 2012

Dalkılıç, A. S. Kürekci, N. A. And Wongwises, S. (2012) . "Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube." HEAT AND MASS TRANSFER , vol.48, no.1, pp.123-139.

@article{article, author={Ahmet Selim DALKILIÇ Et Al. }, title={Effect of void fraction and friction factor models on the prediction of pressure drop of R134a during downward condensation in a vertical tube}, journal={HEAT AND MASS TRANSFER}, year=2012, pages={123-139} }