Intelligent computing applications to study the tri-hybrid nanofluid past over the stretched surface

Author:

Muhammad Zulfiqar Umar Ch,Ahmad Iftikhar

Publisher

Elsevier BV

Reference62 articles.

1. Choi, S.U. and Eastman, J.A., 1995. Enhancing thermal conductivity of fluids with nanoparticles (No. ANL/MSD/CP-84938; CONF-951135-29). Argonne National Lab. (ANL), Argonne, IL (United States).

2. Numerical investigation of non-Darcian nanofluid flow across a stretchy elastic medium with velocity and thermal slips;Bhatti;Numerical Heat Transfer, Part b: Fundamentals,2023

3. Dynamics of water conveying iron oxide and graphene nanoparticles subject to stretching/spiraling surface: An asymptotic approach;Sarfraz;Ain Shams Eng J,2023

4. Non-homogeneous two-component buongiorno model for nanofluid flow toward Howarth's wavy cylinder with activation energy;Dharmaiah;Results in Engineering,2023

5. Significance of entropy generation and nanoparticle aggregation on stagnation point flow of nanofluid over stretching sheet with inclined Lorentz force;Makhdoum;Arab J Chem,2023

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