Items where Author is "Pop, I."
Nasir, N.A.A.M. and Zainuddin, N. and Khashi�ie, N.S. and Ishak, A. and Pop, I. (2022) Influence of Induced Magnetic Over Stagnation Point Ag-MgO/H2O Hybrid Nanofluid Flow and Heat Transfer Towards Moving Surface. Studies in Systems, Decision and Control, 444. pp. 447-465. ISSN 21984182
Nasir, N.A.A.M. and Ishak, A. and Pop, I. and Zainuddin, N. (2019) MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects. In: UNSPECIFIED.
Nasir, N.A.A.M. and Ishak, A. and Pop, I. and Zainuddin, N. (2019) MHD stagnation point flow towards a quadratically stretching/shrinking surface. In: UNSPECIFIED.
Jahan, S. and Sakidin, H. and Nazar, R. and Pop, I. (2018) Analysis of heat transfer in nanofluid past a convectively heated permeable stretching/shrinking sheet with regression and stability analyses. Results in Physics, 10. pp. 395-405. ISSN 22113797
Jahan, S. and Sakidin, H. and Nazar, R. and Pop, I. (2018) Stability Analysis of 3D flow over a deforming surface with suction effect: A Buongiorno's model. In: UNSPECIFIED.
Jahan, S. and Sakidin, H. and Nazar, R. and Pop, I. (2018) Unsteady flow and heat transfer past a permeable stretching/shrinking sheet in a nanofluid: A revised model with stability and regression analyses. Journal of Molecular Liquids, 261. pp. 550-564. ISSN 01677322
Jahan, S. and Sakidin, H. and Nazar, R. and Pop, I. (2017) Boundary layer flow of nanofluid over a moving surface in a flowing fluid using revised model with stability analysis. International Journal of Mechanical Sciences, 131-13. pp. 1073-1081. ISSN 00207403
Jahan, S. and Sakidin, H. and Nazar, R. and Pop, I. (2017) Flow and heat transfer past a permeable nonlinearly stretching/shrinking sheet in a nanofluid: A revised model with stability analysis. Journal of Molecular Liquids, 233. pp. 211-221. ISSN 01677322
Narahari, M. and Soorapuraju, S.K.R. and Pendyala, R. and Pop, I. (2017) Transient two-dimensional natural convection flow of a nanofluid past an isothermal vertical plate using Buongiorno's model. International Journal of Numerical Methods for Heat and Fluid Flow, 27 (1). pp. 23-47. ISSN 09615539
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