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Original Articles

Application of Differential Transformation Method for Nanofluid Flow in a Semi-Permeable Channel Considering Magnetic Field Effect

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Dariush Chitsazan, Amirfarhang Mehdizadeh & Rouzbeh Riazi. (2020) Heat transfer analysis of unsteady MHD rotating graphene oxide water nanofluid flow. Australian Journal of Mechanical Engineering 18:2, pages 193-199.
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Şuayip Yüzbaşı. (2017) A numerical scheme for solutions of a class of nonlinear differential equations. Journal of Taibah University for Science 11:6, pages 1165-1181.
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Hengchun Hu & Yujuan Li. (2017) Nonlocal symmetries and interaction solutions for the KdV-type equation. Journal of the Association of Arab Universities for Basic and Applied Sciences 23:1, pages 85-89.
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Mohammad Ghalambaz, Ali Doostanidezfuli, Hossein Zargartalebi & Ali J. Chamkha. (2017) MHD phase change heat transfer in an inclined enclosure: Effect of a magnetic field and cavity inclination. Numerical Heat Transfer, Part A: Applications 71:1, pages 91-109.
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Articles from other publishers (24)

Abdul M. Siddiqui, Q.A. Azim, Getinet A. Gawo & Ayesha Sohail. (2023) Analytical approach to explore theory of creeping flow with constant absorption. Sensors International, pages 100250.
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K. R. Raghunatha & Y. Vinod. (2023) Effects of heat transfer on MHD suction–injection model of viscous fluid flow through differential transformation and Bernoulli wavelet techniques. Heat Transfer.
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Manar Ennaouri & El-Kaber Hachem. (2022) Modeling and study of the arterial blood flow loaded with nanoparticles under squeezing action in presence of a magnetic field. E3S Web of Conferences 336, pages 00033.
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Adnan, Umar Khan, Naveed Ahmed, Syed Tauseef Mohyud-Din, Nawaf N. Hamadneh, Ilyas Khan & Mulugeta Andualem. (2021) The Dynamics of H2O Suspended by Multiple Shaped Cu Nanoadditives in Rotating System. Journal of Nanomaterials 2021, pages 1-11.
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T.A. Yusuf, R. Naveen Kumar, B.C. Prasannakumara & S.O. Adesanya. (2021) Irreversibility analysis in micropolar fluid film along an incline porous substrate with slip effects. International Communications in Heat and Mass Transfer 126, pages 105357.
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İbrahim Çelik. (2019) Squeezing flow of nanofluids of Cu–water and kerosene between two parallel plates by Gegenbauer Wavelet Collocation method. Engineering with Computers 37:1, pages 251-264.
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Abiodun O. Ajibade & Princely O. Ojeagbase. (2020) Steady natural convection heat and mass transfer flow through a vertical porous channel with variable viscosity and thermal conductivity. Engineering Reports 2:11.
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Jawad Raza, Fateh Mebarek-Oudina & A.J. Chamkha. (2019) Magnetohydrodynamic flow of molybdenum disulfide nanofluid in a channel with shape effects. Multidiscipline Modeling in Materials and Structures 15:4, pages 737-757.
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Mohsen Sheikholeslami. 2019. Applications of Nanofluid Transportation and Heat Transfer Simulation. Applications of Nanofluid Transportation and Heat Transfer Simulation 268 330 .
Mohsen Sheikholeslami. 2019. Application of Control Volume Based Finite Element Method (CVFEM) for Nanofluid Flow and Heat Transfer. Application of Control Volume Based Finite Element Method (CVFEM) for Nanofluid Flow and Heat Transfer 33 71 .
N. Geetha & A. Tamilselvan. (2018) Parameter uniform numerical method for fourth order singularly perturbed turning point problems exhibiting boundary layers. Ain Shams Engineering Journal 9:4, pages 845-853.
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Mohsen Sheikholeslami & Davood Domairry Ganji. 2018. Applications of Semi Analytical Methods for Nanofluid Flow and Heat Transfer. Applications of Semi Analytical Methods for Nanofluid Flow and Heat Transfer 247 333 .
Mohsen Sheikholeslami & Davood Domairry Ganji. 2018. Applications of Semi Analytical Methods for Nanofluid Flow and Heat Transfer. Applications of Semi Analytical Methods for Nanofluid Flow and Heat Transfer 45 59 .
E. Hosseini, G. B. Loghmani, M. Heydari & M. M. Rashidi. (2017) Investigation of magneto-hemodynamic flow in a semi-porous channel using orthonormal Bernstein polynomials. The European Physical Journal Plus 132:7.
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Srikumar Panda. (2016) A Study on Nonlinear Wet Fin Problem Using Homotopy Analysis Method. International Journal of Applied and Computational Mathematics 3:2, pages 1487-1506.
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S. Chakouvari, M. Geranpour, M. Aliakbari & H. Fallahnejad Chakouvari. (2016) Solutions for Food Chain Ecoepidemic Model with Considering Infection Using Adomian Decomposition and Differential Transformation Methods. International Journal of Applied and Computational Mathematics 3:2, pages 1329-1346.
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A.M. Siddiqui, Ayesha Sohail, S. Naqvi & T. Haroon. (2017) Analysis of Stokes flow through periodic permeable tubules. Alexandria Engineering Journal 56:1, pages 105-113.
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Mohsen Sheikholeslami & Davood Domairry Ganji. 2017. Applications of Nanofluid for Heat Transfer Enhancement. Applications of Nanofluid for Heat Transfer Enhancement 475 526 .
M. Ramzan, M. Farooq, T. Hayat & Jae Dong Chung. (2016) Radiative and Joule heating effects in the MHD flow of a micropolar fluid with partial slip and convective boundary condition. Journal of Molecular Liquids 221, pages 394-400.
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A. Mirzaaghaian & D.D. Ganji. (2016) Application of differential transformation method in micropolar fluid flow and heat transfer through permeable walls. Alexandria Engineering Journal 55:3, pages 2183-2191.
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Muhammad Suleman, Qingbiao Wu & Ghulam Abbas. (2016) Approximate analytic solution of (2+1) dimensional coupled differential Burger’s equation using Elzaki Homotopy Perturbation Method. Alexandria Engineering Journal 55:2, pages 1817-1826.
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Nilankush Acharya, Kalidas Das & Prabir Kumar Kundu. (2016) The squeezing flow of Cu-water and Cu-kerosene nanofluids between two parallel plates. Alexandria Engineering Journal 55:2, pages 1177-1186.
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Md. Alal Hosen, M.S.H. Chowdhury, Mohammad Yeakub Ali & Ahmad Faris Ismail. (2016) A novel analytical approximation technique for highly nonlinear oscillators based on the energy balance method. Results in Physics 6, pages 496-504.
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Md. Helal Uddin Molla, Md. Abdur Razzak & M.S. Alam. (2016) Harmonic balance method for solving a large-amplitude oscillation of a conservative system with inertia and static non-linearity. Results in Physics 6, pages 238-242.
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