[1] S. Abelman, E. Momoniat, T. Hayat, Couette flow of a third grade fluid with rotating frame and slip condition, Nonlinear Anal. Real World Appl. 10(2009) 3329-3334. [2] T. Hayat, A. Shafiq, A. Alsaedi, Effect of joule heating and thermal radiation in flow of third grade fluid over radiative surface, PLoS One 9(2014) e83153. [3] S. Abbasbandy, T.Hayat, On series solution for unsteady boundary layer equations in a special third grade fluid, Commun. Nonlinear Sci. Numer. Simul. 16(2011) 3140-3146. [4] S.A. Shehzad, T. Hussain, T. Hayat, M. Ramzan, A. Alsaedi, Boundary layer flow of third grade nanofluid with Newtonian heating and viscous dissipation, J. Cent. South Univ. 22(2015) 360-367. [5] T. Hayat, A. Shafiq, A. Alsaedi, S. Asghar, Effect of inclined magnetic field in flow of third grade fluid with variable thermal conductivity, AIP Adv. 5(2015) 087108. [6] K. Bhattacharyya, Steady boundary layer flow and reactive mass transfer past an exponentially stretching sheet in an exponentially moving free stream, J. Egypt. Math. Soc. 20(2012) 223-228. [7] S. Mukhopadhyay, R.S.R. Gorla, Diffusion of chemically reactive species of a Casson fluid flow over an exponentially stretching surface, Therm. Energy Power Eng. 3(2014) 216-221. [8] M.S. Alhuthali, S.A. Shehzad, H. Malaikah, T. Hayat, Three dimensional flow of viscoelastic fluid by an exponentially stretching surface with mass transfer, J. Pet. Sci. Eng. 119(2014) 221-226. [9] S.Mukhopadhyay, K. Bhattacharyya, G.C. Layek, Mass transfer over an exponentially stretching porous sheet embedded in a stratified medium, Chem. Eng. Commun. 201(2014) 272-286. [10] T. Hayat, S. Asad, M. Mustafa, A. Alsaedi, MHD stagnation-point flow of Jeffrey fluid over a convectively heated stretching sheet, Comput. Fluids 108(2015) 179-185. [11] T. Hayat, T. Muhammad, S.A. Shehzad, A. Alsaedi, Soret and Dufour effects in threedimensional flow over an exponentially stretching surface with porous medium, chemical reaction and heat source/sink, Int. J. Numer. Methods Heat Fluid Flow 25(2015) 762-781. [12] K. Bhattacharyya, G.C. Layek, Chemically reactive solute distribution inMHD boundary layer flow over a permeable stretching sheet with suction or blowing, Chem. Eng. Commun. 197(2010) 1527-1540. [13] K. Bhattacharyya, G.C. Layek, Slip effects on diffusion of chemically reactive species in boundary layer flow due to a vertical stretching sheet with suction or blowing, Chem. Eng. Commun. 198(2011) 1354-1365. [14] F. Mabood, W.A. Khan, A.I.M. Ismail, MHD stagnation point flow and heat transfer impinging on stretching sheet with chemical reaction and transpiration, Chem. Eng. J. 273(2015) 430-437. [15] M. Sheikh, Z. Abbas, Effects of thermophoresis and heat generation/absorption on MHD flow due to an oscillatory stretching sheet with chemically reactive species, J. Magn. Magn. Mater. 396(2015) 204-213. [16] G. Swapna, L. Kumar, P. Rana, B. Singh, Finite element modeling of a double-diffusive mixed convection flow of a chemically-reacting magneto-micropolar fluid with convective boundary condition, J. Taiwan Inst. Chem. Eng. 47(2015) 18-27. [17] T. Hayat, Z. Hussain, A. Alsaedi, S. Asghar, Carbon nanotubes effects in the stagnation point flowtowards a nonlinear stretching sheet with variable thickness, Adv. Powder Tech. (2016), http://dx.doi.org/10.1016/j.apt.2016.06.001. [18] C. Zhang, L. Zheng, X. Zhang, G. Chen, MHD flow and radiation heat transfer of nanofluids in porous media with variable surface heat flux and chemical reaction, Appl. Math. Model. 39(2015) 165-181. [19] D. Mythili, R. Sivaraj, Influence of higher order chemical reaction and non-uniform heat source/sink on Casson fluid flow over a vertical cone and flat plate, J. Mol. Liq. 216(2016) 466-475. [20] P.V.S. Narayana, D.H. Babu, Numerical study of MHD heat and mass transfer of a Jeffrey fluid over a stretching sheet with chemical reaction and thermal radiation, J. Taiwan Inst. Chem. Eng. 59(2016) 18-25. [21] T. Hayat, M.I. Khan, M. Farooq, A. Alsaedi, M. Waqas, T. Yasmeen, Impact of Cattaneo-Christov heat flux model in flow of variable thermal conductivity fluid over a variable thicked surface, Int. J. Heat Mass Transf. 99(2016) 702-710. [22] T. Hayat, M.I. Khan, M. Farooq, T. Yasmeen, A. Alsaedi, Stagnation point flow with Cattaneo-Christov heat flux and homogeneous-heterogeneous reactions, J. Mol. Liq. 220(2016) 49-55. [23] M. Imtiaz, T. Hayat, A. Alsaedi, A. Hobiny, Homogeneous-heterogeneous reactions in MHD flow due to an unsteady curved stretching surface, J. Mol. Liq. 221(2016) 245-253. [24] T. Hayat, S. Qayyum, M. Imtiaz, A. Alsaedi, Impact of Cattaneo-Christov heat flux in Jeffrey fluid flow with homogeneous-heterogeneous reactions, PLoS One 11(2016) e0148662. [25] G.R. Machireddy, Chemically reactive species and radiation effects on MHD convective flow past a moving vertical cylinder, Ain Shams Eng. J. 4(2013) 879-888. [26] Z. Ziabakhsh, G. Domairry, H. Bararnia, H. Babazadeh, Analytical solution of flow and diffusion of chemically reactive species over a nonlinearly stretching sheet immersed in a porous medium, J. Taiwan Inst. Chem. Eng. 41(2010) 22-28. [27] K. Bhattacharyya, Dual solutions in boundary layer stagnation-point flow and mass transfer with chemical reaction past a stretching/shrinking sheet, Int. Commun. Heat Mass Transfer 38(2011) 917-922. [28] S. Chen, Q. Sun, Numerical study of shock/boundary layer interaction of chemically reacting flow in shock tube, Procedia Eng. 126(2015) 617-621. [29] M.C.Raju, N.A. Reddy, S.V.K. Varma, Analytical studyofMHDfreeconvective,dissipative boundary layer flow past a porous vertical surface in the presence of thermal radiation, chemical reaction and constant suction, Ain Shams Eng. J. 5(2014) 1361-1369. [30] S. Mukhopadhyay, I.C. Moindal, T. Hayat, MHD boundary layer flow of Casson fluid passing through an exponentially stretching permeable surface with thermal radiation, Chin. Phys. B 23(2014) 104701. [31] T. Hayat, M. Imtiaz, A. Alsaedi, Impact of magnetohydrodynamics in bidirectional flow of nanofluid subject to second order slip velocity and homogeneous-heterogeneous reactions, J. Magn. Magn. Mater. 395(2015) 294-302. [32] Y. Lin, L. Zheng, X. Zhang, L. Ma, G. Chen, MHD pseudo-plastic nano fluid unsteady flow and heat transfer in a finite thin film over stretching surface with internal heat generation, Int. J. Heat Mass Transf. 84(2015) 903-911. [33] M. Sheikholeslami, D.D. Ganji, M.Y. Javed, R. Ellahi, Effect of thermal radiation on magnetohydrodynamics nanofluid flow and heat transfer by means of two phase model, J. Magn. Magn. Mater. 374(2015) 36-43. [34] U. Farooq, Y.L. Zhao, T. Hayat, A. Alsaedi, S.J. Liao, Application of the HAM-based Mathematica package BVPh 2.0 on MHD Falkner-Skan flow of nanofluid, Comput. Fluids 11(2015) 69-75. [35] S.A. Shehzad, Z. Abdullah, A. Alsaedi, F.M. Abbaasi, T. Hayat, Thermally radiative three-dimensional flow of Jeffrey nanofluid with internal heat generation and magnetic field, J. Magn. Magn. Mater. 397(2016) 108-114. [36] M. Turkyilmazoglu, Solution of Thomas-Fermi equation with a convergent approach, Commun. Nonlinear Sci. Numer. Simul. 17(2012) 4097-4103. [37] S. Han, L. Zheng, C. Li, X. Zhang, Coupled flow and heat transfer in viscoelastic fluid with Cattaneo-Christov heat flux model, Appl. Math. Lett. 38(2014) 87-93. [38] M. Sheikholeslami, M. Hatami, D.D. Ganji, Micropolar fluid flow and heat transfer in a permeable channel using analytical method, J. Mol. Liq. 194(2014) 30-36. [39] L. Zheng, C. Zhang, X. Zhang, J. Zhang, Flow and radiation heat transfer of a nanofluid over a stretching sheet with velocity slip and temperature jump in porous medium, J. Frankl. Inst. 350(2013) 990-1007. [40] F.M. Abbasi, S.A. Shehzad, T. Hayat, A. Alsaedi, M.A. Obid, Influence of heat and mass flux conditions in hydromagnetic flowof Jeffrey nanofluid, AIP Adv. 5(2015) 037111. [41] T. Hayat, M. Waqas, S.A. Shehzad, A. Alsaedi, MHD stagnation point flow of Jeffrey fluid by a radially stretching surface with viscous dissipation and joule heating, J. Hydrol. Hydromech. 63(2015) 311-317. [42] U. Farooq, T. Hayat, A. Alsaedi, S. Liao, Heat and mass transfer of two-layer flows of third-grade nano-fluids in a vertical channel, Appl.Math. Comput. 242(2014) 528-540. [43] S. Abbasbandy, T. Hayat, A. Alsaedi,M.M. Rashidi, Numerical and analytical solutions for Falkner-Skan flowofMHD Oldroyd-B fluid, Int. J. Numer.Methods Heat Fluid Flow 24(2014) 390-401. [44] T. Hayat, M. Farooq, A. Alsaedi, F. Al-Solamy, Impact of Cattaneo-Christov heat flux in the flow over a stretching sheet with variable thickness, AIP Adv. 5(2015) 087159. [45] T. Hayat, M. Waqas, S.A. Shehzad, A. Alsaedi, Effects of joule heating and thermophoresis on stretched flow with convective boundary conditions, Sci. Iran. B 21(2014) 682-692. [46] S.A. Shehzad, M. Waqas, A. Alsaedi, A. Alsaedi, Flow and heat transfer over an unsteady stretching sheet in a micropolar fluid with convective boundary condition, J. Appl. Fluid Mech. 9(2016) 1437-1445. [47] M. Waqas, T. Hayat, M. Farooq, S.A. Shehzad, A. Alsaedi, Cattaneo-Christov heat flux model for flow of variable thermal conductivity generalized Burgers fluid, J. Mol. Liq. 220(2016) 642-648. [48] M. Khan, W.A. Khan, Three-dimensional flow and heat transfer to Burgers fluid using Cattaneo-Christov heat flux, J. Mol. Liq. 221(2016) 651-657. [49] T. Hayat, M. Waqas, S.A. Shehzad, A. Alsaedi, Mixed convection flow of viscoelastic nanofluid by a cylinder with variable thermal conductivity and heat source/sink, Int. J. Numer. Methods Heat Fluid Flow 26(2016) 214-234. [50] M. Khan, W.A. Khan, A.S. Alshomrani, Non-linear radiative flow of threedimensional Burgers nanofluid with new mass flux effect, Int. J. Heat Mass Transf. 101(2016) 570-576. [51] M.Waqas, M.I. Khan, M. Farooq, A. Alsaedi, T. Hayat, T. Yasmeen, Magnetohydrodynamic (MHD) mixed convection flow of micropolar liquid due to nonlinear stretched sheet with convective condition, Int. J. Heat Mass Transf. 102(2016) 766-772. [52] M.I. Khan, M.Z. Kiyani, M.Y. Malik, T. Yasmeen, M.W.A. Khan, T. Abbas, Numerical investigation of magnetohydrodynamic stagnation point flow with variable properties, Alex. Eng. J. (2016), http://dx.doi.org/10.1016/j.aej.2016.04.037. [53] M. Farooq, M.I. Khan, M. Waqas, T. Hayat, A. Alsaedi, M.I. Khan, MHD stagnation point flow of viscoelastic nanofluid with non-linear radiation effects, J. Mol. Liq. 221(2016) 1097-1103. [54] E.M.A. Elbashbeshy, Heat transfer over an exponentially stretching continuous surface with suction, Arch. Mech. 53(2001) 643-651. [55] S. Chaudhary, S. Singh, S. Chaudhary, Thermal radiation effects on MHD boundary layer flow over an exponentially stretching surface, Appl. Math. 6(2015) 295-303. |