• Analysis of ferrite nanoparticles in the flow of ferromagnetic nanofluid 

      Muhammad, Noor; Nadeem, Sohail; Mustafa, M. T. ( Public Library of Science , 2018 , Article)
      Theoretical analysis has been carried out to establish the heat transport phenomenon of six different ferromagnetic MnZnFe2O4—C2H6O2 (manganese zinc ferrite-ethylene glycol), NiZnFe2O4—C2H6O2 (Nickel zinc ferrite-ethylene ...
    • Chemically reactive species in the flow of a Maxwell fluid 

      Sohail, Nadeem; Ahmad, Shafiq; Muhammad, Noor; Mustafa, M.T. ( Elsevier , 2017 , Article)
      This article presents a research for boundary layer flow and heat transfer of a Maxwell fluid over an exponential stretching surface with thermal stratifications. The effect of homogeneous and heterogeneous reaction are ...
    • A computational model for suspensions of motile micro-organisms in the flow of ferrofluid 

      S., Nadeem; Alblawi, Adel; Muhammad, Noor; Alarifi, Ibrahim M.; Issakhov, Alibek; ... more authors ( Elsevier , 2020 , Article)
      The performance of friction drag, heat transfer rate, and mass transfer is illustrated the in boundary layer flow region via density of motile microorganisms. Magnetic dipole in presence of Curie temperature and density ...
    • Hydrodynamics and ferrite nanoparticles in hybrid nanofluid 

      Jing, Yang; Abdelmalek, Zahra; Muhammad, Noor; Mustafa, M.T. ( Elsevier , 2020 , Article)
      The solids have higher heat transfer rate comparative to fluids, thus, in the present article, two different ferrite nano-particles are suspended in two different base fluids to demonstrates its impacts on the friction ...
    • Mathematical analysis of ferromagnetic fluid embedded in a porous medium 

      Sohail, Nadeem; Raishad, Irum; Muhammad, Noor; Mustafa, M.T. ( Elsevier , 2017 , Article)
      This article focuses on the impacts of heat transport phenomenon in a ferrofluid in presence of a magnetic dipole. The flow is caused by stretching of the surface. The analysis is disclosed with porous medium and thermal ...