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Impacts of oxytactic microorganisms and viscous dissipation in Carreau nanoliquid featuring ferromagnetic nanoparticles

Muhammad TabrezDepartment of Mathematics, Mohi-ud-Din Islamic University, Nerian Sharif, Azad Jammu and Kashmir 12010, PakistanIftikhar HussainDepartment of Mathematics, Mohi-ud-Din Islamic University, Nerian Sharif, Azad Jammu and Kashmir 12010, PakistanWaqar Azeem KhanDepartment of Mathematics, Mohi-ud-Din Islamic University, Nerian Sharif, Azad Jammu and Kashmir 12010, PakistanSami Ullah KhanDepartment of Mathematics, Namal University, Mianwali, 42250, PakistanM. WaqasDepartment of Computer Science and Mathematics, Lebanese American University, Beirut, LebanonRzgar Farooq RashidDepartment of Medical Laboratory Science, College of Science, Knowledge University, Erbil 44001, IraqMuhammad Imran AnwarDepartment of Mathematics, School of Sciences and Humanities, Nazarbayev University, Astana, KazakhstanMohamed Ben AmmarDepartment of Information Systems. Faculty of Computing and Information Technology, Northern Border University, Rafha, Saudi ArabiaNurnadiah ZamriFaculty of Informatics and Computing, Universiti Sultan Zainal Abidin, Besut Campus, 22200 Besut, Terengganu, MalaysiaRuzimurod AbiyevDepartment of Mathematics and its Teaching Methods in Primary Education, Tashkent State Pedagogical University, Tashkent, UzbekistanHakim AL GarallehDepartment of Mathematical Science, College of Engineering, University of Business and Technology, Jeddah 21361, Saudi Arabia
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Owing to rapid progress in field of nanotechnology, various mathematical model has been proposed regarding the flow of nanofluids. Based on boosted thermal properties, multidisciplinary applications of such materials has been claimed in various engineering and industrial processes. In current work, a theoretical analysis is performed for bioconvective flow of Carreau fluid with applications of magnetic dipole. The significance of magnetic dipole are presented with interaction of ferrofluid. The applications of viscous dissipation have also been entertained. The flow is subject to applications of stretched surface. Similarity variables are used for making transformation to obtain set of nonlinear ODEs from set of PDEs. The numerical computation is also made by using of well-known numerical method termed as bvp4c. Influences of various non dimensional fluid parameters like Brownian motion, viscous dissipation, Curie temperature, Weissenberg number, motile difference parameter and bioconvection Paclet number are examined and expressed graphically. It is perceived that ferrofluid's concentration declines when Brownian diffusive variable is augmented while opposite characteristics are reported for Schmidt number. Current results conveying applications in the biofuels, better heat transport medium, fertilizers, catalysts, electronics, paints, semiconductors, speakers, drug delivery, fertilizers etc.

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