APID Academic Profile Identity
Atul Kumar Ray

Dr. Atul Kumar Ray

Assistant Professor · Engineering Mathematics and Computing
Author
APID
7830
ORCID
0000-0002-6131-4893
Scopus
57197734309
Google Scholar
https://scholar.google.co.in/citations?user=8m5wOREAAAAJ&hl=en
Location
Gwalior, Madhya Pradesh, India
Expertise
Applied Mathematics and Fluid dynamics, AI & ML
Areas of interest
Nanofluid and Non-Newtonian Fluid flow, heat and mass transfer, Computational and Numerical simulations, AI & ML
Member since
August 2024

Biography

Dr. Atul Kumar Ray is presently working as an Assistant Professor in the Department of Engineering Mathematics and Computing, Madhav Institute of Technology & Science (MITS) Gwalior, Madhya Pradesh, India. He has received his Ph. D. from Motilal Nehru National Institute of Technology (MNNIT) Allahabad, Prayagraj, Uttar Pradesh, India in the field of Fluid Dynamics. His research interest lies in Fluid dynamics, Nanofluid Flows, Heat & Mass transfer, Data Science, AI & ML. Dr. Ray has numerous publications in international Journals of highly repute. Dr. Ray is listed in Top Researchers of India 2023 in Chemical Engineering Domain which is awarded by Career360. Dr. Ray has been invited as a resource person and speaker in many FDPs and National workshops. Dr. Ray is Topic Editor of the Journal “Frontiers in Applied Mathematics and Statistics” and Editorial board member of Journal of “Applied and Computational Mathematics”. He is also NPTEL Discipline Star and Motivated Learner of the session Jan-April, 2023 and July-Oct, 2023 respectively. He is also Topper (with Gold Medal) in Course “Introduction to Abstract and Linear Algebra”. Further, he qualified national exams like NET-JRF and GATE-2015) and was university topper in his Master degree. He is also member of several professional bodies and societies. He is reviewer of many articles in International Journals . He has organized various national workshops/FDP and webinars on the emerging topics of Mathematics and computing. Oth

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Publications

  1. Synergistic Impacts of Radiative Flow of Maxwell Fluid Past a Rotating Disk with Reactive Conditions: An Arrhenius Model Analysis