Ms. Nomana Abid | Fluid Dynamics | Best Researcher Award

Ms. Nomana Abid | Fluid Dynamics | Best Researcher Award

Bahria University, Pakistan

Author Profile

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🎓 Early Academic Pursuits

Noman Aabid’s academic trajectory is a testament to his deep-rooted passion for mathematical sciences and education. His journey began with a strong performance in the science stream at the secondary level, securing an impressive 75% in SSC and 66% in HSSC from Government Girls Higher Secondary School in Chak Beli Khan, Rawalpindi. This foundational phase laid the groundwork for his transition into higher education in mathematics.

He pursued his Bachelor of Science in Mathematics from the University of Gujrat’s Rawalpindi Sub-Campus, earning a commendable 3.40 CGPA. His academic curiosity and determination propelled him further to complete a Master of Science in Mathematics from Bahria University Islamabad, where he graduated Magna Cum Laude with a CGPA of 3.83 and secured the first position, earning a prestigious gold medal. He also complemented his mathematical training with a Bachelor of Education, acknowledging the importance of pedagogy in academia.

Currently, Noman is enrolled in a Ph.D. in Mathematics at Bahria University Islamabad, maintaining an impressive CGPA of 3.95, with a research focus that addresses complex problems in fluid mechanics and computational mathematics.

👨‍🏫 Professional Endeavors

Noman Aabid’s professional path is characterized by consistent engagement with academic institutions and a dedication to knowledge dissemination. His teaching journey began in 2018 as an Elementary Teacher at Islamabad Alma School. This early phase offered him hands-on experience in shaping young minds and establishing a solid teaching philosophy.

His academic roles quickly evolved into higher education as he took on lecturer positions at Wings Model School and College, Bahria University, and Air University Islamabad. His current engagements as a Visiting Lecturer at both Bahria University and Air University reflect his continued commitment to delivering quality education in computer science and mathematics. These roles have not only honed his teaching abilities but also enabled him to mentor students in advanced mathematical and technological disciplines.

📊 Contributions and Research Focus

Noman Aabid is an emerging figure in applied mathematics, particularly in the domain of computational fluid dynamics (CFD), mathematical modeling, and heat and momentum transfer in multiphase flows. His ongoing Ph.D. thesis, titled “Immiscible Fluids Flow Through Curved Geometries”, explores the dynamics of fluid behavior in complex, curved environments—relevant in both industrial applications and biological systems.

Over the past five years, Noman has co-authored 14 research publications, many of which have been featured in high-impact factor journals (Q1 and Q2 categories) such as the Chinese Journal of Physics, Alexandria Engineering Journal, Scientific Reports, and Case Studies in Thermal Engineering. His works often incorporate non-Newtonian fluid analysis, magnetic field effects (MHD), and hybrid nanofluids, providing insights into contemporary challenges in energy transport, environmental modeling, and biomedical engineering.

Notably, his 2025 paper in the Chinese Journal of Physics investigates thermal dynamics in corrugated curved channels, offering a novel perspective on thermal control and heat optimization in layered fluid systems. His research collaborations with Dr. Hasnain and others show a strong interdisciplinary and cross-institutional research ethic.

🏆 Accolades and Recognition

Noman Aabid’s academic excellence has been repeatedly recognized by institutions and peers alike. He was awarded the Best Student Researcher Award in 2023, reflecting not only the quality of his publications but also his consistency in research engagement and impact. His gold medal in MS Mathematics underscores his superior academic performance and deep understanding of complex mathematical concepts.

These recognitions validate his position as one of the promising young researchers in Pakistan’s academic landscape, especially in the niche field of computational fluid dynamics applied to real-world physical systems.

🌍 Impact and Influence

Beyond technical expertise, Noman’s influence is reflected in his ability to bridge theory and practical application, particularly through mathematical simulations that address real-life engineering and thermal system challenges. His work contributes to advancements in fluid transport, energy-efficient design, and biomedical fluid modeling.

As an educator, he impacts future generations by fostering analytical thinking and scientific curiosity in university students. His dual focus on teaching and research enables him to build a well-rounded academic profile that inspires both peers and pupils. Through his scholarly publications, he contributes to the global dialogue on nanofluid applications, hybrid systems, and thermodynamic simulations.

🚀 Legacy and Future Contributions

Looking forward, Noman Aabid is poised to become a leading researcher and educator in applied mathematics and computational modeling. His continued work on multiphase fluid flows, coupled with his emerging leadership in academia, signals a bright future filled with impactful publications, interdisciplinary collaborations, and educational innovation.

His dedication to lifelong learning, combined with a growing list of contributions in high-impact research, places him on a trajectory to not only shape mathematical sciences in Pakistan but also influence international research agendas in CFD and mathematical physics. With a strong publication record, teaching acumen, and collaborative spirit, his legacy will be defined by both intellectual contribution and academic mentorship.

📝Notable Publications

Numerical investigation for thermal growth in water and engine oil-based ternary nanofluid using three different shaped nanoparticles over a linear and nonlinear stretching sheet

Authors: J. Hasnain, N. Abid
Journal: Numerical Heat Transfer, Part A: Applications
Year: 2023

 Comparative analysis of magnetized partially ionized copper, copper oxide–water and kerosene oil nanofluid flow with Cattaneo–Christov heat flux

Authors: N. Abid, M. Ramzan, J.D. Chung, S. Kadry, Y.M. Chu
Journal: Scientific Reports
Year: 2020

Impact of melting heat transfer in the time-dependent squeezing nanofluid flow containing carbon nanotubes in a Darcy-Forchheimer porous media with Cattaneo-Christov heat flux

Authors: M. Ramzan, N. Abid, D. Lu, I. Tlili
Journal: Communications in Theoretical Physics
Year: 2020

 Aspects of Cattaneo-Christov heat flux in nonlinear radiative ternary, hybrid, and single mass diffusion past stretching surface; A comparative study

Authors: N. Fatima, J. Hasnain, N. Abid, M.M.A. Lashin, S.M. Eldin
Journal: Case Studies in Thermal Engineering
Year: 2023

Analysis on Cattaneo-Christov heat flux in three-phase oscillatory flow of non-Newtonian fluid through porous zone bounded by hybrid nanofluids

Authors: J. Hasnain, N. Abid, M.O. Alansari, M.Z. Ullah
Journal: Case Studies in Thermal Engineering
Year: 2022

Yu Heng Tao-Scientific Research-Best Researcher Award 

Mr. Yu Heng Tao-Scientific Research-Best Researcher Award 

The University of Western- Australia

Author profile 

Early Academic Pursuits

Yu Heng Tao's academic journey commenced at The University of Western Australia in 2013, where he earned a Bachelor's degree in Electrical and Electronic Engineering with Honors and a Bachelor's degree in Accounting and Finance. Following this, he pursued a Ph.D. in Medical Physics at the same university, with an expected completion date in 2024. Under the guidance of supervisors Vince P. Wallace, Stuart I. Hodgetts, and Alan R. Harvey, Tao delved into the field of Medical Physics, focusing on topics such as terahertz time-domain spectroscopy and the thermodynamics of G-quadruplex formation driven by water.

Professional Endeavors on Scientific Research

Prior to his doctoral studies, Tao gained valuable industry experience. He served as an Electrical and Instrument Engineer at Orica Ltd. from 2013 to 2017, where he honed his skills in engineering and instrumentation. Subsequently, he took on the role of Project Engineer at Asahi Beverages Pty. Ltd. from 2017 to 2019, showcasing his adaptability in different sectors.

Contributions and Research Focus

Tao's research contributions are evident through his publications and conference presentations. His work on the absorption spectrum of ice, terahertz technology applications in non-contact, non-destructive testing, and the study of terahertz peaks in biological solutions mark significant advancements in the field. Notably, his research on the hydration water's role in driving the self-assembly of guanosine monophosphate and the thermodynamics of G-quadruplex formation sheds light on fundamental molecular processes.

His conference presentations at international events, such as the International Conference on Infrared, Millimeter, and Terahertz Waves, reflect the global recognition of his research. Tao's ability to communicate complex scientific findings is evident in his talks on topics like the absorption spectrum of ice and the terahertz absorption peak in frozen DNA nucleosides.

Accolades and Recognition

While pursuing his academic and research endeavors, Tao has actively engaged in professional development. He completed the Concept to Creation Module at the Centre for Entrepreneurial Research and Innovation (CERI) in 2021. Additionally, he participated in the Skills, Pedagogical Approaches, Resources, and Knowledge (SPARK) Professional Development program at The University of Western Australia.

Impact and Influence

Tao's impact extends beyond research to the realm of teaching. In 2021, he contributed as a Teaching Assistant for the course "Science of the Eye and Visual System 1" at The University of Western Australia, showcasing his commitment to sharing knowledge and fostering the academic growth of others.

The significance ofScientific Research lies in its ability to generate new knowledge, challenge existing theories, and contribute to the advancement of human understanding. Through peer-reviewed publications, scientists share their findings with the global community, fostering collaboration and facilitating the building of a cumulative body of knowledge. Scientific research not only drives technological innovations and improvements in various industries but also plays a crucial role in addressing societal challenges, ranging from healthcare and environmental issues to social and economic concerns. The dynamic and iterative nature of scientific inquiry ensures that the pursuit of knowledge is an ongoing, collaborative endeavor that continuously reshapes our understanding of the world.

Legacy and Future Contributions

As Tao approaches the completion of his Ph.D., his legacy in the field of Medical Physics is well-established. His work on terahertz technology and its applications, as well as the understanding of molecular processes, has laid the groundwork for future advancements. Beyond academia, his industry experience contributes to bridging the gap between theoretical knowledge and practical applications.

In the future, it is anticipated that Tao will continue to make significant contributions to the field of Medical Physics. His multidisciplinary approach, blending engineering and physics with applications in biology and medicine, positions him as a potential leader in advancing technologies for healthcare and scientific research.

Scientific research is a systematic and methodical investigation aimed at expanding our understanding of the natural world or solving specific problems through the application of rigorous empirical methods. This process involves formulating hypotheses, designing experiments or studies, collecting and analyzing data, and drawing conclusions based on evidence. Researchers employ a variety of methodologies, ranging from experimental and observational approaches to computational modeling, to explore phenomena across diverse fields such as physics, chemistry, biology, psychology, and more.

Notable publications