Asifa Ilyas | Applied Mathematics | Applied Mathematics Award

Applied Mathematics Award

Asifa Ilyas
University of Sargodha, Sargodha, Pakistan

Asifa Ilyas
Affiliation University of Sargodha, Sargodha, Pakistan
Country Pakistan
Scopus ID 57221078947
Documents 15
Citations 343
h-index 10
Subject Area Applied Mathematics
Event Applied Scientist Awards
Google Scholar dqZrKGoAAAAJ&hl

Asifa Ilyas is an applied mathematics researcher affiliated with the University of Sargodha, Sargodha, Pakistan. Her scholarly profile is associated with research in applied mathematics, a field that connects mathematical theory with the analysis and solution of problems arising in science, engineering, technology, and other applied domains. The available bibliometric record identifies 15 documents, 343 citations, and an h-index of 10 in Scopus, providing an externally indexed overview of her research output and citation impact. [1]

Abstract

Asifa Ilyas, an applied mathematics researcher at the University of Sargodha in Pakistan. Her research profile is positioned within applied mathematics, a discipline that employs mathematical modelling, analytical methods, computational techniques, and quantitative reasoning to address problems across scientific and technological fields. According to the supplied Scopus profile information, her scholarly record includes 15 indexed documents, 343 citations, and an h-index of 10. [1] These indicators provide a bibliometric basis for considering her research activity and visibility within the academic community. The profile is prepared in the context of the Applied Scientist Awards and is intended to summarize research relevance, publication activity, measurable scholarly impact, and suitability for recognition in applied mathematical research.

Keywords

Applied Mathematics; Mathematical Modelling; Computational Mathematics; Quantitative Research; Scientific Computing; Research Impact; Mathematical Analysis; Applied Scientist Awards

Introduction

Applied mathematics encompasses the development and use of mathematical methods to interpret, model, and solve problems that emerge in practical scientific and technological contexts. Its scope may include mathematical analysis, differential equations, numerical methods, optimization, modelling, statistics, computational techniques, and interdisciplinary applications. Researchers working in the field contribute to the development of methods that support evidence-based understanding and quantitative decision-making across a wide range of disciplines.[1]

Research Profile

Asifa Ilyas’s research profile is situated within applied mathematics and is associated with the use of mathematical reasoning and quantitative approaches to address research problems. The field provides a methodological foundation for translating abstract mathematical concepts into analytical and computational frameworks applicable to scientific investigation.[2]

  • Research discipline: Applied Mathematics.
  • Institutional affiliation: University of Sargodha, Sargodha, Pakistan.
  • Scopus-indexed documents: 15.
  • Reported citations: 343.
  • Reported h-index: 10.

Research Contributions

The contribution of an applied mathematics researcher may be assessed through the development of mathematical methods, analytical frameworks, computational approaches, and models that support the interpretation of complex problems. Depending on the specific research specialization, such work can provide tools for prediction, optimization, simulation, quantitative analysis, and the study of relationships within scientific systems.[5]

Publications

The supplied Scopus record reports 15 documents associated with the researcher profile. [3] These documents form the indexed publication basis for the bibliometric indicators presented in this article. Publication-level evaluation would require examination of the individual articles, chapters, conference contributions, journals, publishers, subject classifications, and associated citation records.

Research Impact

Research impact may be considered through multiple dimensions, including scholarly citations, the visibility of published work, methodological contribution, interdisciplinary relevance, and the use of research outputs by other scholars or practitioners. The reported Scopus metrics of 343 citations and an h-index of 10 provide quantitative indicators of citation activity associated with the supplied author profile. [4]

Award Suitability

Asifa Ilyas’s academic profile is relevant to consideration for recognition in applied mathematics because it combines an identified research specialization with a documented institutional affiliation and an indexed scholarly record. The reported publication and citation indicators provide measurable evidence of research activity and scholarly visibility. [3][5]

  • Alignment with the field of applied mathematics.
  • Documented Scopus-indexed research activity.
  • Reported citation impact and h-index.
  • Institutional affiliation with the University of Sargodha.
  • Potential contribution to quantitative and mathematical research.

Conclusion

Asifa Ilyas is an applied mathematics researcher affiliated with the University of Sargodha, Pakistan. The supplied scholarly profile records 15 documents, 343 citations, and an h-index of 10 in Scopus. [1] Together with the complementary Google Scholar profile, these records provide a basis for documenting research activity and scholarly visibility. [2] Her academic profile may therefore be considered within a broader evidence-based assessment of research contribution and suitability for recognition in applied mathematical sciences.

References

  1. Elsevier. (n.d.). Scopus author details: Asifa Ilyas, Author ID 57221078947. Scopus.
    https://www.scopus.com/pages/authors/57221078947
  2. M Ihsan, A Ilyas, et al. (2026). Analysis of assisting and opposing mixed convection heat and mass transfer over inclined vertical plates in a porous medium.
    https://www.worldscientific.com/doi/abs/10.1142/S0217984926500429
  3. A Ilyas, M Ashraf, AM Rashad. (2022). Periodical analysis of convective heat transfer along electrical conducting cone embedded in porous medium.
    https://link.springer.com/article/10.1007/s13369-021-06191-5
  4. A Ilyas, A Abbas, et al. (2025). MHD dissipative micropolar fluid flow past stretching sheet with heat generation and slip effects.
    https://www.tandfonline.com/doi/abs/10.1080/17455030.2022.2075957
  5. A Ilyas, L Kiran, et al. (2025). Soret and Dufour Effects in Computational Analysis of Assisting and Opposing Stagnation Point Flow of Viscoelastic Fluid.
    https://www.icck.org/article/abs/ceht.2025.786259

Omar Abu Arqub | Applied Mathematics | Research Excellence Award

Research Excellence Award

Omar Abu Arqub
Al-Balqa Applied University, Jordan

Omar Abu Arqub
Affiliation Al-Balqa Applied University
Country Jordan
Scopus ID 55372355400
Documents 165
Citations 11,220
h-index 63
Subject Area Applied Mathematics
Event Applied Scientist Awards
ORCID 0000-0001-9526-6095

Omar Abu Arqub is a Jordanian applied mathematician and professor at Al-Balqa Applied University whose research activities span numerical analysis, fractional calculus, fuzzy systems, computational optimization, differential equations, and optimal control theory. His scholarly profile demonstrates substantial international visibility through a large portfolio of peer-reviewed publications, extensive citation impact, and sustained contributions to mathematical modeling and computational methodologies.[1] His work has contributed to the development of numerical algorithms, reproducing kernel methods, fractional differential equation models, and analytical approaches used across mathematics, engineering, physics, and interdisciplinary scientific applications.[2]

Abstract

Omar Abu Arqub’s academic profile in the context of recognition through the Research Excellence Award. The evaluation considers publication productivity, citation performance, international scholarly engagement, editorial activities, research leadership, and contributions to applied mathematics. Particular attention is given to his work in fractional calculus, numerical methods, fuzzy differential equations, reproducing kernel Hilbert space techniques, and computational optimization, which have attracted significant academic attention and generated substantial citation impact within the global mathematical sciences community.[1][3]

Keywords

Applied Mathematics; Fractional Calculus; Numerical Analysis; Computational Optimization; Differential Equations; Reproducing Kernel Methods; Fuzzy Systems; Mathematical Modeling; Research Impact; Scientific Recognition.

Introduction

Applied mathematics plays a central role in modern scientific advancement by providing analytical and computational tools for solving complex problems across engineering, physics, economics, and technology. Within this domain, Omar Abu Arqub has established a substantial research record characterized by methodological innovation and interdisciplinary applicability. His academic career includes appointments at Al-Balqa Applied University and collaborations with numerous international researchers, contributing to the development of advanced numerical and analytical frameworks for differential and fractional differential systems.[2]

Research Profile

Omar Abu Arqub has produced 165 indexed documents and accumulated more than 11,220 citations, resulting in a Scopus h-index of 63.[1] His research interests encompass fractional calculus theory, fuzzy calculus theory, stochastic systems, optimal control theory, numerical analysis, and computational optimization. These themes are reflected across a broad publication portfolio that addresses both theoretical developments and computational applications.[2]

Research Contributions

Omar Abu Arqub include the development and refinement of reproducing kernel Hilbert space methods, residual power series methodologies, and computational approaches for solving fractional differential equations. His studies have addressed mathematical models relevant to fluid dynamics, porous media, diffusion systems, optimal control problems, stochastic processes, and fuzzy environments.[2][4]

Publications

Selected publications demonstrate sustained contributions to numerical computation and fractional differential equations across leading international journals.[4]

  • Solving Fredholm integro-differential equations using reproducing kernel Hilbert space method, Applied Mathematics and Computation (2013).
  • Approximate analytical solution of the nonlinear fractional KdV-Burgers equation, Journal of Computational Physics (2015).
  • Numerical solutions of fuzzy differential equations using reproducing kernel Hilbert space method, Soft Computing (2015).
  • Implementation of reproducing kernel Hilbert algorithm for fractional Burgers models, Results in Physics (2021).

Research Impact

Research impact may be assessed through publication productivity, citation performance, influence on emerging research directions, and engagement with the international scholarly community. Omar Abu Arqub’s citation record and h-index indicate that his publications have been widely referenced by researchers working in mathematics, computational science, engineering, and applied physics.[1]

Award Suitability

The available evidence suggests strong alignment with criteria commonly associated with research excellence awards. Factors supporting suitability include sustained publication output, significant citation influence, internationally visible scholarship, leadership in specialized research areas, extensive peer-review contributions, and demonstrated engagement in collaborative research projects.[1][2]

Conclusion

Omar Abu Arqub’s academic record demonstrates sustained contributions to applied mathematics through theoretical innovation, numerical algorithm development, interdisciplinary applications, and scholarly leadership.[5] His publication history, citation performance, editorial service, and international collaborations collectively indicate a substantial level of academic influence. These characteristics provide a scholarly basis for consideration within the framework of the Research Excellence Award and similar forms of academic recognition.[1][2]

References

  1. Elsevier. (n.d.). Scopus author details: Omar Abu Arqub, Author ID 55372355400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55372355400
  2. Abu Arqub, O., El-Ajou, A., & Momani, S. (2013). New results on fractional power series: theories and applications. Entropy
    https://www.mdpi.com/1099-4300/15/12/5305
  3. Abu Arqub., & Momani, S. (2013). Application of reproducing kernel algorithm for solving second-order, two-point fuzzy boundary value problems.
    https://link.springer.com/article/10.1007/s00500-016-2262-3
  4. Abu Arqub, O., El-Ajou, A., & Momani, S. (2015). Approximate analytical solution of the nonlinear fractional KdV-Burgers equation: A new iterative algorithm. Journal of Computational Physics.
    https://www.sciencedirect.com/science/article/pii/S0021999114005506
  5. Abu Arqub, O., El-Ajou, A. (2013). Solution of the fractional epidemic model by homotopy analysis method .
    https://www.sciencedirect.com/science/article/pii/S1018364712000043