Dr. Muhammad Ahsan | Mathematics | Research Excellence Award

Dr. Muhammad Ahsan | Mathematics | Research Excellence Award

Assistant Professor | University of Swabi | Pakistan

Dr. Muhammad Ahsan is a distinguished scholar in Mathematics, recognized for his influential contributions to applied Mathematics, computational Mathematics, and numerical methods. His research spans high-order wavelet collocation techniques, multi-resolution algorithms, and advanced modeling approaches that address complex challenges in science and engineering through the rigorous application of Mathematics. As an active researcher in the global Mathematics community, he has authored more than thirty peer-reviewed publications in leading international journals, demonstrating consistent excellence in theoretical and computational Mathematics. Dr. Muhammad Ahsan has built a strong reputation for advancing innovative  methodologies in Mathematics, particularly in the areas of differential equations, inverse problems, nonlinear systems, and wavelet-based numerical frameworks. His collaborative work with researchers from multiple countries reflects his commitment to expanding the frontiers of Mathematics through interdisciplinary engagement. His impactful publications, extensive citation record, and sustained research productivity underscore the importance of his contributions to applied Mathematics and strengthen the global relevance of his work. In addition to his research achievements, he has played a pivotal role in academic leadership, contributing to institutional development, departmental responsibilities, and scholarly review activities for numerous international journals in Mathematics. His mentorship of graduate and undergraduate students further reflects his dedication to nurturing the next generation of professionals in Mathematics. Through his continuous pursuit of high-quality research, dedication to international collaboration, and commitment to advancing Mathematics, Dr. Muhammad Ahsan exemplifies scholarly excellence and global academic impact. His work remains a valuable asset to the broader scientific community, reinforcing the essential role of Mathematics in addressing modern scientific and technological challenges. Scopus profile of 591 Citations, 37 Documents, 16 h-index.

Profiles: Scopus | Google Scholar

Featured Publications

1. High-order wavelet-based numerical algorithms for nonlinear singular Lane–Emden–Fowler equations: Applications to physical models in astrophysics. (2026). Astronomy and Computing.

2. A high-order Haar wavelet approach to solve differential equations of fifth-order with simple, two-point and two-point integral conditions. (2026). Applied Numerical Mathematics.

3. Enhanced resolution in solving first-order nonlinear differential equations with integral condition: A high-order wavelet approach. (2025). European Physical Journal Special Topics.

Prof. Dr. Jinju Sun | Computational Methods | Best Researcher Award

Prof. Dr. Jinju Sun | Computational Methods | Best Researcher Award

Professor | Xi'an Jiaotong University | China

Prof. Dr. Jinju Sun is a distinguished scholar in the School of Energy and Power Engineering at Xi’an Jiaotong University, renowned for her pioneering contributions to fluid mechanics, turbomachinery, and multiphase flow systems through advanced Computational Methods. Her educational journey spans cryogenic engineering to a PhD in turbomachinery and engineering mechanics, which laid the foundation for her expertise in Computational Methods applied to turbomachinery optimization, Lattice Boltzmann modeling, and Vortex Method simulations. Throughout her professional career, she has served as a researcher, lecturer, and professor, advancing research through numerous national and international collaborations emphasizing Computational Methods in fluid dynamics and green energy system design. She has received prestigious honors, including the Donald Julius Groen Prize and the Arthur Charles Main Award from the Institution of Mechanical Engineers (UK), in recognition of her outstanding achievements utilizing Computational Methods for energy system modeling and flow optimization. Her research interests include cryogenic liquid turbines, compressor instabilities, and innovative Computational Methods for fluid-structure interaction and multiphase flow behavior. She has authored numerous high-impact publications and holds multiple international patents that demonstrate her excellence in Computational Methods-based innovation. Prof. Dr. Jinju Sun’s research skills encompass CFD modeling, LBM, topology optimization, and Computational Methods-driven analysis for turbomachinery and green energy systems. In conclusion, her dedication to advancing Computational Methods in engineering has positioned her as a global leader driving innovation, sustainability, and scientific excellence in modern energy and power engineering.

Profile: ORCID

Featured Publications

1. Qu, Y., Sun, J., Song, P., & Wang, J. (2025). Enhancing efficiency and economic viability in Rectisol system with cryogenic liquid expander. Asia-Pacific Journal of Chemical Engineering.

2. Ge, Y., Peng, J., Chen, F., Liu, L., Zhang, W., Liu, W., & Sun, J. (2023). Performance analysis of a novel small-scale radial turbine with adjustable nozzle for ocean thermal energy conversion. AIP Advances.

3. Fu, X., & Sun, J. (2023). Three-dimensional color-gradient lattice Boltzmann model for simulating droplet ringlike migration under an omnidirectional thermal gradient. International Journal of Thermal Sciences.

4. Song, P., Sun, J., Wang, S., & Wang, X. (2022). Multipoint design optimization of a radial-outflow turbine for Kalina cycle system considering flexible operating conditions and variable ammonia-water mass fraction. Energies.

5. Song, P., Wang, S., & Sun, J. (2022). Numerical investigation and performance enhancement by means of geometric sensitivity analysis and parametric tuning of a radial-outflow high-pressure oil–gas turbine. Energies.

Assoc. Prof. Dr. Krishna Pada Das | Mathematics | Best Researcher Award

Assoc. Prof. Dr. Krishna Pada Das | Mathematics | Best Researcher Award

Associate Professor | Mahadevananda Mahavidyalaya | India

Assoc. Prof. Dr. Krishna Pada Das, a distinguished scholar in Mathematics, currently serves as an Associate Professor in the Department of Mathematics at Mahadevananda Mahavidyalaya, Barrackpore. His academic journey includes a Bachelor’s and Master’s degree in Mathematical Science from Calcutta University and a Doctorate in Applied Mathematics from Jadavpur University, where he conducted pioneering research under the supervision of Prof. Joydev Chattopadhyay at the Indian Statistical Institute. With extensive professional experience as a researcher and educator, he has contributed significantly to the field of Mathematics through his exploration of eco-epidemiological models, nonlinear dynamics, and bifurcation theory. His Mathematics research primarily focuses on the dynamics of predator-prey systems, infectious disease modeling, and population ecology using advanced mathematical tools such as fractional calculus, diffusion, stochastic processes, and delay differential equations. Over the course of his Mathematics career, Assoc. Prof. Dr. Krishna Pada Das has published more than ninety high-impact Mathematics research papers and guided multiple Ph.D. candidates in applied and computational Mathematics. His notable Mathematics achievements include the ISI Research Award and clearing the SLET examination, recognizing his exceptional academic and research proficiency in Mathematics. His Mathematics skills encompass mathematical modeling, numerical simulation using MATLAB, and analytical techniques for stability and chaos control in biological systems. In conclusion, his Mathematics contributions have strengthened interdisciplinary research connecting ecology, epidemiology, and applied mathematics, solidifying his position as a prominent researcher. Google Scholar profile of 1840 Citations, 23 h-index, 38 i10 index.

Profile: Google Scholar

Featured Publications

1. Das, K., & Mukherjee, A. K. (2007). Differential utilization of pyrene as the sole source of carbon by Bacillus subtilis and Pseudomonas aeruginosa strains: Role of biosurfactants in enhancing. Journal of Applied Microbiology, 102(1), 195–203.

2. Dutta, S. K., Das, K., Ghosh, B., & Blackman, C. F. (1992). Dose dependence of acetylcholinesterase activity in neuroblastoma cells exposed to modulated radio‐frequency electromagnetic radiation. Bioelectromagnetics, 13(4), 317–322.

3. Soni, B. K., Das, K., & Ghose, T. K. (1982). Bioconversion of agro-wastes into acetone butanol. Biotechnology Letters, 4(1), 19–22.

4. Kooi, B. W., van Voorn, G. A. K., & Das, K. P. (2011). Stabilization and complex dynamics in a predator–prey model with predator suffering from an infectious disease. Ecological Complexity, 8(1), 113–122.

5. Das, C. R., Mondal, N. K., Aditya, P., Datta, J. K., Banerjee, A., & Das, K. (2012). Allelopathic potentialities of leachates of leaf litter of some selected tree species on gram seeds under laboratory conditions. Asian Journal of Experimental Biological Sciences, 3(1), 59–65.*

Dr. Prity Kumari | Mathematics | Women Researcher Award

Dr. Prity Kumari | Mathematics | Women Researcher Award

PhD scholar | National Institute of Technology | India

Dr. Prity Kumari is an accomplished researcher in Mathematics with expertise in graph theory, combinatorics, cryptography, wireless sensor networks, and machine learning, demonstrating a strong academic and professional foundation through advanced studies and significant teaching experience in engineering mathematics, numerical methods, and discrete mathematics. Her doctoral work focused on the application of combinatorial design in wireless sensor networks, reflecting her depth in both theoretical and applied Mathematics. She has published impactful research in reputed SCIE and Q1/Q2 journals, contributing to key areas like group key management, cryptographic security, and re-keying prediction models using Mathematics-driven combinatorial and machine learning approaches. With fellowships, merit-based scholarships, and active participation in national-level workshops on post-quantum cryptography, cyber security, and Mathematics for machine learning, she has broadened her expertise and collaborative exposure. Dr. Prity Kumari has also enriched her professional skills through roles as a Mathematics faculty and teaching assistant, guiding learners in foundational and advanced topics of Mathematics. Her research skills highlight proficiency in combinatorial design, cryptographic applications, algorithmic development, and predictive modeling, aligning with cutting-edge directions in Mathematics and computer science. Awards, honors, and fellowships further strengthen her academic profile, demonstrating excellence and commitment. Beyond research, she engaged in leadership roles like hostel representative, reflecting organizational and interpersonal abilities. In conclusion, Dr. Prity Kumari embodies a Mathematics scholar whose contributions interconnect combinatorial structures, cryptographic security, and applied computational methods, making her a valuable academic and researcher with strong potential for further advancing the field of Mathematics.

Profiles: Google Scholar | ORCID

Featured Publications

1. Kumari, P., & Singh, K. R. (2024). Re-keying analysis in group key management of wireless sensor networks. Cryptography and Communications, 16(3), 665–677.

2. Mandal, R. K. P. K. N. R. D. S. S. K. (2024). Experimental comparison of pool boiling characteristics between CNT, GO, and CNT + GO-coated copper substrate. Heat Transfer. Advance online publication.

3. Kumar, P. K. K. R. S. R. (2025). Stacking ensemble algorithm to predict re-keying in group key management. Arabian Journal for Science and Engineering, 1–15.

4. Pegu, J., Singh, K. R., Kumari, P., & Mishra, V. N. (2025). Decomposition of corona graph. Filomat, 39(10), 3321–3328.

5. Kumari, P., & Singh, K. R. (2025). Re-keying in group key management for wireless sensor network using nested balanced incomplete block designs. IETE Journal of Research, 1–13.

Dr. Akinbo Bayo Johnson | Mathematics | Best Researcher Award

Dr. Akinbo Bayo Johnson | Mathematics | Best Researcher Award

Senior Lecturer | Federal College of Education, Abeokuta, Nigeria and Postdoctoral researcher at Universidade Federal De Itajuba | Brazil 

Dr. Akinbo Bayo Johnson is a distinguished scholar in applied mathematics whose expertise spans fluid dynamics, entropy generation, nano and non-Newtonian fluids, thermodynamic models, and computational mathematics. With a Ph.D. in applied mathematics and solid foundations from advanced studies in mathematics, his academic journey has been dedicated to advancing theoretical and applied aspects of mathematics. He has served as a lecturer, senior researcher, and currently contributes as a postdoctoral researcher in Brazil, showcasing professional experience across teaching, supervision, and international research collaborations. His research interests are deeply rooted in mathematics, where he explores bioconvectional fluids, heat and mass transfer, and mathematical modeling, all of which have resulted in impactful publications in high-ranking journals. Dr. Akinbo has been honored with awards such as the Best Paper Award, Tetfund Postdoctoral Award, and multiple recognitions from scientific associations, reflecting his excellence in mathematics-driven research. His professional memberships in the Mathematical Association of Nigeria and related bodies further highlight his integration within the mathematics community. Skilled in MATHEMATICA programming and computational approaches, he has applied mathematics extensively in solving differential equations, thermodynamic systems, and fluid mechanics problems. His career demonstrates consistent contributions as a reviewer for international journals, strengthening the dissemination of mathematical knowledge. Overall, Dr. Akinbo Bayo Johnson embodies a commitment to mathematics through education, research, and professional service, and his dedication ensures that mathematics remains a vital tool in addressing complex scientific challenges while inspiring the next generation of mathematics researchers.

Profiles: Scopus | Google Scholar | ORCID

Featured Publications

1. Akinbo, B. J., & Olajuwon, B. I. (2023). Impact of radiation and heat generation/absorption in a Walters’ B fluid through a porous medium with thermal and thermo diffusion in the presence of chemical reaction. International Journal of Modelling and Simulation, 43(2), 87–100.

2. Akinbo, B. J., & Olajuwon, B. I. (2021). Impact of radiation and chemical reaction on stagnation-point flow of hydromagnetic Walters' B fluid with Newtonian heating. International Communications in Heat and Mass Transfer, 121, 105115.

3. Akinbo, B. J., & Olajuwon, B. I. (2019). Homotopy analysis investigation of heat and mass transfer flow past a vertical porous medium in the presence of heat source. International Journal of Heat & Technology, 37(3).

4. Akinbo, B. J., & Olajuwon, B. I. (2021). Radiation and thermal-diffusion interaction on stagnation-point flow of Walters' B fluid toward a vertical stretching sheet. International Communications in Heat and Mass Transfer, 126, 105471.

5. Akinbo, B. J., & Olajuwon, B. I. (2021). Heat transfer analysis in a hydromagnetic Walters' B fluid with elastic deformation and Newtonian heating. Heat Transfer, 50(3), 2033–2048.

6. Akinbo, B. J., Faniran, T., & Ayoola, E. O. (2015). Numerical solution of stochastic differential equations. International Journal of Advanced Research in Science, Engineering and Technology.

7. Akinbo, B. J., & Olajuwon, B. I. (2019). Heat and mass transfer in magnetohydrodynamics (MHD) flow over a moving vertical plate with convective boundary condition in the presence of thermal radiation. Sigma Journal of Engineering and Natural Sciences, 37(3), 1031–1053.

8. Akinbo, B. (2021). Influence of convective boundary condition on heat and mass transfer in a Walters’ B fluid over a vertical stretching surface with thermal-diffusion effect. Journal of Thermal Engineering, 7(7), 1784–1796.

9. Akinbo, B. J., & Olajuwon, B. I. (2019). Convective heat and mass transfer in electrically conducting flow past a vertical plate embedded in a porous medium in the presence of thermal radiation and thermo diffusion. Computational Thermal Sciences: An International Journal, 11(4).

10. Akinbo, B. J., & Olajuwon, B. I. (2025). Significance of Cattaneo-Christov heat flux model and heat generation/absorption with chemical reaction in Walters’ B fluid via a porous medium in the presence of Newtonian heating. International Journal of Modelling and Simulation, 45(1), 137–146.

Assoc. Prof. Dr. Surabhi Tiwari | Mathematics | Best Researcher Award

Assoc. Prof. Dr. Surabhi Tiwari | Mathematics | Best Researcher Award

Associate Professor at Motilal Nehru National Institute of Technology, India

Assoc. Prof. Dr. Surabhi Tiwari is a distinguished academic in Mathematics with expertise spanning topology, rough set theory, and fuzzy systems. Her contributions in Mathematics reflect a deep commitment to advancing research, teaching, and mentoring. Through her work in Mathematics, she has authored numerous high-quality publications in reputed international journals, making significant contributions to applied and theoretical aspects of the subject. Dr. Tiwari has actively participated in Mathematics conferences and workshops, presenting innovative findings that influence global research. Her strong foundation in Mathematics enables her to connect complex theories with real-world applications, fostering an environment of academic excellence. Mathematics remains the central theme of her professional journey, shaping her as an influential researcher and teacher.

Professional Profile

ORCID Profile | Google Scholar Profile | Scopus Profile

Education

Assoc. Prof. Dr. Surabhi Tiwari pursued her higher education in Mathematics, beginning with a strong foundation in the subject and advancing toward specialized research in topology, fuzzy set theory, and computational applications. Her academic qualifications in Mathematics reflect dedication to the discipline and a progressive mastery of concepts. She obtained advanced degrees focusing on Mathematics, which equipped her with analytical skills and research expertise. Her doctoral research in Mathematics emphasized general topology and merotopic structures, showcasing her innovation in theoretical frameworks. Throughout her academic journey, Mathematics has been both a tool and a passion, enabling her to bridge theory and practice. Mathematics education laid the foundation for her professional accomplishments and contributions to global research communities.

Experience

Assoc. Prof. Dr. Surabhi Tiwari has extensive professional experience in Mathematics through her teaching, research, and academic leadership roles. She has served in reputed institutions, teaching Mathematics at various levels while also contributing to curriculum development and program management. Her experience extends beyond teaching, as she has guided doctoral and master’s students in Mathematics, ensuring the growth of future researchers. With active involvement in Mathematics departments, she has also taken up administrative responsibilities, demonstrating leadership and organizational skills. Her professional journey is deeply rooted in Mathematics, from classroom teaching to international collaborations. The emphasis on Mathematics in her career highlights her continuous pursuit of excellence and her commitment to advancing both theoretical and applied aspects of the subject.

Research Interest 

Assoc. Prof. Dr. Surabhi Tiwari research interests are deeply embedded in Mathematics, focusing on general topology, rough set theory, and fuzzy subsets. Mathematics forms the backbone of her scholarly work, with a strong emphasis on extending classical concepts into new domains. Her work on proximity spaces, metric extensions, and fractional models demonstrates the application of Mathematics to diverse scientific challenges. She is also actively engaged in exploring new frameworks within Mathematics that support advanced computation and modeling. Her publications highlight innovative contributions in Mathematics, influencing both pure and applied fields. Driven by curiosity and passion, Dr. Tiwari’s research interests in Mathematics aim to expand understanding, bridge knowledge gaps, and open new directions for future mathematical inquiry.

Award and Honor

Assoc. Prof. Dr. Surabhi Tiwari has received recognition in Mathematics through her contributions as a researcher, teacher, and academic leader. Her active participation in Mathematics societies and conferences has earned her a respected place in scholarly communities. The honors she has gained reflect her influence in advancing Mathematics research and education globally. As a contributor to Mathematics-focused journals, she has been invited as a reviewer, underscoring her expertise and credibility in the discipline. Memberships in Mathematics associations further highlight her recognition within the academic world. These awards and honors affirm her role in strengthening Mathematics through impactful research, knowledge dissemination, and mentorship. Her consistent engagement in Mathematics ensures her place among prominent figures in the field.

Research Skill

Assoc. Prof. Dr. Surabhi Tiwari has developed exceptional research skills in Mathematics, enabling her to approach problems with analytical depth and innovative methods. Her ability to construct frameworks in Mathematics allows her to explore topological structures, fuzzy systems, and differential equations with precision. Proficiency in Mathematics has helped her collaborate with peers and contribute to international journals. She applies rigorous mathematical reasoning to build theories that have practical and computational implications. Mathematics-based skills like logical modeling, abstraction, and problem-solving form the core of her expertise. These research skills in Mathematics have supported her supervision of students and contributions to academic projects. By refining these Mathematics skills, she continues to influence theoretical advancements and practical applications across disciplines.

Publication Top Notes

Title: Numerical simulation of second-order hyperbolic telegraph type equations with variable coefficients
Author: S Pandit, M Kumar, S Tiwari
Journal: Computer Physics Communications

Title: Approach Merotopies and Near Filters Theory and Application
Author: JF Peters, S Tiwari
Journal: Gen

Title: Topological structures in rough set theory: a survey
Author: PK Singh, S Tiwari
Journal: Hacettepe Journal of Mathematics and Statistics

Title: Grill determined L-approach merotopological spaces
Author: M Khare, S Tiwari
Journal: Fundamenta Informaticae

Title: Cech rough proximity spaces
Author: S Tiwari, PK Singh
Journal: Matematicki Vesnik

Title: An initial-value technique to solve third-order reaction–diffusion singularly perturbed boundary-value problems
Author: M Kumar, S Tiwari
Journal: International Journal of Computer Mathematics

Title: L-approach merotopies and their categorical perspective
Author: M Khare, S Tiwari
Journal: Demonstratio Mathematica

Title: An approach of proximity in rough set theory
Author: S Tiwari, PK Singh
Journal: Fundamenta Informaticae

Title: Completing extended metric spaces: an alternative approach
Author: JF Peters, S Tiwari
Journal: Applied Mathematics Letters

Title: Approach merotopological spaces and their completion
Author: M Khare, S Tiwari
Journal: International Journal of Mathematics and Mathematical Sciences

Title: A fixed point theorem in rough semi-linear uniform spaces
Author: PK Singh, S Tiwari
Journal: Theoretical Computer Science

Title: Completion in a common supercategory of Met, UAP, wsAP and Near
Author: M Khare, S Tiwari
Journal: Demonstratio Mathematica

Title: Smirnov type compactification of rough pseudo metric spaces using proximity approach
Author: S Tiwari, PK Singh
Journal: Afrika Matematika

Title: Rough semi-uniform spaces and its image proximities
Author: S Tiwari, PK Singh
Journal: Electronic Research Archive

Title: Proximal groups: Extension of topological groups. Application in the concise representation of Hilbert envelopes on oscillatory motion waveforms
Author: S Tiwari, JF Peters
Journal: Communications in Algebra

Title: Numerical simulation of second-order one dimensional hyperbolic telegraph equation
Author: S Pandit, M Kumar, S Tiwari
Journal: Computer Physics Communications

Title: An initial value technique to solve two-point non-linear singularly perturbed boundary value problems
Author: S Tiwari, M Kumar
Journal: Applied and Computational Mathematics

Title: Ultrafilter completeness in-approach nearness spaces
Author: S Tiwari
Journal: Mathematics in Computer Science

Title: α*-Uniformities and their order structure
Author: S Tiwari
Journal: Afrika Matematika

Title: Approach merotopies and associated near sets
Author: JF Peters, S Tiwari, R Singh
Journal: Theory and Applications of Mathematics & Computer Science

Conclusion

In conclusion, Assoc. Prof. Dr. Surabhi Tiwari has established herself as a leading academic in Mathematics through her teaching, research, and professional service. Her dedication to Mathematics reflects in her education, professional experience, research interests, and publications. By contributing significantly to Mathematics, she continues to inspire students and peers worldwide. Her recognition and honors emphasize the lasting value of her Mathematics contributions. Dr. Tiwari’s journey illustrates how Mathematics can be a transformative force in advancing knowledge and solving complex challenges. With continuous involvement in Mathematics, she is set to expand her impact even further. Mathematics remains central to her legacy, ensuring her role as a significant contributor to the discipline.

Dr. Derya Bayril Aykut | Mathematics | Best Researcher Award

Dr. Derya Bayril Aykut | Mathematics | Best Researcher Award

Research Assistant at Dokuz Eylül University, Turkey

Dr. Derya Bayril Aykut has a distinguished academic profile rooted deeply in Mathematics, contributing significantly to advanced Mathematics research. Her expertise spans pure Mathematics, applied Mathematics, and innovative Mathematics-based methodologies. She has developed original Mathematics theories in geometry and kinematics while applying Mathematics to interdisciplinary fields. Mathematics is central to her academic publications, presentations, and teaching philosophy. With Mathematics as a core foundation, she actively engages in Mathematics communities, contributing to Mathematics conferences, Mathematics seminars, and Mathematics collaborations. Mathematics informs every stage of her scholarly work, from problem formulation to solution development. Her commitment to Mathematics extends beyond research, integrating Mathematics into student mentorship and academic service, reflecting a career entirely shaped by Mathematics excellence.

Professional Profile

Google Scholar

Education 

Dr. Derya Bayril Aykut’s educational journey is firmly anchored in Mathematics, with a doctoral degree in Mathematics and postgraduate specialization in Mathematics. She pursued Mathematics studies at renowned institutions, advancing her understanding of Mathematics theories, Mathematics applications, and Mathematics research techniques. Her doctoral work focused on the application of Mathematics to Lie group analysis and kinematics, demonstrating a mastery of Mathematics problem-solving. Through her education, Mathematics became the framework for her intellectual growth, allowing her to explore both theoretical Mathematics and applied Mathematics. Her continuous academic involvement in Mathematics ensures she stays updated on global Mathematics advancements. Education in Mathematics not only shaped her expertise but also reinforced her dedication to promoting Mathematics in teaching and scholarly projects.

Experience 

Dr. Derya Bayril Aykut’s professional experience reflects a continuous engagement with Mathematics in academia and research. She has taught Mathematics courses, including Calculus I and Calculus II, introducing students to foundational Mathematics concepts and advanced Mathematics techniques. Her professional contributions involve presenting Mathematics research at conferences, publishing Mathematics articles, and participating in Mathematics-focused scientific organizations. Mathematics informs her approach to problem-solving, enabling her to address complex challenges through Mathematics models. She collaborates internationally with Mathematics scholars to expand Mathematics knowledge and practical applications. Her career trajectory demonstrates a seamless integration of Mathematics in teaching, research, and service, ensuring Mathematics remains at the center of her professional identity, inspiring future Mathematics scholars through her academic contributions.

Research Interest 

Dr. Derya Bayril Aykut’s research interests lie within advanced Mathematics, including geometry, kinematics, and applications of Mathematics to physical systems. She investigates Mathematics frameworks for rigid-body motions, Lie group theory, and space kinematics, demonstrating the versatility of Mathematics in addressing real-world and abstract problems. Her work explores Mathematics methods in both theoretical Mathematics and applied Mathematics contexts, bridging pure Mathematics research with interdisciplinary studies. She emphasizes the role of Mathematics in modeling, simulation, and computational problem-solving. Her publications showcase Mathematics innovations that contribute to global Mathematics discourse. She is dedicated to exploring new Mathematics perspectives, ensuring her research remains relevant and impactful within the evolving landscape of Mathematics sciences and applications.

Award and Honor

Dr. Derya Bayril Aykut has received recognition for her contributions to Mathematics, reflecting her commitment to Mathematics advancement. Her achievements in Mathematics include publishing impactful Mathematics research, presenting Mathematics findings at prestigious Mathematics conferences, and receiving honors for excellence in Mathematics education and scholarship. Memberships in Mathematics associations further underline her leadership within the Mathematics community. She has been part of collaborative Mathematics projects recognized nationally and internationally. These awards and honors acknowledge her dedication to Mathematics progress and the dissemination of Mathematics knowledge. Each recognition strengthens her resolve to further integrate Mathematics into academia, research, and professional service, ensuring Mathematics remains a driving force in her academic career.

Research Skill

Dr. Derya Bayril Aykut possesses a broad range of Mathematics research skills, including theoretical Mathematics analysis, applied Mathematics modeling, and computational Mathematics simulations. She excels in Mathematics problem formulation, solution optimization using Mathematics techniques, and interpretation of Mathematics results. Her proficiency in advanced Mathematics tools and programming enhances her ability to work on complex Mathematics challenges. Skilled in both pure Mathematics and applied Mathematics, she bridges the gap between Mathematics theory and practice. Her expertise extends to writing Mathematics research papers, delivering Mathematics presentations, and leading Mathematics collaborations. These Mathematics skills allow her to contribute meaningfully to academic Mathematics discussions, producing high-quality Mathematics outputs recognized in the global Mathematics community.

Publication Top Notes

Title: On plane-symmetric rigid-body motions
Author: D Bayril, JM Selig
Journal: Journal of Geometry

Title: The geometry of line-symmetric rigid-body motions
Author: D Bayril, JM Selig
Journal: Differential Geometry and its Applications

Title: Lie Algebra Contributions to Instantaneous Plane Kinematics
Author: İ Karakılıç, DB Aykut
Journal: Ikonion Journal of Mathematics

Conclusion

Dr. Derya Bayril Aykut’s career is a testament to the transformative power of Mathematics, as every stage of her academic and professional life has been guided by Mathematics principles. From her Mathematics education to her Mathematics research, teaching, and publications, Mathematics serves as the foundation of her contributions to academia. Her dedication to Mathematics excellence is evident in her achievements, skills, and collaborations, all of which enhance the global Mathematics landscape. She continues to promote Mathematics through active participation in Mathematics communities and projects. Her legacy in Mathematics will inspire future generations of Mathematics scholars to embrace Mathematics as both a discipline and a lifelong pursuit.