Mawia Osman | Quantum Chemistry | Research Excellence Award

Dr. Mawia Osman | Quantum Chemistry | Research Excellence Award

China West Normal University, China

Dr. Mawia Osman is a dedicated researcher in advanced mathematical sciences, recognized for her work at the intersection of fuzzy systems, nonlinear dynamics, and computational analysis. She built a strong academic foundation through a BSc in Science and Technology, followed by qualifying studies in mathematical sciences, an MSc in pure and applied sciences, and a PhD in Mathematics and Statistics from Northwest Normal University, China. Her doctoral journey was supported by the prestigious Chinese Government Scholarship (CSC), awarded for excellence and potential in research. Throughout her academic progression, she has developed expertise in fuzzy analysis, fuzzy differential and fractional differential equations, nonlinear partial differential equations, fuzzy integral equations, and numerical analysis. Her broader research interests also extend to fuzzy mathematical modeling, quantum calculus, fractal calculus, nonlinear analysis, and biomedical research, reflecting a multidisciplinary vision. Dr. Osman’s scholarly work contributes to solving complex real-world problems using advanced mathematical frameworks, positioning her as a promising researcher in modern applied mathematics. Her commitment to research, continuous learning, and innovative thinking defines her professional identity, and she remains focused on expanding the theoretical and practical applications of fuzzy and nonlinear systems in scientific and technological advancements.

Profiles: Orcid | Google Scholar

Featured Publications

Shah, S.O., Tikare, S., & Osman, M. (2023). Ulam Type Stability Results of Nonlinear Impulsive Volterra–Fredholm Integro-Dynamic Adjoint Equations on Time Scale. Mathematics, 11(21).

Ali, U., & Osman, M. (2023). On Consequences of Carreau Nanofluid Model with Dufour–Soret Effects and Activation Energy Subject to New Mass Flux Condition: A Numerical Study. Mathematics, 11(11).

Osman, M., Xia, Y., Omer, O.A., & Hamoud, A. (2022). On the Fuzzy Solution of Linear–Nonlinear Partial Differential Equations. Mathematics, 10(13).

Omer, O.A., Saibi, K., Abidin, M.Z., & Osman, M. (2022). Parametric Marcinkiewicz Integral and Its Higher-Order Commutators on Variable Exponents Morrey–Herz Spaces. Journal of Function Spaces, Article 7209977.

Osman, M., Almahi, A., Omer, O.A., Mustafa, A.M., & Altaie, S.A. (2022). Approximation Solution for Fuzzy Fractional-Order Partial Differential Equations. Fractal and Fractional, 6(11).

Osman, M., Xia, Y., Marwan, M., & Omer, O.A. (2022). Novel Approaches for Solving Fuzzy Fractional Partial Differential Equations. Fractal and Fractional, 6(11).

Osman, M., Gong, Z., Mustafa, A.M., & Yang, H. (2021). Solving Fuzzy (1+n)-Dimensional Burgers’ Equation. Advances in Difference Equations, Article 3376.

Xia Yan | Raman Spectroscopy | Young Scientist Award

Dr. Xia Yan | Raman Spectroscopy | Young Scientist Award

Lyuliang University | China

Xia Yan is an accomplished Associate Professor at Lyuliang University, recognized for her growing contributions to marine detection and optical sensing research. She holds a strong academic foundation built through a Bachelor’s degree in Physics, followed by a Master of Engineering in Optical Engineering, and culminating in a Ph.D. in Marine Detection Technology from the Ocean University of China. Throughout her academic and professional journey, she has developed deep expertise in ocean observation technologies, optical signal processing, and advanced detection systems for marine environments. Since joining Lyuliang University in 2022, she has been actively engaged in teaching, research, and guiding students in cutting-edge topics related to optical instrumentation and marine measurement techniques. Her research interests include underwater optical imaging, environmental monitoring sensors, and intelligent detection technologies for marine applications. She has contributed to several research projects, published scholarly work, and earned recognition for her innovative approaches in marine technology development. As an emerging researcher, she continues to explore interdisciplinary methods that enhance the precision and efficiency of marine detection systems. With a strong commitment to scientific advancement, she aims to expand her research impact and foster technological progress in marine optical sensing and detection innovation.

Profile: Scopus

Featured Publication

Xue, G.P., Yu, G., & Fen Xi, G.P. (2024). “SERS detection of carbendazim based on convex polyhedrons-shaped Au@4-ATP@Au nanoparticle” in Spectroscopy and Spectral Analysis (Guang Pu Fen Xi).