Saddam Hossain | Computer Science | Best Researcher Award

Mr. Saddam Hossain | Computer Science | Best Researcher Award

Mr. Saddam Hossain | Computer Science – Lecturer at World University of Bangladesh, Bangladesh

Saddam Hossain is an emerging scholar and dedicated academic in the field of Applied Mathematics, currently serving as a Lecturer at the World University of Bangladesh. With a deep-rooted passion for mathematical modeling and problem-solving, he has steadily built a career marked by academic rigor, teaching innovation, and interdisciplinary research. His interests lie at the intersection of pure mathematics and applied sciences, with particular expertise in numerical methods, cosmological modeling, and time series forecasting. Known for his methodical thinking and intellectual curiosity, Saddam consistently contributes to both academia and society through his commitment to quality education and impactful research.

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Education:

Saddam completed his Bachelor of Science and Master of Science degrees in Applied Mathematics from Noakhali Science & Technology University. During his undergraduate studies, he secured a First Class 4th position with a CGPA of 3.57 out of 4, and in his postgraduate program, he attained a First Class 5th rank with a CGPA of 3.50. His academic training emphasized rigorous mathematical foundations along with applied problem-solving, preparing him to conduct advanced research. Both his thesis and project work demonstrate a focus on cosmological mathematics and numerical approximation methods — setting the stage for his ongoing academic journey. His educational accomplishments reflect not only strong analytical aptitude but also perseverance and academic consistency.

Experience:

Since January 2019, Saddam Hossain has been contributing to higher education as a Lecturer in the Basic Science Division at the World University of Bangladesh. His role extends beyond teaching to curriculum development, creative lesson planning, and academic mentorship. He has been instrumental in designing effective mathematical modules, integrating both theoretical frameworks and practical applications. Saddam’s teaching philosophy is student-centered, emphasizing clarity, logic, and conceptual depth. He has also taken part in IT and programming training, enhancing his technical capacity to conduct and guide computational research.

Research Interest:

Saddam’s research interests are diverse yet deeply grounded in mathematical applications. His focus areas include numerical methods, mathematical physics, cosmology, econometric modeling, and the application of statistical tools in agriculture and economics. He has shown an aptitude for merging theoretical mathematics with real-world data interpretation. From studying inflation prediction models to exploring the mathematical underpinnings of the universe through Friedmann equations, Saddam’s work represents a bold effort to integrate classical mathematics with contemporary scientific inquiries. His computational skills in MATLAB, FORTRAN, and MATHEMATICA support his analytical explorations and enable precise modeling.

Award:

Saddam Hossain’s commitment to academic excellence and research has earned him a reputation as a high-potential educator and scholar. Though currently in the early stages of his award journey, his top academic ranking and leadership in several peer-reviewed publications have laid a solid foundation for national and international recognition. His consistent publication record and contribution to interdisciplinary fields highlight his suitability for honors such as the “Best Researcher Award,” which would not only acknowledge his existing achievements but also motivate future breakthroughs in mathematical research.

Publication:

📊 “Linear Trend Line Analysis by the Method of Least Square for Forecasting Rice Yield in Bangladesh” (2022), published in Journal of Mechanics of Continua and Mathematical Sciences, cited for its application in agricultural policy forecasting.
🌌 “A New Mathematical Approach Based on the Friedmann Equation” (2020), featured in IOSR Journal of Applied Physics, bridges cosmological theory with mathematical formulation.
🧮 “A New Analysis of Approximate Solutions for Numerical Integration Problems with Quadrature-based Methods” (2020), published in Pure and Applied Mathematics Journal, is widely used in computational math studies.
🐄 “A Mathematical Study of Break-Even Analysis Based on Dairy Farms in Bangladesh” (2020), in International Journal of Economic Behavior and Organization, applies quantitative models in agribusiness.
🔢 “Operations and Actions of Lie Groups on Manifolds” (2020), featured in American Journal of Computational Mathematics, explores abstract algebraic structures with geometric implications.
📉 “A Comparative Exploration on Different Numerical Methods for Solving Ordinary Differential Equations” (2020), from JMCMS, offers key insights for numerical analysis students.
📈 “Could Econometric Models Predict Higher Inflation? Time Series Modelling and Inflation Rate Forecasting” (2024), published in American Scientific Research Journal for Engineering, Technology, and Sciences, provides a predictive framework for economic indicators.

Conclusion:

Saddam Hossain exemplifies the qualities of a dynamic researcher and committed educator whose work consistently blends academic rigor with practical relevance. His academic journey, shaped by strong performance, research curiosity, and educational leadership, positions him as a deserving nominee for the Best Researcher Award. Through his contributions to both theoretical and applied mathematics, he not only enriches his field but also sets a benchmark for future researchers in Bangladesh and beyond. Recognizing Saddam at this stage of his career would not only validate his efforts but also encourage further innovation and scholarly excellence in mathematical sciences.

 

 

 

 

Dr. Xiangzhao Xu | Computational Mechanics | Best Researcher Award

Dr. Xiangzhao Xu | Computational Mechanics | Best Researcher Award 

Dr. Xiangzhao Xu, Beijing Institute of Technology, China

Dr. Xiangzhao Xu is an Associate Researcher at the School of Mechatronical Engineering, Beijing Institute of Technology. He received his Ph.D. in Weaponry Science and Technology through a direct doctoral program following his Bachelor’s degree in Engineering Mechanics from the same institution. Dr. Xu’s research focuses on the failure behavior of reinforced concrete under high-impact loading, projectile penetration mechanisms, and the development of advanced numerical simulation methods. He has led and participated in multiple high-level national research projects funded by the National Natural Science Foundation of China and the China Postdoctoral Science Foundation. Over the past five years, he has published more than 40 academic papers, including 35 SCI-indexed and 10 EI-indexed publications, and has secured 7 invention patents and 16 software copyrights. He has received prestigious recognitions such as the National Outstanding Doctoral Dissertation Nomination Award and the Outstanding Postdoctoral Fellow Award of Beijing Institute of Technology. Dr. Xu is an editorial board member of Scientific Reports and serves as a youth editorial board member for the Journal of Armament Engineering. Actively engaged in academic service, he has been a committee member and invited speaker at national conferences and is a recognized peer reviewer for over 10 international journals.

Professional Profile:

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Summary of Suitability for Best Researcher Award – Xiangzhao Xu

Dr. Xiangzhao Xu, currently an Associate Researcher at the School of Mechatronical Engineering, Beijing Institute of Technology, is a highly qualified and exceptionally accomplished candidate for the Best Researcher Award. Based on his educational background, research leadership, prolific academic output, and national recognition, he is not only suitable but a top contender for this prestigious honor.

📚 Education Background

  • 🎓 Ph.D. in Weaponry Science and Technology
    Beijing Institute of Technology (2011.9 – 2018.6)
    ➤ Direct Ph.D. from Bachelor’s

  • 🧮 Bachelor’s in Engineering Mechanics
    Beijing Institute of Technology (2007.9 – 2011.7)

🧑‍💼 Research & Academic Work Experience

  • 🧑‍🔬 Associate Researcher
    School of Mechatronical Engineering, BIT
    (2021.6 – Present)

  • 🧑‍🏫 Postdoctoral Researcher & Co-Supervisor
    Mechanics Station, BIT, under Prof. Jianguo Ning
    (2018.7 – 2021.6)

🔬 Research Projects

  • 💥 Principal Investigator of 4 major funded projects:

    • NSFC General Program: High-speed projectile penetration into multi-layer targets

    • NSFC Young Scientists Fund: Concrete failure under explosive loads

    • Postdoc Special Support: Failure mechanism of reinforced concrete

    • Postdoc General Fund: Coupling algorithms for explosive shock simulation

  • 💻 Participant in a major NSFC Key Program on explosion and fluid-structure interaction (Funding: ¥3 million)

🏆 Academic Achievements

  • 📄 40+ High-quality Publications
    ➤ 35 SCI-indexed (29 as 1st/corresponding author)
    ➤ 10 EI-indexed (9 as 1st/corresponding author)
    ➤ Published in Int. J. Impact Eng., Phys. Fluids, J. Comput. Phys., etc.

  • 🧠 7 Invention Patents (3 as 1st inventor)

  • 💽 16 Software Copyrights (11 as 1st author)

🎖️ Awards & Honors

  • 🏅 National Outstanding Doctoral Dissertation Nomination Award – Armament Society, 2018

  • 🏅 Outstanding Doctoral Dissertation Award – Beijing Institute of Technology, 2018

  • 🌟 Outstanding Postdoctoral Fellow – Beijing Institute of Technology, 2019

  • ✍️ Editorial Board MemberScientific Reports (SCI Journal)

  • ✍️ Youth Editorial BoardJournal of Armament Engineering (EI Journal)

  • 📢 Invited Speaker at the 14th National Explosion Mechanics Academic Conference

  • 👨‍⚖️ Reviewer for 10+ Journals, incl. Phys. Fluids, Int. J. Impact Eng., etc.

  • 🥇 Reviewer of the YearDefence Technology, 2022

  • 🌟 Outstanding ReviewerJournal of Armament Engineering, 2023

Publication Top Notes:

A volume rendering visualization method oriented to explosion field features

Virtual Simulation System for Reduction and Analysis of Explosive Fields

A novel coupled Euler–Lagrange method for high resolution shock and discontinuities capturing

Optimization analysis of state equation and failure criterion for concrete slab subjected to impact loading

Coupled finite-volume method and smoothed-particle hydrodynamics method for numerical simulation of interactions between inviscid shock waves and structures

A novel high resolution fifth-order weighted essentially non-oscillatory scheme for solving hyperbolic equations