Atta Ullah | Mathematics | Best Researcher Award

Atta Ullah | Mathematics | Best Researcher Award

Atta Ullah,Mathematical and Statistical Sciences, Institute of Autonomous System, Department of Fundamental and Applied Sciences, Universiti Teknologi PETRONAS, 32610, Seri Iskandar, Perak Darul Ridzuan, Malays,,Malaysia

Atta Ullah 🎓 is a dedicated PhD scholar in Applied Mathematics at Universiti Teknologi PETRONAS, Malaysia. Born on April 15, 1995, in Khyber Pakhtunkhwa, Pakistan, he excels in mathematical modeling, numerical analysis, and computational mathematics. His research focuses on real-world problem-solving, including mathematical biology and differential equations. With experience as a lecturer and research assistant, he actively contributes to academia. He has published extensively in reputed journals 📚 and serves as a reviewer for international journals. His goal is to advance applied mathematics and inspire future researchers. 🌟

Publication profile

scopus

Education

Atta Ullah holds a PhD in Applied Mathematics from Universiti Teknologi PETRONAS, Malaysia (ongoing). He earned his MS in Mathematics (Applied Mathematics) from the University of Science & Technology Bannu (2018-2020) with an outstanding CGPA of 4.0/4.0 (91.75%). His BS in Numerical Sciences (2013-2017) from the University of Peshawar focused on calculus, algebra, topology, and numerical analysis. He completed his F.Sc (2011-2013) from The City College of Arts and Science, Peshawar, scoring 75.09%, and S.S.C (2009-2011) from Govt. High School Matta Qilla, scoring 75.02%. Additionally, he obtained a Teaching Certificate from AIOU Islamabad with 70.2% marks (2016-2017). His academic excellence was recognized with the First Position Award in MPhil Applied Mathematics. 🏆

Experience

Atta Ullah has significant experience in research and teaching. Currently, he is a Research & Teaching Assistant at Universiti Teknologi PETRONAS, Malaysia, where he assists master’s students, teaches undergraduate mathematics, and conducts high-level research 📊. Previously, he worked as a Research Assistant & Visiting Lecturer (2018-2022) at the University of Science & Technology Bannu, Pakistan, where he guided students in applied mathematics and maintained research labs. He also served as a Mathematics Lecturer at Dreams College, Timergara, KPK, Pakistan, mentoring students and fostering a strong mathematical foundation. His research contributions include exploring mathematical models, numerical simulations, and optimization techniques. He is also a reviewer for esteemed journals. His passion for academia and dedication to research make him a valuable contributor to the field of applied mathematics. 🔬

Awards And Honors

 

Atta Ullah’s academic excellence has been recognized with First Position in MPhil Applied Mathematics 🏅. His research has been published in ISI & Scopus-indexed journals, receiving international recognition 📚. As a reviewer for reputed journals, he has contributed to maintaining high academic standards. He has also been honored for his exceptional teaching and research skills, guiding students in applied mathematics. His outstanding CGPA (4.0/4.0) in MS Mathematics reflects his dedication to academia. His commitment to mathematical modeling and computational analysis has led to multiple research publications in high-impact journals. He continues to strive for excellence, contributing to mathematical sciences and inspiring the next generation of researchers. 🌍

Research Focus

Atta Ullah’s research primarily focuses on mathematical modeling, applied and computational analysis, and real-world problem-solving. His expertise includes sensitivity analysis, numerical simulations, first-order non-linear ordinary differential equations, and mathematical biology. His work explores optimal control techniques for complex systems, including studies on marijuana consumption models, Brinkman-type nanofluids, and infectious disease modeling. He integrates applied mathematics with computational tools to enhance predictive accuracy and optimize system performance. His contributions extend to partial differential equations, hydrodynamics, and functional analysis. His research aims to provide data-driven solutions for scientific and engineering challenges. 🧮

 

Publications

📖 “Sensitivity analysis-based control strategies of a mathematical model for reducing marijuana smoking,” AIMS Bioengineering, Cited by: XX, Year: 2023.
📖 “Sensitivity Analysis-Based Validation of the Modified NERA Model for Improved Performance,” JARASET, Cited by: XX, Year: 2023.
📖 “Mathematical Model with Sensitivity Analysis and Control Strategies for Marijuana Consumption,” PDEAM, Cited by: XX, Year: 2024.
📖 “A mathematical model with control strategies for marijuana smoking prevention,” ERA, Cited by: XX, Year: 2024.
📖 “Comprehensive Validation: Enhancing the Modified NERAH Model via Rigorous Sensitivity Analysis,” JARASET, Cited by: XX, Year: 2024.
📖 “Analyzing the Dynamics of the NERAH Model via Optimal Control Technique,” Contemporary Mathematics, Cited by: XX, Year: 2024.
📖 “A Time-Fractional Model for Brinkman-Type Nanofluid with Variable Heat and Mass Transfer,” CIJCA, Cited by: XX, Year: 2022.
📖 “Exploring the Effectiveness of an Optimal Control Model for Marijuana Consumption,” Infectious Disease Modelling, Cited by: XX, Year: 2024.

Chiara Amorino | Mathematics | Young Scientist Award

Assist. Prof. Dr. Chiara Amorino | Mathematics | Young Scientist Award

Assist. Prof. Dr. Chiara Amorino, Universitat Pompeu Fabra, Spain

Assist. Prof. Dr. Chiara Amorino is an Assistant Professor at Universitat Pompeu Fabra in Barcelona, a position she has held since April 2024. She previously served as a postdoctoral researcher at the University of Luxembourg in Prof. Mark Podolskij’s group. Dr. Amorino earned her PhD in July 2020 under the supervision of Prof. Arnaud Gloter at LaMME, Université Paris-Saclay. Her research focuses on statistical inference for stochastic differential equations, exploring topics such as thresholding methods, high-frequency data, Malliavin calculus, and volatility estimation. She is also passionate about McKean-Vlasov equations, Hawkes processes, and local differential privacy.

Education

PhD in Applied Mathematics

Institution: Université Paris-Saclay, France (LaMME)

Duration: October 2017 – August 2020

Thesis Title: “Bias correction for the drift and volatility estimation of a jump diffusion and nonparametric adaptive estimation of the invariant measure”

Supervisor: Prof. Arnaud Gloter

Jury Members: Alexandre Brouste (Rapporteur), Fabienne Comte, Arnaud Gloter, Agathe Guilloux, Eulalia Nualart (Rapporteur), Fabien Panloup, Mathieu Rosenbaum

Master’s Degree in Mathematics

Institution: Università Statale di Milano, Italy

Duration: 2015 – 2017

Dissertation Title: “Randomization method and backward differential stochastic equations for optimal control”

Supervisor: Prof. Marco Fuhrman

Grade: Magna cum laude (“110/110 e lode”, First-Class Honours)

Visiting Student

Institution: Université Paris VII Diderot, France

Program: Master M2MO: Modélisation Aléatoire

Duration: September 2016 – January 2017

Bachelor’s Degree in Mathematics

Institution: Università Statale di Milano, Italy

Duration: 2012 – 2015

Professional Profiles

Google Scholar

ORCID Profile

Professional Experience

Assistant Professor
Universitat Pompeu Fabra, Barcelona, Spain
April 2024 – Present

Currently engaged in teaching, research, and academic supervision at Universitat Pompeu Fabra.

Focused on advanced topics in [insert specific subject area, e.g., mathematics, statistics, etc.].

Contributing to departmental initiatives and collaborations.

Postdoctoral Researcher
University of Luxembourg
August 2020 – March 2024

Collaborated with Prof. Mark Podolskij’s group on [insert specific research focus, e.g., stochastic processes, probability theory, etc.].

Published in high-impact journals and presented findings at international conferences.

Contributed to the development of new methodologies and computational tools in the field.

PhD Researcher
Université Paris-Saclay (LaMME Laboratory), France
September 2016 – July 2020

Conducted doctoral research under the supervision of Prof. Arnaud Gloter.

Focused on [insert specific research area, e.g., stochastic analysis, mathematical modeling, etc.].

Defended a thesis titled “[insert thesis title],” which contributed novel insights to the field.

Collaborated with interdisciplinary teams and participated in academic teaching duties.

Research Interests

Jump Diffusion Processes: Analysis and applications of stochastic processes incorporating jumps, relevant in finance and other applied fields.

High Dimensional Statistics: Developing methodologies and theoretical insights for analyzing data with a large number of variables.

Volatility Estimation: Techniques for measuring and predicting volatility in financial and stochastic systems.

Limit Theorems: Study of asymptotic behaviors and distributional approximations in probability theory.

Malliavin Calculus: Applying stochastic calculus for variations in fields like quantitative finance and stochastic analysis.

Nonparametric Statistics: Developing flexible statistical methods without assuming strict parametric models.

Stein’s Method: A probabilistic technique for assessing distributional approximations.

McKean-Vlasov SDEs: Investigations into stochastic differential equations with mean-field interactions.

Local Differential Privacy: Researching privacy-preserving mechanisms in statistical analysis and data sharing.

Minimax Risk and Convergence Rates: Studying optimality and efficiency in statistical decision-making processes.

Fractional Brownian Motion: Exploring processes with long-range dependence and their applications.

Thresholding Methods: Statistical techniques for signal processing and data analysis.

Bayesian Statistics: Combining prior information with data for statistical inference and decision-making.

Technical Skills

LaTeX

Python

R

SAS

Matlab,

C

Top Notable Publications

Contrast Function Estimation for the Drift Parameter of Ergodic Jump Diffusion Processes

Authors: C. Amorino, A. Gloter

Journal: Scandinavian Journal of Statistics

Year: 2020

Citations: 26

This paper addresses drift parameter estimation using contrast functions, offering insights into jump diffusion processes.

Parameter Estimation of Discretely Observed Interacting Particle Systems

Authors: C. Amorino, A. Heidari, V. Pilipauskaitė, M. Podolskij

Journal: Stochastic Processes and their Applications

Year: 2023

Citations: 22

A collaborative effort exploring parameter estimation in interacting particle systems observed at discrete intervals.

Unbiased Truncated Quadratic Variation for Volatility Estimation in Jump Diffusion Processes

Authors: C. Amorino, A. Gloter

Journal: Stochastic Processes and their Applications

Year: 2020

Citations: 20

Proposes a novel technique for volatility estimation using truncated quadratic variation.

Invariant Density Adaptive Estimation for Ergodic Jump–Diffusion Processes Over Anisotropic Classes

Authors: C. Amorino, A. Gloter

Journal: Journal of Statistical Planning and Inference

Year: 2021

Citations: 17

Focuses on invariant density estimation and its adaptive approach in anisotropic frameworks.

Optimal Convergence Rates for the Invariant Density Estimation of Jump-Diffusion Processes

Authors: C. Amorino, E. Nualart

Journal: arXiv preprint

Year: 2021

Citations: 9

Examines convergence rates for invariant density estimation in jump-diffusion contexts.

Rate of Estimation for the Stationary Distribution of Jump-Processes Over Anisotropic Hölder Classes

Author: C. Amorino

Journal: arXiv preprint

Year: 2020

Citations: 8

Discusses estimation rates for stationary distributions under specific anisotropic conditions.

Minimax Rate of Estimation for Invariant Densities Associated to Continuous Stochastic Differential Equations Over Anisotropic Hölder Classes

Authors: C. Amorino, A. Gloter

Journal: Scandinavian Journal of Statistics

Year: 2024

Citations: 7

A forthcoming study delving into minimax rates for invariant density estimations in stochastic differential equations.

On the Nonparametric Inference of Coefficients of Self-Exciting Jump-Diffusion

Authors: C. Amorino, C. Dion-Blanc, A. Gloter, S. Lemler

Journal: Electronic Journal of Statistics

Year: 2022

Citations: 6

Investigates nonparametric inference for coefficients in self-exciting jump-diffusion models.

Joint Estimation for Volatility and Drift Parameters of Ergodic Jump Diffusion Processes via Contrast Function

Authors: C. Amorino, A. Gloter

Journal: Statistical Inference for Stochastic Processes

Year: 2021

Citations: 6

Proposes methods for simultaneous estimation of volatility and drift parameters.

Estimation of the Invariant Density for Discretely Observed Diffusion Processes: Impact of the Sampling and the Asynchronicity

Authors: C. Amorino, A. Gloter

Journal: Statistics

Year: 2023

Citations: 5

Analyzes the effects of sampling and asynchronicity on invariant density estimation.

 

 

 

 

 

 

Noor Saeed Khan | Mathematics | Research Citation Excellence Award

Assist. Prof. Dr. Noor Saeed Khan | Mathematics | Research Citation Excellence Award

Assist. Prof. Dr. Noor Saeed Khan, University of Education Lahore, Attock Campus, Attock, Pakistan

Assistant Professor Dr. Noor Saeed Khan is currently serving as an Assistant Professor of Mathematics at the University of Education Lahore, Attock Campus, Pakistan. His academic and professional career highlights his expertise in fluid mechanics, mathematical modeling, and numerical analysis. Dr. Khan’s teaching portfolio includes various undergraduate and postgraduate mathematics courses, and he has significantly contributed to student supervision at multiple academic levels.

Education:

SSC
Institution: Govt. High School Sabir Abad, Karak, Khyber Pakhtunkhwa, Pakistan

FSc
Institution: Govt. Degree College Sabir Abad, Karak, Khyber Pakhtunkhwa, Pakistan

BSc
Institution: Govt. Post Graduate College Karak, Khyber Pakhtunkhwa, Pakistan

MSc Mathematics
Institution: Department of Mathematics, University of Peshawar, Peshawar, Khyber Pakhtunkhwa, Pakistan

MS Mathematics
Institution: FAST-National University of Computer and Emerging Sciences, Hayat Abad, Peshawar Campus

PhD Mathematics
Institution: Department of Mathematics, Abdul Wali Khan University, Mardan, Khyber Pakhtunkhwa, Pakistan

Post-Doctorate
Title: A Novel Assessment of Nanofluids Thermodynamics Stability Simulated Through Homotopy Analysis Method
Institution: KMUTT-Fixed Point Research Laboratory, Fixed Point Theory and Applications Research Group, Theoretical and Computational Science Center (TaCS), Faculty of Science, King Mongkut’s University of Technology Thonburi (KMUTT), Bangkok, Thailand

Professional Profiles:

Google Scholar

Professional Experience:

Dr. Khan began his career as an Assistant Professor at the University of Education Lahore in 2020 and has served at both the Multan and Attock campuses. His cumulative teaching and research experience span multiple years, contributing to both academic growth and institutional development.

Research Interests:

Dr. Khan’s research areas include:

Fluid Mechanics and Thermodynamics: Expertise in Newtonian and non-Newtonian fluids, nanofluids, and gyrotactic microorganisms.

Numerical Methods and Modeling: Application of advanced mathematical techniques like HAM for solving complex fluid mechanics problems.

He has also led a Higher Education Commission (HEC)-funded research project worth PKR 1 million, focusing on enhanced thermal conductivity in nanofluids.

Publications:

Thin film flow of a second-grade fluid in a porous medium past a stretching sheet with heat transfer
Published in: Alexandria Engineering Journal (Elsevier), Vol. 57, Issue 2, Pages 1019-1031 (2017)
Impact Factor: 6.2
DOI: 10.1016/j.aej.2017.01.036

Thermophoresis and thermal radiation with heat and mass transfer in a magnetohydrodynamic thin film second-grade fluid of variable properties past a stretching sheet
Published in: European Physical Journal Plus (Springer Nature), 132, 11 (2017)
Impact Factor: 2.8
DOI: 10.1140/epjp/i2017-11277-3

Brownian motion and thermophoresis effects on MHD mixed convective thin film second-grade nanofluid flow with Hall effect and heat transfer past a stretching sheet
Published in: Journal of Nanofluids (American Scientific Publisher), 6(5): 812-829 (2017)
Impact Factor: Pending for 2025
DOI: 10.1166/jon.2017.1383

Magnetohydrodynamic nanoliquid thin film sprayed on a stretching cylinder with heat transfer
Published in: Applied Sciences (MDPI), 7(3), 271 (2017)
Impact Factor: 2.5
DOI: 10.3390/app7030271

Mixed convection in gravity-driven thin film non-Newtonian nanofluids flow with gyrotactic microorganisms
Published in: Results in Physics (Elsevier BV), 7:4033-4049 (2017)
Impact Factor: 4.4
DOI: 10.1016/j.rinp.2017.10.017

Flow and heat transfer in water-based liquid film fluids dispensed with graphene nanoparticles
Published in: Results in Physics (Elsevier BV), 8:1143-1157 (2018)
Impact Factor: 4.4
DOI: 10.1016/j.rinp.2018.01.032

Non-Newtonian nanoliquids thin film flow through a porous medium with magnetotactic microorganisms
Published in: Applied Nanoscience (Springer Nature), 8:1523-1544 (2018)
Impact Factor: 3.674
DOI: 10.1007/s13204-018-0834-5

Magnetohydrodynamic second-grade nanofluid flow containing nanoparticles and gyrotactic microorganisms
Published in: Computational and Applied Mathematics (Springer Nature), 37:6332-6358 (2018)
Impact Factor: 2.5
DOI: 10.1007/s40314-018-0683-6

Bioconvection in second-grade nanofluid flow containing nanoparticles and gyrotactic microorganisms
Published in: Brazilian Journal of Physics, 48(4):227-241 (2018)
Impact Factor: 1.5
DOI: 10.1007/s13538-018-0567-7

Study of two-dimensional boundary layer flow of a thin film fluid with variable thermo-physical properties in three-dimensional space
Published in: AIP Advances, 8(10):105318 (2018)
Impact Factor: 2.6
DOI: 10.1063/1.5053808

Conclusion:

Assist. Prof. Dr. Noor Saeed Khan is a strong candidate for the Research Citation Excellence Award, thanks to his prolific contributions to applied mathematics and fluid dynamics. His research is widely published and cited, demonstrating relevance and innovation. To enhance his candidacy, increased community engagement, leadership in funded projects, and interdisciplinary collaborations could further strengthen his impact.