Abubakr WSU Muhammed
Assistant Lecturer
College: Science
Department: Physics
Email: abubakr.wsu@uor.edu.krd
Philosophy of Teaching
Philosophy of TeachingThe true measure of progress in any nation lies in the level of its knowledge and scientific advancement. One of the primary reasons I chose to become a university lecturer is my deep desire to contribute to the development of science in our region. I am driven by clear goals and a strong work ethic, and I have developed a strategic plan to guide my efforts over time.
My objectives include improving the quality of education, enhancing the scientific qualifications of faculty members, forming dedicated research groups, publishing in high-impact international journals, establishing advanced laboratories, and integrating computer-based tools across all areas of physics instruction. I also aim to evaluate and update the academic programs to create better opportunities for our graduates.
Undoubtedly, the success of these initiatives depends on the collaboration and support of the university community, including staff, students, the college dean, and the president of Raparin University.
Academic Titles
| Academic title | Place | Country | Year granted |
|---|---|---|---|
| Assistant Lecturer | زانکۆی ڕاپەڕین | Iraq | 2021-07-26 |
Workshops and Trainings
| Event Type | Title | Place | Date | Level |
|---|---|---|---|---|
| Workshop | 1st Semester Course book Presentation | هۆڵی ئەنجومەنی کۆلێژی زانست | 2024-09-29 | Local |
Undergraduate Teaching
| Subject | Department | Stage | Academic Year |
|---|---|---|---|
| Advanced Electricity Lab | General & Applied Physics | Second Stage | 2025-2026 |
| Advanced Electricity theory | General & Applied Physics | Second Stage | 2025-2026 |
| Second Semester-Advanced Electricity Lab | General & Applied Physics | Second Stage | 2024-2025 |
| First Semester-Advanced Electricity Lab | General & Applied Physics | Second Stage | 2024-2025 |
Journal Papers
- Effect of Glycerol Content on Crystallinity, Dielectric Behavior and Ionic Transport of CS–Dextran–LiClO4–Al2O3 Films. Journal of Applied Polymer Science - 2026
- Glycerol-Driven Amorphisation and Enhanced Ion Transport in Chitosan–Dextran–NaI/Al2O3 Nanocomposite Polymer Electrolytes. Journal of Polymers and the Environment - 2026
- Glycerol-driven electrical ion transport enhancement in NaI-doped TiO₂dextran–sorbitol polymer electrolytes. Emergent Materials - 2026
- Role of Glycerol Content in Modulating Structural and Electrochemical Properties of Chitosan –Dextran–KSCN–TiO2 Polymer Electrolytes. ChemistrySelect - 2026
- Glycerol Plasticization Boosts Ionic Conductivity in NH4SCN/ZnO-Doped Chitosan–Dextran Electrolytes. Journal of Electronic Materials - 2026
- Optimizing Electrochemical Performance of Biopolymer Electrolytes: Enhancing Ion Transport in CS: MC-Based Polymer Electrolytes Through Glycerol Plasticization and TiO2 Nanocomposite Reinforcement. Polymer-Plastics Technology and Materials - 2025
- Molecular-level insights into glycerol-assisted ion transport and dielectric behavior of CS–PVA–NaSCN–Al2O3 polymer electrolytes. Journal of Materials Science - 2025
- Structural and Electrical Properties of Plasticized CS:PVP:KNO3:Al2O3 Nanocomposite Polymer Electrolytes. Journal of Macromolecular Science, Part B - 2025
- Influence of Glycerol Plasticization on Ionic Conductivity and Structural Properties of MC:Dextran-Based Nanocomposite Polymer Electrolytes. Journal of Electronic Materials - 2025
- Mechanically induced water remediation: investigating the kinetic and thermodynamic pathways for optimizing Cr (VI) reduction using ZnS nano-piezo catalyst. Reaction Kinetics, Mechanisms and Catalysis - 2025
- Glycerol-plasticized chitosan–sorbitol/NaNO3 electrolytes reinforced with TiO2 nanofillers: A structural and ionic study. Journal of Elastomers & Plastics - 2025
- Impact of Glycerol Content on the Electrochemical and Dielectric Behavior of MC-CS-Sorbitol-TiO2 Polymer Electrolytes. Journal of Macromolecular Science, Part B - 2025
- Modulation of ion dynamics and electrical dielectric characteristics in MC:NaF polymer electrolytes through glycerol incorporation. Ionics - 2025
- Enhancing ion transport in MC/dextran-based polymer electrolytes: Effect of glycerol plasticization on nanocomposite properties. Electrochimica Acta - 2025
- Synergistic effects of glycerol plasticization on the structural, electrical and electrochemical characteristics of MC:NaNO3 solid polymer electrolytes. Polymer Bulletin - 2025
- The role of glycerol in modulating ionic transport and electrochemical performance of PEO:NaCl solid polymer electrolytes. Journal of Polymer Research - 2025
- Effect of Glycerol as a Plasticizer on the Performance of PEO:NaNO3-Based Solid Polymer Electrolytes. Journal of Electronic Materials - 2025
- Glycerol as a Multifunctional Modifier: Synergistic Enhancement of Electrical and Structural Properties in PEO:NaF Electrolytes. Journal of Electronic Materials - 2025
- Enhancing ionic conductivity in MC:NaCl polymer electrolytes through glycerol optimization: structural and electrochemical perspectives. Polymer Bulletin - 2025
- Glycerol-Induced Enhancement of Ionic Transport and Dielectric Properties in LiNO3-Doped Methyl Cellulose Polymer Electrolytes. Ionics - 2025

