Emran Eisa Saleh | High energy physics | Best Researcher Award

Assoc. Prof. Dr. Emran Eisa Saleh | High energy physics | Best Researcher Award

Associate professor in physics, faculty of science, University of Aden | Yemen

Dr. Emran Eisa Saleh is a highly accomplished Associate Professor of Experimental Nuclear Physics at the University of Aden, Yemen. With a career spanning over two decades, he has contributed extensively to the fields of radiation physics, natural radioactivity assessment, and gamma-ray shielding materials. His academic journey and research output demonstrate a deep commitment to scientific advancement and academic excellence in the Arab world and beyond.

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📚 Early Academic Pursuits

Dr. Saleh began his academic career with a B.Sc. in Physics from the University of Aden in 1996, laying the foundation for his future in nuclear science. He pursued a Master’s degree in Nuclear Physics at the same university in 2006, focusing on the innovative topic of “Doped polymers as gamma rays dosimetry”. His academic curiosity led him to earn a Ph.D. in Experimental Nuclear Physics from Assiut University, Egypt, in 2012, with a dissertation titled “Studies of natural radioactivity levels in some rocks, soil and water samples from Yemen and Egypt”.

👨‍🏫 Professional Endeavors

Dr. Saleh’s professional journey is marked by progressive academic roles, beginning as a Demonstrator in 2002 and advancing to Assistant Lecturer, Lecturer, and Associate Professor by 2017. He has held key positions such as Vice Dean for Academic Affairs and Head of the Physics Department at the University of Aden. From 2019 to 2021, he expanded his research network during a Postdoctoral Fellowship at Ain Shams University, Egypt.

🔬 Contributions and Research Focus

Dr. Saleh’s research is primarily centered on natural and anthropogenic radioactivity, radiation dosimetry, environmental radiological hazards, and nuclear shielding materials. His pioneering work includes studies on radiological impacts of building materials, soil contamination, hot spring water radioactivity, and novel glass systems for radiation protection. He has authored over 35 internationally recognized papers, many published in peer-reviewed journals such as Radiation Physics and Chemistry, Journal of Geochemical Exploration, and Acta Geophysica.

🌍 Impact and Influence

With a Google Scholar H-index of 13 and an i10-index of 15, Dr. Saleh’s research has had a measurable impact on the scientific community. His works are frequently cited by academics and researchers involved in radiation monitoring, environmental protection, and materials science. His collaborations with international scholars underscore his influence in both regional and global scientific spheres.

📈 Academic Cites and Research Metrics

Dr. Saleh’s academic footprint is significant, with his scholarly works cited in journals indexed by Scopus, Web of Science, and Google Scholar. His ORCID ID (0000-0003-4385-6442) confirms his scholarly identity across platforms. Many of his publications are among the top cited works in radiation shielding and environmental radioactivity studies in Yemen.

🧪 Research Skills

Dr. Saleh possesses high-level research competencies in:

  • Gamma spectroscopy

  • Dosimetric materials development

  • Radiation hazard assessment

  • Environmental sampling and analysis

  • Gamma-ray shielding evaluation

He is also proficient in using analytical tools and simulation techniques for nuclear and radiation physics research.

🎓 Teaching Experience

A dedicated educator, Dr. Saleh has taught a broad range of undergraduate and postgraduate courses in nuclear physics, radiation safety, and applied physics. His teaching appointments span multiple departments at the University of Aden, including the Faculty of Education and Faculty of Science. He also has extensive supervisory experience, guiding Ph.D. and M.Sc. students in both Yemen and Egypt.

🧑‍🔬 Legacy and Future Contributions

Dr. Saleh’s legacy lies in his pioneering efforts to map and mitigate radiological risks in Yemen, a region often underrepresented in nuclear environmental research. He is a mentor, research leader, and policy contributor. His future work is expected to delve deeper into advanced radiation shielding materials, particularly glasses doped with rare earth elements, and public health implications of radiation exposure. His contributions will continue to shape nuclear science policies and environmental safety protocols in the region.

Top Noted Publications

Effect of lead doping on the structural, optical, and radiation shielding parameters of chemically synthesized ZnS nanoparticles

  • Authors: Abduelwhab B. Alwany, G.M. Youssef, Emran Eisa Saleh, Mohammed A. Algradee, Ali Alnakhlani, Belqees Hassan

  • Journal: Journal of Materials Science: Materials in Electronics

  • Year: January 2023

Novel Li₂O–BaO–PbO–B₂O₃ glasses: Physical, Structural, Optical, Gamma ray shielding, and fast neutron features

  • Authors: M.N. Murshed, M.E. El Sayed, E.E. Saleh, F. Alresheedi, M.A. Algradee

  • Journal: Optical and Quantum Electronics

  • Year: 2023 (Volume 56, Issue 4, Article 620)

Assessment of natural and anthropogenic radioactivity levels and their radiological hazards in surface soil samples around oil refinery, Aden Assoghra city, Yemen

  • Authors: Maharan Gafer Abdullah, Emran Eisa Saleh

  • Journal: Journal of Natural and Applied Science

  • Year: 2023 (Vol. 27, No. 2)

 Evaluation of nuclear radiation shielding behavior and structure properties of novel B₂O₃–Na₂O–K₂O–XBi₂O₃ glasses

  • Authors: Taya Duaa, Adel A.M. Saeed, Emran Eisa Saleh

  • Journal: Journal of Natural and Applied Science

  • Year: 2023 (Vol. 4, No. 4)

Estimation of effective doses to whole-bodies and hands of facilitating staff from radioiodine-131 ablation therapy patients

  • Authors: A.M. Al-Esaei, E.E. Saleh, S. El Maghraby, T.M. El Sayed, A.M.I. Kany

  • Journal: Egyptian Journal of Radiology and Nuclear Medicine

  • Year: 2024 (Vol. 55, Issue 1, Article 60)

 

Khaled Ali | Experimental methods | Best Researcher Award

Dr. Khaled Ali | Experimental methods | Best Researcher Award

South Valley University| Egypt

Khaled Ali is an accomplished nuclear physicist and academic with a wealth of experience in both research and education. He obtained his PhD in Nuclear Physics from the Institute of Advanced Energy at Kyoto University, Japan in 2022. With a focus on radiation physics, nuclear imaging technologies, and health physics, Khaled has become a leading researcher in his field. He has been a Lecturer and Researcher at the Faculty of Science, South Valley University, Egypt, since 2008, where he teaches, mentors, and supervises students at various academic levels.

👨‍🎓Profile

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Scopus

📘 Early Academic Pursuits

Dr. Ali’s academic journey began at South Valley University, Egypt, where he earned a Bachelor’s degree in Physics (2007) with Excellent with Honor status, ranking first in his class. He continued his studies at the same institution with a Diploma in Nuclear and Radiation Physics (2010), again graduating as the top student. In 2014, he completed a Master’s degree (M.Sc.) in Radiation Physics, laying the groundwork for his later research in environmental and medical radiation physics.

👨‍🔬 Professional Endeavors

Since 2008, Dr. Ali has held a long-standing academic position at South Valley University. His responsibilities span teaching undergraduate and postgraduate physics courses, supervising MSc and PhD theses, and engaging in cutting-edge experimental research. He has also been a visiting researcher at prestigious institutions such as Florida State University (USA) and JINR Dubna (Russia), reflecting a globally recognized career trajectory.

🔬 Contributions and Research Focus

Dr. Ali’s research lies at the intersection of nuclear technology, environmental safety, and medical imaging. He has developed 3D isotope-selective CT imaging techniques using Nuclear Resonance Fluorescence (NRF) and laser Compton scattering, contributing to non-destructive detection of nuclear materials. His studies also address natural radionuclide contamination in water, particularly in Egypt, offering public health insights and policy relevance. These works have been published in top-tier journals like Scientific Reports, IEEE Transactions on Nuclear Science, and Phys. Rev. Accel. Beams.

🌍 Impact and Influence

Dr. Ali’s research has both academic and societal impact. His work on radiological health risks in groundwater and lake systems informs environmental monitoring and water safety policy in Egypt and beyond. His NRF-CT imaging innovations are relevant for homeland security, nuclear nonproliferation, and advanced medical diagnostics. He is frequently invited to present at international conferences such as IEEE NSS/MIC and IPAC, and his research has been featured at global events including COP27.

📈 Academic Citations

Dr. Ali’s scholarly contributions are supported by an extensive publication record, with at least 9 high-impact journal papers and over 16 international conference presentations. His works are widely cited in the fields of radiation detection, environmental physics, and nuclear imaging. Metrics like h-index and total citations (not provided here) would likely reflect a solid academic footprint, given the DOIs and journal impact levels.

🧪 Research Skills

Dr. Ali is highly proficient in advanced nuclear instrumentation, gamma-ray imaging, NRF methods, and neutron activation analysis. He excels in both experimental design and data interpretation, with strong collaborative work in multinational research teams. His technical proficiency spans radioisotope quantification, radiation safety modeling, and simulation-based visualization techniques.

📚 Teaching Experience

With over 15 years of academic teaching, Dr. Ali has instructed a wide range of physics courses at the undergraduate level and specialized nuclear physics modules at the postgraduate level. His role in supervising graduate theses underlines his ability to mentor emerging scientists and support research-led education.

🏆 Awards and Honors

  • Best Student Award in both BSc (2007) and Diploma (2010) programs

  • MEXT PhD Scholarship, Government of Japan (2018)

  • Scientific Research Travel Fellowships to Russia (2011) and USA (2012)

  • Multiple Best Presentation Awards at national and international conferences, including COP27 (2022) and Basic Sciences and Sustainable Development Conference (2023)

🧭 Legacy and Future Contributions

Dr. Khaled Ali is poised to leave a lasting legacy in the realm of radiation physics and nuclear imaging. His contributions not only strengthen academic understanding but also offer practical solutions to global challenges in environmental safety and non-invasive inspection technologies. Looking forward, his continued work on fused imaging systems and isotope detection is expected to influence next-generation diagnostic tools, nuclear safety systems, and public health frameworks across the globe.

Publications Top Notes

Radiological Risks in Nasser Lake Water and their Health and Environmental Implications

  • Authors: Khaled Ali, Ahmed Abu-Taleb, Abd El-Baset Abbady, Shaban Harb

  • Journal: Scientific Reports

  • Year: 2025

Generation of flat-laser Compton scattering

  • Authors: Hideaki Ohgaki, Khaled Ali, Toshiteru Kii, Heishun Zen, Takehito Hayakawa, Toshiyuki Shizuma, Masaki Fujimoto, Yoshitaka Taira

  • Journal: Physical Review Accelerators and Beams, Vol. 26, No. 9, p. 093402

  • Year: 2023

Fusion Visualization Technique to Improve a Three-Dimensional Isotope-Selective CT Image Based on Nuclear Resonance Fluorescence with a Gamma-CT Image

  • Authors: Khaled Ali, Heishun Zen, Hideaki Ohgaki, Toshiteru Kii, Takehito Hayakawa, Toshiyuki Shizuma, Masaki Fujimoto, Yoshitaka Taira, Masahiro Katoh, Hiroyuki Toyokawa

  • Journal: Applied Sciences, Vol. 11, Article 11866

  • Year: 2021

Three-Dimensional Nondestructive Isotope-Selective Tomographic Imaging of 208Pb Distribution via Nuclear Resonance Fluorescence

  • Authors: Khaled Ali, Hideaki Ohgaki, Heishun Zen, Toshiteru Kii, Takehito Hayakawa, Toshiyuki Shizuma, Hiroyuki Toyokawa, Yoshitaka Taira, Masaki Fujimoto, Masahiro Katoh

  • Journal: Applied Sciences, Vol. 11, No. 8, p. 3415

  • Year: 2021

Natural radionuclides in groundwater from Qena governorate, Egypt

  • Authors: Khaled Salahel Din, Khaled Ali, Shaban Harb, Abdel Baset Abbady

  • Journal: Environmental Forensics, Vol. 22, No. 1–2, pp. 48–55

  • Year: 2020

 

 

Sabrina Gouasmia | Nuclear Physics | Best Researcher Award

Dr. Sabrina Gouasmia | Nuclear Physics | Best Researcher Award

Postdoctoral researcher at Ruđer Bošković Institute | Croatia

Dr. Sabrina Gouasmia is a nuclear physicist and researcher with a strong interdisciplinary background in radiation-matter interaction, nuclear techniques, and environmental applications. With research tenures at institutions like the Ruđer Bošković Institute (Croatia) and the Nuclear Research Centre of Algiers, she has contributed significantly to both experimental nuclear physics and environmental monitoring. Her work demonstrates a powerful blend of theoretical understanding and hands-on laboratory expertise.

👨‍🎓Profile

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ORCID

🎓 Early Academic Pursuits

Dr. Gouasmia began her academic journey with a high school degree in experimental sciences, followed by a License in Fundamental Physics, a Master’s in Nuclear Sciences and Radiation-Matter Interactions, and a Doctorate in Nuclear Physics from the University of Science and Technology Houari Boumediene, Algeria. Her Ph.D. research focused on hypervelocity cluster ion interactions with solid surfaces, modeling crater formation, sputtering, and shock wave dynamics, showcasing early mastery of both simulation and experimental methodologies.

🧑‍🔧 Professional Endeavors

Dr. Sabrina Gouasmia has held diverse professional roles including Postdoctoral Researcher at Ruđer Bošković Institute, Physicist at the Nuclear Research Centre of Algiers, and Physics Lecturer at the University of Science and Technology Houari Boumediene. She also taught at the secondary school level. Her expertise spans particle accelerator laboratories, gamma spectrometry, and air pollution monitoring, demonstrating her versatility and interdisciplinary competence in nuclear physics and environmental science.

🔬 Contributions and Research Focus

Dr. Sabrina Gouasmia’s work spans key nuclear analytical techniques such as RBS, ERDA, PIXE, and NRA, as well as gamma spectrometry and radioisotope analysis. She has contributed to air pollution monitoring using ED-XRF, RSS reflectometry, and Positive Matrix Factorization. Her expertise with accelerator-based methods includes work on Tandem 6 MV, Tandetron 1 MV, and 3.75 MV VdG. She also mentors Ph.D. students, assisting in MCNP simulation, sample preparation, and detector calibration, showcasing her leadership and collaborative skills.

🌍 Impact and Influence

Dr. Gouasmia’s active involvement in IAEA technical cooperation projects such as TC ALG 0018, RAF/5075, and RAF/7016 reflects her strong regional and international influence. Her work has supported the development of particle accelerator networks, air quality assessment systems, and soil erosion evaluation using fallout radionuclides. These efforts contribute significantly to global environmental monitoring and nuclear safety strategies, positioning her as a key figure in advancing sustainable scientific infrastructure in both national and international contexts.

📚 Academic Cites

While specific publication metrics are not listed, her involvement in high-level institutional research, IAEA collaboration, and advanced experimental work implies significant academic value. Increasing her presence in peer-reviewed journals will further elevate her impact.

🧪 Research Skills

Dr. Gouasmia demonstrates expert-level proficiency in a wide array of nuclear measurement tools including SIMNRA, SRIM, GUPIX, and Genie 2000. Her expertise extends to gamma spectrometry, GeHP detector calibration, and air particulate analysis using source apportionment techniques. She is highly skilled in accelerator operations, data interpretation, and MCNP simulations, complemented by her use of advanced statistical modeling. These skills collectively highlight her capacity for conducting high-precision, multidisciplinary research in nuclear and environmental physics.

👩‍🏫 Teaching Experience

She has taught physics at both university and secondary levels, and mentored graduate researchers, enhancing her profile as a research-educator. Her guidance in instrumentation techniques and data analysis speaks to her role in capacity-building.

🏅 Awards and Honors

Dr. Gouasmia has been awarded IAEA fellowships and participated in regional training programs in Austria and Egypt. These reflect international recognition of her skills and commitment to global nuclear science development.

🌟 Legacy and Future Contributions

With her ongoing postdoctoral work, Dr. Gouasmia is well-positioned to further contribute to advanced nuclear diagnostics, environmental safety, and scientific collaboration across borders. She stands out as a mentor, researcher, and contributor to sustainable development goals related to radiation safety and environmental stewardship.

Publications Top Notes

Trace element and radiological characterisation of ash and soil at a legacy site in the former Raša coal-mining area

  • Authors: Tomislav Bituh, Josip Peco, Iva Bozicevic Mihalic, Sabrina Gouasmia, Marija Grlić, Branko Petrinec
    Journal: Archives of Industrial Hygiene and Toxicology
    Year: 2024

Toward Developing Techniques─Agnostic Machine Learning Classification Models for Forensically Relevant Glass Fragments

  • Authors: Omer Kaspi, Osnat Israelsohn-Azulay, Zidon Yigal, Hila Rosengarten, Matea Krmpotic, Sabrina Gouasmia, Iva Bogdanovic Radovic, Pasi Jalkanen, Anna Liski, Kenichiro Mizohata, et al.
    Journal: Journal of Chemical Information and Modeling
    Year: 2023

Influence of surface morphology on erosion of plasma-facing components in H-mode plasmas of ASDEX Upgrade

  • Authors: A. Lahtinen, A. Hakola, J. Likonen, M. Balden, K. Krieger, S. Gouasmia, I. Bogdanovic Radovic, G. Provatas, M. Kelemen, S. Markelj, et al.
    Journal: Nuclear Materials and Energy
    Year: 2022

Inter-laboratory workflow for forensic applications: Classification of car glass fragments

  • Authors: Omer Kaspi, Osnat Israelsohn-Azulay, Yigal Zidon, Hila Rosengarten, Matea Krmpotić, Sabrina Gouasmia, Iva Bogdanović Radović, Pasi Jalkanen, Anna Liski, Kenichiro Mizohata, et al.
    Journal: Forensic Science International
    Year: 2022

Gross and net erosion balance of plasma-facing materials in full-W tokamaks

  • Authors: Antti Hakola, J. Likonen, A. Lahtinen, Tomi Vuoriheimo, Mathias Groth, Henri Kumpulainen, Martin Balden, Karl Krieger, Matej Mayer, Thomas Schwarz-Selinger, et al.
    Journal: Nuclear Fusion
    Year: 2021

 

ROHIT YADAV | Computational Particle Physics | Best Researcher Award

Mr. ROHIT YADAV | Computational Particle Physics | Best Researcher Award

Scientific Officer at BHABHA ATOMIC RESEARCH CENTRE | India

Rohit Yadav is a Scientific Officer at the Radiological Physics and Advisory Division of the Bhabha Atomic Research Centre (BARC), India. With a strong foundation in Physics and advanced specialization in radiation dosimetry, he contributes to national radiation safety and simulation-based research using Monte Carlo methods. His work bridges academic rigor with practical impact in radiation protection and cosmic ray shielding.

👨‍🎓Profile

Scopus

ORCID

🎓 Early Academic Pursuits

Rohit began his academic journey with a B.Sc. (Honors) in Physics from the prestigious Hansraj College, University of Delhi, and went on to earn his M.Sc. in Physics from the Indian Institute of Technology (IIT) Roorkee. This elite academic training laid the groundwork for his scientific career in applied radiation physics and simulation technologies.

🧑‍💼 Professional Endeavors

As a Scientific Officer at BARC, Mumbai, Rohit plays a pivotal role in radiological safety, with responsibilities encompassing radiation measurement, dosimetry, and protection standards. His expertise is central to public safety, particularly in scenarios involving space radiation, nuclear facilities, and retrospective environmental dose assessments.

🔬 Contributions and Research Focus

Rohit’s research centers on Monte Carlo simulations (FLUKA, GEANT4), thermoluminescent dosimeters (TLDs), cosmic ray shielding, and dose monitoring. His peer-reviewed work includes TLD response analysis, aluminum shielding effectiveness, beta dose estimation via CWOSL, and personal dose equivalent measurements. These contributions have significantly enhanced applied dosimetric methods and advanced radiation protection techniques, making his work impactful for both theoretical modeling and practical implementation in high-radiation environments.

🌍 Impact and Influence

His work has direct implications for national safety in nuclear and space sectors. By improving simulation techniques and phantom modeling, he enhances dosimetric accuracy, which benefits occupational health, environmental radiation monitoring, and cosmic radiation protectionan essential area for aerospace and defense.

🧪 Research Skills

Rohit demonstrates expertise in Monte Carlo Simulations (FLUKA, GEANT4), dosimetry instrumentation, and radiation transport analysis. He excels in phantom modeling, shielding design, and working with advanced phosphor materials like LiCaAlF₆:Eu,Y. His technical proficiency supports high-precision radiation studies essential for developing effective radiation protection protocols in both terrestrial and space environments. These research skills make him a valuable contributor to the field of computational dosimetry and applied radiation science.

📈 Legacy and Future Contributions

Rohit Yadav is on track to become a leading figure in radiation simulation and protection research in India. His ongoing contributions will likely shape national radiation safety standards, influence dosimetry policies, and expand applications of Monte Carlo methods in medical physics, space missions, and environmental monitoring.

Publications Top Notes

Response of CaSO₄:Dy Teflon embedded thermoluminescent dosimeter badge on different ISO phantoms for photons and beta sources using FLUKA and GEANT4

  • Authors: Rohit Yadav, Madhumita Bhattacharya, A.K. Bakshi, B.K. Sapra
    Journal: Radiation Physics and Chemistry
    Year: 2025

Beta dose rate estimation of soil samples with CW-OSL technique using LiCaAlF₆:Eu,Y phosphor for retrospective dosimetry

  • Authors: S. Kadam, S.N. Menon, P. Rama, R. Yadav, S. Dawn, B. Dhabekar
    Journal: Radiation Physics and Chemistry
    Year: 2024

Simulation-based estimation of dosimetric quantities for different phantom compositions and the effectiveness of aluminum shielding against galactic cosmic rays

  • Authors: Rohit Yadav, Sandipan Dawn, A.K. Bakshi, B.K. Sapra
    Journal: Radiation Protection and Environment
    Year: 2024

Estimation of personal dose equivalent HP(0.07) using CaSO₄:Dy Teflon disc-based extremity dosemeter

  • Authors: M. Bhattacharya, K. Samuel, S. Patil, R. Yadav, A.K. Bakshi, S.K. Singh, B.K. Sapra
    Journal: Radiation Protection Dosimetry
    Year: 2022

 

 

WAEL CHOUK | High energy physics | Young Scientist Award

Dr. WAEL CHOUK | High energy physics | Young Scientist Award

Post-Doc at Faculty of Sciences of Bizerte | Tunisia

Dr. Wael Chouk is a dedicated Tunisian physicist specializing in materials physics, particularly in the field of dielectric and superconducting materials. With a PhD earned from the Faculty of Sciences of Bizerte, University of Carthage, he has demonstrated a consistent track record of academic excellence, international research experience, and pedagogical commitment. His profile reflects a unique blend of technical expertise, research passion, and community involvement.

👨‍🎓Profile

Scopus

📘 Early Academic Pursuits

Dr. Chouk began his academic journey with a preparatory cycle in engineering (Math-Physics) from 2012 to 2015 at the Preparatory Institute for Engineering Studies, Nabeul. He then pursued a Fundamental Physics degree (2015–2017) and a Master’s in Physics (2017–2020), graduating with honors. His early research centered on materials structure and properties, laying the foundation for his future in high-impact experimental physics.

🧑‍🏫 Professional Endeavors

Wael’s career is marked by consistent involvement in academic teaching and research supervision. As a part-time lecturer at the Faculty of Sciences of Bizerte (2021–2022), he taught practical physics and later co-supervised Master’s research projects in 2023 and 2024. His teaching was not just instructional but also developmental, helping students build critical skills in dielectric materials and experimental analysis.

🔬 Contributions and Research Focus

His PhD work (2021–2024) explores the superconducting-supercapacitance transition in the complex ceramic YBa₂₋ₓCaₓCuβOδ, synthesized using the sol-gel method. His research involves advanced characterization techniques such as XRD, SEM, TEM, XPS, PPMS, and VSM, highlighting his expertise in materials synthesis and structural/magnetic analysis. His contributions to the field include two co-authored scientific papers on phase transitions and intrinsic permittivity in ceramic compounds.

🌍 Impact and Influence

Dr. Chouk has enhanced his research impact through international internships a two-month stay at BAU University in Turkey and a three-month program at ICMM in Madrid, part of CSIC. He has also presented at prestigious events like SMS’2024 and AdAMFM 2022, and showcased his work at the Innovation Fair by the ANPR, where his stand on electro-ceramics for high-energy-density capacitors demonstrated both academic relevance and real-world application.

📊 Academic Citations and Publications

Dr. Wael Chouk has authored notable publications including “Study of phase transition behavior and high dielectric properties in YBa₂₋ₓCaₓCu₃Oδ ceramics” and “Novel high intrinsic permittivity in new perovskite ceramic GdCa₂Cu₃Oδ”. These studies significantly contribute to the scientific understanding of ceramic-based high-performance materials, with impactful applications in electronics, energy storage, and superconductivity. His research enhances the academic literature and reflects a growing influence in the field of materials physics.

🧪 Research Skills

Dr. Wael Chouk demonstrates strong experimental and analytical skills, especially in material synthesis (sol-gel, ceramic fabrication) and advanced characterization techniques such as XRD, TEM, SEM, XPS, and EPR. He is also proficient in simulation and analysis tools including MATLAB, Origin, and Gaussian. His expertise in laboratory instrumentation and data interpretation equips him to contribute effectively to cross-disciplinary research and lead complex experimental projects, reflecting a robust and versatile research capability.

🧑‍🏫 Teaching Experience

His years as a part-time teacher and student supervisor reveal a solid commitment to academic mentorship. He has taught practical physics to undergraduate students and supported Master’s candidates in achieving their academic goals, especially in materials physics and dielectric behavior analysis.

🏅 Awards and Honors

While formal award titles are not specified, Dr. Wael Chouk’s participation in international conferences, prestigious research internships, and representation at innovation fairs reflect peer recognition and academic credibility. He holds valuable certifications in ISO 9001, ISO 50001, X-ray diffraction, project management, stress management, public speaking, and first aid. These accomplishments highlight his professional competence, leadership potential, and strong alignment with high research standards and institutional trust.

🌱 Legacy and Future Contributions

Dr. Wael Chouk is poised to leave a lasting impact on the field of applied materials physics. His future contributions are likely to lie at the intersection of ceramic materials, energy storage technologies, and magnetic-electrical coupling. With a strong foundation in both academic teaching and experimental research, he is a promising candidate for collaborative international projects, postdoctoral fellowships, and innovative research leadership.

Publications Top Notes

Study of phase transition behavior and high dielectric properties in YBa₂₋ₓCaₓCu₃Oδ ceramics

  • Authors: Wael Chouk, Khouloud Moualhi, Abdelhak Othmani, Mouldi Zouaoui
    Journal: Materials Chemistry and Physics
    Year: 2023

Novel high intrinsic permittivity in new perovskite ceramic GdCa₂Cu₃Oδ

  • Authors: Khouloud Moualhi, Wael Chouk, Youssef Moualhi, Abdelhak Othmani, Mouldi Zouaoui
    Journal: Materials chemistry and physics
    Year: 2024

Multifunctional chitosan/montmorillonite/TiO₂ nanocomposites: Correlating microstructure with dielectric and photocatalytic properties

  • Authors: Lahbib M., Mejri C., Bejaoui M., Chadha C., Oueslati A., Oueslati W.
    Journal: Journal of the Indian Chemical Society
    Year: 2025

Conduction mechanism investigation in YCa₂Cu₃Oδ colossal permittivity ceramics

  • Authors: Wael Chouk, Mohamed Annabi, Mouldi Zouaoui
    Journal: Results in Physics
    Year:2025