Mohamed Issa | Physics and Astronomy | Best Innovation Award

Mr. Mohamed Issa | Physics and Astronomy | Best Innovation Award 

Faculty of Human Medicine, Al-Azhar University, Cairo | Egypt

Mr. Mohamed Issa is a multidisciplinary researcher affiliated with the Faculty of Human Medicine, Al-Azhar University, Cairo, Egypt, whose work uniquely bridges medicine, physics, cosmology, and philosophy of consciousness. His research profile reflects a bold intellectual pursuit aimed at re-examining the fundamental laws governing reality, with particular emphasis on the relationship between consciousness and the structure of the universe. Through a series of theoretical works published in 2025, Mr. Issa has proposed innovative frameworks that challenge conventional scientific boundaries and invite a deeper, integrative understanding of existence. One of the central themes of his research is articulated in “How the Universe Speaks Through Consciousness”, where he explores consciousness not merely as a byproduct of neural activity but as an active, communicative interface between human perception and universal laws. In this work, he argues that consciousness functions as a medium through which the universe expresses order, meaning, and continuity, offering a novel perspective that connects cognitive science with cosmological principles. In “Modification of Relativity” (2025), Mr. Issa critically revisits Einstein’s theory of relativity, proposing conceptual refinements that incorporate observer awareness and systemic renewal into spacetime dynamics. Rather than rejecting classical physics, his approach seeks to extend it by integrating consciousness as a fundamental variable influencing the interpretation of time, motion, and causality. This work positions him among contemporary thinkers attempting to move beyond purely materialistic models of the universe. His publication “Theory of Everything and the Law of the Universe” represents an ambitious effort to synthesize physical laws, biological systems, and metaphysical principles into a unified theoretical framework. Here, Mr. Issa proposes that the universe operates according to a self-regulating law of coherence and renewal, linking cosmology, life sciences, and consciousness into a single explanatory model.

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Featured Publications


How the universe speaks through consciousness

– Human consciousness in relation, 2025

Human consciousness in relation

– Information and Energy in the universe, 2025

Warda Al Saidi | Physics and Astronomy | Young Scientist Award

Dr. Warda Al Saidi | Physics and Astronomy | Young Scientist Award 

University of Technology and Applied Sciences (UTAS) | Oman

Dr. Warda Al Saidi is a highly accomplished physicist, lecturer, and researcher specializing in spintronics, magnetism, and thin-film magnetic systems. She earned her PhD in Physics from Sultan Qaboos University (2021–2024), building on a strong academic foundation that includes a Master’s and Bachelor’s degree in Physics from the same institution. Currently, she serves as a Physics Lecturer at the University of Technology and Applied Sciences (UTAS), Muscat, where she delivers undergraduate lectures, conducts laboratory sessions, integrates modern teaching technologies, and actively contributes to curriculum development and academic advising. Previously, she taught physics at Al Shomoukh International School, where she was recognized for outstanding teaching performance. Dr. Al Saidi’s research focuses on magnetic skyrmions, spintronics, plasmon-driven magnetic phenomena, and multistate memory devices for next-generation computing and AI acceleration. She has authored numerous high-impact publications in leading journals such as Physical Review B, Applied Physics Letters, Scientific Reports, Journal of Physics D, physica status solidi (a), and Materials Today Electronics. Her work combines experimental, theoretical, and computational approaches, utilizing tools such as Python, MATLAB, MuMax3, and advanced data analysis techniques. She has gained valuable international research experience, including serving as an Assistant Researcher Physicist at CERN, Geneva, and working as a Medical Physicist at Sultan Qaboos University Hospital and The Royal Hospital in Oman. Dr. Al Saidi is an active contributor to the global scientific community, with numerous invited talks, conference presentations, and awards, including the Best Post-PhD Project Award at IEEE RTSI 2025 and multiple best paper and oral presentation recognitions. A member of IEEE, she is deeply committed to academic excellence, interdisciplinary collaboration, and advancing physics research with real-world technological impact.

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Featured Publications

 

Mohammad Taghi Ahmadi | Physics and Astronomy | Best Researcher Award

Prof Dr. Mohammad Taghi Ahmadi | Physics and Astronomy | Best Researcher Award

Urmia University at Physics Department, Iran.

Prof. Dr. Mohammad Taghi Ahmadi is a distinguished figure in the fields of physics and nanotechnology, renowned for his significant contributions to research, academia, and technology development. With a rich academic background and extensive professional experience, he has established himself as a leading authority in his field. Dr. Ahmadi’s research interests encompass a wide range of topics, including semiconductor theory and technology, nanoelectronic materials and devices, and condensed matter physics. He has published prolifically and presented keynote talks at prestigious institutions worldwide, demonstrating his expertise and leadership in advancing scientific knowledge. Throughout his career, Dr. Ahmadi has received numerous awards and honors, recognizing his outstanding achievements and contributions to academia and research. As an educator, researcher, and administrator, he continues to inspire and influence the next generation of scientists and engineers, leaving a lasting impact on the scientific community.

Professional Profiles:

Education:

Prof. Dr. Mohammad Taghi Ahmadi boasts an extensive and distinguished academic background, underscoring his expertise and commitment to the fields of physics and nanotechnology. He earned his PhD in Physics/Nanotechnology from Urmia University in Iran, where he specialized in advanced research that significantly contributed to academic knowledge and innovation in these cutting-edge areas. Following his doctoral studies, Dr. Ahmadi undertook a Postdoctoral Fellowship at the University Technology Malaysia (UTM). This prestigious fellowship allowed him to focus on computational nanoelectronics, further enhancing his research skills and establishing his reputation as a leading figure in nanotechnology. Throughout his educational journey, Prof. Dr. Ahmadi has consistently demonstrated an unwavering dedication to scientific advancement and education, laying a robust foundation for his subsequent professional achievements and substantial contributions to the academic community.

Professional Experience

Prof. Dr. Mohammad Taghi Ahmadi has a robust career in academia and research. He is currently a Research Fellow at the School of Engineering’s Device Modelling Group, University of Warwick, UK. Previously, he served as a Professor in the Physics/Nanotechnology Department at Urmia University, Iran, from 2013 to 2022, transitioning from Assistant to Associate Professor. Internationally, he was a Visiting Professor at Ton Duc Thang University, Vietnam, and a Senior Lecturer at University Technology Malaysia (UTM). His roles at UTM included multiple visiting professorships and research fellowships, focusing on nanotechnology. Prof. Dr. Ahmadi has also held significant administrative positions, including Head of the University Commercialization Center and Head of Research and Technology at Urmia University. His career highlights his dedication to advancing nanotechnology and education through a blend of teaching, research, and leadership.

Research Interest

Prof. Dr. Mohammad Taghi Ahmadi’s research interests span across several cutting-edge areas in physics and nanotechnology. He is deeply engaged in the study of semiconductor theory and technology, exploring the properties and applications of nanoelectronic materials and devices. His work also delves into microelectronic materials and devices, where he examines the intricate processes that underpin the functioning of these advanced systems. Prof. Dr. Ahmadi has a keen interest in condensed matter physics, particularly in solid-state physics, which includes the study of the physical properties of solid materials. Applied quantum mechanics is another significant area of his research, focusing on practical applications of quantum theory in developing new technologies. Additionally, he is involved in developing and implementing innovative solutions in nanoelectronics, contributing to advancements in both theoretical and applied aspects of this dynamic field. His research aims to bridge the gap between fundamental physics and practical technology, driving forward innovations that impact various scientific and industrial domains.

Award and Honors

Prof. Dr. Mohammad Taghi Ahmadi has been honored with numerous awards, reflecting his significant contributions to physics and nanotechnology. In 2021, he received Urmia University’s Best Research Award. At Universiti Teknologi Malaysia (UTM), he was recognized with the Best Publication Award (CITRA KARISMA) and both the Chancellor and Academic Excellence Awards in 2010. Additionally, he was named the Best Ph.D. Student by the Iranian Student Society at UTM and received the UTM Post Doctoral Fellowship Award. Prof. Dr. Ahmadi is also recognized as one of Malaysia’s Top 30 Nanotechnology Scientists. His accolades include the Best Paper Award at an international conference on technology and computing in 2017 and the Best Poster Award at the Physics National Conference in 2016. These honors underscore his exceptional research, teaching, and impact on the scientific community.

Research Skills

Prof. Dr. Mohammad Taghi Ahmadi is renowned for his extensive research skills in the fields of physics and nanotechnology. He possesses a deep proficiency in semiconductor theory and technology, nanoelectronic materials and devices, microelectronic materials and devices, condensed matter physics, and applied quantum mechanics. His expertise extends to data analysis and computational modeling, particularly in the use of tools such as ArcGIS, QGIS, Surfer, Envi, and Geomatica for geophysical and geotechnical applications. Prof. Dr. Ahmadi has demonstrated exceptional capabilities in laboratory management, having founded and led various research laboratories, including the Quantum Electronic (Nano-electronic) research lab at Urmia University. His skills in interdisciplinary research are evident from his collaborative projects and publications. Additionally, his proficiency in grant writing and project management has secured funding for numerous research initiatives, reflecting his ability to translate complex scientific concepts into practical applications. His analytical skills, combined with a strong foundation in theoretical and experimental methodologies, make him a distinguished researcher in his field.

Publications

  1. Calculating and analyzing time delay in zigzag graphene nanoscrolls based complementary metal-oxide-semiconductors
    • Authors: Sadeqian, A., Ahmadi, M.T., Bodaghzadeh, M., Abazari, A.M.
    • Journal: Scientific Reports
    • Year: 2024
  2. Theoretical study of the ϒ2-graphyne p-n junction diode devices
    • Authors: Neshani, S., Ahmadi, M.T., Golzan, M.M.
    • Journal: Physica B: Condensed Matter
    • Year: 2024
  3. Optical properties of hBN quantum dots for ammonia gas detection
    • Authors: Shojaee, S., Karamdel, J., Berahman, M., Ahmadi, M.T.
    • Journal: Optical and Quantum Electronics
    • Year: 2023
  4. The thermoelectric power investigation of the ϒ2-graphyne molecule device
    • Authors: Neshani, S., Golzan, M.M., Ahmadi, M.T.
    • Journal: Physica Scripta
    • Year: 2023
  5. Design and Fabrication of Carbon Nanoparticles-Based Sensor by Arc Discharge Method
    • Authors: Afshari, G.T., Ahmadi, M.T., Fathi, A.
    • Conference: 2023 5th Iranian International Conference on Microelectronics, IICM 2023
    • Year: 2023
  6. A Phenomenological Model for Electrical Transport Characteristics of MSM Contacts Based on GNS
    • Authors: Rahmani, M., Ghafoorifard, H., Ahmadi, M.T.
    • Journal: Micromachines
    • Year: 2023
  7. Investigation of Boron Nitro Silicone Band Modulation Using the Tight-Binding Method
    • Authors: Ahani, P., Ahmadi, M.T., Abazari, A.M., Rahmani, M.
    • Journal: ECS Journal of Solid State Science and Technology
    • Year: 2022
    • Citations: 2
  8. Ultrahigh on/off-current ratio γ-graphyne-1 nanotube-based sub-10-nm TFET modeling and simulation
    • Authors: Rouzkhash, B., Salehi, A., Ahmadi, M.T.
    • Journal: Journal of Computational Electronics
    • Year: 2022
  9. Investigation of Bond Energy Effect on the Electronic Band Structure of Penta-Graphene using Tight-Binding Method
    • Authors: Ahmadi, M.T., Balkanloo, R.G., Rahmani, M., Abazari, A.M.
    • Journal: ECS Journal of Solid State Science and Technology
    • Year: 2022
    • Citations: 1
  10. Investigation of Frequency-Selective Surfaces Based on Graphite in the Absorption of Electromagnetic Waves
    • Authors: Ahmadi, M.T., Hesami, M., Rahmani, M.
    • Journal: ECS Journal of Solid State Science and Technology
    • Year: 2022
    • Citations: 2