Sankit Kassa | Atomic Molecular | Best Researcher Award

Dr. Sankit Kassa | Atomic Molecular | Best Researcher Award 

Symbiosis Institute of Technology | India

Author Profile

Early Academic Pursuits

Dr. Sankit Ramkrishna Kassa's academic journey commenced with a strong foundation in Electronics and Communication Engineering. He earned his B.Tech from Government Engineering College, Gandhinagar, in 2009, showcasing early promise in the field. This was followed by his M.Tech in Communication Systems & Networks from the National Institute of Technology, Hamirpur, in 2011, where he further honed his expertise.

Professional Endeavors

Dr. Kassa's professional journey is marked by a series of significant appointments in academia. He served as an Assistant Professor in various esteemed institutions, including Rajiv Gandhi Institute of Technology, Mumbai, and MLR Institute of Technology, Hyderabad. His tenure as an Associate Professor at institutions like Usha Mittal Institute of Technology, Mumbai, and Dr. D Y Patil Institute of Technology, Pune, underscores his commitment to academic excellence.

Contributions and Research Focus

Dr. Kassa's research focus lies in the realm of VLSI Circuits and Systems, with a particular emphasis on Quantum Dot Cellular Automata (QCA) and Microfluidics devices. His doctoral thesis on "Studies of Low Power VLSI Design Approaches Suitable for Energy Efficient Nanoscale Circuits" exemplifies his dedication to advancing the frontiers of VLSI technology. Moreover, his exploration of Femtocells in Next Generation Wireless Networks (NGWNs) demonstrates his interdisciplinary approach towards solving real-world challenges.


Citations    238

h-index      9

i10-index   8

Impact and Influence

Dr. Kassa's contributions have left a profound impact on both academia and industry. His publication record, coupled with his active involvement in cutting-edge research projects, has garnered him recognition within the scientific community. Moreover, his mentorship of students and collaborative efforts with peers have fostered a culture of innovation and excellence.

Academic Citations

Dr. Kassa's publications, including his book on "Performance analysis of Femtocells in NGWNs," have contributed significantly to the academic discourse in the field of VLSI and wireless communication. Furthermore, his research projects, both at the B.Tech and M.Tech levels, have laid the groundwork for future advancements in the domain.

Legacy and Future Contributions

Dr. Sankit Ramkrishna Kassa's legacy is one of relentless pursuit of knowledge and innovation. As he continues to delve into emerging technologies such as Nano memory using memristors for Artificial Intelligence, his contributions are poised to shape the future of electronics and communication engineering. His commitment to excellence and his interdisciplinary approach ensure that his legacy will endure, inspiring future generations of researchers and engineers.

Atomic Molecular

While Dr. Kassa's primary research focus lies in VLSI Circuits and Systems, his interdisciplinary approach encompasses areas such as Quantum Dot Cellular Automata (QCA), which delve into the atomic and molecular scale properties of materials. Through his research, he explores the intricate interactions at the atomic and molecular level, paving the way for novel applications in electronics and communication engineering.

Notable Publication

Mohamed Mahfouz | Atomic Molecular | Best Researcher Award

Mr. Mohamed Mahfouz | Atomic Molecular | Best Researcher Award

Qatar University | Qatar



Mohamed M. K. Mahfouz initiated his academic journey with a Bachelor's degree in Physics from Asyut University, Egypt, in 1993. His foundational education laid the groundwork for his subsequent specialization in environmental studies.


Transitioning from academia to professional practice, Mahfouz embarked on a prolific career spanning over two decades. He commenced his professional journey as an Environmental Engineer at the Air Pollution Laboratory, Institute of Graduate Studies and Research, Alexandria University, Egypt, in 1996. Subsequently, he assumed roles of increasing responsibility and impact, traversing industries and geographies.


Mahfouz's contributions to the field of atmospheric science and air quality are substantial and far-reaching. His expertise encompasses a broad spectrum of disciplines, including air quality monitoring, environmental consultancy, and research. Notably, his research focuses on the optical and physical properties of ambient aerosols, with particular emphasis on black carbon and fine particulate matter. Mahfouz's work is characterized by its multidisciplinary approach and its implications for environmental protection and public health.


Mahfouz's work has made a significant impact on both academia and industry. His involvement in multinational air quality-monitoring projects underscores his leadership and expertise in the field. Moreover, his contributions to peer-reviewed journals have advanced scientific knowledge and informed policy decisions aimed at mitigating air pollution and safeguarding environmental quality.


Mahfouz's research findings have garnered recognition from peers in the scientific community, as evidenced by the numerous citations his publications have received. His work serves as a valuable resource for researchers and policymakers alike, contributing to the collective understanding of atmospheric processes and air quality management strategies.


Mohamed M. K. Mahfouz's legacy lies in his dedication to addressing pressing environmental challenges through rigorous research and practical innovation. His future contributions are anticipated to further propel advancements in atmospheric science and air quality management, with a focus on atomic molecular processes and their implications for environmental sustainability.


In Mahfouz's body of work, the exploration of atomic molecular processes emerges as a fundamental aspect of his research focus. His multidisciplinary approach integrates knowledge from physics, chemistry, and environmental science to elucidate the intricate interactions between atmospheric constituents. By investigating atomic molecular phenomena, Mahfouz seeks to enhance our understanding of air quality dynamics and inform effective mitigation strategies to combat pollution.



Majid Bagherinia | Atomic Molecular | Best Researcher Award

Dr. Majid Bagherinia | Atomic Molecular | Best Researcher Award

Ataturk University | Turkey





Majid Bagherinia embarked on his academic journey with a strong foundation in civil engineering, fostering a passion for geotechnical research and ground improvement techniques.


As a Research Assistant at the Department of Civil Engineering, University of Ataturk, Majid Bagherinia dedicated eight years to investigating various aspects of geotechnical engineering. His work resulted in five publications in peer-reviewed scientific journals, one presentation at international conferences, and one scientific research project.


Majid Bagherinia's research focus lies in ground improvement techniques utilizing biomolecules, bacteria, and biopolymers. His pioneering work in merging geotechnical engineering with chemistry has led to the development of three environmentally friendly materials as alternatives to traditional binders for soil stabilization.


Through his research endeavors, Majid Bagherinia has made significant contributions to the field of geotechnical engineering, particularly in the utilization of recycled waste materials and the development of geopolymers. His innovative approaches have the potential to revolutionize geo-environmental infrastructure projects and promote sustainability in construction practices, Atomic Molecular


Majid Bagherinia's research outputs have been cited by peers and colleagues in the field, highlighting the relevance and impact of his work in advancing knowledge and innovation in geotechnical engineering.


As Majid Bagherinia continues his academic and professional journey, his legacy extends beyond his current endeavors. His dedication to interdisciplinary research and commitment to sustainability positions him as a leader in the field. With ongoing interests in image analysis, artificial neural networks, and atomic molecular studies, he is poised to make further significant contributions to the advancement of geotechnical engineering and environmental sustainability.

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Investigation of Physicochemical Changes of Soft Clay around Deep Geopolymer Columns 2022 (1)

Effect of deep chemical mixing columns on properties of surrounding soft clay  2021 (3)

Utilization of Polymers to Improve Soft Clayey Soils Using the Deep Mixing Method  2017 (16)

Behavior of polymer columns in soft clayey soil: A preliminary study  2016 (7)