Priyanka Majumder – Mathematics – Best Researcher Award

Priyanka Majumder - Mathematics - Best Researcher Award

Techno College of Engineering Agartala - India

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Dr. Priyanka Majumder embarked on her academic journey with a profound interest in Mathematics, evident from her undergraduate and postgraduate studies at Tripura University and NIT Agartala, respectively. Her academic pursuits laid a strong foundation for her future research and teaching endeavors.

PROFESSIONAL ENDEAVORS

As an Assistant Professor in the Department of Basic Science and Humanities (Mathematics) at Techno College of Engineering Agartala, Dr. Majumder has demonstrated a commitment to excellence in teaching and research. Her dedication to fostering a conducive learning environment and her involvement in various faculty development programs underscore her passion for education.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Majumder's research interests revolve around Mathematics, particularly focusing on Multi Criteria Decision Making methods (MCDM). Her contributions include the development of fuzzy MCDM techniques, hybrid MCDM tools, mathematical models using soft computing techniques and optimization algorithms, as well as research in Control Systems Engineering, Water-energy nexus, Water-based renewable energy, and Biomedical applications. Her doctoral thesis on the impact of climate change on the techno-economical performance of small-scale hydro power plants showcases her interdisciplinary approach to addressing complex real-world problems.

IMPACT AND INFLUENCE

Dr. Majumder's publications have garnered significant attention within the academic community, as evidenced by her citation metrics and scholarly contributions. Her work has not only advanced the field of Mathematics but also contributed to addressing pressing societal and environmental challenges. Through her research, Dr. Majumder continues to make a lasting impact on academia and beyond.

ACADEMIC CITES

Dr. Majumder's publications have received substantial citations, reflecting the impact of her research within the academic community. Her work has contributed to advancing knowledge in Mathematics and related interdisciplinary fields, influencing the trajectory of research in these areas.

LEGACY AND FUTURE CONTRIBUTIONS

As Dr. Majumder's career progresses, her legacy in Mathematics and interdisciplinary research will continue to grow. Her dedication to teaching and research excellence, coupled with her interdisciplinary approach to problem-solving, positions her as a prominent figure in academia. Moving forward, Dr. Majumder's contributions are poised to make a significant impact on the advancement of Mathematics and its applications in addressing societal challenges.

NOTABLE PUBLICATION

An intuitionistic fuzzy based hybrid decision-making approach to determine the priority value of indicators and its application to solar energy feasibility analysis

Ajeet K. Kaushik – Catalysis and Sensing Technology – Environmental Leadership in Civil Engineering Award

Ajeet K. Kaushik - Catalysis and Sensing Technology - Environmental Leadership in Civil Engineering Award

Florida Polytechnic University - United States

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS

Dr. Ajeet K. Kaushik began his academic journey with a strong focus on catalysis and sensing technology, evident from his early research endeavors and publications. His foundational work in nanostructured metal oxide-based biosensors, iron oxide nanoparticles-chitosan composite-based glucose biosensors, and zinc oxide nanoparticles-chitosan composite film for cholesterol biosensors laid the groundwork for his subsequent contributions to the field.

PROFESSIONAL ENDEAVORS

Throughout his career, Dr. Kaushik has held positions at esteemed institutions such as Florida Polytechnic University, Florida International University, and the National Physical Laboratory. His expertise in Alzheimer's disease pathogenesis, diagnostics, and therapeutics has positioned him as a leading authority in the field of neurodegenerative diseases. Additionally, his editorial roles in scientific journals underscore his commitment to advancing research and innovation.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Kaushik's research has significantly contributed to the development of nanostructured biosensors for various applications, including environmental monitoring, healthcare diagnostics, and disease management. His work on functionalized terahertz plasmonic metasensors for the detection of SARS-CoV-2 spike proteins and electrochemical sensing of infectious envelope proteins highlights his dedication to addressing pressing global challenges using innovative sensing technologies.

IMPACT AND INFLUENCE

Dr. Kaushik's research has had a profound impact on the field of biosensors and nanotechnology, as evidenced by his impressive citation metrics and high h-index. His contributions have not only advanced scientific knowledge but also paved the way for practical applications in healthcare, disease management, and environmental monitoring. His collaborations with international researchers and institutions further amplify his influence and global reach.

ACADEMIC CITES

Dr. Kaushik's publications have garnered significant attention within the academic community, with a substantial number of citations and a commendable h-index. His research has been instrumental in shaping the discourse around nano-biosensors, catalysis, and sensing technologies, contributing to the broader scientific understanding of these areas.

LEGACY AND FUTURE CONTRIBUTIONS

As Dr. Kaushik's career continues to evolve, his legacy in catalysis and sensing technology will endure, impacting future generations of researchers and practitioners. His ongoing work on artificial intelligence (AI) and internet of medical things (IoMT)-integrated biosensors for intelligent healthcare and his contributions to COVID-19 management exemplify his dedication to leveraging cutting-edge technologies for societal benefit. Moving forward, Dr. Kaushik's research is poised to make even greater strides in catalysis and sensing technology, addressing emerging challenges and driving innovation in the field.

NOTABLE PUBLICATION

Towards 5th Generation AI and IoT Driven Sustainable Intelligent Sensors Based on 2D MXenes and Borophene 2022 (261)

Functionalized terahertz plasmonic metasensors: Femtomolar-level detection of SARS-CoV-2 spike proteins 2021 (259)