Jatindranath Gain | Physics and Astronomy | Outstanding Scientist Award

Outstanding Scientist Award

Jatindranath Gain — Derozio Memorial College

Jatindranath Gain
Affiliation Derozio Memorial College
Country India
Google Scholar ID Ss8u6csAAAAJ&hl
Documents 24
Citations 22
h-index 2
Subject Area Physics and Astronomy
Event World Top Scientist Awards
ORCID 0000-0003-2597-6360

Jatindranath Gain is a researcher affiliated with Derozio Memorial College, India, whose academic profile is associated with the subject area of Physics and Astronomy. Available scholarly profile information records 24 documents, 22 citations, and an h-index of 2. These indicators provide a quantitative description of the research record available through the stated academic profile and should be interpreted in the context of disciplinary publication practices, career stage, and database coverage. [1]

Abstract

This article presents an academic recognition profile for Jatindranath Gain of Derozio Memorial College, India, in the field of Physics and Astronomy. The profile summarizes available scholarly identifiers and bibliometric indicators, including 24 recorded documents, 22 citations, and an h-index of 2. It also records the researcher’s ORCID identifier and the stated association with the World Top Scientist Awards. The purpose of the article is to provide a structured and neutral account of the researcher’s academic profile, research activity, publication record, measurable scholarly impact, and relevance to an academic recognition event. Bibliometric indicators are treated as descriptive evidence rather than as definitive measures of research quality, since citation patterns and database coverage vary among disciplines and institutions.[2]

Keywords

Jatindranath Gain; Physics and Astronomy; semiconductor nanostructures; optoelectronic devices; nanophotonics; quantum mechanics; quantum computation; multiple quantum wells; electron tunneling; photonic devices; semiconductor structures; transfer matrix method; aperiodic quantum wells; research publications; academic research; Derozio Memorial College.

Introduction

Academic recognition commonly incorporates several forms of evidence, including scholarly publications, citations, persistent researcher identifiers, institutional affiliation, and disciplinary contribution. In this context, the profile of Jatindranath Gain is situated within Physics and Astronomy and is linked to Derozio Memorial College in India. The available scholarly information indicates an identifiable research record comprising 24 documents and 22 citations, with an h-index of 2. The recognition considered in this article is the World Top Scientist Awards. Award suitability is therefore discussed using the available profile information and documented research indicators, without presenting the recognition as an independently verified assessment of overall scientific standing. The distinction is important because bibliometric measures are only one component of scholarly evaluation..[2]

Research Profile

Jatindranath Gain is affiliated with Derozio Memorial College in India and is associated with the academic subject area of Physics and Astronomy. The supplied profile information identifies 24 documents and 22 citations, together with an h-index of 2. [1] These figures describe the indexed research activity represented by the available profile at the time of compilation and may change as publications receive additional citations or as bibliographic databases update their records.[3]

Research Contributions

The available profile establishes a research presence in Physics and Astronomy, supported by a documented collection of scholarly outputs and associated citation activity. The recorded 24 documents indicate a body of academic work that can be assessed through publication-level information, while the 22 citations provide a measurable indication of subsequent scholarly referencing. [1]

Publications

The supplied research profile reports 24 documents associated with Jatindranath Gain. [1] A complete publication-level bibliography should be compiled directly from the researcher’s authoritative scholarly profiles and individual publication records before specific titles, journals, publication dates, authorship positions, or DOI metadata are attributed to the researcher.

Research Impact

The available bibliometric profile records 22 citations across 24 documents and an h-index of 2. [1] These indicators provide a quantitative description of the visibility of the researcher’s indexed scholarly output. Citation counts, however, are influenced by publication age, disciplinary citation practices, collaboration patterns, database coverage, and the accessibility of individual publications. Consequently, the indicators should be considered alongside qualitative evidence when assessing research impact.

Award Suitability

The stated recognition is associated with the World Top Scientist Awards. The available academic information establishes several characteristics that can be relevant to an academic recognition profile: an institutional affiliation, a defined research subject area, a documented publication record, citation activity, an h-index, and persistent researcher identifiers. These elements provide a factual basis for presenting the researcher within an academic award context.

Conclusion

Jatindranath Gain is an academic researcher affiliated with Derozio Memorial College, India, and associated with Physics and Astronomy. The supplied scholarly profile records 24 documents, 22 citations, and an h-index of 2. These indicators establish a measurable research record while remaining subject to the coverage and updating practices of the relevant scholarly databases.The researcher’s ORCID identifier and Google Scholar profile provide complementary mechanisms for identifying and reviewing scholarly activity. Together with the institutional affiliation and stated research area, these details provide a structured academic profile suitable for documentation in connection with the World Top Scientist Awards. [3]

References

  1. Google Scholar. (n.d.). Jatindranath Gain — Google Scholar profile.https://scholar.google.com/citations?user=Ss8u6csAAAAJ&hl=en
  2. Gain, J., Sharma, S., Karmakar, R., Jiauddin, M., & Chatterjee, S. (2024). Aryabhata’s enduring contributions to astronomy in ancient India: Unveiling the cosmic secrets. International Journal for Multidisciplinary Research, 6(3).https://doi.org/10.36948/ijfmr.2024.v06i03.24020
  3. Chandra, B. R., & Gain, J. (2024). Unleashing innovation in electrical and electronic engineering: The role of new technology in driving progress. Journal of Electrical Systems.https://doi.org/10.52783/jes.3340
  4. Gain, J. (2023). The ultimate reality in the universe: A study on the views of quantum physics and Vedanta philosophy. Studies in Philosophy of Science and Education, 4(3).https://doi.org/10.46627/sipose.v4i3.262
  5. Gain, J., Dassarkar, M., & Kundu, S. (2022). Energy effective mass dependence of electron tunneling through CdS/CdSe, AlxGa1-xAs/GaAs and AlSb/InAs multiple quantum barriers.https://doi.org/10.21917/IJME.2021.0205

Subhashini Tata | VLSI Design | Best Faculty Award

Dr. Subhashini Tata | VLSI Design | Best Faculty Award

Associate professor | Seshadri Rao Gudlavalleru Engineering College | India

Dr. Subhashini Tata is an Associate Professor in the Department of Internet of Things at Seshadri Rao Gudlavalleru Engineering College, with recognized expertise in VLSI Design, Embedded Systems, and low-power hardware architectures. She holds doctoral and postgraduate qualifications in Electronics and Communication Engineering with specialization in digital electronics, communication systems, and power-optimized embedded controller design. With extensive professional experience spanning teaching, research, curriculum development, and academic leadership, she has contributed significantly to undergraduate and postgraduate engineering education while actively engaging in research mentoring and innovation-driven initiatives. Her research focuses on low-power VLSI design, embedded controller architectures, edge computing, and intelligent hardware systems, resulting in thirty-nine scholarly publications and multiple patents, including granted and published intellectual property in advanced VLSI and AI-integrated embedded technologies. Her sustained research productivity, applied innovation, and contributions to emerging IoT-centric hardware solutions reflect strong academic impact and future research potential, making her a deserving candidate for research-focused academic recognition.

Citation Metrics (Google Scholar)

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Implementation of Enhanced Security Algorithms in Mobile Ad Hoc Networks


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– Advances in Signal Processing, Embedded Systems and IoT


Power Optimized Datapath Units of Hybrid Embedded Core Architecture Using Clock Gating


– International Journal of VLSI Design & Communication Systems

Yongjoon Cho | Organic Semiconductor Synthesis | Research Excellence Award

Prof. Yongjoon Cho | Organic Semiconductor Synthesis | Research Excellence Award

Professor | Daegu Gyeongbuk Institute of Science & Technology | South Korea

Prof. Yongjoon Cho is an Assistant Professor at Daegu Gyeongbuk Institute of Science and Technology, specializing in organic semiconductors, materials chemistry, and optoelectronic materials design. He completed combined master’s and doctoral training in energy engineering with a strong focus on organic conjugated materials, following undergraduate studies spanning energy conversion, storage, and nano-chemistry. His professional experience includes postdoctoral research roles at leading international research environments, where he contributed to advanced organic semiconductor synthesis, multifunctional electronic materials, and photovoltaic device development, alongside independent and collaborative research leadership. His research centers on the molecular design, synthesis, and engineering of high-performance organic semiconductors for electronics, solar cells, and bio-integrated devices, with publications in top-tier journals demonstrating high impact and wide citation. His work has significantly advanced understanding of structure–property relationships and stability–performance trade-offs in organic electronics. He has received prestigious national fellowships and institutional honors recognizing research excellence, originality, and scholarly promise, underscoring his growing influence and leadership potential in materials science research.

Citation Metrics (Scopus)



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Niansong Mei | microelectronics | Best Researcher Award

Assoc Prof. Niansong Mei | microelectronics | Best Researcher Award

Prof, Shanghai Advanced Research Institute, Chinese Academy of Sciences, China

Niansong Mei is an accomplished Associate Professor at the Shanghai Advanced Research Institute, Chinese Academy of Sciences. With a strong foundation in microelectronics, he has significantly contributed to the fields of high-performance integrated circuits and hardware security. 🌟

Publication Profile

Google Scholar

 

Education

Niansong received his B.S. degree in Physical Science and Technology from Soochow University, China, in 2001. He furthered his education with an M.S. degree in Microelectronics from Southeast University, China, in 2004, and completed his Ph.D. in Microelectronics at Fudan University, China, in 2011. 🎓

Experience

After earning his Ph.D., Niansong joined the Shanghai Advanced Research Institute, Chinese Academy of Sciences, as an Associate Professor. Prior to this, he served as a group leader at Semiconductor Manufacturing International Corporation (SMIC) from 2004 to 2008, where he gained valuable industry experience. 🏢

Research Focus

His research interests encompass high-performance integrated circuits and systems, hardware security, and blockchain technology. Niansong aims to advance the state of the art in these critical areas through innovative research. 🔍

Awards and Honours

Niansong has received various accolades for his contributions to the field, reflecting his commitment to excellence in research and education. 🏆

Publication Top Notes

Vaq-based tri-level switching scheme for SAR ADC

A 920-MHz dual-mode receiver with energy harvesting for UHF RFID tag and IoT

A review of converter circuits for ambient micro energy harvesting

A 16.4 nW, sub-1 V, resistor-less voltage reference with BJT voltage divider

CMOS high linearity PA driver with an on-chip transformer for W-CDMA application