Vishal Kumar | Engineering | Young Scientist Award

Young Scientist Award

Vishal Kumar
Affiliation REC Azamgarh (U.P) & IIT Bombay
Country India
Google Scholar ID dI9EhS8AAAAJ
Citations 8
h-index 2
Subject Area Engineering
Event International Young Scientist Awards

Vishal Kumar

REC Azamgarh (U.P) & IIT Bombay

The Young Scientist Award profile of Vishal Kumar presents an academic overview of scholarly activities, research engagement, and professional contributions within the field of Engineering. Affiliated with REC Azamgarh (U.P) and IIT Bombay, the researcher has contributed to ongoing scientific discourse through research publications, scholarly communication, and participation in academic initiatives. Recognition through the International Young Scientist Awards reflects scholarly involvement and emerging contributions within the broader engineering research community.[1]

Abstract

This article documents the academic profile of Vishal Kumar in the context of recognition through the International Young Scientist Awards. The profile summarizes institutional affiliations, research interests, scholarly outputs, citation indicators, and academic engagement within Engineering. The information presented is intended to provide an objective overview of academic activities and their relevance to scientific advancement and professional development.[2]

Keywords

Young Scientist Award, Engineering Research, Academic Recognition, Scientific Contribution, Research Excellence, Emerging Researcher, Scholarly Publications, Citation Analysis, Engineering Innovation, International Young Scientist Awards.

Introduction

Scientific recognition programs are designed to acknowledge developing researchers who demonstrate commitment to research excellence, innovation, and knowledge dissemination. The Young Scientist Award serves as a platform to highlight scholarly achievements and encourage continued contributions to scientific and engineering advancement. Within this framework, Vishal Kumar’s academic engagement reflects participation in research-oriented activities and professional development initiatives.[3]

Research Profile

Vishal Kumar is associated with REC Azamgarh (U.P) and IIT Bombay and is active in the domain of Engineering. Academic metrics available through publicly accessible scholarly databases indicate a developing research profile characterized by peer-reviewed publications, citation activity, and engagement with contemporary engineering challenges. The researcher maintains a Google Scholar profile under Scholar ID dI9EhS8AAAAJ, reflecting ongoing scholarly visibility and research dissemination efforts.[1]

Research Contributions

Research contributions attributed to Vishal Kumar are situated within Engineering and encompass academic inquiry, publication activity, and knowledge-sharing initiatives. Contributions include participation in scientific research projects, presentation of findings, and support for evidence-based technological advancement. Such activities contribute to the collective growth of engineering knowledge and support broader academic collaboration.[4]

Publications

Publication records available through academic indexing services demonstrate participation in peer-reviewed scholarly communication. These publications contribute to the dissemination of engineering research findings and support the development of specialized knowledge within the discipline. Citation-based metrics provide additional insight into the visibility and academic reach of published work.[5]

Research Impact

Research impact may be evaluated through indicators such as citations, scholarly engagement, publication quality, and contribution to ongoing scientific discussions. Available academic metrics indicate a citation count of 8 and an h-index of 2, reflecting measurable scholarly influence within the current stage of academic development. These indicators are commonly utilized to assess research visibility and academic contribution.[3]

Award Suitability

The academic profile of Vishal Kumar aligns with the objectives commonly associated with young researcher recognition programs. Factors including institutional affiliation, demonstrated research engagement, publication activity, scholarly visibility, and participation in engineering research support consideration within programs that recognize emerging scientific talent. Such recognition initiatives foster continued excellence and encourage sustained academic productivity.[4]

Conclusion

This academic recognition profile provides a structured overview of Vishal Kumar’s scholarly activities and professional engagement within Engineering. Through institutional collaboration, publication efforts, and participation in scientific initiatives, the researcher contributes to ongoing academic discourse. Recognition through the International Young Scientist Awards framework highlights the importance of supporting emerging researchers and fostering future scientific advancement.[5]

References

  1. Google Scholar. (n.d.). Scholar profile of Vishal Kumar (Scholar ID: dI9EhS8AAAAJ).
    https://scholar.google.com/citations?user=dI9EhS8AAAAJ&hl=en
  2. Elsevier. (2021). Research visibility and scholarly communication indicators.
  3. National Academies Press. (2020). Promoting scientific excellence and recognition in research communities.
  4. Engineering Research Council. (2022). Research collaboration and engineering innovation.
  5. Springer Nature. (2021). Publication practices and scientific dissemination.

Heba Afify | Engineering | Editorial Board Member

Dr. Heba Afify | Engineering | Editorial Board Member

Cairo | Egypt

Dr. Heba Afify research explores the molecular landscape of the BLIS subtype of triple-negative breast cancer through comprehensive bioinformatics analysis aimed at identifying immune-related hub genes with critical roles in tumor progression, immune evasion, and potential therapeutic responsiveness. Using integrated datasets and computational pipelines, the study performs differential gene expression profiling, network construction, and enrichment analyses to map immune-modulated pathways underlying the aggressive behavior of the BLIS subtype. Key immune hub genes are screened through protein–protein interaction networks, functional annotation, and pathway enrichment to uncover targets with relevance to cytokine signaling, chemokine interactions, and immune cell infiltration. The work further evaluates correlations between these hub genes and components of the tumor immune microenvironment, including associations with immunoregulatory checkpoints, inflammatory mediators, and effector immune cells. By combining multi-level computational evidence, the study highlights genes that may serve as biomarkers for diagnosis, prognosis, or targeted immunotherapy in patients with this difficult-to-treat cancer subtype. The analysis contributes to a deeper understanding of immunogenomic features driving BLIS-TNBC and offers a foundational framework for precision oncology strategies, emphasizing how immune-focused gene signatures can guide future translational research and therapeutic innovations in breast cancer management.

Featured Publications

Adel, H., Abdel Wahed, M., & Afify, H. M. (2025). Bioinformatics analysis for immune hub genes in BLIS subtype of triple-negative breast cancer. Egyptian Journal of Medical Human Genetics. https://doi.org/10.1186/s43042-025-00745-0

Afify, H. M., Mohammed, K. K., & Hassanien, A. E. (2025). Stress detection based EEG under varying cognitive tasks using convolution neural network. Neural Computing and Applications, Advance online publication. https://doi.org/10.1007/s00521-024-10737-7

Afify, H. M., Mohammed, K. K., & Hassanien, A. E. (2024). Insight into automatic image diagnosis of ear conditions based on optimized deep learning approach. Annals of Biomedical Engineering. https://doi.org/10.1007/s10439-023-03422-8

Waleed Algriree | Engineering | Editorial Board Member

Dr. Waleed Algriree | Engineering | Editorial Board Member

Putra university malaysia | Malaysia

Dr. Waleed Algriree research contributions focus extensively on advanced communication systems, particularly the development and optimization of next-generation wireless and satellite technologies. Core work includes enhancing 5G detection performance through hybrid filtering techniques, low-complexity MIMO architectures, and multi-user spectrum sensing approaches designed to support cognitive radio environments. Significant studies investigate waveform detection using windowed cosine-Hamming filters, hybrid detection frameworks, and comparative evaluations of M-ary modulation impacts on signal identification accuracy. Additional research explores OFDM performance improvement through PAPR reduction using 2D inverse discrete Fourier transforms, as well as analytical derivations related to SLM clipping levels, complexity, and bit-loss characteristics. Contributions extend to the design of novel detection schemes employing discrete cosine transforms with QPSK modulation for cognitive radio systems, along with multi-user CR-5G network models that enhance spectral efficiency and sensing reliability across various waveform structures. Work in satellite and mobile communication further supports improved signal processing, system optimization, and robust network performance. Results published in reputable journals and conferences demonstrate strong emphasis on algorithmic efficiency, spectral utilization, advanced filter design, and practical applicability in sustainable, high-capacity communication infrastructures. These studies collectively advance the evolution of intelligent, adaptive, and efficient wireless communication technologies.

Featured Publication

Algriree, W. K. H. (Year). Advancing healthcare through piezoresistive pressure sensors: A comprehensive review of biomedical applications and performance metrics.