Forensic Scientist of the Year Award

Mukesh Sharma
State Forensic Science Laboratery, India

Mukesh Sharma
Affiliation State Forensic Science Laboratery
Country India
Google Scholar ID XgS1vCwAAAAJ
Documents 64
Citations 567
h-index 10
Subject Area Physics and Astronomy
Event International Forensic Scientist Awards

Mukesh Sharma is a researcher whose documented scholarly work spans forensic science, toxicological investigation, injury interpretation, and experimental studies involving radiation and momentum-density measurements. His research record combines forensic applications with scientific approaches relevant to evidence interpretation and analytical investigation. The available scholarly profile records 64 documents, 567 citations, and an h-index of 10, providing a quantitative basis for assessing his research visibility. [1]

Abstract

This academic recognition profile examines the research record of Mukesh Sharma in relation to the Forensic Scientist of the Year Award. His documented publications include work addressing forensic interpretation of injuries, toxicological plants with potential forensic relevance, and experimental physics investigations. The available citation profile reports 64 documents, 567 citations, and an h-index of 10. These indicators, together with the subject-area classification of Physics and Astronomy, provide evidence of sustained scholarly activity across interdisciplinary research contexts. [1]

Keywords

Forensic science; forensic toxicology; injury interpretation; forensic investigation; toxicological plants; radiation physics; momentum density; scientific research; scholarly impact.

Introduction

Forensic science integrates scientific methods with the investigation and interpretation of evidence. Research within the field frequently crosses disciplinary boundaries, particularly where analytical physics, toxicology, medicine, and evidentiary interpretation intersect. Sharma’s publication record reflects this interdisciplinary character, with studies addressing both applied forensic questions and experimentally oriented scientific problems. Such a profile is relevant to recognition frameworks that consider research contribution, scholarly continuity, and measurable academic impact.

Research Profile

Sharma’s documented research interests include forensic toxicology, interpretation of bodily injuries, and scientific analysis using physical measurement techniques. One review examines Indian toxicological plants as potential botanical weapons, demonstrating an intersection between toxicology, environmental sources, and forensic assessment. [3] Other publications investigate momentum-density measurements in tantalum and the performance of a 137Cs gamma-ray Compton spectrometer, reflecting a methodological foundation in experimental physics. [2] [4]

Research Contributions

The available publications indicate several identifiable areas of contribution:

  • Forensic interpretation of injuries and wounds, supporting structured assessment of physical evidence. [5]
  • Forensic toxicological review of plant-derived hazards and their potential evidentiary significance. [3]
  • Experimental investigations of momentum densities and radiation-based measurement systems relevant to applied physical research. [2] [4]

Publications

Selected publications associated with the supplied scholarly record include Forensic Interpretation of Injuries / Wounds Found on the Human Body, published in the Journal of Punjab Academy of Forensic Medicine and Toxicology; Forensic Study of Indian Toxicological Plants as Botanical Weapon (BW): A Review; Anisotropy in the Momentum Density of Tantalum; and Performance of 137Cs Gamma-Ray Compton Spectrometer for the Study of Momentum Densities. The record also includes a forensic medicine and toxicology textbook listing associated with Avichal Publishing Company. [2] [3] [4] [5] [6]

Research Impact

The supplied scholarly metrics indicate measurable research visibility, with 567 citations across 64 documented works and an h-index of 10. [1] Individual publications in the supplied record have also accumulated substantial citation activity, including the reported 245 citations for the forensic medicine and toxicology textbook entry and 72 citations for the study of anisotropy in tantalum. These figures should be interpreted as bibliometric indicators rather than as standalone measures of scientific quality.

Award Suitability

The available evidence supports consideration of Sharma for a forensic science research recognition based on the combination of documented scholarly output, citation activity, and research spanning forensic and scientific disciplines. His work on injury interpretation and toxicological evidence has direct relevance to forensic practice, while his physics-oriented publications demonstrate broader scientific engagement. The profile therefore presents a substantive research basis for consideration within the International Forensic Scientist Awards, subject to the award’s formal evaluation criteria and verification procedures.

Conclusion

Mukesh Sharma’s available research record demonstrates sustained scholarly activity at the intersection of forensic science, toxicology, injury interpretation, and experimental physics. With 64 documented publications, 567 citations, and an h-index of 10, the supplied bibliometric profile provides a measurable foundation for academic recognition. [1] His selected publications further illustrate the breadth of topics addressed across forensic and scientific research.

References

  1. Elsevier. (n.d.). Scopus author details: Mukesh Sharma, Author ID XgS1vCwAAAAJ. Scopus.
    https://scholar.google.com/citations?hl=en&user=XgS1vCwAAAAJ
  2. Ahuja, B. L., Sharma, M., & Mathur, S. (2006). Anisotropy in the momentum density of tantalum. Nuclear Instruments and Methods in Physics Research Section B.
  3. Sharma, M. (2011). Forensic study of Indian toxicological plants as botanical weapon (BW): A review. Journal of Environmental & Analytical Toxicology, 1(1), 1–5.
  4. Ahuja, B. L., & Sharma, M. (2005). Performance of 137Cs gamma-ray Compton spectrometer for the study of momentum densities. Pramana, 65(1), 137–145.
  5. Sharma, M. (2011). Forensic interpretation of injuries / wounds found on the human body. Journal of Punjab Academy of Forensic Medicine and Toxicology, 11(2), 105–109.
  6. Aggrawal, A. (2014). Textbook of Forensic Medicine and Toxicology. Avichal Publishing Company.
Mukesh Sharma | Physics and Astronomy | Forensic Scientist of the Year Award

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