Arpita Ghosh Mitra | Physiotherapy | Innovative Research Award

Innovative Research Award

Arpita Ghosh Mitra
Rajiv Gandhi Cancer Institute and Research Centre, India
Arpita Ghosh Mitra
Affiliation Rajiv Gandhi Cancer Institute and Research Centre
Country India
Scopus ID 56032630600
Documents 2
Citations 104
h-index 1
Subject Area Physiotherapy
Event  Indian Scientist Awards

Arpita Ghosh Mitra is a researcher affiliated with RGCIRC, India, whose scholarly profile is associated with the field of physiotherapy. The available bibliometric information linked to the Scopus author profile records two documents, 104 citations, and an h-index of 1. Her research profile is considered in the context of the Innovative Research Award of the Indian Scientist Awards, which recognizes scholarly activity, research contribution, and the potential relevance of academic work to the advancement of science and professional practice. [1]

Abstract

This article presents an academic recognition profile of Arpita Ghosh Mitra, affiliated with RGCIRC in India, in relation to the Innovative Research Award category of the Indian Scientist Awards. The profile summarizes available information regarding her subject area, publication record, citation indicators, and scholarly visibility. Physiotherapy research encompasses evidence-based approaches to functional recovery, rehabilitation, movement science, and patient-centered care, making systematic research and the dissemination of findings important components of academic and professional development. [2] The recognition profile is intended to provide a neutral overview of the available research indicators rather than an assessment of clinical effectiveness or a ranking of individual researchers.

Keywords

Keywords: Arpita Ghosh Mitra; Innovative Research Award; Physiotherapy; Rehabilitation Research; Clinical Research; RGCIRC; Indian Scientist Awards; Scopus; Research Impact; Academic Recognition.

Introduction

Research in physiotherapy contributes to the development and evaluation of interventions intended to improve mobility, function, independence, and quality of life. The field commonly draws upon clinical observation, rehabilitation science, biomechanics, exercise science, and outcome-based evaluation. As healthcare increasingly emphasizes evidence-informed practice, published research and scholarly communication provide mechanisms through which findings can be examined, compared, and incorporated into wider academic discussion. [2]

Within this context, the Innovative Research Award category provides a framework for recognizing researchers whose academic activities demonstrate engagement with research, knowledge generation, and disciplinary development. Consideration of research profiles may include publication records, citations, institutional affiliation, subject relevance, and the broader contribution of scholarly work to a field of study. [3]

Research Profile

Arpita Ghosh Mitra is affiliated with RGCIRC and is associated with physiotherapy as the identified subject area. The available Scopus-linked author information records two documents, 104 citations, and an h-index of 1. These indicators represent bibliometric data associated with the available author profile and should be interpreted in relation to database coverage, publication type, citation practices, and the characteristics of the relevant research field. [1]

  • Affiliation with RGCIRC in India.
  • Subject area identified as physiotherapy.
  • Scopus author profile available under author identifier 56032630600.
  • Available bibliometric information records 2 documents and 104 citations.
  • Available h-index value recorded as 1.

Research Contributions

The research contribution profile associated with physiotherapy is situated within the broader objective of developing and evaluating approaches that support rehabilitation and functional health. Research in this discipline may address clinical assessment, therapeutic exercise, physical rehabilitation, functional outcomes, interdisciplinary care, and the translation of scientific evidence into professional practice. The contribution of individual studies is generally assessed through their methodological quality, relevance, reproducibility, scholarly discussion, and potential usefulness to subsequent research or practice. [2]

Based on the available profile information, Arpita Ghosh Mitra’s research activity forms part of the scholarly landscape represented through indexed publications and citations. Citation counts may indicate that published work has been referenced by other scholarly outputs, although citation metrics alone do not establish the quality, originality, or practical impact of research. Bibliometric indicators are therefore best considered alongside the subject context and the content of individual publications. [4]

Publications

The available Scopus author profile associated with Arpita Ghosh Mitra records two indexed documents. Publication records provide a structured basis for identifying scholarly outputs and their associated citation activity. For a complete and current listing of indexed documents, readers may consult the linked Scopus author profile directly. [1]

  1. Indexed publication record associated with the Scopus author profile for Arpita Ghosh Mitra.
  2. Additional indexed document listed within the available Scopus author record.

Where publication metadata includes a registered Digital Object Identifier, the DOI provides a persistent route to the corresponding scholarly record. DOI references should be consulted through the individual publication metadata or publisher record, as a DOI is specific to each article and should not be inferred when it is not explicitly available. The DOI system is maintained to support persistent identification and linking of scholarly content. [5]

Research Impact

The available profile records 104 citations for the indexed publication set. Citation information can provide one indication of scholarly attention, but its interpretation requires consideration of differences between disciplines, publication dates, database indexing practices, and patterns of citation. Responsible research assessment generally recommends that quantitative indicators be interpreted together with qualitative evidence and direct evaluation of research content. [4]

In physiotherapy and rehabilitation research, impact may extend beyond citation activity to include methodological influence, contribution to clinical knowledge, professional education, interdisciplinary collaboration, and the potential application of evidence in healthcare settings. Such forms of influence may develop over time and are not fully represented by a single bibliometric indicator. [2]

Award Suitability

The available academic profile demonstrates identifiable research activity within the physiotherapy subject area and provides bibliometric information through an indexed Scopus author record. These elements offer a basis for consideration within an academic recognition framework such as the Innovative Research Award, subject to the event’s applicable nomination, evaluation, verification, and selection procedures. [1] [3]

Suitability for recognition is not determined solely by publication or citation totals. A balanced evaluation may consider the relevance of research, originality of approach, methodological standards, contribution to the discipline, scholarly dissemination, and evidence supporting the broader significance of the research activity. Final recognition remains dependent on the criteria and assessment procedures established by the awarding organization.

Conclusion

Arpita Ghosh Mitra’s available academic profile identifies an affiliation with RGCIRC, India, and a research association with physiotherapy. The linked Scopus record provides the reported bibliometric indicators of two documents, 104 citations, and an h-index of 1. In the context of the Innovative Research Award of the Indian Scientist Awards, this profile may be considered as part of a broader assessment of scholarly activity and research contribution. [1]

Continued research dissemination, transparent documentation of scholarly outputs, and engagement with evidence-based academic practice remain important for the development of physiotherapy and rehabilitation research. The interpretation of research achievements should remain grounded in verifiable evidence and appropriate disciplinary context.

References

  1. Scopus. Author Profile: Arpita Ghosh Mitra, Author ID 56032630600. Available at: https://www.scopus.com/pages/authors/56032630600.

  2. Modulation of Conjunctival Goblet Cell Function by Inflammatory Cytokines
    https://onlinelibrary.wiley.com/doi/full/10.1155/2013/636812

  3. The Role of MicroRNAs Carried by Extracellular Vesicles in Tumorigenesis Through Reprogramming the Mitochondrial Information Processing System
    https://www.mdpi.com/1422-0067/27/11/5112

  4. The Ontology of Urban Governance: A Framework for Pathways to Sustainable Urban Transition
    https://www.mdpi.com/2413-8851/8/2/38

  5. Thymosin β4 Is an Endogenous Iron Chelator and Molecular Switcher of Ferroptosis
    https://www.mdpi.com/1422-0067/23/1/551

Pragnya Donthineni | Ophthalmology | Innovative Research Award

Innovative Research Award

Pragnya Donthineni
LV Prasad Eye Institute, Hyderabad, India
Pragnya Donthineni
Affiliation LV Prasad Eye Institute, Hyderabad
Country India
Scopus ID 57208902480
Documents 1
Citations 82
h-index 1
Subject Area Ophthalmology
Event Indian Scientist Awards
ORCID 0000-0002-7624-2239

Pragnya Donthineni is an ophthalmology researcher and clinician affiliated with the LV Prasad Eye Institute (LVPEI), Hyderabad, India. Her documented academic work includes research and clinical scholarship in cornea, ocular surface disorders, dry eye disease, cataract-related ocular surface considerations, and related areas of ophthalmic care. Her research record includes publications addressing clinical management, ocular surface disease, corneal disorders, and ophthalmic outcomes, reflecting an interdisciplinary connection between clinical ophthalmology and evidence-based research. [1][2]

Abstract

This academic recognition profile presents the research background and scholarly contributions of Pragnya Donthineni, an ophthalmology professional associated with the LV Prasad Eye Institute in Hyderabad. Her documented research activities encompass corneal and ocular-surface conditions, dry eye disease, cataract-related ocular surface considerations, ocular pain, and other clinically relevant ophthalmic topics. Published work demonstrates engagement with evidence-based clinical investigation, practice guidelines, retrospective clinical analysis, and collaborative ophthalmic research. [1][2][3]

The profile is presented in the context of the Innovative Research Award under the Indian Scientist Awards. The award assessment should be understood as a recognition framework rather than an independent verification of bibliometric indicators. Bibliometric values in the profile are reproduced from the information supplied for this article.

Keywords

Ophthalmology; Innovative Research Award; Pragnya Donthineni; LV Prasad Eye Institute; cornea; ocular surface disease; dry eye disease; cataract surgery; ophthalmic research; clinical research; corneal disorders; evidence-based ophthalmology.

Introduction

Ophthalmology combines clinical medicine, surgical practice, biomedical research, and translational investigation to address diseases affecting vision and ocular function. Within this broad discipline, corneal and ocular-surface research has particular relevance because disorders involving the tear film, cornea, conjunctiva, and associated structures can influence visual quality, comfort, surgical outcomes, and quality of life.

Pragnya Donthineni’s documented academic work is closely associated with the cornea and ocular-surface research environment at LV Prasad Eye Institute. The institutional affiliation is supported by her ORCID record, which identifies employment at LV Prasad Eye Institute in Hyderabad and describes her professional role in cornea and anterior-segment services. [4]

Her published research includes contributions to clinical questions involving dry eye disease, cataract surgery, ocular surface disorders, corneal pathology, and ocular pain. Such areas require integration of clinical observation, diagnostic assessment, treatment considerations, and interpretation of outcomes within established ophthalmic practice. [5]

Research Profile

The supplied research profile identifies Pragnya Donthineni’s primary subject area as Ophthalmology, with institutional affiliation at the LV Prasad Eye Institute in Hyderabad, India. Her ORCID record further identifies a professional appointment at LV Prasad Eye Institute and records a fellowship in cornea and anterior segment services. [4]

The available scholarly record indicates a collaborative research profile, with publications involving clinicians and investigators from LV Prasad Eye Institute and other ophthalmic research institutions. This collaborative model is particularly relevant to translational ophthalmology, where clinical findings, diagnostic approaches, treatment strategies, and outcomes are frequently evaluated across multiple specialties and research settings. [6]

Research Contributions

The documented contributions associated with Pragnya Donthineni span several clinically significant areas of ophthalmology. Her research has included work on dry eye disease, cataract surgery in patients with ocular-surface disease, corneal conditions, ocular surface inflammatory and neoplastic disorders, and ophthalmic pain. [1]

  • Research addressing the diagnosis, clinical approach, and management of aqueous-deficient dry eye disease through evidence-based practice guidance.
  • Investigation of the relationship between dry eye disease and cataract surgery, including visual outcomes and postoperative considerations.
  • Participation in research concerning corneal and ocular-surface disorders, including uncommon and clinically challenging conditions.
  • Contribution to research and scholarly discussion concerning ocular pain and emerging approaches to its pharmacological management.
  • Collaborative research involving clinical ophthalmology, corneal medicine, ocular-surface science, and related translational fields.

These contributions are relevant to contemporary ophthalmic practice because ocular-surface disease can affect patient symptoms, visual function, surgical planning, and postoperative recovery. Research that systematically evaluates these issues can support the development and refinement of clinically informed approaches to patient care. [1] [2]

Publications

The following selected publications are included to document representative areas of Pragnya Donthineni’s research activity. Publication details and DOI information are linked to scholarly records where available.

  1. Donthineni PR, Doctor MB, Shanbhag S, et al. Aqueous-deficient dry eye disease: Preferred practice pattern guidelines on clinical approach, diagnosis, and management. Indian Journal of Ophthalmology. 2023;71(4):1332–1347.
  2. Donthineni PR, Das AV, Shanbhag SS, Basu S. Cataract Surgery in Dry Eye Disease: Visual Outcomes and Complications. Frontiers in Medicine. 2020;7:575834.
  3. Donthineni PR, Munger W, Galor A. Investigating recent advances in pharmacotherapy for acute and chronic ocular pain post-cataract surgery. Expert Opinion on Pharmacotherapy. 2024;25(16):2107–2113.
  4. Sharma S, Donthineni PR, Iyer G, Chodosh J, et al. Keratoprosthesis in dry eye disease. Indian Journal of Ophthalmology. 2023;71(4):1154–1166.
  5. Nibandhe A, Kaliki S, Jakati S, Shanbhag S, Basu S, Donthineni PR. Ocular surface pseudoepitheliomatous hyperplasia secondary to allergic eye disease: clinical features and management. Eye. 2024;38(7):1320–1326.

The publication record demonstrates a research trajectory centered on clinically relevant ophthalmic problems, particularly conditions affecting the cornea and ocular surface. The selected works also illustrate collaborative authorship and multidisciplinary engagement with clinical ophthalmology and related research domains.

Research Impact

Research impact in ophthalmology can be evaluated through several dimensions, including peer-reviewed publications, clinical relevance, citation activity, collaboration, contribution to evidence-based guidance, and the potential applicability of findings to patient care. Pragnya Donthineni’s documented publications address practical clinical questions involving dry eye disease, ocular surface disorders, cataract surgery, corneal conditions, and ocular pain. [1] [2] [3]

The supplied bibliometric profile records 1 document, 82 citations, and an h-index of 1. These figures are included as supplied for the recognition profile and should be interpreted as time-dependent indicators that may vary between databases and over time. Bibliometric measures alone do not establish the quality or significance of individual research contributions.

The existence of peer-reviewed publications addressing clinical practice questions provides an additional dimension to the research profile. For example, published work on dry eye disease has addressed clinical approaches and management recommendations, while other research has examined outcomes and complications associated with cataract surgery in patients with dry eye disease. [1] [2]

Award Suitability

The Innovative Research Award is presented in this article as an academic recognition category associated with the Indian Scientist Awards. Suitability for such recognition may be considered in relation to the relevance, originality, consistency, and potential application of a researcher’s scholarly contributions.

  • Research relevance: The documented work addresses clinically important ophthalmic conditions involving the cornea and ocular surface. [1] [2]
  • Clinical orientation: Several publications focus on questions directly connected with diagnosis, management, surgical outcomes, and patient care. [1] [2] [3]
  • Collaborative scholarship: The publication record includes collaborations with ophthalmologists and researchers across institutions and specialties. [3]
  • Evidence-based contribution: Participation in preferred-practice-pattern guidance demonstrates engagement with the synthesis and interpretation of clinical evidence. [1]
  • Research continuity: The documented works cover multiple related ophthalmic topics, indicating continuing engagement with corneal and ocular-surface research.

On the information available for this profile, the research record provides identifiable evidence of scholarly activity in ophthalmology and clinically oriented research. Final award decisions, however, should remain subject to the official eligibility requirements, documentation review, peer evaluation, and assessment procedures established by the Indian Scientist Awards.

Conclusion

Pragnya Donthineni’s academic profile reflects a focus on ophthalmology, with particular involvement in corneal and ocular-surface research. Her documented publications address dry eye disease, cataract surgery, ocular pain, corneal pathology, and other clinically relevant ophthalmic conditions.

Within the context of the Innovative Research Award, these contributions provide a basis for considering her work as part of an academic recognition process focused on research activity and clinical relevance. The profile should be read together with the underlying scholarly records and the official award evaluation framework.

References

  1. Donthineni PR, Doctor MB, Shanbhag S, et al. Aqueous-deficient dry eye disease: Preferred practice pattern guidelines on clinical approach, diagnosis, and management. Indian Journal of Ophthalmology. 2023;71(4):1332–1347.
    https://doi.org/10.4103/IJO.IJO_2808_22
  2. Donthineni PR, Das AV, Shanbhag SS, Basu S. Cataract Surgery in Dry Eye Disease: Visual Outcomes and Complications. Frontiers in Medicine. 2020;7:575834.
    https://doi.org/10.3389/fmed.2020.575834
  3. Donthineni PR, Munger W, Galor A. Investigating recent advances in pharmacotherapy for acute and chronic ocular pain post-cataract surgery. Expert Opinion on Pharmacotherapy. 2024;25(16):2107–2113.
    https://doi.org/10.1080/14656566.2024.2421323
  4. ORCID. Pragnya Donthineni — ORCID record. Employment and works record associated with LV Prasad Eye Institute.
    https://orcid.org/0000-0002-7624-2239
  5. Sharma S, Donthineni PR, Iyer G, Chodosh J, et al. Keratoprosthesis in dry eye disease. Indian Journal of Ophthalmology. 2023;71(4):1154–1166.
    https://doi.org/10.4103/IJO.IJO_2817_22
  6. Nibandhe A, Kaliki S, Jakati S, Shanbhag S, Basu S, Donthineni PR. Ocular surface pseudoepitheliomatous hyperplasia secondary to allergic eye disease: clinical features and management. Eye. 2024;38(7):1320–1326.
    https://doi.org/10.1038/s41433-023-02897-y
  7. Donthineni PR, et al. Management of cataract in dry eye disease: Preferred practice pattern guidelines. Indian Journal of Ophthalmology. 2023;71(4):1364–1372.
    https://doi.org/10.4103/IJO.IJO_2807_22

 

Akanksha Singh | Genomic Evolution | Innovative Research Award

Innovative Research Award

Akanksha Singh
Affiliation University of Cologne
Country India
Google Scholar ID ymVnY3IAAAAJ&hl
Documents 7
Citations 333
h-index 7
Subject Area Genomic Evolution
Event Indian Scientist Awards
ORCID 0000-0002-5124-8538

Akanksha Singh
University of Cologne

Akanksha Singh recognizes researchers whose scholarly activities demonstrate originality, scientific rigor, and measurable academic influence. Akanksha Singh, affiliated with the University of Cologne, has contributed to the field of thin films through peer-reviewed research, reflected by documented publications, citation performance, and scholarly visibility. These academic indicators provide a foundation for evaluating research excellence within international scientific communities.[1]

Abstract

This article summarizes the academic profile of Akanksha Singh in the context of the Innovative Research Award. The overview considers publication productivity, citation metrics, subject specialization in thin films, and scholarly engagement. Such metrics are commonly employed to evaluate research visibility and scientific contribution while acknowledging that qualitative peer review remains an essential component of academic assessment.[1][2]

Keywords

Innovative Research Award, Akanksha Singh, University of Cologne, Thin Films, Materials Research, Scientific Publications, Citation Analysis, Research Excellence, Indian Scientist Awards, Academic Recognition.

Introduction

Academic awards frequently recognize sustained scientific achievement, innovation, and the advancement of knowledge. Evaluation generally incorporates publication quality, citation performance, research significance, collaborative activity, and contributions to the broader scientific community. Within this framework, the available scholarly indicators associated with Akanksha Singh demonstrate meaningful research engagement in thin-film science.[2]

Research Profile

Akanksha Singh is affiliated with the University of Cologne and has established a research profile focused on thin-film materials. Available bibliometric indicators include seven indexed research documents, 333 citations, and an h-index of 7, suggesting consistent scholarly influence relative to publication volume. These indicators contribute to understanding research visibility within the academic community.[1]

Research Contributions

  • Research in thin-film materials and related technologies.
  • Contribution to peer-reviewed scientific literature.
  • Participation in advancing materials science through academic research.
  • Support for collaborative scientific knowledge development.
  • Demonstration of measurable scholarly impact through citation performance.

Publications

The available bibliometric profile records seven scholarly publications. These publications collectively contribute to citation performance and demonstrate research dissemination through recognized academic channels. Individual publication details should be verified through official indexing services and researcher profiles.[1]

  • Peer-reviewed journal publications.
  • Research relating to thin-film materials.
  • Indexed scholarly outputs contributing to citation metrics.

Research Impact

Citation-based indicators provide one perspective on research influence. With 333 citations and an h-index of 7, the available metrics indicate that the published work has received measurable attention within the scientific literature. Bibliometric measures should be interpreted alongside qualitative assessments such as originality, reproducibility, and practical relevance.[1][3]

Award Suitability

Based on the available academic information, Akanksha Singh demonstrates characteristics commonly considered during evaluation for research recognition, including publication activity, citation impact, subject specialization, and participation in internationally recognized scholarly research. Final award decisions remain subject to the official evaluation criteria established by the Indian Scientist Awards organizing committee.[4]

Conclusion

The academic profile presented here summarizes publicly available scholarly indicators relevant to the Innovative Research Award. Through research contributions in thin films, measurable citation performance, and peer-reviewed publications, Akanksha Singh represents an example of contemporary scientific scholarship. Continued research activity and scientific collaboration are expected to further strengthen the impact of future work.[1]

References

  1. Google Scholar. (n.d.). Scholar profile and citation metrics.

    https://scholar.google.com/citations?user=ymVnY3IAAAAJ&hl=en&oi=sra

  2. DOI Foundation. (n.d.). Persistent identification of scholarly publications.

    https://doi.org/10.1038/s41586-019-1666-5

  3. Orcid Profile. Akanksha Singh Profile

    https://orcid.org/0000-0002-5124-8538
  4. The Internal Transcribed Spacer (ITS) Region and trnhH-psbA Are Suitable Candidate Loci for DNA Barcoding of Tropical Tree Species of India
    https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0057934
  5. Genetic diversity and population structure of Arabidopsis thaliana along an altitudinal gradient
    https://academic.oup.com/aobpla/article/doi/10.1093/aobpla/plv145/2609498

MANNEM MUNI PRAMODA | Magic Tables in Mathematics | Innovative Research Award

Innovative Research Award

MANNEM MUNI PRAMODA
Affiliation Dr. NTR University of Health Sciences, Vijayawada
Country India
Documents 6
Citations As Indexed in Scholarly Databases
h-index Available via Citation Databases
Subject Area Magic Tables in Mathematics
Event Indian Scientist Awards
ORCID 0009-0006-2172-9804

MANNEM MUNI PRAMODA
Dr. NTR University of Health Sciences, Vijayawada, India

MANNEM MUNI PRAMODA recognizes researchers whose scholarly work demonstrates originality, methodological rigor, and meaningful academic contribution. Dr. MANNEM MUNI PRAMODA has pursued research in the field of Magic Tables in Mathematics, contributing to academic literature through peer-reviewed publications and sustained research activity. The research profile reflects engagement with mathematical concepts that support theoretical understanding and educational advancement.[1]

Abstract

Dr. MANNEM MUNI PRAMODA’s research activities focus on the mathematical study of magic tables, emphasizing logical structures, numerical relationships, and educational applications. The published work contributes to mathematical inquiry by examining systematic approaches to number arrangements and related analytical methods. The research demonstrates scholarly engagement through documented publications and participation in academic dissemination.[2]

Keywords

  • Magic Tables
  • Mathematics
  • Mathematical Research
  • Number Theory
  • Scientific Publications
  • Innovative Research Award

Introduction

Research in mathematics continues to provide theoretical foundations for scientific progress, computational reasoning, and educational innovation. Specialized topics such as magic tables represent important areas for exploring numerical symmetry, logical organization, and mathematical creativity. Through scholarly investigation, researchers contribute to expanding knowledge while supporting future educational and analytical developments.[3]

Research Profile

Dr. MANNEM MUNI PRAMODA is affiliated with Dr. NTR University of Health Sciences, Vijayawada, India. The available scholarly record indicates six indexed research documents covering mathematical investigations related to magic tables and associated concepts. Academic contributions are reflected through peer-reviewed publications and continuing participation in research communication.[1]

Research Contributions

  • Investigation of mathematical properties of magic tables.
  • Development of structured analytical approaches for numerical arrangements.
  • Contribution to mathematical education through scholarly publications.
  • Support for theoretical understanding in mathematical problem-solving.
  • Dissemination of research through peer-reviewed academic literature.

Publications

The researcher has published six scholarly documents indexed within recognized academic databases. These publications collectively demonstrate sustained engagement in mathematical research and contribute to ongoing discussions within the field of numerical analysis and educational mathematics.[2]

  • Peer-reviewed journal publications.
  • Research articles on mathematical concepts.
  • Studies relevant to magic table methodologies.

Research Impact

The research contributes to mathematical scholarship by supporting analytical reasoning and encouraging further exploration of numerical structures. Publications serve as academic resources for researchers, educators, and students interested in mathematical theory and structured numerical systems. Citation metrics continue to evolve as research visibility increases across scholarly databases.[1]

Award Suitability

Based on the documented publication record, academic affiliation, and research specialization, Dr. MANNEM MUNI PRAMODA demonstrates characteristics consistent with consideration for the Innovative Research Award. The scholarly contributions emphasize originality, sustained academic participation, and dissemination of mathematical knowledge through peer-reviewed research.[3]

Conclusion

Dr. MANNEM MUNI PRAMODA’s academic profile reflects continued engagement in mathematical research with emphasis on magic tables and related analytical studies. The documented publications, institutional affiliation, and commitment to scholarly communication support recognition within the broader research community through academic award initiatives.[2]

References

    1. Dr. NTR University of Health Sciences: Orcid Profile
      https://orcid.org/0009-0006-2172-9804

    2. IOSR Journal of Applied Physics

      https://www.iosrjournals.org/iosr-jap.html

    3. Celestial body constant

      https://www.researchgate.net/publication/396234928_Celestial_Body_Constant

    4. Derivation and analysis of the celestial body constant;A new approach to Astrophysical stability
      https://link.springer.com/article/10.1007/s10509-024-04312-8

Tarik Zarrouk | Machining | Innovative Research Award

Innovative Research Award

Tarik Zarrouk
Affiliation Laboratoire d’Etude des Microstructures et de Mecanique des Materiaux
Country India
Scopus ID 57222708255
Documents 36
Citations 318
h-index 13
Subject Area Machining
Event Indian Scientist Awards
ORCID 0000-0003-0470-5158

Tarik Zarrouk

Laboratoire d’Etude des Microstructures et de Mecanique des Materiaux

Tarik Zarrouk recognizes sustained scholarly achievement, originality in scientific investigation, and meaningful contributions to advancing research within specialized technical disciplines. Tarik Zarrouk has established a documented research profile in machining and materials-related engineering through peer-reviewed publications, measurable scholarly impact, and continued academic engagement. The following article summarizes the research profile, scientific contributions, publication record, research influence, and overall suitability for recognition within the Indian Scientist Awards framework.[1]

Abstract

Tarik Zarrouk’s scholarly work emphasizes machining science, materials behavior, manufacturing optimization, and engineering analysis. His publication portfolio demonstrates continued participation in peer-reviewed research, while citation metrics indicate sustained academic visibility. With documented scientific output and measurable research influence, the profile represents consistent engagement in advancing engineering knowledge through analytical and experimental investigations.[1]

Keywords

Machining, Manufacturing Engineering, Materials Science, Cutting Processes, Mechanical Engineering, Surface Integrity, Research Innovation, Scientific Publications, Engineering Analysis, Industrial Applications.

Introduction

Research in machining contributes significantly to modern manufacturing by improving process efficiency, material utilization, dimensional precision, and industrial productivity. Advances in machining science support sustainable production, improved component performance, and optimized manufacturing systems. Academic investigations within this discipline frequently integrate experimental studies, computational modeling, and engineering optimization to address industrial challenges.[2]

Research Profile

According to the supplied research metrics, Tarik Zarrouk has authored 36 indexed publications, accumulated 318 citations, and achieved an h-index of 13. These indicators suggest sustained scholarly activity and measurable research influence within machining and manufacturing-related engineering fields. The documented profile reflects continuous participation in academic publishing and scientific dissemination.[1]

  • Research specialization in machining and manufacturing engineering.
  • Peer-reviewed scientific publications indexed in Scopus.
  • Documented citation impact demonstrating scholarly visibility.
  • Contributions supporting engineering research and industrial applications.

Research Contributions

The available academic record indicates contributions toward machining methodologies, manufacturing technologies, process optimization, material performance, and engineering analysis. Such investigations commonly contribute to enhanced manufacturing efficiency, tool performance evaluation, process reliability, and improved industrial productivity. These research directions remain important components of contemporary mechanical and manufacturing engineering.[2]

Publications

The research profile includes publications indexed through Scopus and other scholarly databases. Published studies collectively demonstrate continuing engagement with scientific communication and peer-reviewed dissemination. Representative publication topics include machining processes, manufacturing optimization, engineering materials, experimental analysis, and industrial process improvement.[1]

Research Impact

Research impact can be assessed using publication output, citation frequency, and scholarly visibility. With 318 citations and an h-index of 13, the documented profile reflects continuing academic recognition within the research community. Citation-based indicators provide evidence that published work has contributed to ongoing scientific discussions and subsequent research developments.[1]

Award Suitability

Based on the available scholarly metrics and documented research activity, Tarik Zarrouk demonstrates characteristics commonly considered during evaluations for academic research recognition. These include a sustained publication record, measurable citation performance, specialization within an established engineering discipline, and continuing contributions to scientific literature. Such attributes align with the objectives of recognizing research excellence through the Innovative Research Award under the Indian Scientist Awards program.[3]

Conclusion

Tarik Zarrouk’s documented research profile illustrates continuous scholarly participation in machining and manufacturing engineering. The combination of peer-reviewed publications, citation metrics, and scientific engagement supports recognition as an active contributor to engineering research. The profile provides a structured overview suitable for academic recognition and professional evaluation within international research award programs.[1]

References

    1. Scopus author details: Tarik Zarrouk, Author ID 57222708255.

      Scopus. https://www.scopus.com/authid/detail.uri?authorId=57222708255
    2. Google Scholar details: Tarik Zarrouk, Author ID 9HEVztgAAAAJ&hl.

      https://scholar.google.com/citations?user=9HEVztgAAAAJ&hl=en&oi=sra
    3. Orcid details: Tarik Zarrouk, Author ID 0000-0003-0470-5158.

      orcid. https://orcid.org/0000-0003-0470-5158
    4. Numerical investigations of the impact of a novel turbulator configuration on the performances enhancement of heat exchangers

      https://www.sciencedirect.com/science/article/pii/S2352152X21014833

    5. Modeling machining of aluminum honeycomb structure

      https://link.springer.com/article/10.1007/s00170-022-10350-9

Shobika Rameshsundar | Fluid Dynamics | Innovative Research Award

Innovative Research Award

Shobika Rameshsundar
SRM Institute of Science and Technology

Shobika Rameshsundar
Affiliation SRM Institute of Science and Technology
Country India
Scopus ID 58886626500
Documents 2
Citations 9
h-index 5
Subject Area Fluid Dynamics
Event Indian Scientist Awards
ORCID 0009-0004-5747-8264

Shobika Rameshsundar recognizes researchers whose scholarly activities contribute to scientific advancement through original investigation, technical excellence, and the dissemination of research findings. Shobika Rameshsundar, affiliated with SRM Institute of Science and Technology, has established a developing academic profile in the field of Fluid Dynamics through peer-reviewed publications, scholarly citations, and contributions to engineering research. The available bibliometric indicators and research profile demonstrate an active engagement in scientific inquiry and knowledge dissemination.[1]

Abstract

This article presents a scholarly overview of Shobika Rameshsundar and highlights the academic credentials relevant to consideration for the Innovative Research Award. The profile emphasizes research activity in Fluid Dynamics, publication output, scholarly citations, and measurable research indicators. These elements collectively illustrate continued participation in engineering research and academic knowledge generation.[1]

Keywords

Fluid Dynamics, Engineering Research, Computational Analysis, Scientific Publications, Innovation, Applied Engineering, Scopus Author, Research Excellence, Academic Recognition, Indian Scientist Awards.

Introduction

Fluid Dynamics is an important discipline within engineering and applied sciences, supporting developments in transportation, energy systems, aerospace, environmental engineering, and industrial processes. Researchers in this field contribute by improving theoretical understanding, computational modeling, and experimental validation of fluid behavior. Academic recognition programs encourage continued excellence by acknowledging measurable scientific achievements and impactful research outputs.[2]

Research Profile

Shobika Rameshsundar is affiliated with SRM Institute of Science and Technology and maintains an active scholarly presence through indexed publications and citation records. Available bibliometric information indicates two indexed documents, nine citations, and an h-index of five. These metrics provide evidence of academic visibility and ongoing participation in scientific communication.[1]

Research Contributions

  • Research in Fluid Dynamics and engineering applications.
  • Contribution to peer-reviewed scientific publications.
  • Participation in computational and analytical investigations.
  • Support for academic knowledge dissemination through scholarly publishing.
  • Development of research outcomes relevant to engineering sciences.

Publications

The available Scopus profile records two indexed research publications. These publications contribute to the author’s citation profile and demonstrate participation in internationally indexed scientific literature.[1]

    • Indexed journal publications in Fluid Dynamics and engineering-related topics.
    • Exploration of the arrhenius activation energy in unsteady ternary hybrid nanofluid flow past a slendering stretching sheet: RSM analysis
    • Heat transfer analysis of Ethylene Glycol based hybrid nanofluid (Au-Ag) flow over a porous medium with gyrotactic microorganisms: Levenberg–Marquardt backpropagation approach
    • Heat and mass transfer by Homotopy perturbation Sumudu transform technique on a stretching sheet with suction or blowing.
    • EMHD control of thermal transport in sodium-ion battery electrode via hybrid iron oxide particles with ionic liquids: Absolute sensitivity analysis
    • Deep Learning-Based Heat Transfer Analysis of Titanox and Silver/H2O Hybrid Nanofluid Flow Over a Curved Stretching Surface with Bioconvection

Research Impact

Research impact can be evaluated using publication quality, citation frequency, scholarly visibility, and contribution to scientific advancement. The citation record associated with the research profile indicates that published work has received academic attention and contributes to ongoing developments within the engineering research community.[1]

Award Suitability

Based on publicly available scholarly metrics, indexed publications, institutional affiliation, and active research involvement, Shobika Rameshsundar demonstrates characteristics consistent with consideration for the Innovative Research Award. Evaluation may consider originality of research, publication quality, citation performance, contribution to engineering sciences, and future research potential in accordance with established award criteria.[3]

Conclusion

Shobika Rameshsundar represents an emerging researcher contributing to Fluid Dynamics through scholarly publications and measurable research activity. The combination of indexed publications, citation metrics, institutional affiliation, and continued academic engagement supports recognition within scientific award programs that acknowledge research excellence and innovation.[1]

References

  1. Scopus author details: Shobika Rameshsundar, Author ID 58886626500.
    Scopus.  https://www.scopus.com/authid/detail.uri?authorId=58886626500
  2. Google Scholar. Scholar profile of Shobika Rameshsundar.

    https://scholar.google.com/citations?user=8z9OL6MAAAAJ&hl=en&oi=ao

  3. Orcid  profile of Shobika Rameshsundar.https://orcid.org/0009-0004-5747-8264
  4. Deep Learning-Based Heat Transfer Analysis of Titanox and Silver/H2O Hybrid Nanofluid Flow Over a Curved Stretching Surface with Bioconvection

    https://www.sciencedirect.com/science/article/pii/S2590123026016695

  5. EMHD control of thermal transport in sodium-ion battery electrode via hybrid iron oxide particles with ionic liquids: Absolute sensitivity analysis

    https://www.sciencedirect.com/science/article/pii/S0735193326013448?