Tusneem Elhassan | Smart Manufacturing Systems | Best Researcher Award

Best Researcher Award

Tusneem Elhassan
King Faisal Specialist Hospital and Research Center

Tusneem Elhassan
Affiliation King Faisal Specialist Hospital and Research Center
Country Saudi Arabia
Scopus ID 36503838000
Documents 77
Citations 1,145
h-index 15
Subject Area Smart Manufacturing Systems
Event International Robotics and Automation Awards
ORCID 0000-0002-1625-1168

Tusneem Elhassan is a researcher affiliated with King Faisal Specialist Hospital and Research Center in Saudi Arabia. The available researcher information identifies Smart Manufacturing Systems as the subject area and records 77 documents, 1,145 citations, and an h-index of 15. These bibliometric indicators provide a structured context for academic recognition. [1]

Abstract

This academic recognition profile presents Tusneem Elhassan in relation to the Best Researcher Award and the International Robotics and Automation Awards. The profile summarizes institutional affiliation, bibliometric information, research subject area, publication activity, and publicly identified researcher identifiers. The information is presented descriptively to support academic recognition and documentation.[2]

Keywords

Tusneem Elhassan; Best Researcher Award; Smart Manufacturing Systems; robotics and automation; research publications; bibliometrics; academic research; King Faisal Specialist Hospital and Research Center; Saudi Arabia; research impact.

Introduction

Research in smart manufacturing systems connects automation, digital technologies, data-driven processes, and intelligent production environments. Within this multidisciplinary context, academic profiles can document research activity through publications, citations, institutional affiliation, and persistent identifiers. Tusneem Elhassan’s profile provides these elements for consideration in an academic recognition context.[3]

Research Profile

Tusneem Elhassan is affiliated with King Faisal Specialist Hospital and Research Center in Saudi Arabia, with Smart Manufacturing Systems identified as the subject area. The supplied Scopus record lists 77 documents, 1,145 citations, and an h-index of 15. An ORCID identifier is also associated with the researcher profile. [1]

Research Contributions

The documented research profile indicates sustained scholarly activity relevant to smart manufacturing systems and related technological research. Its contribution can be examined through publication output, citation activity, and continuity of research documentation. These measures provide quantitative context, while individual studies and their findings require assessment through the underlying publications.[3]

Publications

The supplied researcher record reports 77 documents associated with the Scopus author profile. Publication records provide a basis for examining research themes, collaboration patterns, venues, and scholarly development over time. Detailed evaluation of individual publications should rely on bibliographic records, article metadata, abstracts, and DOI information where available. [2]

Research Impact

The available bibliometric information records 1,145 citations and an h-index of 15 for the supplied Scopus author profile. Such indicators can describe citation activity and publication visibility within indexed literature, but they do not independently measure every dimension of research quality or societal impact. Interpretation should therefore consider field and publication context. [1]

Award Suitability

The Best Researcher Award profile corresponds to documented research activity, publication output, citation information, and an identified subject area in Smart Manufacturing Systems. These characteristics provide relevant evidence for an academic recognition profile. Final award consideration should be based on the official criteria, submitted documentation, and independent evaluation procedures of the award program.[2]

Conclusion

Tusneem Elhassan’s academic profile documents research activity associated with King Faisal Specialist Hospital and Research Center and Smart Manufacturing Systems. The reported publication and citation indicators provide measurable bibliometric context for recognition. Further assessment may consider individual research outputs, methodological contributions, collaborations, and documented influence alongside the available quantitative indicators. [3]

References

  1. Systematic review and meta-analysis of AI methods for immature WBC subtype classification.
    https://www.researchgate.net/publication/414442624
  2. Prognostic significance of PNH clones in aplastic anemia treated with immunosuppression or allogeneic HSCT: a 20-year single-center experience.
    https://www.researchgate.net/publication/404079622
  3. Classification of Imbalance Data using Tomek Link (T-Link) Combined with Random Under-sampling (RUS) as a Data Reduction Method.
    https://www.researchgate.net/publication/326590590

Faris Sewailem | Smart Manufacturing System | Innovative Research Award

Innovative Research Award

Faris Sewailem
Affiliation KACST
Country Saudi Arabia
Scopus ID 6505741762
Documents 40
Citations 1,394
h-index 14
Subject Area Fiber Reinforced Polymers
Event International Robotics and Automation Awards
ORCID 0000-0002-5251-7330

Faris Sewailem

KACST

Faris Sewailem is a researcher affiliated with KACST whose scholarly work has contributed to the advancement of fiber reinforced polymer technologies and structural engineering applications. His publications demonstrate sustained research activity involving composite materials, rehabilitation of infrastructure, and innovative strengthening techniques for civil engineering systems. The breadth of his scientific contributions and citation record reflects continuing influence within materials and structural engineering research communities.[1]

Abstract

Faris Sewailem has established a research profile centered on fiber reinforced polymers, structural rehabilitation, and advanced composite applications for civil infrastructure. His publications investigate the mechanical behavior, durability, and strengthening performance of composite materials under diverse loading conditions while supporting safer and more sustainable engineering practices. Through interdisciplinary collaboration and consistent scholarly productivity, his work has contributed to improved structural design methodologies and practical engineering solutions. His publication record, citation performance, and measurable academic influence demonstrate sustained engagement with internationally recognized research activities that continue to support innovation across structural engineering and advanced construction materials.[2]

Keywords

Fiber Reinforced Polymers, Composite Structures, Structural Engineering, Infrastructure Rehabilitation, Civil Engineering, Structural Strengthening, Advanced Materials, Durability Assessment, Sustainable Construction, Engineering Materials.

Introduction

Research involving fiber reinforced polymers has become increasingly important because advanced composite materials provide efficient solutions for strengthening, repairing, and extending the service life of civil infrastructure. The discipline integrates material science with structural engineering to improve safety, durability, and sustainability. Faris Sewailem has contributed to this evolving research landscape through investigations that emphasize engineering performance, analytical evaluation, and practical implementation of composite systems within modern infrastructure projects.[3]

Research Profile

The research profile of Faris Sewailem reflects sustained scholarly activity supported by forty indexed publications, more than one thousand citations, and an h-index of fourteen. His investigations encompass structural strengthening technologies, composite material characterization, and engineering applications that bridge theoretical understanding with practical infrastructure challenges. The overall publication record demonstrates continuous participation in internationally indexed engineering research and collaborative scientific development.[1]

Research Contributions

His research contributions focus on evaluating the structural efficiency of fiber reinforced polymer systems for rehabilitation, seismic strengthening, and long-term durability improvement. The published studies combine laboratory experimentation, numerical analysis, and engineering evaluation to improve understanding of composite material behavior. These investigations support evidence-based engineering decisions while encouraging broader adoption of advanced strengthening technologies within modern construction and infrastructure management.[4]

Publications

The publication portfolio includes peer-reviewed journal articles addressing composite structural systems, reinforced concrete rehabilitation, and advanced engineering materials. These studies have appeared in internationally recognized engineering journals and collectively contribute to ongoing research concerning infrastructure resilience, material optimization, and structural safety. The documented publication record illustrates consistent scientific productivity and meaningful engagement with contemporary engineering challenges across academic and applied environments.[2]

Research Impact

The measurable research impact is reflected through citation performance, sustained publication activity, and continued relevance within structural engineering literature. His work provides valuable references for researchers investigating advanced composite materials while also informing engineers seeking practical rehabilitation strategies. The integration of scientific rigor with engineering applicability has strengthened the visibility and usefulness of his research across academic and professional communities.[1]

Award Suitability

The Innovative Research Award recognizes researchers demonstrating sustained scholarly excellence, measurable scientific influence, and meaningful contributions within their respective disciplines. Based on documented publication metrics, research consistency, and recognized expertise in fiber reinforced polymers, Faris Sewailem demonstrates characteristics commonly associated with this recognition. His work supports scientific advancement through practical engineering innovation while maintaining strong academic visibility within internationally indexed literature.[1]

Conclusion

Faris Sewailem has developed a respected academic profile through sustained research involving fiber reinforced polymers and structural engineering. His publication record, citation performance, and continued scientific contributions demonstrate an enduring commitment to advancing engineering knowledge. The combination of research productivity, practical relevance, and measurable scholarly influence supports recognition through academic award programs celebrating innovation and impactful scientific achievement.[1]

References

  1. Elsevier. (n.d.). Scopus Author Details: Faris Sewailem, Author ID 6505741762. Scopus.
    https://www.scopus.com/pages/authors/6505741762
  2. Google Scholar. (n.d.). Faris Sewailem Citation Profile.
    https://scholar.google.com/citations?user=oLEP2rcAAAAJ&hl=en&oi=sra
  3. Faris Sewailem (2018).Preparation and characterization of glass fiber–reinforced polyethylene terephthalate/linear low density polyethylene (GF-PET/LLDPE) composites.
    https://doi.org/10.1002/pat.4088
  4. Faris Sewailem (2009). Preparation and Characterization of Polymer/Date Pits Composites
    https://doi.org/10.1177/0731684409337339