Rashad Balal | Stress Physiology | Innovative Research Award

Innovative Research Award

Rashad Balal
Affiliation University of Sargodha
Country Pakistan
Scopus ID 37121661500
Documents 67
Citations 2,414
h-index 26
Subject Area Stress Physiology
Event International Plant Scientist Awards
ORCID 0000-0002-5057-7778

Rashad Balal –  University of Sargodha

Rashad Balal is a researcher affiliated with the University of Sargodha, Pakistan, whose documented scholarly profile is associated with stress physiology. The supplied bibliometric information records 67 documents, 2,414 citations, and an h-index of 26. These indicators provide a quantitative context for recognizing his research profile through the Innovative Research Award. [1]

Abstract

Rashad Balal is affiliated with the University of Sargodha in Pakistan and is identified in the supplied scholarly record with the subject area of stress physiology. His research profile includes 67 documented documents, 2,414 citations, and an h-index of 26. This article summarizes the available bibliometric information and its relevance to the Innovative Research Award. [2]

Keywords

Rashad Balal; University of Sargodha; Pakistan; stress physiology; plant science; plant stress; physiological responses; research impact; scholarly communication; bibliometrics; Scopus; ORCID; Innovative Research Award; International Plant Scientist Awards.

Introduction

Stress physiology examines how organisms respond to environmental and biological challenges, with implications for understanding adaptation and resilience. Within plant science, such research supports interpretation of physiological responses under changing conditions. Rashad Balal’s listed subject area is stress physiology, providing the principal disciplinary context for this academic recognition profile. [3]

Research Profile

Rashad Balal is associated with the University of Sargodha, Pakistan, and his supplied research classification is stress physiology. The reported Scopus record contains 67 documents, 2,414 citations, and an h-index of 26. These indicators describe an established scholarly publication record and provide measurable context for evaluating his academic research profile. [1]

Research Contributions

The available information places Balal’s scholarly work within stress physiology, a field concerned with physiological mechanisms associated with environmental and biological stress. His documented publication output contributes to the broader scientific literature through research dissemination and scholarly communication. Specific contribution themes should be assessed from individual publications and verified bibliographic records. [2]

Publications

The supplied Scopus information records 67 documents for Rashad Balal. This publication count indicates sustained scholarly output, while the reported citation total provides a separate measure of how frequently the indexed work has been cited. Individual article titles, journals, publication years, and DOI identifiers require verification through the relevant bibliographic databases. [3]

Research Impact

The reported bibliometric indicators provide measurable evidence of scholarly visibility. Balal’s 2,414 citations and h-index of 26 suggest that his indexed publications have received substantial attention within the scholarly literature. Bibliometric indicators should nevertheless be interpreted alongside publication quality, disciplinary context, collaboration, research originality, and broader scientific contributions when assessing overall research impact. [1]

Award Suitability

Based on the supplied information, Balal’s research profile aligns with an academic recognition framework focused on innovative research. His affiliation, stress physiology subject area, documented publications, citation record, and h-index provide relevant evidence for consideration. Final award assessment should also incorporate independently verified research contributions, publication quality, originality, and the award’s formal eligibility criteria. [3]

Conclusion

Rashad Balal’s supplied academic record presents a research profile associated with stress physiology at the University of Sargodha. The reported 67 documents, 2,414 citations, and h-index of 26 provide useful bibliometric indicators of scholarly activity and visibility. These data support consideration for academic recognition while emphasizing the importance of comprehensive research evaluation. [2]

References

  1. Influence of nitrogen fertilization rate and application frequency on physical and phytochemical quality of ‘Owari’ Satsuma Mandarin across fruit developmental stages in North Florida.
    https://www.researchgate.net/publication/398338174_Influence_of_nitrogen_fertilization_rate_and_application_frequency_on_physical_and_phytochemical_quality_of_’Owari’_Satsuma_Mandarin_across_fruit_developmental_stages_in_North_Florida
  2. Influence of salt stress on growth and biochemical parameters of citrus rootstocks.
    https://www.researchgate.net/publication/233531731_Influence_of_salt_stress_on_growth_and_biochemical_parameters_of_citrus_rootstocks
  3. Germination and Seedling Characteristics of Camelina sativa L. under Abiotic Stress Conditions.
    https://www.researchgate.net/publication/389327875_Germination_and_Seedling_Characteristics_of_Camelina_sativa_L_under_Abiotic_Stress_Conditions

Kaleem Ul Din | Plant Eco-Physiology | Best Researcher Award

Best Researcher Award

Kaleem Ul Din – University of Agriculture Faisalabad

Kaleem Ul Din
Affiliation University of Agriculture Faisalabad
Country Pakistan
Scopus ID 58832810600
Documents 7
Citations 79
h-index 4
Subject Area Plant Eco-Physiology
Event International Plant Scientist Awards
Google Scholar BW6fQV8AAAAJ

Kaleem Ul Din is associated with the University of Agriculture Faisalabad, Pakistan, and has contributed to the field of Plant Eco-Physiology through studies focusing on drought stress, cadmium tolerance, plant anatomy, and crop resilience. His scholarly profile demonstrates active participation in plant environmental research and sustainable agricultural sciences.[1][2]

Abstract

This article presents an overview of the academic profile and research activities of Kaleem Ul Din in the field of Plant Eco-Physiology. His work primarily focuses on plant stress responses, drought adaptation, photosynthetic regulation, and sustainable crop productivity under environmental stress conditions.[1][2]

Keywords

Plant Eco-Physiology, Drought Stress, Cadmium Tolerance, Wheat Physiology, Maize Research, Antioxidant Defense, Osmotic Adjustment, Crop Productivity, Environmental Stress Biology, Sustainable Agriculture.

Introduction

Plant Eco-Physiology investigates plant responses to environmental stresses affecting growth, metabolism, and productivity. Research in this discipline contributes to sustainable agriculture and climate resilience. Kaleem Ul Din has contributed to studies addressing drought stress, ionic balance, photosynthesis, and crop adaptation under changing environmental conditions.[1][2]

Research Profile

Kaleem Ul Din is affiliated with the University of Agriculture Faisalabad, Pakistan. His academic profile includes research publications related to plant physiology, stress biology, and crop environmental adaptation. His work particularly examines plant tolerance mechanisms under drought and heavy metal stress conditions in economically significant crops.[1]

Research Contributions

The researcher has contributed to understanding physiological and anatomical plant responses under environmental stress. His studies examine antioxidant defense systems, osmotic regulation, photosynthesis, and nanoparticle-mediated stress tolerance. These investigations support agricultural sustainability and crop productivity improvement under adverse climatic and soil conditions.[1][3]

Publications

The publication record of Kaleem Ul Din includes studies in internationally recognized journals focusing on drought physiology, cadmium tolerance, and nanoparticle-assisted crop resilience. His research outputs emphasize physiological adaptation, water balance maintenance, and stress mitigation strategies in wheat and maize systems.[1][3]

Research Impact

The research contributions demonstrate relevance to crop stress physiology and sustainable agriculture. His studies provide insights into environmental adaptation mechanisms and support future research addressing climate-related agricultural challenges. Citation metrics and scholarly engagement indicate growing recognition within the plant science research community.[1]

Award Suitability

Kaleem Ul Din’s research profile aligns with the objectives of the International Plant Scientist Awards due to his contributions in Plant Eco-Physiology and environmental stress biology. His work on drought tolerance, cadmium regulation, and sustainable crop improvement supports scientific advancement in modern agricultural and environmental plant sciences.[2][3]

Conclusion

The academic contributions of Kaleem Ul Din highlight active engagement in plant environmental physiology and crop stress adaptation research. His scientific publications and research impact demonstrate relevance to sustainable agriculture and climate-resilient crop production, supporting his recognition within international plant science academic and award platforms.[1][2]

References

  1. Salicylic acid confers cadmium tolerance in wheat by regulating photosynthesis, yield and ionic homeostasis.
    https://www.scopus.com/authid/detail.uri?authorId=58832810600
  2. Exogenous application of sulfur-rich thiourea (STU) to alleviate the adverse effects of cobalt stress in wheat
    https://scholar.google.com/citations?user=BW6fQV8AAAAJ&hl=en
  3. International Plant Scientist Awards. (n.d.). Official conference and award information

    International Plant Scientist Awards