Produktbild: Rising Temperatures and Plant Ecosystems
Neu

Rising Temperatures and Plant Ecosystems Effects and Mitigation

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.07.2026

Abbildungen

VI, 407 p. 76 illus., 72 illus. in color.

Herausgeber

Amit Awasthi + weitere

Verlag

Springer

Seitenzahl

407

Maße (B/H)

15,5/23,5 cm

Gewicht

806 g

Sprache

Englisch

ISBN

978-3-032-29476-0

Beschreibung

Portrait

Dr. Amit Awasthi obtained his Ph.D. in 2011 and has over 15 years of experience in research, teaching, and academic administration. He is currently an Senior Associate Professor (Physics) at the School of Advanced Sciences, UPES, Dehradun. His research focuses on atmospheric and environmental sciences, including climate change, aerosols, and air quality. He has published ~100 papers (h-index 26, ~2500 citations) and authored/edited 11 books with major publishers. He has received an International Postdoctoral Fellowship from Taiwan and serves as an editor for multiple journals. He is actively involved in research supervision, conferences, and academic administration.

Dr. Avneesh Kumar is an Associate Professor of Botany at SRM University Sikkim, specializing in plant stress biology and climate-driven impacts on plant systems. His research focuses on stress-responsive genes, transcription factor networks, and adaptive mechanisms enabling plant tolerance to heat, salinity, and heavy metals. He integrates molecular biology, transcriptomics, and bioinformatics approaches to develop sustainable solutions for environmental challenges. His work also extends to pollution monitoring, nanotechnology in agriculture, and sustainable ecosystem management.

Dr. Vajinder Kumar is a Research Scientist at the School of Chemistry, University of Leeds, UK. His current work focuses on paleoclimatic studies using isotopic analysis of plant cellulose. He previously served as an Assistant Professor at Akal University, Punjab, and completed his Ph.D. in Medicinal Chemistry at NIPER, India. He was awarded the prestigious Marie Skłodowska-Curie Individual Fellowship for research on glycoproteins and toxin inhibition. His research interests include glycosylation mechanisms, glycoprotein therapeutics, protein engineering, virus-like particles, and environmental chemistry, including studies on heavy metal mobilization in groundwater.

Dr. Tanupriya Choudhury completed his B.Tech in Computer Science (WBUT, Kolkata), M.Tech from Dr. M.G.R University, Chennai, and Ph.D. from Jagannath University, Jaipur (2016). With over 15 years of experience, he is currently a Professor at UPES, Dehradun, and Visiting Professor at Daffodil International University, Bangladesh. His expertise includes Human Computing, Soft Computing, Cloud Computing, and Data Mining. He has published 100+ research papers, filed 25 patents, and secured 16 software copyrights. A recipient of the GOECA 2018 award, he is associated with IEEE, IET (UK), and IETA, and actively contributes as an editor, keynote speaker, and academic collaborator.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.07.2026

Abbildungen

VI, 407 p. 76 illus., 72 illus. in color.

Herausgeber

Verlag

Springer

Seitenzahl

407

Maße (B/H)

15,5/23,5 cm

Gewicht

806 g

Sprache

Englisch

ISBN

978-3-032-29476-0

Herstelleradresse

Springer International Publishing AG
Gewerbestr. 11
6330 Cham
Schweiz
Url: www.springer.com

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  • Produktbild: Rising Temperatures and Plant Ecosystems
  • 1 Temperature Pattern and the Escalation of Heat Waves.- 2 Impact of Variation in Temperature on Plant Reproduction and Growth.- 3 Effects of Rising Temperature on Plant Water Relations and Hydraulics.- 4 Crop Responses to Elevated Temperatures: Cellular Mechanisms and Opportunities for Genetic Improvement.- 5 Impact of Extreme Temperatures on Plant–Microbe Interactions: Mechanisms, Consequences, and Resilience Strategies.- 6 Vulnerability and Resilience of Plant Biodiversity to Heat Stress Under Climate Change.- 7 Impact of Rising Temperature on Plant Ecosystem.- 8 Effects of Temperature Rise on Growth and Ecosystem Interactions of Himalayan Medicinal Plant Tulsi (Ocimum sanctum): A Case Study from Uttarakhand.- 9 Heat Stress Impacts on the Himalayan Forest Ecosystems: Present Status and Future Perspectives.- 10 Impact of Rising Temperature on Habitat Distribution of Wild Edible Fruit, Malus indica (Wall.) B.B.Liu (syn. Docynia indica ): A Case Study in Eastern Himalaya.- 11 Evidence of Forest Fire During the Pliocene: A Case Study from the Sub-Himalaya of Arunachal Pradesh, India.- 12 Introduction Heatwave Impact on Agricultural Practices and Crops Diversity.- 13 Heat-Stressed Greenspaces in Urban and Peri-Urban Areas: Evidences from Reviews with Strategic Insights for Sustainability Marketing.- 14 Integrated Eco-Climatic Framework for Physics-Informed Crop Modeling.- 15 Predictive Modeling of Temperature Stress and Crop Responses in Sub-Saharan Africa.- 16 Heat Adaptation Through Policy and Planning: A Case Study of Ahmedabad’s Heat Action Plan.- 17 Evaluating Land Surface Temperature Changes for 22 Years and Their Association with Urban Heat Island in Rajshahi Division, Bangladesh.