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  • 1
    UID:
    almahu_BV045336344
    Format: 1 Online-Ressource (vii, 277 Seiten) : , Illustrationen, Diagramme, Karten (überwiegend farbig).
    ISBN: 978-3-319-99882-4
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-319-99881-7
    Language: English
    Keywords: Umweltwissenschaften ; Geowissenschaften ; GPS ; Geoinformationssystem ; Fernerkundung ; Hochschulschrift ; Hochschulschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 2
    UID:
    almahu_9949286198202882
    Format: XIII, 346 p. 69 illus., 57 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030932589
    Content: This two-volume set discusses recent approaches and technological innovations for sustainable agriculture in smallholder farming systems impacted by climate change. The systems covered include crop-based agricultural production, as well as aquaculture and livestock production as related systems using similar techniques to combat food security issues brought about by climate change and resource overuse. The chapters detail innovations involving crop diversification, soil resilience management, geoinformatics and land suitability monitoring for smart farming, information technology in livestock production, and nutrient resource management in fishery aquaculture. Researchers, practitioners and industries will be able to use this information to implement socially and economically sustainable practices to achieve food security in impoverished areas vulnerable to climate change, while also learning about the rapid evolution in information technology that is applicable for and available to small holder farmers. Volume 1 focuses on current innovations in agricultural and livestock practices in response to climate change. It covers the technological challenges, approaches and mitigation strategies encountered by both scholars and practitioners working in livestock and agricultural production systems impacted by climate change.
    Note: Chapter1. Impact of future climate change on Agriculture, Livestock Production and Aquaculture: Challenges and Policy -- Chapter2. Managing agricultural nitrogen losses in crop production and mitigation of climate change effects -- Chapter3. Critical analysis and evaluation of groundnut value chain for revamping its production for global food security -- Chapter4. Aluminum uptake, callose accumulation and invertase activity in lowland and upland rice genotypes in related to aluminum stress tolerance -- Chapter5. Gender issues in farming - Challenging socially embedded positions in agrarian context -- Chapter6. Characterization and Appraisal of Crop based Farming System for Sustainable Development of Agriculture -- Chapter7. Nitrogen based for farming system -- Chapter8. Resilience for salt tolerance in rice cultivars using various strategies of conventional breeding, molecular breeding and transgenic approaches -- Chapter9. Geoinformation for land suitability modelling for climate smart farming in Africa -- Chapter10. Climate Change Adaptation: Remote Sensing-based Flood Crop Loss Assessment to Support Crop Insurance -- Chapter11. Smallholder Pig value chains development and livelihood security -- Chapter12. Revolutionizing impact of poultry resources in food security and rural economy -- Chapter13. Milk and Milk Product Safety and Quality Assurance for Achieving Better Public Health Outcomes -- Chapter14. Diversification in Aquaculture Resources and Practices for Smallholder Farmers -- Chapter15. Value addition in meat and fish products for human health and nutrition -- Chapter16. Indian Fish as Bioindicators species -- Chapter17. Conclusion. .
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9783030932572
    Additional Edition: Printed edition: ISBN 9783030932596
    Additional Edition: Printed edition: ISBN 9783030932602
    Language: English
    URL: Cover
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  • 3
    UID:
    almahu_9949286198102882
    Format: XV, 321 p. 79 illus., 70 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030932626
    Content: This two-volume set discusses recent approaches and technological innovations for sustainable agriculture in smallholder farming systems impacted by climate change. The systems covered include crop-based agricultural production, as well as aquaculture and livestock production as related systems using similar techniques to combat food security issues brought about by climate change and resource overuse. The chapters detail innovations involving crop diversification, soil resilience management, geoinformatics and land suitability monitoring for smart farming, information technology in livestock production, and nutrient resource management in fishery aquaculture. Researchers, practitioners and industries will be able to use this information to implement socially and economically sustainable practices to achieve food security in impoverished areas vulnerable to climate change, while also learning about the rapid evolution in information technology that is applicable for and available to small holder farmers. Volume 2 focuses on trends and technologies in food security within the context of sustainable practices, drone technology, microwave data, molecular farming, machine learning, agricultural economics, spatial modeling and agricultural policy. These chapters discuss advancements in fishery resource and aquaculture practices, and also the challenges facing these areas due to climate change. .
    Note: Chapter1. Drone Technology in Sustainable Agriculture: The future of farming is precision agriculture and mapping -- Chapter2. Revolutionizing Crops and Soil Resources' Resilience to Climate Change. A case for Best-fit Agronomic Practices in Low and High Input Systems -- Chapter3. Drought-resilient climate smart sorghum varieties for food and industrial use in marginal frontier areas of Kenya -- Chapter4. Optimizing nitrogen management for improved productivity, nitrogen use efficiency, food and nutrition security: African context perspectives -- Chapter5. Soil carbon pools under different farming practices -- Chapter6. Effect of conservation agriculture on energy consumption and carbon emission -- Chapter7. Plant Molecular Farming: A Marvelous Biotechnological Approach in Agricultural Production -- Chapter8. Examining the outcome of coupling machine learning with dual Polarimetric SAR for rice growth mapping -- Chapter9. Mapping prominent cash crops employing ALOS PALSAR-2 and selected machine learners -- Chapter10. Crop assessment and decision support information products using multi-sensor and multi-temporal moderate resolution data -- Chapter11. Agriculture, Livestock Production and Aquaculture: Advances for Smallholder Farming System -- Chapter12. Mobilizing Pig Resources for Capacity Development and Livelihood Security -- Chapter13. Agricultural Value Chains: A Cardinal Pillar for Future Development and Management of Farming -- Chapter14. Climate Smart Eco-management of Water and Soil Quality as a Tool for Fish Productivity Enhancement -- Chapter15. Advances in nutrient resource management for fisheries and aquaculture -- Chapter16. Conclusion.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9783030932619
    Additional Edition: Printed edition: ISBN 9783030932633
    Additional Edition: Printed edition: ISBN 9783030932640
    Language: English
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  • 4
    UID:
    almahu_9949335093402882
    Format: XV, 366 p. 48 illus., 37 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811909283
    Content: This edited book collates latest findings in the field of agro-biodiversity and agri-ecosystem management across the globe through selected case studies. The primary aim of the book is to cover agro-biodiversity and agri-ecosystem advancements in the field of agricultural resource management. The book explores a range of technologies that support sustainable use of resources and facilities, such as Natural Resource Management (NRM), Resource Conservation Technologies (RCTs), Integrated Farming System (IFS), Integrated Crop Management (ICM), Integrated Nutrient Management (INM), use of solar energy, promotion of agro-ecological zone specific agricultural production, application of climate resilient technologies, secondary agricultural practices and post-harvest technologies. Agro-biodiversity and agri-ecosystem not only contributes to overall growth of the economy but also reduces poverty by providing employment and food security to the majority of the population in the continent and thus it is the most inclusive growth sectors of the economy of Asian and African countries. The book is relevant for researchers and policy makes in the field of agriculture, food system research, ecology, agricultural diversification, resource management etc.
    Note: Section I General -- Chapter 1: Introduction to agro-biodiversity and agri-ecosystem in the 21st century -- Section II Agro Biodiversity Conservation and Challenges -- Chapter 2: An Assessment of Forest Diversity: Challenges and Management -- Chapter 3: Agrobiodiversity, Status, and Conservation Strategies -- Chapter 4: Role of Range grasses in conservation and restoration of biodiversity -- Chapter 5: Molecular approaches in Agro Biodiversity Conservation -- Section III Agri Ecosystem Services and Climate Resilience -- Chapter 6: Carbon Sequestration Potential in Agricultural Systems -- Chapter 7: Inter-Connectivity between Climate Resilience, Climate Change and Adaptability -- Chapter 8: Soil organic carbon and total nitrogen stocks under different land uses in Achanakmaar Amarkantak Biosphere Reserve, India -- Chapter 9: Vegetation Biomass and Carbon Stock Assessment under Different Forest Types of Temperate and Alpine Forest Ecosystem of Western Himalayas -- Section IV Advance Approaches for Agrobiodiversity Conservation and Restoration -- Chapter 10: Molecular approaches in conservation and restoration of agro-biodiversity -- Chapter 11: Adapting Land Degradation and Enhancing Ethnic Livelihood Security through Fruit Production: Evidence from Hilly Areas of Bangladesh -- Chapter 12: Restoration and Conservation of Plant Genetic Resources via Molecular Techniques: An Important Measure for Sustainable Agriculture -- Chapter 13: Molecular Approaches in Restoration of Agrobiodiversity -- Chapter 14: Genomics Approaches for Restoration and Conservation of Agro-biodiversity -- Section V Technological Intervention for Agricultural Development -- Chapter 15: Polyhydroxyalkanoates Production in Transgenic Plants: Green Plastics for Better Future & Environmental Sustainability -- Chapter 16: Application of artificial intelligence for the development of sustainable agriculture -- Chapter 17: Information and technology use in agriculture and Livestock development -- Chapter 18: Use of wild edible plants can meet the needs of future generation.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9789811909276
    Additional Edition: Printed edition: ISBN 9789811909290
    Additional Edition: Printed edition: ISBN 9789811909306
    Language: English
    URL: Cover
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  • 5
    UID:
    b3kat_BV049408585
    Format: 1 Online-Ressource (347 Seiten)
    Edition: 1st ed
    ISBN: 9783031064432
    Note: Description based on publisher supplied metadata and other sources , Intro -- Foreword -- Preface -- Contents -- About the Editors -- Part I Degradation Assessment of Forest Ecology -- 1 A Perspective View of Sustainability of Natural Resources: The Governance Challenge -- 1.1 A Perspective View of Challenges -- 1.2 Policy Implementation -- 1.3 Book Structure -- References -- 2 Tracking Transitions of Tropical Deforestation in East Kalimantan, Indonesia Using Time-Series Landsat Images from 2000 to 2016 -- 2.1 Introduction -- 2.2 Materials and Methods -- 2.2.1 Study Area -- 2.2.2 Land Cover Map -- 2.2.3 Definition -- 2.2.4 Annual Deforestation and Forest Degradation -- 2.2.5 Forest Transitions -- 2.3 Results -- 2.3.1 Forest Cover Changes -- 2.3.2 Transitions of Primary Forests -- 2.3.3 Transitions of Secondary Forests -- 2.3.4 Transitions of Plantation Forest -- 2.3.5 Quantification of Land Cover Change Process -- 2.4 Discussion -- 2.5 Conclusions -- Appendices -- References -- 3 Influence of Anthropogenic Activities on the Diversity of Forest Ecosystems -- 3.1 Introduction -- 3.2 Distribution of Forest Resources -- 3.3 Ecosystem Services -- 3.3.1 Regulation of Climate -- 3.3.2 Biological Diversity -- 3.3.3 Air Quality -- 3.3.4 Water Quality and Quantity -- 3.3.5 Soil Improvement, Stabilization, and Erosion Control -- 3.3.6 Biogeochemical Cycles -- 3.3.7 Minor Forest Products -- 3.3.8 Pollution Control -- 3.3.9 Wildlife Habitat -- 3.3.10 Protection from Natural Hazards and Disasters -- 3.3.11 Nature and Recreational Importance -- 3.4 Anthropogenic Influences on Forest Ecosystems -- 3.4.1 Deforestation -- 3.4.2 Fragmentation -- 3.4.3 Overexploitation -- 3.4.4 Agriculture Expansion and Shifting Cultivation -- 3.4.5 Land Use Land Cover Changes -- 3.4.6 Introduction of Exotic Species -- 3.4.7 Overgrazing and Cattle Ranching -- 3.4.8 Climate Change -- 3.5 Conclusions -- References , 4 Indicator-Based Inherent Forest Vulnerability Using Multicriteria Decision-Making Analysis in the Darjeeling District of West Bengal -- 4.1 Introduction -- 4.2 Study Area -- 4.3 Methodology -- 4.3.1 Details of the Landscape Indicators -- 4.3.2 Mapping of Inherent Forest Vulnerability -- 4.4 Results -- 4.5 Discussion and Policy Concerns -- 4.6 Conclusion -- References -- 5 Agro-Biodiversity, Status, and Conservation Strategies: An Indian Perspective -- 5.1 Introduction -- 5.2 Biological Classification -- 5.3 Biodiversity/Agro-Biodiversity -- 5.4 Biodiversity Measurement -- 5.5 Status of India Agro-Biodiversity -- 5.6 Conservation of Biodiversity and Conservation Strategies -- 5.7 Objectives of the Conservation of Biodiversities -- 5.8 Biodiversity Conservation Strategies -- 5.9 National Governance Initiatives -- 5.10 Status of Plant Germplasm Registration in India -- 5.11 Status of Conservation of Vegetative Propagated/horticultural Crops in India -- 5.12 Conclusion -- References -- Part II Dynamics of Land Use and Ecological Services -- 6 Assessing the Impact of Terrain Attributes on Snow Cover Area Distribution in Kashmir Valley, Northwestern Himalaya -- 6.1 Introduction -- 6.2 Study Area -- 6.3 Data and Methodology -- 6.3.1 Snow Cover Area Extraction -- 6.3.2 ASTER Global Digital Elevation Model -- 6.3.3 SCA Variability with Respect to Elevation -- 6.3.4 SCA Variability with Respect to Slope -- 6.3.5 SCA Variability with Respect to Aspect -- 6.3.6 Changing Pattern of SCA -- 6.4 Results and Discussion -- 6.4.1 Monthly and Seasonal SCA Variation -- 6.4.2 SCA in Relation to Elevation -- 6.4.3 SCA Distribution in Relation to Slope -- 6.4.4 SCA Distribution in Relation to Aspect -- 6.4.5 SCA Change Rate with Respect to Elevation -- 6.5 Conclusion -- References , 7 Monitoring Land Use/Land Cover Change Dynamics Using Remote Sensing and Geospatial Techniques in Rambiara Catchment, Kashmir Valley, India -- 7.1 Introduction -- 7.2 Study Area -- 7.3 Database and Methodology -- 7.3.1 Image Pre-Processing and Classification -- 7.3.2 Accuracy Assessment -- 7.4 Results and Discussion -- 7.4.1 Lulc, 1999 -- 7.4.2 Lulc, 2019 -- 7.4.3 Land Use Land Cover Change Detection -- 7.4.4 Drivers of the LULC Change -- 7.5 Conclusion -- References -- 8 Impact Assessment of Land Use Land Cover Dynamics and Population Growth on Food Security of Kashmir Valley, India -- 8.1 Introduction -- 8.2 Study Area -- 8.3 Database and Methodology -- 8.4 Assessment of the Main Crops of Kashmir -- 8.4.1 Area Under Cereals -- 8.4.2 Production of Cereals -- 8.5 Land Use/Land Cover -- 8.5.1 LULC During 2001 -- 8.5.2 LULC During 2011 -- 8.5.3 LULC During 2018 -- 8.6 Change in the LULC -- 8.6.1 Change in the LULC 2001-2011 -- 8.6.2 Change in the LULC 2011-2018 -- 8.6.3 Change in the LULC 2001-2018 -- 8.7 Conclusion -- References -- 9 Evaluation and Distribution of Urban Green Spaces in Kolkata Municipal Corporation: An Approach to Urban Sustainability -- 9.1 Introduction -- 9.2 Materials and Methods -- 9.2.1 Study Area -- 9.2.2 Database -- 9.2.3 Methodology -- 9.3 Results and Discussion -- 9.3.1 Report of Accuracy and Validation -- 9.3.2 Spatio-Temporal Patterns of Land Use/Land Cover Change from 1991 to 2020 -- 9.3.3 Land Use/Land Cover Transformation Patterns (1991 to 2020) -- 9.3.4 Comparative Analysis of Green Spaces in Indian Metro Cities with KMC -- 9.3.5 Spatio-Temporal Distribution of Green Space -- 9.3.6 Status of Green Space in 1991 and 2020 -- 9.3.7 Transformation Status of Green Space from 1991 to 2020 -- 9.4 Conclusion -- References -- Part III Nature Conservation and Biodiversity , 10 Bioremediation: Microbial and Plant Assisted Remediation of Contaminated Environments -- 10.1 Introduction -- 10.2 Basic Types of Bioremediation -- 10.2.1 Microbial Bioremediation -- 10.2.2 Phytoremediation -- 10.2.3 Mycoremediation -- 10.3 Techniques of Bioremediation -- 10.3.1 In-Situ Remediation -- 10.3.2 Ex-Situ Remediation -- 10.4 Conclusions -- References -- 11 Conservation of Biodiversity in India: Current Status and Future Strategies -- 11.1 Introduction -- 11.2 Biogeographic Zones of India -- 11.3 Biodiversity Hotspots of India -- 11.4 Threats to Biodiversity -- 11.4.1 Habitat Loss -- 11.4.2 Overexploitation -- 11.4.3 Introduction of Invasive Species -- 11.4.4 Pollution -- 11.4.5 Climate Change -- 11.5 IUCN Red Data Books -- 11.5.1 Extinct (EX) -- 11.5.2 Extinct in the Wild (EW) -- 11.5.3 Critically Endangered (CR) -- 11.5.4 Endangered (EN) -- 11.5.5 Vulnerable (VU) -- 11.5.6 Near Threatened (NT) -- 11.5.7 Least Concern (LC) -- 11.5.8 Data Deficient (DD) -- 11.5.9 Not Evaluated (NE) -- 11.6 Conservation of Biodiversity -- 11.6.1 In-Situ Conservation -- 11.6.2 Ex-situ Conservation -- 11.7 Future Strategies -- 11.8 Conclusion -- References -- 12 Influence of Anthropogenic Activities on the Biological Diversity of Forest Ecosystem -- 12.1 Introduction -- 12.2 Anthropogenic Activities -- 12.2.1 Causes of Anthropogenic Activities -- 12.2.2 Types of Anthropogenic Activities -- 12.3 Anthropogenic Influence on Forest Diversity -- 12.3.1 Negative Influence -- 12.3.2 Positive Impacts -- 12.4 Conclusion -- References -- 13 Assessment of Environmental Impacts of Pesticides: Evidence from Meta-Analysis -- 13.1 Introduction -- 13.2 Methodology -- 13.2.1 Cochran Q Test -- 13.2.2 Design Setting -- 13.2.3 Description of the Environmental Indicators -- 13.3 Results and Discussion -- 13.3.1 Pesticides and Target Organisms , 13.3.2 Pesticides and Non-target Organisms -- 13.3.3 Pesticides and Human Health -- 13.3.4 The Soil Environment and Pesticides -- 13.3.5 Water and Air Ecosystems and Pesticides -- 13.3.6 Pesticides and Biomagnifications -- 13.3.7 Pesticide Management Strategies -- 13.4 Conclusion and Future Prospects -- References -- Part IV Resource Use and Sustainibility -- 14 Enhanced Two-Step Floating Catchment Area (E2SFCA) Method for Measuring Spatial Accessibility to Primary Healthcare in HD Kote, Mysore (India) -- 14.1 Introduction -- 14.2 Study Area -- 14.3 Database and Methodology -- 14.3.1 Database -- 14.3.2 Methodology -- 14.3.3 Global Moran's-I -- 14.4 Results -- 14.4.1 Spatial Distribution of Healthcare Facilities -- 14.4.2 Spatial Accessibility of Healthcare Facilities -- 14.4.3 Accessibility Index (Ai) -- 14.4.4 Socio-economic Determinants of Accessibility and Utilization -- 14.4.5 Quality of Healthcare Services -- 14.4.6 Behaviour Aspects -- 14.5 Discussion -- 14.6 Conclusion -- References -- 15 Role of Artificial Intelligence in Agriculture Sustainability, an Example from India -- 15.1 Introduction -- 15.2 Method -- 15.3 Conceptual Framework -- 15.4 From Traditional Agriculture to Artificial Intelligence-Driven Smart Agriculture -- 15.5 The Trend in the Application of AI in Agriculture -- 15.6 Agricultural Field Areas for Artificial Intelligence Applications -- 15.6.1 Crop Management -- 15.6.2 Crop Yield Forecasting -- 15.6.3 Pest and Disease Identification -- 15.6.4 Weed Classification and Identification -- 15.6.5 Weather Forecasting -- 15.6.6 Irrigation -- 15.6.7 AI for Space and Resource Utilization -- 15.6.8 Artificial Intelligence Entrepreneurship -- 15.7 Findings and Discussion -- 15.8 Future Scope and Research Opportunities on AI Role in Agriculture Sustainability-Future Road Map -- References , 16 Regenerative Agriculture as Climate Smart Solution to Improve Soil Health and Crop Productivity Thereby Catalysing Farmers' Livelihood and Sustainability
    Additional Edition: Erscheint auch als Druck-Ausgabe Rani, Meenu Towards Sustainable Natural Resources Cham : Springer International Publishing AG,c2022 ISBN 9783031064425
    Language: English
    Keywords: Ökosystemmanagement ; Biodiversität ; Aufsatzsammlung
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  • 6
    UID:
    almahu_9948613605002882
    Format: XII, 272 p. 95 illus., 88 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030550929
    Content: This book covers several themes related to forestry, agriculture, water, soil, urban, and atmospheric research. GIScience technology systems have increased in significance in recent decades and have the ability to acquire information at ground level with a higher spectral resolution using a field radio-spectrometer, which is a great improvement compared to other remote sensing systems. GIScience technology systems are widely used for solving and understanding the concept of forestry, crop, water resources, and related research themes. This book aims to advance the scientific understanding of GIScience technology and applications. The chapters present GIScience data integration with other sources such as LiDAR, Multi-spectral data and their applications in forestry, crop assessment, soil assessment, mineral mapping and related themes. The book will be of interest to geospatial experts, modellers, foresters, agricultural scientists, hyperspectral remote sensing and space community, ecologists and conservation communities, environmental consultants, big data compilers, and computing experts. .
    Note: Section 1 General -- Chapter 1: Introduction to Challenges and Future Directions in Remote Sensing and GIScience -- Section II Challenges in Sustainable Natural Resources Management -- Chapter 2: Environmental and Livelihood Impact Assessment of 2013 Flash Flood in Alakananda and Mandakini River Valley, Uttarakhand (India) using Environmental Evaluation System and Geospatial Techniques -- Chapter 3: Assessment of Vegetation Vigor using Integrated Synthetic Aperture Radars -- Chapter 4: Landslide Susceptibility Mapping using Bivariate Frequency Ratio Model and Geospatial Techniques: A Case from Karbi Anglong West District in ASSAM, India -- Chapter 5: Retreating Glacier Dynamics over the last quarter of a century at Uttarakhand Region using optical Sensors Time Series Data -- Section III Remote Sensing and GIScience in Urban Growth Management -- Chapter 6: Studying the Impact of Urbanization on HYV Rice Fields at a Local Level using Fine Resolution Temporal RISAT-1 Datasets -- Chapter 7: Identification of Impervious Built-up Surface Features using Resources at 2 LISS-III based Novel Optical Built-up Index -- Chapter 8: Assessment of Building Subsidence in Hanoi Urban Area from 2011 to 2014 by high resolution Radar satellite images -- Chapter 9: Land Use/Land Cover Mapping for Sustainable Land Resources Development of Hisar District, Haryana, India -- Section IV Challenges and Future Directions in GIScience -- Chapter 10 A Spatial Investigation of the Feasibility of Solar Resource Energy Potential in Planning the Solar Cities of INDIA -- Chapter 11 Mapping Rice Growth Stages Employing MODIS NDVI and ALOS AVNIR-2 -- Chapter 12 Habitat Suitability Mapping of Sloth Bear (Melursus ursinus) in the Sariska Tiger Reserve (India) using a GIS-based Fuzzy Analytical Hierarchy Process -- Chapter 13 Estimation of Air Pollution Using Regression Modelling Approach for Mumbai Region Maharashtra, India -- Chapter 14 Mapping of Agriculture Productivity Variability for the SAARC Nations year 2050 -- Section V GIScience for Revolution in Science and Society -- Chapter 15 Future Direction of GIScience for Revolution in Science and Society over the Past Twenty Years.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9783030550912
    Additional Edition: Printed edition: ISBN 9783030550936
    Additional Edition: Printed edition: ISBN 9783030550943
    Language: English
    URL: Cover
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  • 7
    UID:
    b3kat_BV046932742
    Format: 1 Online-Ressource (xii, 272 Seiten) , Illustrationen
    ISBN: 9783030550929
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-030-55091-2
    Language: English
    Keywords: Aufsatzsammlung
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 8
    Online Resource
    Online Resource
    Singapore : Springer Nature Singapore | Singapore : Springer
    UID:
    b3kat_BV048384986
    Format: 1 Online-Ressource (XV, 366 p. 48 illus., 37 illus. in color)
    Edition: 1st ed. 2022
    ISBN: 9789811909283
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1909-27-6
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1909-29-0
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1909-30-6
    Language: English
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 9
    UID:
    gbv_1779682212
    Format: 1 online resource (382 pages)
    ISBN: 9781119793380
    Note: Description based on publisher supplied metadata and other sources
    Additional Edition: ISBN 9781119793373
    Additional Edition: Erscheint auch als Druck-Ausgabe Climate impacts on sustainable natural resource management Hoboken, NJ, USA : Wiley Blackwell, 2022 ISBN 9781119793373
    Language: English
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  • 10
    UID:
    almafu_BV047174204
    Format: VII, 277 Seiten : , Illustrationen, Diagramme, Karten (überwiegend farbig).
    ISBN: 978-3-319-99881-7
    Note: 978-3-319-99881-7
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-3-319-99882-4
    Language: English
    Keywords: Umweltwissenschaften ; Geowissenschaften ; GPS ; Geoinformationssystem ; Fernerkundung ; Hochschulschrift
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