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Titlebook: Environmental Change in the Himalayan Region; Twelve Case Studies Anup Saikia,Pankaj Thapa Book 2019 Springer Nature Switzerland AG 2019 Hu

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https://doi.org/10.1007/978-3-662-54449-5pacity of the city. A total area of 45.9 km. of vegetation and cultivated land were converted into built-up land resulting in lowering of agricultural and vegetation production. The constant decline in the non built-up land raises questions regarding the sustainable development. Srinagar is hardly a
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https://doi.org/10.1007/978-3-642-53115-6 yields of crops. Descriptive statistics were used to analyse the collected data. This study reveals that although 31.3% of the total working population is involved in practicing agriculture, yet only a small proportion of 4% of the total income is earned from it. Climate change will play a key role
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https://doi.org/10.1007/978-3-658-09663-24.01 km.) in Sikkim, with a maximum mean monthly SCA in February (50.99 ± 8.94%) and November (43.16 ± 4.95), suggesting a greater snow accumulation from winter precipitation (February) than that from the north east retreating monsoon (November). The summer months of March–April (40.6 ± 7%) showed h
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Status of Climate Change and Implications to Ecology and Community Livelihoods in the Bhutan Himalaatial and inner-annual variability of air temperature and precipitation regimes of Bhutan, based on local meteorological observations and climate projections, and (2) relates the effects of climatic changes on water resources, ecosystem services, agriculture and the economy of Bhutan.
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Analysing Geospatial Techniques for Land Degradation Studies in Hindu Kush-Himalaya, aspects of land degradation in mountains and highlights the markers to study land degradation. It tries to analyze the degree of anthropogenic interference on land resources in the human-dominated Himalayan region. It provides an overview of significant studies that have dealt with the assessment o
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Urbanization Induced Land Use-Land Cover Changes in the Manipur Valley and Surrounding Hills: A Lantrics at landscape level reveal that the landscape had a highly fragmented forest class and built-up area started clumping in all directions. The total number of dense forest patches increased by 63%, and mean size of forest patch (MPS) decreased from 2.4 to 0.3 ha during a period of 25 years. The n
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