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Titlebook: Coral Reef Science; Strategy for Ecosyst Hajime Kayanne Book 2016 Springer Japan 2016 Acidification.Coexistence System.Coral Reef Studies.E

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Coral Reef Science978-4-431-54364-0Series ISSN 2213-719X Series E-ISSN 2213-7203
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Migrating VB 6.0 Add-ins to .NET,re strongly affecting coral reef communities. Coral damage can be caused by both abiotic factors (temperature, sedimentation, nutrients inputs, ultraviolet radiation) and biotic factors (predation, overgrowth of algae, infectious diseases). These factors acting mostly in synergy had resulted in worl
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The Macro Explorer and the Macros IDE,d nutrient discharge in response to land development during the past 50 years on Ishigaki Island, Southwest Japan. Correlates of coral reef decline were also detected using remote sensing (aerial photographic) data. Given that historical aerial photographs are available for many areas from as early
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Migrating VB 6.0 Add-ins to .NET,on of its landscape history, i.e., the process of viewing a present landscape as a historical artifact contingently and cumulatively changed through interactions between two types of agents, natural and human. For the geohistory of the late Miocene to the late Holocene, in particular, I review three
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Migrating VB 6.0 Add-ins to .NET,o of global warming: increase in CO. results in ocean acidification and suppresses calcification, rise in sea surface temperature leads to severe bleaching, and sea level rise causes submergence of coral reefs and atoll islands. They are the most sensitive ecosystem and act as an early warning syste
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Manipulating Controls on Forms,coral reefs. We investigated the atmospheric wet deposition of dissolved inorganic nitrogen (DIN) and phosphorus (DIP) to coral reef sites around the Ishigaki and Iriomote Islands in the subtropical western North Pacific. The deposition rate of DIN was higher in autumn and winter than in summer. The
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