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Titlebook: Conservation Biology; The Theory and Pract Peggy L. Fiedler,Subodh K. Jain Book 1992 Routledge, Chapman & Hall, Inc. and Diane C. Fiedler 1

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發(fā)表于 2025-3-21 17:00:16 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Conservation Biology
副標(biāo)題The Theory and Pract
編輯Peggy L. Fiedler,Subodh K. Jain
視頻videohttp://file.papertrans.cn/236/235739/235739.mp4
圖書封面Titlebook: Conservation Biology; The Theory and Pract Peggy L. Fiedler,Subodh K. Jain Book 1992 Routledge, Chapman & Hall, Inc. and Diane C. Fiedler 1
描述? ? ? John Harper ? ? ? Nature conservation has changed from an idealistic philosophy to a serious technology. Ecology, the science that underpins the technol- ogy of conservation, is still too immature to provide all the wisdom that it must. It is arguable that the desire to conserve nature will in itself force the discipline of ecology to identify fundamental prob- lems in its scientific goals and methods. In return, ecologists may be able to offer some insights that make conservation more practicable (Harper 1987). The idea that nature (species or communities) is worth preserv- ing rests on several fundamental arguments, particularly the argu- ment of nostalgia and the argument of human benefit and need. Nostalgia, of course, is a powerful emotion. With some notable ex- ceptions, there is usually a feeling of dismay at a change in the sta- tus quo, whether it be the loss of a place in the country for walking or rambling, the loss of a painting or architectural monument, or that one will never again have the chance to see a particular species of bird or plant.
出版日期Book 1992
關(guān)鍵詞conservation biology; ecology; nature conservation; science
版次1
doihttps://doi.org/10.1007/978-1-4684-6426-9
isbn_softcover978-1-4684-6428-3
isbn_ebook978-1-4684-6426-9
copyrightRoutledge, Chapman & Hall, Inc. and Diane C. Fiedler 1992
The information of publication is updating

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Hierarchies of Cause: Toward an Understanding of Rarity in Vascular Plant Speciesies intrinsic to these time/space parameters are explored and an importance hierarchy of causes of rarity is proposed for each class. These hierarchies serve as the basis for a predictive classification. Human causes of rarity such as habitat destruction and taxonomic difficulties are not considered
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The New Paradigm in Ecology: Implications for Conservation Biology Above the Species Levelconservation is only one of the various goals that has directed the preservation and management of natural areas and resources. Resource management goals have largely been utilitarian or commercial, such as the maintenance of large areas for watersheds; preservation of marshes, bogs, and seasonal we
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Reptilian Extinctions: The Last Ten Thousand Yearstions have occurred on islands, and they are usually due to human-related disturbance. The effects of human-related disturbance are calibrated by measuring the rate of extinction for two sets of Holocene landbridge islands where human impact has been minimal. Extinction rates for islands with a hist
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Loss of Biodiversity in Aquatic Ecosystems: Evidence from Fish FaunasFish also have a major impact on the distribution and abundance of other organisms in waters they inhabit. Examination of trends in freshwater fish faunas from different parts of the world indicate that most faunas are in serious decline and in need of immediate protection. Species most likely to be
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Threats to Invertebrate Biodiversity: Implications for Conservation Strategiesats to invertebrates and concern about detrimental effects of loss of invertebrate diversity. I summarize the geographic distribution of extinct and threatened U.S. invertebrates, discuss reasons for recent extinctions, and comment on the role invertebrates should play in conservation strategies. Ar
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Forest Fragmentation and the Conservation of Biological Diversityragmentation differs from habitat patchiness, and it is illustrated how forest fragmentation is distinguished from a series of forest fragments and a single tract of insular forest. Five types of fragmentation are illustrated, and land use in and around the Ocala National Forest illustrates how thes
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Issues of Scale in Conservation Biologya new light, the resolution is obvious, and we wonder how we could have ever been so stupid. Is it possible to identify “new lights” at the outset, and then proceed to determine which might best illuminate the problem at hand?
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