Breakpoint Analysis And Assessment Of Selected Stressor Variables On Benthic Macroinvertebrate And Fish Communities In Indiana Streams


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Breakpoint Analysis and Assessment of Selected Stressor Variables on Benthic Macroinvertebrate and Fish Communities in Indiana Streams


Breakpoint Analysis and Assessment of Selected Stressor Variables on Benthic Macroinvertebrate and Fish Communities in Indiana Streams

Author: Brian J. Caskey

language: en

Publisher: Geological Survey (USGS)

Release Date: 2010-01-01


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Breakpoint Analysis and Assessment of Selected Stressor Variables on Benthic Macroinvertebrate and Fish Communities in Indiana Streams


Breakpoint Analysis and Assessment of Selected Stressor Variables on Benthic Macroinvertebrate and Fish Communities in Indiana Streams

Author: U. S. Department U.S. Department of the Interior

language: en

Publisher: CreateSpace

Release Date: 2014-04-27


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Water chemistry, periphyton and seston chlorophyll a (CHLa), and biological community data were collected from 321 sites from 2001 through 2005 to (1) determine statistically and ecologically significant relations among the stressor (total nitrogen, total phosphorus, periphyton and seston CHLa, and turbidity) variables and response (biological community) variables; and, (2) determine the breakpoint of biological community attributes and metrics in response to changes in stressor variables.

Urban Geomorphology


Urban Geomorphology

Author: Mary J Thornbush

language: en

Publisher: Elsevier

Release Date: 2018-07-17


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Urban Geomorphology: Landforms and Processes in Cities addresses the human impacts on landscapes through occupation (urbanization) and development as a contribution to anthropogenic geomorphology or "anthropogeomorphology." This includes a focus on land clearance, conservation issues, pollution, decay and erosion, urban climate, and anthropogenic climate change. These topics, as well as others, are considered to shed more light on the human transformation of natural landscapes and the environmental impacts and geomorphological hazards that environmental change can encompass. Its multidisciplinary approach is appropriate for audiences from a range of disciplines and professions, from geologists, conservationists, and land-use planners to architects and developers. Urban Geomorphology not only transcends disciplines, but also covers varied spatial-temporal frameworks and presents a diverse set of approaches and solutions to human impacts and geomorphological hazards within urban landscapes. - Features a cross-disciplinary perspective, highlighting the importance of the geosciences to environmental science, engineering, and public policy - Focuses on the built environment as the location of concentrated human impacts and change - Provides an international scope, including case studies from urban areas around the world