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Titlebook: Ecological Responses to the 1980 Eruption of Mount St. Helens; Virginia H. Dale,Frederick J. Swanson,Charles M. C Book 2005 Springer-Verla

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General Balanced Random Effects Model,h great force down the mountain. Debris avalanches are typically cool and can bury surfaces with as much as 200 m of material. They tend to follow the original topography, have abrupt edges, and produce steep, undulating topography that can persist for many millennia.
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https://doi.org/10.1007/b138864987;Wood and del Moral 1987; Frenzen et al. 1988). In addition to altering plant succession, large volcanic mudflows can initiate a cascading chain of secondary disturbances that further modify the landscape and affect subsequent ecological responses (see Swanson and Major, Chapter 3, this volume).
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Analysis of a Finite Element Methodtinctive to certain disturbance mechanisms and sites? Can the lessons from a local area be generalized throughout the disturbed area or even throughout a zone dominated by one disturbance type? These questions can be addressed in at least two ways:
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Disturbance, Survival, and Succession: Understanding Ecological Responses to the 1980 Eruption of Mog from recent clear-cuts to well-established tree plantations to natural stands, as well as meadows, streams, and lakes. This book focuses on responses of these ecological systems to the cataclysmic eruption on May 18, 1980.
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Plant Succession on the Mount St. Helens Debris-Avalanche Deposith great force down the mountain. Debris avalanches are typically cool and can bury surfaces with as much as 200 m of material. They tend to follow the original topography, have abrupt edges, and produce steep, undulating topography that can persist for many millennia.
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Geomorphic Change and Vegetation Development on the Muddy River Mudflow Deposit987;Wood and del Moral 1987; Frenzen et al. 1988). In addition to altering plant succession, large volcanic mudflows can initiate a cascading chain of secondary disturbances that further modify the landscape and affect subsequent ecological responses (see Swanson and Major, Chapter 3, this volume).
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Remote Sensing of Vegetation Responses During the First 20 Years Following the 1980 Eruption of Mountinctive to certain disturbance mechanisms and sites? Can the lessons from a local area be generalized throughout the disturbed area or even throughout a zone dominated by one disturbance type? These questions can be addressed in at least two ways:
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Lupine Effects on Soil Development and Function During Early Primary Succession at Mount St. Helensnd growth of subsequent species that are limited by soil organic matter and by availability of critical nutrients such as nitrogen (Chapin et al. 1986; Franz 1986; Mooney et al. 1987; Vitousek et al. 1987; Chapin et al. 1994; Ritchie and Tilman 1995).
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