Pacific Northwest National Laboratory, Richland, WA 99352, USA
School of Biological Sciences, Washington State University, Pullman, WA 99164, USA
Viewed
Since the preprint corresponding to this journal article was posted outside of Copernicus Publications, the preprint-related metrics are limited to HTML views.
Total article views: 4,228 (including HTML, PDF, and XML)
HTML
PDF
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Total
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4,196
0
32
4,228
0
0
HTML: 4,196
PDF: 0
XML: 32
Total: 4,228
BibTeX: 0
EndNote: 0
Views and downloads (calculated since 02 Dec 2024)
Cumulative views and downloads
(calculated since 02 Dec 2024)
Total article views: 4,228 (including HTML, PDF, and XML)
HTML
PDF
XML
Total
BibTeX
EndNote
4,196
0
32
4,228
0
0
HTML: 4,196
PDF: 0
XML: 32
Total: 4,228
BibTeX: 0
EndNote: 0
Views and downloads (calculated since 02 Dec 2024)
Cumulative views and downloads
(calculated since 02 Dec 2024)
Viewed (geographical distribution)
Since the preprint corresponding to this journal article was posted outside of Copernicus Publications, the preprint-related metrics are limited to HTML views.
Total article views: 4,228 (including HTML, PDF, and XML)
Thereof 4,226 with geography defined
and 2 with unknown origin.
Total article views: 4,228 (including HTML, PDF, and XML)
Thereof 4,226 with geography defined
and 2 with unknown origin.
We investigated what physicochemical and land-use factors relate to estuarine resistance to precipitation across spatial scales and salinity gradient. Urbanized estuaries generally showed higher apparent resistance. Water temperature, depth, turbidity, nitrogen, and chlorophyll-a were associated with resistance at the continental scale, but relationships varied across salinity groups and individual estuaries, highlighting context-dependent responses to precipitation.
We investigated what physicochemical and land-use factors relate to estuarine resistance to...