Global Water Clarity: Continuing a Century-Long Monitoring
An approach that combines field observations and satellite inferences of Secchi depth could transform how we assess water clarity across the globe and pinpoint key changes over the past century.
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Veröffentlicht in: | Eos (Washington, D.C.) D.C.), 2018-05, Vol.99 (99) |
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container_issue | 99 |
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container_title | Eos (Washington, D.C.) |
container_volume | 99 |
creator | Lee, Zhongping Arnone, Robert Boyce, Daniel Franz, Bryan Greb, Steve Hu, Chuanmin Lavender, Samantha Lewis, Marlon Schaeffer, Blake Shang, Shaoling Wang, Menghua Wernand, Marcel Wilson, Cara |
description | An approach that combines field observations and satellite inferences of Secchi depth could transform how we assess water clarity across the globe and pinpoint key changes over the past century. |
doi_str_mv | 10.1029/2018EO097251 |
format | Article |
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ispartof | Eos (Washington, D.C.), 2018-05, Vol.99 (99) |
issn | 2324-9250 |
language | eng |
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source | Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; NASA Technical Reports Server; Free E- Journals |
subjects | Earth Resources And Remote Sensing Oceanography |
title | Global Water Clarity: Continuing a Century-Long Monitoring |
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