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@prefix dcterms: <http://purl.org/dc/terms/> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .
@prefix gcis: <http://data.globalchange.gov/gcis.owl#> .
@prefix rdf: <http://www.w3.org/1999/02/22-rdf-syntax-ns#> .
@prefix doco: <http://purl.org/spar/doco> .
@prefix cito: <http://purl.org/spar/cito/> .
@prefix biro: <http://purl.org/spar/biro/> .
@prefix prov: <http://www.w3.org/ns/prov#> .

<https://data.globalchange.gov/report/nca4/chapter/northeast/figure/streamflow>
   dcterms:identifier "streamflow";
   gcis:figureNumber "18.2"^^xsd:string;
   dcterms:title "Historical Changes in the Timing of Snowmelt-Related Streamflow"^^xsd:string;
   gcis:hasCaption "This map of part of the Northeast region shows consistently earlier snowmelt-related streamflow timing for rivers from 1960 to 2014. Each symbol represents the change for an individual river over the entire period. Changes in the timing of snowmelt potentially interfere with the reproduction of many aquatic species{{< tbib '113' 'b13ae849-e3b5-4f06-87f8-38dcfe0e7d65' >}} and impact water-supply reservoir management because of higher winter flows and lower spring flows.{{< tbib '114' '10990ae9-39d0-462d-8357-a39a689d90b2' >}} The timing of snowmelt-related streamflow in the Northeast is sensitive to small changes in air temperature. The average winter–spring air temperature increase of 1.67°F in the Northeast from 1940 to 2014 is thought to be the cause of average earlier streamflow timing of 7.7 days.{{< tbib '112' 'f9dc4907-65ae-4582-a285-29b5d4732a9f' >}} The timing of snowmelt-related streamflow is a valuable long-term indicator of winter–spring changes in the Northeast. Source: adapted from Dudley et al. 2017;{{< tbib '112' 'f9dc4907-65ae-4582-a285-29b5d4732a9f' >}} Digital Elevation Model CGIAR–CSI (CGIAR Consortium for Spatial Information). Reprinted with permission from Elsevier."^^xsd:string;
   dcterms:rights [ rdf:value "Figure may be copyright protected and permission may be required. Contact original figure source for information"^^xsd:string; ];
   gcis:hasImage <https://data.globalchange.gov/image/6b57bb77-6759-4009-a68b-f1bedb800503>;
   gcis:isFigureOf <https://data.globalchange.gov/report/nca4/chapter/northeast>;
   gcis:isFigureOf <https://data.globalchange.gov/report/nca4>;

## Geographical extent of the figure content

## Temporal extent of the figure content

   a gcis:Figure, doco:Figure .



<https://data.globalchange.gov/report/nca4/chapter/northeast/figure/streamflow>
   cito:cites <https://data.globalchange.gov/article/10.1175/2010ei370.1>;
   biro:references <https://data.globalchange.gov/reference/10990ae9-39d0-462d-8357-a39a689d90b2>.

<https://data.globalchange.gov/report/nca4/chapter/northeast/figure/streamflow>
   cito:cites <https://data.globalchange.gov/report/c2es-center-aquatic-2002>;
   biro:references <https://data.globalchange.gov/reference/b13ae849-e3b5-4f06-87f8-38dcfe0e7d65>.

<https://data.globalchange.gov/report/nca4/chapter/northeast/figure/streamflow>
   cito:cites <https://data.globalchange.gov/article/10.1016/j.jhydrol.2017.01.051>;
   biro:references <https://data.globalchange.gov/reference/f9dc4907-65ae-4582-a285-29b5d4732a9f>.




## Person and his/her role in the creation of the entity:
<https://data.globalchange.gov/report/nca4/chapter/northeast/figure/streamflow>
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