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Release v0.20.3
Release v0.20.3
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.env

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@@ -12,7 +12,7 @@ API_RASTER_ENDPOINT='https://openveda.cloud/api/raster'
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# Endpoint for the STAC server. No trailing slash.
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API_STAC_ENDPOINT='https://openveda.cloud/api/stac'
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API_XARRAY_ENDPOINT='https://prod-titiler-xarray.delta-backend.com/tilejson.json'
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API_TITILER_MULTIDIM_ENDPOINT='https://staging.openveda.cloud/api/multidim/WebMercatorQuad/tilejson.json'
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MAPBOX_STYLE_URL='mapbox://styles/covid-nasa/ckb01h6f10bn81iqg98ne0i2y'
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.veda/ui

Submodule ui updated 106 files

datasets/CMIP-winter-median-pr.data.mdx

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---
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id: CMIP-winter-median-pr
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name: 'Projections of Western United States Winter Conditions'
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description: "CMIP6 projections of changes to air temperature and winter cumulative precipitation"
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media:
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src: ::file media/CMIP-winter-median.jpeg
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alt: Photo of Nisqually glacier
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author:
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name: Justin Pflug
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url:
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taxonomy:
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- name: Topics
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values:
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- Precipitation
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- Snow
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- Climate
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- Climate Model
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- name: Source
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values:
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- NASA EIS
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- CMIP6
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infoDescription: |
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::markdown
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Future changes to air temperature are expected to influence the phase of winter precipitation (snowfall or rainfall) and the timing and amount of snowmelt and streamflow, while changes to precipitation are expected to alter the volume and timing of snow water resources. Here, we present the projected percent-change to Western US air tempeature and cumulative winter precipitation at quarter-degree spatial resoutions across 20-year time periods between 2016 and 2095. Projections are averaged from an ensemble of 23 downscaled climate models from the CMIP6 NASA Earth Exchange Global Daily Downscaled Projections.
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layers:
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- id: CMIP245-winter-median-pr
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stacCol: CMIP245-winter-median-pr
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name: 'Percent-change to winter cumulative precipitation, SSP2-4.5'
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type: raster
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description: 'Percent difference in projected winter (January, February, March) cumulative precipitation, relative to a historical timeframe between 1995 and 2014. Outputs represent the median of 23 member ensembles from CMIP6 (SSP 2-4.5) with downscaling performed by NASA Earth Exchange'
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sourceParams:
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resampling: bilinear
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bidx: 1
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nodata: nan
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colormap_name: rdbu
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rescale:
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- -60
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- 60
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compare:
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datasetId: CMIP-winter-median-pr
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layerId: CMIP245-winter-median-pr
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mapLabel: |
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::js ({ dateFns, datetime, compareDatetime }) => {
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if (dateFns && datetime && compareDatetime) return `${dateFns.format(datetime, 'dd LLL yyyy')}`;
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}
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legend:
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type: gradient
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label: Precipitation percent-difference
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min: "-60%"
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max: "+60%"
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stops:
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- "#CA171C"
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- "#DE6158"
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- "#F2B089"
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- "#F5D5C3"
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- "#F8F8F8"
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- "#CDE2EF"
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- "#A0CBE4"
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- "#5EA4D1"
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- "#207BBD"
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info:
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source: NASA
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spatialExtent: Regional
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temporalResolution: Annual
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unit: Percent Difference
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- id: CMIP585-winter-median-pr
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stacCol: CMIP585-winter-median-pr
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name: 'Percent-change to winter cumulative precipitation, SSP5-8.5'
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type: raster
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description: 'Percent difference in projected winter (January, February, March) cumulative precipitation, relative to a historical timeframe between 1995 and 2014. Outputs represent the median of 23 member ensembles from CMIP6 (SSP 5-8.5) with downscaling performed by NASA Earth Exchange'
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sourceParams:
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resampling: bilinear
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bidx: 1
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nodata: nan
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colormap_name: rdbu
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rescale:
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- -60
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- 60
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compare:
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datasetId: CMIP-winter-median-pr
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layerId: CMIP585-winter-median-pr
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mapLabel: |
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::js ({ dateFns, datetime, compareDatetime }) => {
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if (dateFns && datetime && compareDatetime) return `${dateFns.format(datetime, 'dd LLL yyyy')}`;
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}
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legend:
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type: gradient
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label: Precipitation percent-difference
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min: "-60%"
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max: "+60%"
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stops:
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- "#CA171C"
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- "#DE6158"
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- "#F2B089"
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- "#F5D5C3"
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- "#F8F8F8"
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- "#CDE2EF"
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- "#A0CBE4"
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- "#5EA4D1"
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- "#207BBD"
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info:
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source: NASA
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spatialExtent: Regional
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temporalResolution: Annual
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unit: Percent Difference
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- id: CMIP245-winter-median-ta
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stacCol: CMIP245-winter-median-ta
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name: 'SSP2-4.5, Change to winter average air temperature'
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type: raster
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description: 'Difference in projected winter (January, February, March) average air temperature, relative to a historical timeframe between 1995 and 2014. Outputs represent the median of 23 member ensembles from CMIP6 (SSP 2-4.5) with downscaling performed by NASA Earth Exchange'
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sourceParams:
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resampling: bilinear
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bidx: 1
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colormap_name: rdbu_r
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rescale:
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- -5.5
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- 5.5
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compare:
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datasetId: CMIP-winter-median-ta
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layerId: CMIP245-winter-median-ta
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mapLabel: |
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::js ({ dateFns, datetime, compareDatetime }) => {
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if (dateFns && datetime && compareDatetime) return `${dateFns.format(datetime, 'dd LLL yyyy')}`;
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}
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legend:
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unit:
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label: °C
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type: gradient
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label: Air temperature difference [C]
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min: "-5.5"
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max: "+5.5"
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stops:
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- "#207BBD"
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- "#5EA4D1"
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- "#A0CBE4"
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- "#CDE2EF"
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- "#F8F8F8"
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- "#F5D5C3"
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- "#F2B089"
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- "#DE6158"
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- "#CA171C"
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info:
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source: NASA
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spatialExtent: Regional
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temporalResolution: Annual
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unit: Percent Difference
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- id: CMIP585-winter-median-ta
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stacCol: CMIP585-winter-median-ta
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name: 'SSP5-8.5, Change to winter average air temperature'
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type: raster
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description: 'Difference in projected winter (January, February, March) average air temperature, relative to a historical timeframe between 1995 and 2014. Outputs represent the median of 23 member ensembles from CMIP6 (SSP 5-8.5) with downscaling performed by NASA Earth Exchange'
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sourceParams:
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resampling: bilinear
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bidx: 1
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colormap_name: rdbu_r
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rescale:
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- -5.5
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- 5.5
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compare:
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datasetId: CMIP-winter-median-ta
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layerId: CMIP585-winter-median-ta
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mapLabel: |
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::js ({ dateFns, datetime, compareDatetime }) => {
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if (dateFns && datetime && compareDatetime) return `${dateFns.format(datetime, 'dd LLL yyyy')}`;
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}
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legend:
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unit:
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label: °C
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type: gradient
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label: Air temperature difference [C]
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min: "-5.5"
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max: "+5.5"
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stops:
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- "#207BBD"
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- "#5EA4D1"
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- "#A0CBE4"
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- "#CDE2EF"
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- "#F8F8F8"
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- "#F5D5C3"
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- "#F2B089"
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- "#DE6158"
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- "#CA171C"
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info:
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source: NASA
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spatialExtent: Regional
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temporalResolution: Annual
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unit: Percent Difference
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---
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<Block>
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<Prose>
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## Overview
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Future changes to air temperature are expected to influence the phase of winter precipitation (snowfall or rainfall) and the timing and amount of snowmelt and streamflow. Future changes to precipitation are expected to alter the volume and timing of snow water resources. Here, we present the projected percent-change to Western US air temperature and cumulative winter precipitation at quarter-degree spatial resoutions across 20-year time periods between 2016 and 2095. Projections are averaged from an ensemble of 23 downscaled climate models from the [CMIP6 NASA Earth Exchange Global Daily Downscaled Projections](https://www.nccs.nasa.gov/services/data-collections/land-based-products/nex-gddp-cmip6).
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</Prose>
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</Block>

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