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Central Asia and NW China absolute change of mean annual precipitation 2020s_A1bV1
Central Asia and NW China Absolute Change of Mean Annual Precipitation 2020s_A1bV1
Central Asia and NW China absolute change of mean annual precipitation 2020s_A2
Central Asia and NW China Absolute Change of Mean Annual Precipitation 2020s_A2
Central Asia and NW China absolute change of the annual maximum temperature 2020s_A2
Central Asia and NW China Absolute change of the annual maximum temperature 2020s_A2
Central Asia and NW China annual average of the monthly minimum temperature 2020s_A2V1
Central Asia and NW China Annual average of the monthly minimum temperature 2020s_A2V1
Central Asia and NW China annual mean precipitation 2020s_A2V1
Central Asia and NW China Annual mean precipitation 2020s_A2V1
Central Asia and NW China absolute change of the annual minimum temperature 2020s_A2V1
Central Asia and NW China Absolute change of the annual minimum temperature 2020s_A2V1
Central Asia and NW China annual average of the monthly maximum temperature 2020s_A2V1
Central Asia and NW China Annual average of the monthly maximum temperature 2020s_A2V1
Central Asia and NW China annual average of the monthly minimum temperature 2020s_A1bV1
Central Asia and NW China Annual average of the monthly minimum temperature 2020s_A1bV1
Central Asia and NW China absolute change of the annual maximum temperature 2020s_A1bV1
Central Asia and NW China Absolute change of the annual maximum temperature 2020s_A1bV1
Land surface temperature phenology in Cetral Asia from 2003-2013 at 8-days interval (total number of layers 132): End of the growing season at 0 degree centigrade
Land surface temperature phenology in Cetral Asia from 2003-2013 at 8-days interval (total number of layers 132): End of the growing season at 0 degree centigrade