Search Results - temperature (decrease OR increase)
Search alternatives:
-
3181
(Table 1) Organic and inorganic geochemical analysis of Late Jurassic to Early Cretaceous black shale sediments from the Norwegian-Greenland Seaway
Published 2003Fuente: PANGAEADataset Open AccessAcceso al recurso -
3182
Seawater carbonate chemistry and suvival, growth, and biochemical constituents of Artemia franciscana
Published 2021Fuente: PANGAEADataset Open AccessAcceso al recurso -
3183
Seawater carbonate chemistry and photoinhibition in Desmarestia anceps
Published 2017Fuente: PANGAEADataset Open AccessAcceso al recurso -
3184
Increased CO2 modifies the carbon balance and the photosynthetic yield of two common Arctic brown seaweeds: Desmarestia aculeata and Alaria esculenta
Published 2015Fuente: PANGAEADataset Open AccessAcceso al recurso -
3185
The effect of light intensity versus light dose on the photosynthetic performance of two strains of Ulva lacinulata
Published 2024Fuente: PANGAEADataset Open AccessAcceso al recurso -
3186
Indian Ocean surface oxygen isotopes of seawater (ice volume corrected) stack - proxy for sea surface salinity
Published 2023Fuente: PANGAEADataset Open AccessAcceso al recurso -
3187
(Table T1) Magnetic properties of MORB from ODP Leg 187 sites
Published 2004Fuente: PANGAEADataset Open AccessAcceso al recurso -
3188
Seawater carbonate chemistry and lipid content, particulate organic carbon/nitrogen, growth rate, and morphology of Emiliania huxleyi
Published 2022Fuente: PANGAEADataset Open AccessAcceso al recurso -
3189
Seawater carbonate chemistry, nutrients, chlorophyll and diatom Proboscia alata during experiments, 2012
Published 2012Fuente: PANGAEADataset Open AccessAcceso al recurso -
3190
Heat flow data during POLARSTERN cruise ARK-XVII/2, AMORE expedition to the Gakkel Ridge, with links to raw data files
Published 2017Fuente: PANGAEADataset Open AccessAcceso al recurso -
3191
Seawater carbonate chemistry and growth, production and nitrogen cycling of Nodularia spumigena
Published 2012Fuente: PANGAEADataset Open AccessAcceso al recurso -
3192
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230828_1416
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3193
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230829_1619
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3194
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230831_1204
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3195
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230901_1203
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3196
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230902_1200
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3197
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230904_1205
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3198
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230903_1205
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3199
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230906_1209
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso -
3200
In-situ aircraft measurements of wind farm wake effects during the AWAKEN campaign in Oklahoma (September 2023), flight AWAKEN_20230905_1203
Published 2025Fuente: PANGAEADataset Open AccessAcceso al recurso