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First 1770 results for ” Linden”

  1. A first comparison of TROPOMI aerosol layer height (ALH) to CALIOP data

    The TROPOspheric Monitoring Instrument (TROPOMI) level-2 aerosol layer height (ALH) product has n...

    S Nanda, M de Graaf, JP Veefkind, MC Sneep, M ter Linden, J Sun, PF Levelt | Status: published | Journal: Atmospheric Measurement Techniques | Volume: 13 | Year: 2019 | First page: 3043 | Last page: 3059 | doi: 10.5194/amt-13-3043-2020

    Publication

  2. A neural network radiative transfer model approach applied to the Tropospheric Monitoring Instrument aerosol height algorithm

    To retrieve aerosol properties from satellite measurements of the oxygen A-band in the near-infra...

    S Nanda, M de Graaf, JP Veefkind, M ter Linden, MC Sneep, JF de Haan, PF Levelt | Status: published | Journal: Atmospheric Measurement Techniques | Volume: 12 | Year: 2019 | First page: 6619 | Last page: 6634 | doi: 10.5194/amt-12-6619-2019

    Publication

  3. Differences between Arctic interannual and decadal variability across climate states

    Long-term climate variations have the potential to amplify or dampen (human-induced) trends in te...

    Jesse Reusen, Eveline van der Linden, Richard Bintanja | Journal: Journal of Climate | Volume: 32 | Year: 2019 | First page: 6035 | Last page: 6050 | doi: 10.1175/JCLI-D-18-0672.1

    Publication

  4. Arctic decadal variability in a warming world

    Natural decadal variability of surface air temperature might obscure Arctic temperature trends in...

    Eveline C van der Linden, Richard Bintanja, Wilco Hazeleger | Journal: Journal of Geophysical Research: Atmospheres | Volume: 122 | Year: 2017 | First page: 5677 | Last page: 5696 | doi: 10.1002/2016JD026058

    Publication

  5. Seasonal and regional contrasts of future trends in interannual arctic climate variability

    Future changes in interannual variability (IAV) of Arctic climate indicators such as sea ice and ...

    Marlen Kolbe1 · Richard Bintanja1, 2 · Eveline C. van der Linden2 | Journal: Climate Dynamics | Volume: 61 | Year: 2023 | First page: 3673 | Last page: 3706 | doi: https://doi.org/10.1007/s00382-023-06766-y

    Publication