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#anomalies — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #anomalies, aggregated by home.social.

  1. Vegetal growth degradation (continued)

    "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018

    #photosynthesis #variability #degradation #ecology #anomalies #carbon #carbonSinks #drought #droughts #soil #climateChange #climate

  2. Vegetal growth degradation (continued)

    "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018

  3. Vegetal growth degradation (continued)

    "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018

    #photosynthesis #variability #degradation #ecology #anomalies #carbon #carbonSinks #drought #droughts #soil #climateChange #climate

  4. Vegetal growth degradation (continued)

    "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018

    #photosynthesis #variability #degradation #ecology #anomalies #carbon #carbonSinks #drought #droughts #soil #climateChange #climate

  5. Vegetal growth degradation (continued)

    "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018

    #photosynthesis #variability #degradation #ecology #anomalies #carbon #carbonSinks #drought #droughts #soil #climateChange #climate

  6. "Our results show a large contribution from antecedent climate conditions (38.2%) to ecosystem productivity during extremes, with precipitation accounting for 42.2% of the memory effects, followed by temperature (22.1%) and vapour pressure deficit (20.8%). Extreme events conditioned by long-term climatic variations often cause higher productivity losses than short-term extremes, with semi-arid ecosystems exhibiting the largest productivity anomalies and prolonged memory effects."

    Qiu, J., Zhang, Y., Cai, M. et al. "Large contribution of antecedent climate to ecosystem productivity anomalies during extreme events" (2026). doi.org/10.1038/s41561-025-018