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      The impacts of climate change on terrestrial Earth surface systems

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      Nature Climate Change
      Springer Science and Business Media LLC

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          The anthropocene: from global change to planetary stewardship.

          Over the past century, the total material wealth of humanity has been enhanced. However, in the twenty-first century, we face scarcity in critical resources, the degradation of ecosystem services, and the erosion of the planet's capability to absorb our wastes. Equity issues remain stubbornly difficult to solve. This situation is novel in its speed, its global scale and its threat to the resilience of the Earth System. The advent of the Anthropence, the time interval in which human activities now rival global geophysical processes, suggests that we need to fundamentally alter our relationship with the planet we inhabit. Many approaches could be adopted, ranging from geoengineering solutions that purposefully manipulate parts of the Earth System to becoming active stewards of our own life support system. The Anthropocene is a reminder that the Holocene, during which complex human societies have developed, has been a stable, accommodating environment and is the only state of the Earth System that we know for sure can support contemporary society. The need to achieve effective planetary stewardship is urgent. As we go further into the Anthropocene, we risk driving the Earth System onto a trajectory toward more hostile states from which we cannot easily return.
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            The equilibrium sensitivity of the Earth's temperature to radiation changes

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              Five hundred years of gridded high-resolution precipitation reconstructions over Europe and the connection to large-scale circulation

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                Author and article information

                Journal
                Nature Climate Change
                Nature Clim Change
                Springer Science and Business Media LLC
                1758-678X
                1758-6798
                January 2013
                October 14 2012
                January 2013
                : 3
                : 1
                : 24-29
                Article
                10.1038/nclimate1660
                872e8ee1-0906-4d7e-b027-91c54b55a6e7
                © 2013

                http://www.springer.com/tdm

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