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2. Decomposition of physical processes controlling EASM precipitation changes during the mid-Piacenzian: new insights into data–model integration

3. Alpine permafrost could account for a quarter of thawed carbon based on Plio-Pleistocene paleoclimate analogue

4. Revisiting the physical processes controlling the tropical atmospheric circulation changes during the Mid-Piacenzian Warm Period

6. Mid-Pliocene El Niño/Southern Oscillation suppressed by Pacific intertropical convergence zone shift

7. 20,000 years of societal vulnerability and adaptation to climate change in southwest Asia

8. Past terrestrial hydroclimate sensitivity controlled by Earth system feedbacks

9. Stratigraphic and Earth System Approaches to Defining the Anthropocene (2016)

10. Lessons on Climate Sensitivity From Past Climate Changes

11. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2

12. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2

13. Revisiting the physical processes controlling the tropical atmospheric circulation changes during the Mid-Piacenzian Warm Period

14. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2

17. Stratigraphic and Earth System Approaches to Defining the Anthropocene (2016)

18. The role of atmospheric CO2 in controlling sea surface temperature change during the Pliocene.

19. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2.

20. Supplementary material to "Highly stratified mid-Pliocene Southern Ocean in PlioMIP2"

21. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2

22. The hydrological cycle and ocean circulation of the Maritime Continent in the Pliocene: results from PlioMIP2

26. Highly restricted near‐surface permafrost extent during the mid-Pliocene warm period

27. Amplified surface warming in the south-west Pacific during the mid-Pliocene (3.3–3.0 Ma) and future implications

30. On the climatic influence of CO2 forcing in the Pliocene

31. The hydrological cycle and ocean circulation of the Maritime Continent in the Pliocene: results from PlioMIP2

32. Highly restricted near-surface permafrost extent during the mid-Pliocene warm period

33. Unraveling the mechanisms and implications of a stronger mid-Pliocene Atlantic Meridional Overturning Circulation (AMOC) in PlioMIP2

34. Unraveling the mechanisms and implications of a stronger mid-Pliocene Atlantic Meridional Overturning Circulation (AMOC) in PlioMIP2

35. Unraveling the mechanisms and implications of a stronger mid-Pliocene Atlantic Meridional Overturning Circulation (AMOC) in PlioMIP2

36. On the climatic influence of CO2 forcing in the Pliocene

37. The hydrological cycle and ocean circulation of the Maritime Continent in the Pliocene: results from PlioMIP2

38. Highly restricted near-surface permafrost extent during the mid-Pliocene warm period

39. The role of atmospheric CO2 in controlling patterns of sea surface temperature change during the Pliocene.

40. Highly stratified mid-Pliocene Southern Ocean in PlioMIP2.

41. Highly restricted near‐surface permafrost extent during the mid-Pliocene warm period.

47. Supplementary material to "Amplified surface warming in the Southwest Pacific during the mid-Pliocene (3.3–3.0 Ma) and future implications"

48. Unraveling the mechanisms and implications of a stronger mid-Pliocene Atlantic Meridional Overturning Circulation (AMOC) in PlioMIP2

49. Pliocene Model Intercomparison Project Phase 3 (Pliomip3) – Science Plan and Experimental Design

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