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1. Introduction STATE OF THE CLIMATE IN 2022

2. The Arctic

3. Overview of the MOSAiC expedition: Snow and sea ice

4. Overview of the MOSAiC expedition: Snow and sea ice

5. Overview of the MOSAiC expedition: Snow and sea ice

6. Overview of the MOSAiC expedition: Snow and sea ice

7. Overview of the MOSAiC expedition: Snow and sea ice

8. Overview of the MOSAiC expedition

9. Overview of the MOSAiC expedition: Snow and sea ice

10. The Arctic

11. Improving bio-physical characterization of Arctic sea ice habitats using an Underwater Hyperspectral Imager (UHI)

12. An overview of the HAVOC project during MOSAiC: a multi-disciplinary glimpse at bio-physical sea ice ridge habitat properties from winter to summer

13. Observation and modelling of snow and sea ice mass balance and its sensitivity to atmospheric forcing during spring and summer 2007 in the Central Arctic

14. The Arctic

15. Observation and modelling of snow and sea ice mass balance and its sensitivity to atmospheric forcing during spring and summer 2007 in the Central Arctic

16. Improving bio-physical characterization of Arctic sea ice habitats using an Underwater Hyperspectral Imager (UHI)

17. An overview of the HAVOC project during MOSAiC: a multi-disciplinary glimpse at bio-physical sea ice ridge habitat properties from winter to summer

18. The Arctic

19. The Arctic

20. The Arctic

22. The observed recent surface air temperature development across Svalbard and concurring footprints in local sea ice cover

23. Long-term monitoring of landfast sea ice extent and thickness in Kongsfjorden, and related applications (FastIce)

24. The Arctic

25. The observed recent surface air temperature development across Svalbard and concurring footprints in local sea ice cover

26. Long-term monitoring of landfast sea ice extent and thickness in Kongsfjorden, and related applications (FastIce)

27. The Arctic

29. A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System

30. A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System

31. Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean

32. A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System

33. Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean

34. A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System

35. A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System

36. Snow in the changing sea-ice systems

37. Thin Sea Ice, Thick Snow, and Widespread Negative Freeboard Observed During N-ICE2015 North of Svalbard

38. Comparison of Freeboard Retrieval and Ice Thickness Calculation From ALS, ASIRAS, and CryoSat-2 in the Norwegian Arctic to Field Measurements Made During the N-ICE2015 Expedition

39. Contribution of deformation to sea-ice mass balance: a case study from an N-ICE2015 storm

40. Thin Sea Ice, Thick Snow, and Widespread Negative Freeboard Observed During N-ICE2015 North of Svalbard

41. Comparison of Freeboard Retrieval and Ice Thickness Calculation From ALS, ASIRAS, and CryoSat-2 in the Norwegian Arctic to Field Measurements Made During the N-ICE2015 Expedition

42. Contribution of deformation to sea-ice mass balance: a case study from an N-ICE2015 storm

43. Comparison of Freeboard Retrieval and Ice Thickness Calculation From ALS, ASIRAS, and CryoSat-2 in the Norwegian Arctic to Field Measurements Made During the N-ICE2015 Expedition

44. Contribution of deformation to sea-ice mass balance: a case study from an N-ICE2015 storm

45. Snow contribution to first-year and second-year Arctic sea ice mass balance north of Svalbard

46. Leads in Arctic pack ice enable early phytoplankton blooms below snow-covered sea ice

47. Sea-ice thickness from field measurements in the northwestern Barents Sea

48. Seasonality of light transmittance through Arctic sea ice during spring and summer

49. Leads in Arctic pack ice enable early phytoplankton blooms below snow-covered sea ice

50. Leads in Arctic pack ice enable early phytoplankton blooms below snow-covered sea ice

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