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Geophysical Research Letters

Cover image for Geophysical Research Letters

June 2009

Volume 36, Issue 12

  1. Atmospheric Science

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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  2. Solid Earth

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      A case study of resistivity and self-potential signatures of hydrothermal instabilities, Inferno Crater Lake, Waimangu, New Zealand

      A. Legaz, J. Vandemeulebrouck, A. Revil, A. Kemna, A. W. Hurst, R. Reeves and R. Papasin

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL037573

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  3. Planets

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      A new technique for estimating the thickness of mare basalts in Imbrium Basin

      Bradley J. Thomson, Eric B. Grosfils, D. Ben J. Bussey and Paul D. Spudis

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL037600

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  4. Oceans

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Use of breeding to detect and explain instabilities in the global ocean

      M. J. Hoffman, E. Kalnay, J. A. Carton and S.-C. Yang

      Version of Record online: 25 JUN 2009 | DOI: 10.1029/2009GL037729

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  5. Solid Earth

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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  6. Atmospheric Science

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      La Niña Modoki impacts Australia autumn rainfall variability

      W. Cai and T. Cowan

      Version of Record online: 17 JUN 2009 | DOI: 10.1029/2009GL037885

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  7. Space Sciences

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Pick-up ions and the 2–3 kHz radio emissions

      J. J. Mitchell, Iver H. Cairns and J. Heerikhuisen

      Version of Record online: 25 JUN 2009 | DOI: 10.1029/2009GL037898

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  8. Oceans

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Warming in the Agulhas Current system since the 1980's

      Mathieu Rouault, Pierrick Penven and Benjamin Pohl

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL037987

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  9. Solid Earth

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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  10. Oceans

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Does sedimentary 231Pa/230Th from the Bermuda Rise monitor past Atlantic Meridional Overturning Circulation?

      Jörg Lippold, Jens Grützner, Diane Winter, Yann Lahaye, Augusto Mangini and Marcus Christl

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038068

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  11. The Cryosphere

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Recent thinning and migration of the Western Divide, central West Antarctica

      H. Conway and L. A. Rasmussen

      Version of Record online: 23 JUN 2009 | DOI: 10.1029/2009GL038072

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  12. Atmospheric Science

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Influence of condensate evaporation on water vapor and its stable isotopes in a GCM

      Jonathon S. Wright, Adam H. Sobel and Gavin A. Schmidt

      Version of Record online: 17 JUN 2009 | DOI: 10.1029/2009GL038091

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      Interdecadal variability of tropical cyclone landfall in the Philippines from 1902 to 2005

      Hisayuki Kubota and Johnny C. L. Chan

      Version of Record online: 17 JUN 2009 | DOI: 10.1029/2009GL038108

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  13. The Cryosphere

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
    46. Hydrology and Land Surface Studies
    47. Space Sciences
    48. Atmospheric Science
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      Higher surface mass balance of the Greenland ice sheet revealed by high-resolution climate modeling

      Janneke Ettema, Michiel R. van den Broeke, Erik van Meijgaard, Willem Jan van de Berg, Jonathan L. Bamber, Jason E. Box and Roger C. Bales

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038110

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  14. Solid Earth

    1. Top of page
    2. Atmospheric Science
    3. Solid Earth
    4. Planets
    5. Oceans
    6. Solid Earth
    7. Atmospheric Science
    8. Space Sciences
    9. Oceans
    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
    20. Atmospheric Science
    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
    29. Solid Earth
    30. Atmospheric Science
    31. Climate
    32. Planets
    33. Atmospheric Science
    34. Solid Earth
    35. Atmospheric Science
    36. Climate
    37. Oceans
    38. Atmospheric Science
    39. Oceans
    40. Atmospheric Science
    41. Space Sciences
    42. Climate
    43. Oceans
    44. Climate
    45. Space Sciences
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    47. Space Sciences
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      SKS/SKKS splitting and Taiwan orogeny

      Hao Kuo-Chen, Francis T. Wu, David Okaya, Bor-Shouh Huang and Wen-Tzong Liang

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038148

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      Time reversal imaging of synthetic volcanic tremor sources

      Ivan Lokmer, Gareth S. O'Brien, Daniel Stich and Christopher J. Bean

      Version of Record online: 23 JUN 2009 | DOI: 10.1029/2009GL038178

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  15. Atmospheric Science

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    4. Planets
    5. Oceans
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    8. Space Sciences
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    10. Solid Earth
    11. Oceans
    12. The Cryosphere
    13. Atmospheric Science
    14. The Cryosphere
    15. Solid Earth
    16. Atmospheric Science
    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
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    21. Hydrology and Land Surface Studies
    22. Climate
    23. Oceans
    24. Atmospheric Science
    25. Solid Earth
    26. Oceans
    27. Climate
    28. Space Sciences
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    37. Oceans
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    41. Space Sciences
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    47. Space Sciences
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  16. Oceans

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    4. Planets
    5. Oceans
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    12. The Cryosphere
    13. Atmospheric Science
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    15. Solid Earth
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    17. Oceans
    18. Hydrology and Land Surface Studies
    19. Space Sciences
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    22. Climate
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    26. Oceans
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    37. Oceans
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      Stratospheric ozone depletion reduces ocean carbon uptake and enhances ocean acidification

      Andrew Lenton, Francis Codron, Laurent Bopp, Nicolas Metzl, Patricia Cadule, Alessandro Tagliabue and Julien Le Sommer

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038227

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  17. Hydrology and Land Surface Studies

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      Understanding how volume affects the mobility of dry debris flows

      L. Staron and E. Lajeunesse

      Version of Record online: 19 JUN 2009 | DOI: 10.1029/2009GL038229

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      Growing season methyl bromide and methyl chloride fluxes at a sub-arctic wetland in Sweden

      C. J. Hardacre, E. Blei and M. R. Heal

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038277

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  18. Space Sciences

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      Correction to “Force-free field inside a toroidal magnetic cloud”

      E. P. Romashets and M. Vandas

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038341

      This article corrects:

      Force-free field inside a toroidal magnetic cloud

      Vol. 30, Issue 20, Version of Record online: 29 OCT 2003

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      Transport of mercury in the Arctic atmosphere: Evidence for a spring-time net sink and summer-time source

      D. Hirdman, K. Aspmo, J. F. Burkhart, S. Eckhardt, H. Sodemann and A. Stohl

      Version of Record online: 26 JUN 2009 | DOI: 10.1029/2009GL038345

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      Effects of spatio-temporal variability of precipitation on contaminant migration in the vadose zone

      Peng Wang, Peter Quinlan and Daniel M. Tartakovsky

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038347

  21. Climate

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      An extended network of documentary data from South America and its potential for quantitative precipitation reconstructions back to the 16th century

      Raphael Neukom, María del Rosario Prieto, Rodolfo Moyano, Jürg Luterbacher, Christian Pfister, Ricardo Villalba, Philip D. Jones and Heinz Wanner

      Version of Record online: 26 JUN 2009 | DOI: 10.1029/2009GL038351

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      Diagnosis of vertical velocities in the upper ocean from high resolution sea surface height

      P. Klein, J. Isern-Fontanet, G. Lapeyre, G. Roullet, E. Danioux, B. Chapron, S. Le Gentil and H. Sasaki

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038359

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      Stratospheric contribution to high surface ozone in Colorado during springtime

      A. O. Langford, K. C. Aikin, C. S. Eubank and E. J. Williams

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038367

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      A complex earthquake sequence captured by the continuous GPS network in SW Iceland

      S. Hreinsdóttir, T. Árnadóttir, J. Decriem, H. Geirsson, A. Tryggvason, R. A. Bennett and P. LaFemina

      Version of Record online: 23 JUN 2009 | DOI: 10.1029/2009GL038391

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      Weddell Sea anomalies: Excitation, propagation, and possible consequences

      H. H. Hellmer, F. Kauker and R. Timmermann

      Version of Record online: 19 JUN 2009 | DOI: 10.1029/2009GL038407

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      Effect of anomalous warming in the central Pacific on the Australian monsoon

      A. S. Taschetto, C. C. Ummenhofer, A. Sen Gupta and M. H. England

      Version of Record online: 27 JUN 2009 | DOI: 10.1029/2009GL038416

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      An energetic-particle-mediated termination shock observed by Voyager 2

      V. Florinski, R. B. Decker, J. A. le Roux and G. P. Zank

      Version of Record online: 17 JUN 2009 | DOI: 10.1029/2009GL038423

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      Latitudinal dependence of the variability of the micrometeor altitude distribution

      J. J. Sparks and D. Janches

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038485

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      Corrected by:

      Space Sciences: Correction to “Latitudinal dependence of the variability of the micrometeor altitude distribution”

      Vol. 36, Issue 17, Version of Record online: 10 SEP 2009

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      Modeling of Doppler-shifted terrestrial VLF transmitter signals observed by DEMETER

      M. J. Starks, T. F. Bell, R. A. Quinn, U. S. Inan, D. Piddyachiy and M. Parrot

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038511

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      Rock seismic anisotropy of the low-velocity zone beneath the volcanic front in the mantle wedge

      Katsuyoshi Michibayashi, Tatsuya Oohara, Takako Satsukawa, Satoko Ishimaru, Shoji Arai and Victor M. Okrugin

      Version of Record online: 17 JUN 2009 | DOI: 10.1029/2009GL038527

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      Constraining cloud droplet number concentration in GCMs suppresses the aerosol indirect effect

      C. Hoose, J. E. Kristjánsson, T. Iversen, A. Kirkevåg, Ø. Seland and A. Gettelman

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038568

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      Aura Microwave Limb Sounder observations of dynamics and transport during the record-breaking 2009 Arctic stratospheric major warming

      Gloria L. Manney, Michael J. Schwartz, Kirstin Krüger, Michelle L. Santee, Steven Pawson, Jae N. Lee, William H. Daffer, Ryan A. Fuller and Nathaniel J. Livesey

      Version of Record online: 27 JUN 2009 | DOI: 10.1029/2009GL038586

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      Momentum flux estimates for South Georgia Island mountain waves in the stratosphere observed via satellite

      M. Joan Alexander, Stephen D. Eckermann, Dave Broutman and Jun Ma

      Version of Record online: 30 JUN 2009 | DOI: 10.1029/2009GL038587

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      On the secular change of spring onset at Stockholm

      Cheng Qian, Congbin Fu, Zhaohua Wu and Zhongwei Yan

      Version of Record online: 27 JUN 2009 | DOI: 10.1029/2009GL038617

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      Exospheric signatures of alkali abundances in Europa's regolith

      F. Cipriani, F. Leblanc, O. Witasse and R. E. Johnson

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038636

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      Correction to “Effects of hydration on the elastic properties of olivine”

      Steven D. Jacobsen, Fuming Jiang, Zhu Mao, Thomas S. Duffy, Joseph R. Smyth, Christopher M. Holl and Daniel J. Frost

      Version of Record online: 16 JUN 2009 | DOI: 10.1029/2009GL038660

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      This article corrects:

      Effects of hydration on the elastic properties of olivine

      Vol. 35, Issue 14, Version of Record online: 18 JUL 2008

  34. Atmospheric Science

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      Influence of multiple scattering on CloudSat measurements in snow: A model study

      Sergey Y. Matrosov and Alessandro Battaglia

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038704

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      Are historical records sufficient to constrain ENSO simulations?

      Andrew T. Wittenberg

      Version of Record online: 23 JUN 2009 | DOI: 10.1029/2009GL038710

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      Rates of sea-level change over the past century in a geocentric reference frame

      G. Wöppelmann, C. Letetrel, A. Santamaria, M.-N. Bouin, X. Collilieux, Z. Altamimi, S. D. P. Williams and B. Martin Miguez

      Version of Record online: 24 JUN 2009 | DOI: 10.1029/2009GL038720

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      Influence of the 2008 Kasatochi volcanic eruption on sulfurous and carbonaceous aerosol constituents in the lower stratosphere

      B. G. Martinsson, C. A. M. Brenninkmeijer, S. A. Carn, M. Hermann, K.-P. Heue, P. F. J. van Velthoven and A. Zahn

      Version of Record online: 26 JUN 2009 | DOI: 10.1029/2009GL038735

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      High-speed video observations of positive ground flashes produced by intracloud lightning

      Marcelo M. F. Saba, Leandro Z. S. Campos, E. Philip Krider and Osmar Pinto Jr.

      Version of Record online: 26 JUN 2009 | DOI: 10.1029/2009GL038791

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      Lunar backscatter and neutralization of the solar wind: First observations of neutral atoms from the Moon

      D. J. McComas, F. Allegrini, P. Bochsler, P. Frisch, H. O. Funsten, M. Gruntman, P. H. Janzen, H. Kucharek, E. Möbius, D. B. Reisenfeld and N. A. Schwadron

      Version of Record online: 18 JUN 2009 | DOI: 10.1029/2009GL038794

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      Evidence of enhanced turbulent dissipation in the frontogenetic Kuroshio Front thermocline

      Takeyoshi Nagai, Amit Tandon, Hidekatsu Yamazaki and Mark J. Doubell

      Version of Record online: 30 JUN 2009 | DOI: 10.1029/2009GL038832

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      Drought return times in the Sahel: A question of attribution

      Arthur M. Greene, Alessandra Giannini and Stephen E. Zebiak

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038868

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      Nonlinear interaction of radiation belt electrons with electromagnetic ion cyclotron waves

      J. M. Albert and J. Bortnik

      Version of Record online: 26 JUN 2009 | DOI: 10.1029/2009GL038904

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      Corrected by:

      Space Sciences: Correction to “Nonlinear interaction of radiation belt electrons with electromagnetic ion cyclotron waves”

      Vol. 36, Issue 24, Version of Record online: 22 DEC 2009

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      Non-destructive detection of water stress and estimation of relative water content in maize

      Arthur I. Zygielbaum, Anatoly A. Gitelson, Timothy J. Arkebauer and Donald C. Rundquist

      Version of Record online: 20 JUN 2009 | DOI: 10.1029/2009GL038906

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      Pairwise energy gain-loss feature of solar wind protons in the near-Moon wake

      M. N. Nishino, K. Maezawa, M. Fujimoto, Y. Saito, S. Yokota, K. Asamura, T. Tanaka, H. Tsunakawa, M. Matsushima, F. Takahashi, T. Terasawa, H. Shibuya and H. Shimizu

      Version of Record online: 24 JUN 2009 | DOI: 10.1029/2009GL039049

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  47. Atmospheric Science

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