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Geophysical Research Letters

Cover image for Vol. 36 Issue 11

June 2009

Volume 36, Issue 11

  1. Atmospheric Science

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

      S. Lovejoy, A. F. Tuck, D. Schertzer and S. J. Hovde

      Article first published online: 9 JUN 2009 | DOI: 10.1029/2008GL034980

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  2. Hydrology and Land Surface Studies

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

      Remke L. Van Dam, Craig T. Simmons, David W. Hyndman and Warren W. Wood

      Article first published online: 9 JUN 2009 | DOI: 10.1029/2008GL036906

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  3. Atmospheric Science

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

      Guillermo Montero-Martínez, Alexander B. Kostinski, Raymond A. Shaw and Fernando García-García

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2008GL037111

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  4. Climate

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

      Hong-Li Ren, Fei-Fei Jin, Jong-Seong Kug, Jing-Xia Zhao and Juhyun Park

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL037294

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  5. The Cryosphere

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

      Robert W. Style and M. Grae Worster

      Article first published online: 10 JUN 2009 | DOI: 10.1029/2009GL037304

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  6. Solid Earth

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

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

    1. Top of page
    2. Atmospheric Science
    3. Hydrology and Land Surface Studies
    4. Atmospheric Science
    5. Climate
    6. The Cryosphere
    7. Solid Earth
    8. Atmospheric Science
    9. Climate
    10. Oceans
    11. Atmospheric Science
    12. Space Sciences
    13. Climate
    14. Space Sciences
    15. Atmospheric Science
    16. Solid Earth
    17. The Cryosphere
    18. Solid Earth
    19. Atmospheric Science
    20. Climate
    21. Oceans
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    23. Climate
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    25. Solid Earth
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    27. Solid Earth
    28. Atmospheric Science
    29. Oceans
    30. Solid Earth
    31. Planets
    32. Oceans
    33. Atmospheric Science
    34. Climate
    35. Hydrology and Land Surface Studies
    36. Atmospheric Science
    37. Hydrology and Land Surface Studies
    38. Oceans
    39. Atmospheric Science
    40. Space Sciences
    41. Climate
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    44. Planets
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    46. Space Sciences
    47. Climate
    48. Planets
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      “Medieval Warm Period” on the northern slope of central Tianshan Mountains, Xinjiang, NW China

      Yun Zhang, Zhao Chen Kong, Shun Yan, Zhen Jing Yang and Jian Ni

      Article first published online: 4 JUN 2009 | DOI: 10.1029/2009GL037375

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  9. Oceans

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

    1. Top of page
    2. Atmospheric Science
    3. Hydrology and Land Surface Studies
    4. Atmospheric Science
    5. Climate
    6. The Cryosphere
    7. Solid Earth
    8. Atmospheric Science
    9. Climate
    10. Oceans
    11. Atmospheric Science
    12. Space Sciences
    13. Climate
    14. Space Sciences
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    16. Solid Earth
    17. The Cryosphere
    18. Solid Earth
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    20. Climate
    21. Oceans
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    29. Oceans
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    32. Oceans
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    38. Oceans
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    40. Space Sciences
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      Atmospheric condensed-phase reactions of glyoxal with methylamine

      David O. De Haan, Margaret A. Tolbert and Jose L. Jimenez

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL037441

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  11. Space Sciences

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    2. Atmospheric Science
    3. Hydrology and Land Surface Studies
    4. Atmospheric Science
    5. Climate
    6. The Cryosphere
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    8. Atmospheric Science
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  12. Climate

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    2. Atmospheric Science
    3. Hydrology and Land Surface Studies
    4. Atmospheric Science
    5. Climate
    6. The Cryosphere
    7. Solid Earth
    8. Atmospheric Science
    9. Climate
    10. Oceans
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  13. Space Sciences

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      Source regions of banded chorus

      T. F. Bell, U. S. Inan, N. Haque and J. S. Pickett

      Article first published online: 5 JUN 2009 | DOI: 10.1029/2009GL037629

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  14. Atmospheric Science

    1. Top of page
    2. Atmospheric Science
    3. Hydrology and Land Surface Studies
    4. Atmospheric Science
    5. Climate
    6. The Cryosphere
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    8. Atmospheric Science
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    10. Oceans
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  15. Solid Earth

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  16. The Cryosphere

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      Seismic observations of transient subglacial water-flow beneath MacAyeal Ice Stream, West Antarctica

      J. Paul Winberry, Sridhar Anandakrishnan and Richard B. Alley

      Article first published online: 12 JUN 2009 | DOI: 10.1029/2009GL037730

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  17. Solid Earth

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  18. Atmospheric Science

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  19. Climate

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      Dust and smoke transport from Africa to South America: Lidar profiling over Cape Verde and the Amazon rainforest

      Albert Ansmann, Holger Baars, Matthias Tesche, Detlef Müller, Dietrich Althausen, Ronny Engelmann, Theotonio Pauliquevis and Paulo Artaxo

      Article first published online: 2 JUN 2009 | DOI: 10.1029/2009GL037923

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      Evaluation of precipitation in the Intermountain Region as simulated by the NARCCAP regional climate models

      Shih-Yu Wang, Robert R. Gillies, Eugene S. Takle and William J. Gutowski Jr.

      Article first published online: 6 JUN 2009 | DOI: 10.1029/2009GL037930

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      Intercontinental source attribution of ozone pollution at western U.S. sites using an adjoint method

      Lin Zhang, Daniel J. Jacob, Monika Kopacz, Daven K. Henze, Kumaresh Singh and Daniel A. Jaffe

      Article first published online: 6 JUN 2009 | DOI: 10.1029/2009GL037950

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      A 600-year annual 10Be record from the NGRIP ice core, Greenland

      A.-M. Berggren, J. Beer, G. Possnert, A. Aldahan, P. Kubik, M. Christl, S. J. Johnsen, J. Abreu and B. M. Vinther

      Article first published online: 2 JUN 2009 | DOI: 10.1029/2009GL038004

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      P-V-T relations of wadsleyite determined by in situ X-ray diffraction in a large-volume high-pressure apparatus

      Tomoo Katsura, Anton Shatskiy, M. A. Geeth M. Manthilake, Shuangmeng Zhai, Daisuke Yamazaki, Takuya Matsuzaki, Takashi Yoshino, Akira Yoneda, Eiji Ito, Mitsuhiro Sugita, Natotaka Tomioka, Akifumi Nozawa and Ken-ichi Funakoshi

      Article first published online: 12 JUN 2009 | DOI: 10.1029/2009GL038107

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      First simultaneous observations of daytime MSTIDs over North America using GPS-TEC and DEMETER satellite data

      Tatsuo Onishi, Takuya Tsugawa, Yuichi Otsuka, Jean-Jacques Berthelier and Jean-Pierre Lebreton

      Article first published online: 5 JUN 2009 | DOI: 10.1029/2009GL038156

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      Marine ice in Larsen Ice Shelf

      Paul R. Holland, Hugh F. J. Corr, David G. Vaughan, Adrian Jenkins and Pedro Skvarca

      Article first published online: 4 JUN 2009 | DOI: 10.1029/2009GL038162

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  30. Planets

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      First direct detection of ions originating from the Moon by MAP-PACE IMA onboard SELENE (KAGUYA)

      Shoichiro Yokota, Yoshifumi Saito, Kazushi Asamura, Takaaki Tanaka, Masaki N. Nishino, Hideo Tsunakawa, Hidetoshi Shibuya, Masaki Matsushima, Hisayoshi Shimizu, Futoshi Takahashi, Masaki Fujimoto, Toshifumi Mukai and Toshio Terasawa

      Article first published online: 5 JUN 2009 | DOI: 10.1029/2009GL038185

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      Energy dissipation and the spectral distribution of whitecaps

      Jim Thomson, Johannes R. Gemmrich and Andrew T. Jessup

      Article first published online: 3 JUN 2009 | DOI: 10.1029/2009GL038201

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  33. Climate

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      Vegetation dynamics and plant CO2 responses as positive feedbacks in a greenhouse world

      Ryouta O'ishi, Ayako Abe-Ouchi, I. Colin Prentice and Stephen Sitch

      Article first published online: 6 JUN 2009 | DOI: 10.1029/2009GL038217

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      Glacial long period seismic events at Katla volcano, Iceland

      Kristín Jónsdóttir, Roland Roberts, Veijo Pohjola, Björn Lund, Zaher Hossein Shomali, Ari Tryggvason and Reynir Böðvarsson

      Article first published online: 9 JUN 2009 | DOI: 10.1029/2009GL038234

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      Asian summer monsoon simulated by a global cloud-system-resolving model: Diurnal to intra-seasonal variability

      Kazuyoshi Oouchi, Akira T. Noda, Masaki Satoh, Bin Wang, Shang-Ping Xie, Hiroshi G. Takahashi and Tetsuzo Yasunari

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL038271

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  36. Hydrology and Land Surface Studies

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      Size-fractionated iron distribution on the northern Gulf of Alaska

      Jingfeng Wu, Ana Aguilar-Islas, Robert Rember, Tom Weingartner, Seth Danielson and Terry Whitledge

      Article first published online: 10 JUN 2009 | DOI: 10.1029/2009GL038304

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      Ship-based measurements of sea surface topography

      J. H. Foster, G. S. Carter and M. A. Merrifield

      Article first published online: 5 JUN 2009 | DOI: 10.1029/2009GL038324

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      A repeating secondary source of infrasound from the Wells, Nevada, earthquake sequence

      Stephen J. Arrowsmith, Relu Burlacu, Rod Whitaker and George Randall

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL038363

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  42. Climate

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      Improved nearside gravity field of the Moon by localizing the power law constraint

      Shin-Chan Han, Erwan Mazarico and Frank G. Lemoine

      Article first published online: 9 JUN 2009 | DOI: 10.1029/2009GL038556

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      Missing salts on early Mars

      R. E. Milliken, W. W. Fischer and J. A. Hurowitz

      Article first published online: 6 JUN 2009 | DOI: 10.1029/2009GL038558

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      Height resolved ozone hole structure as observed by the Global Ozone Monitoring Experiment–2

      J. C. A. van Peet, R. J. van der A, A. T. J. de Laat, O. N. E. Tuinder, G. König-Langlo and J. Wittig

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL038603

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  47. Planets

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      Association of phyllosilicates and the inverted channel in Miyamoto crater, Mars

      G. A. Marzo, T. L. Roush, N. L. Lanza, P. C. McGuire, H. E. Newsom, A. M. Ollila and S. M. Wiseman

      Article first published online: 13 JUN 2009 | DOI: 10.1029/2009GL038703

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