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Geophysical Research Letters

Cover image for Vol. 32 Issue 7

April 2005

Volume 32, Issue 7

  1. Oceans

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Methane emission from high-intensity marine gas seeps in the Black Sea into the atmosphere

      O. Schmale, J. Greinert and G. Rehder

      Article first published online: 15 APR 2005 | DOI: 10.1029/2004GL021138

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  2. Atmospheric Science

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

      Thomas J. Duck and James A. Whiteway

      Article first published online: 2 APR 2005 | DOI: 10.1029/2004GL021189

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  3. Climate

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Effect of scaling and regression on reconstructed temperature amplitude for the past millennium

      Jan Esper, David C. Frank, Robert J. S. Wilson and Keith R. Briffa

      Article first published online: 15 APR 2005 | DOI: 10.1029/2004GL021236

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  4. Space Sciences

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    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Prediction of the timing of the 2–3 kHz radio emission within the solar cycle

      J. J. Mitchell, Iver H. Cairns, H.-R. Müller and G. P. Zank

      Article first published online: 5 APR 2005 | DOI: 10.1029/2004GL021472

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  5. Atmospheric Science

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Tides near the Arctic summer mesopause during the MaCWAVE/MIDAS summer program

      W. Singer, R. Latteck, P. Hoffman, B. P. Williams, D. C. Fritts, Y. Murayama and K. Sakanoi

      Article first published online: 5 APR 2005 | DOI: 10.1029/2004GL021607

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  6. Solid Earth

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    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
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    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
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    17. Planets
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    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
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    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
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    40. Space Sciences
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      Shear wave splitting observations in the Chinese Tianshan orogenic belt

      Yun-Ping Chen, Liang-Shu Wang, Ning Mi, Hua Li, Da-Yong Yu, Ming-Jie Xu, Shao-Wen Liu, Cheng Li and Zhen Xu

      Article first published online: 12 APR 2005 | DOI: 10.1029/2004GL021686

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  7. Climate

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Comment on “El Niño suppresses Antarctic warming” by N. Bertler et al.

      Peter T. Doran, John C. Priscu, W. Berry Lyons, John E. Walsh, Andrew G. Fountain, Diane M. McKnight, Daryl L. Moorhead, Ross A. Virginia, Diana H. Wall, Gary D. Clow, Christian H. Fritsen, Christopher P. McKay and Andrew N. Parsons

      Article first published online: 8 APR 2005 | DOI: 10.1029/2004GL021716

  8. Solid Earth

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

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

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      The origin of water soluble particulate iron in the Asian atmospheric outflow

      P. Y. Chuang, R. M. Duvall, M. M. Shafer and J. J. Schauer

      Article first published online: 15 APR 2005 | DOI: 10.1029/2004GL021946

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  11. The Cryosphere

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
    16. Atmospheric Science
    17. Planets
    18. Solid Earth
    19. Climate
    20. Hydrology and Land Surface Studies
    21. Oceans
    22. Atmospheric Science
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Solid Earth
    27. Oceans
    28. Atmospheric Science
    29. Climate
    30. Solid Earth
    31. Atmospheric Science
    32. Oceans
    33. Climate
    34. Oceans
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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      Recent ice loss from the Fleming and other glaciers, Wordie Bay, West Antarctic Peninsula

      E. Rignot, G. Casassa, S. Gogineni, P. Kanagaratnam, W. Krabill, H. Pritchard, A. Rivera, R. Thomas, J. Turner and D. Vaughan

      Article first published online: 14 APR 2005 | DOI: 10.1029/2004GL021947

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  12. Oceans

    1. Top of page
    2. Oceans
    3. Atmospheric Science
    4. Climate
    5. Space Sciences
    6. Atmospheric Science
    7. Solid Earth
    8. Climate
    9. Solid Earth
    10. The Cryosphere
    11. Atmospheric Science
    12. The Cryosphere
    13. Oceans
    14. Solid Earth
    15. Climate
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    20. Hydrology and Land Surface Studies
    21. Oceans
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    26. Solid Earth
    27. Oceans
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    32. Oceans
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    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
    38. Climate
    39. Oceans
    40. Space Sciences
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  13. Solid Earth

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    2. Oceans
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    4. Climate
    5. Space Sciences
    6. Atmospheric Science
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    8. Climate
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    10. The Cryosphere
    11. Atmospheric Science
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    13. Oceans
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    21. Oceans
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      High quality seismological recordings from the SN-1 deep seafloor observatory in the Mt. Etna region

      Stephen Monna, Francesco Frugoni, Caterina Montuori, Laura Beranzoli and Paolo Favali

      Article first published online: 8 APR 2005 | DOI: 10.1029/2004GL021975

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  14. Climate

    1. Top of page
    2. Oceans
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    4. Climate
    5. Space Sciences
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    7. Solid Earth
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    10. The Cryosphere
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    13. Oceans
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    21. Oceans
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      Impact of barrier layer on winter-spring variability of the southeastern Arabian Sea

      S. Masson, J.-J. Luo, G. Madec, J. Vialard, F. Durand, S. Gualdi, E. Guilyardi, S. Behera, P. Delecluse, A. Navarra and T. Yamagata

      Article first published online: 6 APR 2005 | DOI: 10.1029/2004GL021980

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  15. Atmospheric Science

    1. Top of page
    2. Oceans
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    4. Climate
    5. Space Sciences
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    7. Solid Earth
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    10. The Cryosphere
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      Vertical variation of NLC particle sizes retrieved from Odin/OSIRIS limb scattering observations

      C. von Savigny, S. V. Petelina, B. Karlsson, E. J. Llewellyn, D. A. Degenstein, N. D. Lloyd and J. P. Burrows

      Article first published online: 7 APR 2005 | DOI: 10.1029/2004GL021982

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      Atmospheric impact of quasiliquid layers on ice surfaces

      Laura F. Voss, Bryan F. Henson, Kevin R. Wilson and Jeanne M. Robinson

      Article first published online: 7 APR 2005 | DOI: 10.1029/2004GL022010

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      Time-height evolution of intraseasonal oscillations in the tropical lower atmosphere: Multilevel wind observations using UHF radar

      Praveena Krishnan, P. K. Kunhikrishnan and S. Muraleedharan Nair

      Article first published online: 6 APR 2005 | DOI: 10.1029/2004GL022019

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  16. Planets

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      Evidence for a high-Th, evolved lithology on the Moon at Hansteen Alpha

      D. J. Lawrence, B. R. Hawke, J. J. Hagerty, R. C. Elphic, W. C. Feldman, T. H. Prettyman and D. T. Vaniman

      Article first published online: 1 APR 2005 | DOI: 10.1029/2004GL022022

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  17. Solid Earth

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      Teleseismic P-wave tomogram of the Yellowstone plume

      Huaiyu Yuan and Ken Dueker

      Article first published online: 8 APR 2005 | DOI: 10.1029/2004GL022056

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  18. Climate

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      Quasi-decadal and inter-decadal climate fluctuations in the Pacific Ocean from a CGCM

      Yves M. Tourre, Carole Cibot, Laurent Terray, Warren B. White and Boris Dewitte

      Article first published online: 15 APR 2005 | DOI: 10.1029/2004GL022087

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  19. Hydrology and Land Surface Studies

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      Self-potential signals associated with preferential ground water flow pathways in a buried paleo-channel

      A. Revil, L. Cary, Q. Fan, A. Finizola and F. Trolard

      Article first published online: 12 APR 2005 | DOI: 10.1029/2004GL022124

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  20. Oceans

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      Evolution of the ENSO signal over the tropical Pacific-Atlantic domain

      Yves M. Tourre and Warren B. White

      Article first published online: 13 APR 2005 | DOI: 10.1029/2004GL022128

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      The effects of interactive ozone chemistry on simulations of the middle atmosphere

      F. Sassi, B. A. Boville, D. Kinnison and R. R. Garcia

      Article first published online: 13 APR 2005 | DOI: 10.1029/2004GL022131

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      Influence of tropospheric SO2 emissions on particle formation and the stratospheric humidity

      J. Notholt, B. P. Luo, S. Fueglistaler, D. Weisenstein, M. Rex, M. G. Lawrence, H. Bingemer, I. Wohltmann, T. Corti, T. Warneke, R. von Kuhlmann and T. Peter

      Article first published online: 9 APR 2005 | DOI: 10.1029/2004GL022159

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      Sensitivity of biogenic silica oxygen isotopes to changes in surface water temperature and palaeoclimatology

      Robert Moschen, Andreas Lücke and Gerhard H. Schleser

      Article first published online: 9 APR 2005 | DOI: 10.1029/2004GL022167

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      Measured volume, heat, and salt fluxes from the Atlantic to the Arctic Mediterranean

      Svein Østerhus, William R. Turrell, Steingrímur Jónsson and Bogi Hansen

      Article first published online: 7 APR 2005 | DOI: 10.1029/2004GL022188

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      Interdecadal water mass changes in the Southern Ocean between 30°E and 160°E

      Shigeru Aoki, Nathaniel L. Bindoff and John A. Church

      Article first published online: 14 APR 2005 | DOI: 10.1029/2004GL022220

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      Evidence for variability of atmospheric hydroxyl radicals over the past quarter century

      R. G. Prinn, J. Huang, R. F. Weiss, D. M. Cunnold, P. J. Fraser, P. G. Simmonds, A. McCulloch, C. Harth, S. Reimann, P. Salameh, S. O'Doherty, R. H. J. Wang, L. W. Porter, B. R. Miller and P. B. Krummel

      Article first published online: 8 APR 2005 | DOI: 10.1029/2004GL022228

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      Evidence for melt lubrication during large earthquakes

      John G. Spray

      Article first published online: 5 APR 2005 | DOI: 10.1029/2004GL022293

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      A simple method to improve ensemble-based ozone forecasts

      M. Pagowski, G. A. Grell, S. A. McKeen, D. Dévényi, J. M. Wilczak, V. Bouchet, W. Gong, J. McHenry, S. Peckham, J. McQueen, R. Moffet and Y. Tang

      Article first published online: 15 APR 2005 | DOI: 10.1029/2004GL022305

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      Intraseasonal variation of raindrop size distribution at Koto Tabang, West Sumatra, Indonesia

      Toshiaki Kozu, Toyoshi Shimomai, Zainul Akramin, Marzuki, Yoshiaki Shibagaki and Hiroyuki Hashiguchi

      Article first published online: 2 APR 2005 | DOI: 10.1029/2004GL022340

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      Teaching old indices new tricks: A state-space analysis of El Niño related climate indices

      Roy Mendelssohn, Steven J. Bograd, Franklin B. Schwing and Daniel M. Palacios

      Article first published online: 12 APR 2005 | DOI: 10.1029/2005GL022350

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      Beyond the thermal plume paradigm

      C. G. Farnetani and H. Samuel

      Article first published online: 14 APR 2005 | DOI: 10.1029/2005GL022360

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      Imaging the source region of the 2004 mid-Niigata prefecture earthquake and the evolution of a seismogenic thrust-related fold

      Aitaro Kato, Eiji Kurashimo, Naoshi Hirata, Shinichi Sakai, Takaya Iwasaki and Toshihiko Kanazawa

      Article first published online: 12 APR 2005 | DOI: 10.1029/2005GL022366

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      Improved estimation of terrestrial water storage changes from GRACE

      Shin-Chan Han, C. K. Shum, Christopher Jekeli and Doug Alsdorf

      Article first published online: 6 APR 2005 | DOI: 10.1029/2005GL022382

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      Modeling the August 2002 minor warming event

      L. Coy, D. E. Siskind, S. D. Eckermann, J. P. McCormack, D. R. Allen and T. F. Hogan

      Article first published online: 7 APR 2005 | DOI: 10.1029/2005GL022400

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      Labrador Sea Water property variations in the northeastern Atlantic Ocean

      Gregory C. Johnson, John L. Bullister and Nicolas Gruber

      Article first published online: 6 APR 2005 | DOI: 10.1029/2005GL022404

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      The twentieth-century pluvial in the western United States

      Connie A. Woodhouse, Kenneth E. Kunkel, David R. Easterling and Edward R. Cook

      Article first published online: 2 APR 2005 | DOI: 10.1029/2005GL022413

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      Convergence of Laplacian diffusion versus resolution of an ocean model

      Alan J. Wallcraft, A. Birol Kara and Harley E. Hurlburt

      Article first published online: 7 APR 2005 | DOI: 10.1029/2005GL022514

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      A complementary analysis for SAGE II data profiles

      D. Rind, J. Lerner and J. Zawodny

      Article first published online: 14 APR 2005 | DOI: 10.1029/2005GL022550

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      How to run a minimalist's global ocean conveyor

      Dan Seidov and Bernd J. Haupt

      Article first published online: 15 APR 2005 | DOI: 10.1029/2005GL022559

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      Precursory accelerating seismic moment release (AMR) in a synthetic seismicity catalog: A preliminary study

      Russell Robinson, Shiyong Zhou, Steven Johnston and David Vere-Jones

      Article first published online: 13 APR 2005 | DOI: 10.1029/2005GL022576

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      Reply to comment by Doran et al. on “El Niño suppresses Antarctic warming”

      Nancy A. N. Bertler, Peter J. Barrett, Paul A. Mayewski, Ryan L. Fogt, Karl J. Kreutz and James Shulmeister

      Article first published online: 8 APR 2005 | DOI: 10.1029/2005GL022595

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      Improved satellite altimetry in coastal systems: Case study of the Corsica Channel (Mediterranean Sea)

      S. Vignudelli, P. Cipollini, L. Roblou, F. Lyard, G. P. Gasparini, G. Manzella and M. Astraldi

      Article first published online: 14 APR 2005 | DOI: 10.1029/2005GL022602

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