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Geophysical Research Letters

Cover image for Vol. 36 Issue 13

July 2009

Volume 36, Issue 13

  1. Climate

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

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Gradual increase of energetic radiation associated with thunderstorm activity at the top of Mt. Fuji

      Tatsuo Torii, Takeshi Sugita, Sachiko Tanabe, Yoshihisa Kimura, Masashi Kamogawa, Kazuaki Yajima and Hiroshi Yasuda

      Article first published online: 2 JUL 2009 | DOI: 10.1029/2008GL037105

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  3. Solid Earth

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Comment on “On the cause of the 1908 Messina tsunami, southern Italy” by Andrea Billi et al.

      Andrea Argnani, Francesco L. Chiocci, Stefano Tinti, Alessandro Bosman, Mariangela V. Lodi, Gianluca Pagnoni and Filippo Zaniboni

      Article first published online: 15 JUL 2009 | DOI: 10.1029/2009GL037332

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  4. Atmospheric Science

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Spectral absorption properties of aerosol particles from 350–2500nm

      J. Vanderlei Martins, Paulo Artaxo, Yoram J. Kaufman, Andrea D. Castanho and Lorraine A. Remer

      Article first published online: 14 JUL 2009 | DOI: 10.1029/2009GL037435

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  5. Solid Earth

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Reply to comment by Andrea Argnani et al. on “On the cause of the 1908 Messina tsunami, southern Italy”

      Andrea Billi, Renato Funiciello, Liliana Minelli, Claudio Faccenna, Giancarlo Neri, Barbara Orecchio and Debora Presti

      Article first published online: 15 JUL 2009 | DOI: 10.1029/2009GL037499

  6. The Cryosphere

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      High-sensitivity measurement of diverse vascular plant-derived biomarkers in high-altitude ice cores

      Matthew C. Makou, Lonnie G. Thompson, Daniel B. Montluçon and Timothy I. Eglinton

      Article first published online: 3 JUL 2009 | DOI: 10.1029/2009GL037643

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  7. Climate

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

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

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

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

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

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Retrieving the composition and concentration of aerosols over the Indo-Gangetic basin using CALIOP and AERONET data

      Dilip Ganguly, P. Ginoux, V. Ramaswamy, D. M. Winker, B. N. Holben and S. N. Tripathi

      Article first published online: 3 JUL 2009 | DOI: 10.1029/2009GL038315

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  13. Oceans

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

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

      Ben P. Kirtman, David M. Straus, Dughong Min, Edwin K. Schneider and Leo Siqueira

      Article first published online: 8 JUL 2009 | DOI: 10.1029/2009GL038389

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  15. Atmospheric Science

    1. Top of page
    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
    16. Atmospheric Science
    17. Hydrology and Land Surface Studies
    18. Planets
    19. Oceans
    20. Space Sciences
    21. Solid Earth
    22. Planets
    23. Climate
    24. Oceans
    25. Atmospheric Science
    26. Climate
    27. Space Sciences
    28. Hydrology and Land Surface Studies
    29. Oceans
    30. Solid Earth
    31. Oceans
    32. Planets
    33. Atmospheric Science
    34. Space Sciences
    35. Atmospheric Science
    36. Oceans
    37. Solid Earth
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      Aerosol effect on cloud droplet size as monitored from surface-based remote sensing over East China Sea region

      G. Pandithurai, T. Takamura, J. Yamaguchi, K. Miyagi, T. Takano, Y. Ishizaka, S. Dipu and A. Shimizu

      Article first published online: 2 JUL 2009 | DOI: 10.1029/2009GL038451

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      Coupled chemistry climate model simulations of stratospheric temperatures and their trends for the recent past

      J. Austin, R. J. Wilson, H. Akiyoshi, S. Bekki, N. Butchart, C. Claud, V. I. Fomichev, P. Forster, R. R. Garcia, N. P. Gillett, P. Keckhut, U. Langematz, E. Manzini, T. Nagashima, W. J. Randel, E. Rozanov, K. Shibata, K. P. Shine, H. Struthers, D. W. J. Thompson, F. Wu and S. Yoden

      Article first published online: 14 JUL 2009 | DOI: 10.1029/2009GL038462

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  16. Hydrology and Land Surface Studies

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    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
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    10. Climate
    11. Solid Earth
    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
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    18. Planets
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    23. Climate
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    29. Oceans
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      Estimating biomass consumed from fire using MODIS FRE

      Evan Ellicott, Eric Vermote, Louis Giglio and Gareth Roberts

      Article first published online: 8 JUL 2009 | DOI: 10.1029/2009GL038581

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  17. Planets

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    2. Climate
    3. Atmospheric Science
    4. Solid Earth
    5. Atmospheric Science
    6. Solid Earth
    7. The Cryosphere
    8. Climate
    9. Solid Earth
    10. Climate
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    12. Oceans
    13. Atmospheric Science
    14. Oceans
    15. Climate
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    17. Hydrology and Land Surface Studies
    18. Planets
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    29. Oceans
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      Particle-size dependent bipolar charging of Martian regolith simulant

      Keith M. Forward, Daniel J. Lacks and R. Mohan Sankaran

      Article first published online: 8 JUL 2009 | DOI: 10.1029/2009GL038589

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  18. Oceans

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    2. Climate
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    4. Solid Earth
    5. Atmospheric Science
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    7. The Cryosphere
    8. Climate
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    12. Oceans
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    14. Oceans
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    18. Planets
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      Evolution of kurtosis for wind waves

      S. Y. Annenkov and V. I. Shrira

      Article first published online: 3 JUL 2009 | DOI: 10.1029/2009GL038613

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  19. Space Sciences

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      Solar eclipse-induced E-region plasma irregularities observed by the Gadanki radar

      A. K. Patra, R. K. Choudhary and J.-P. St.-Maurice

      Article first published online: 15 JUL 2009 | DOI: 10.1029/2009GL038669

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      On the responses to solar X-ray flare and coronal mass ejection in the ionospheres of Mars and Earth

      S. A. Haider, M. A. Abdu, I. S. Batista, J. H. Sobral, Esa Kallio, W. C. Maguire and M. I. Verigin

      Article first published online: 14 JUL 2009 | DOI: 10.1029/2009GL038694

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  20. Solid Earth

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  21. Planets

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      Emission of non-thermal microwave radiation by a Martian dust storm

      Christopher Ruf, Nilton O. Renno, Jasper F. Kok, Etienne Bandelier, Michael J. Sander, Steven Gross, Lyle Skjerve and Bruce Cantor

      Article first published online: 11 JUL 2009 | DOI: 10.1029/2009GL038715

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  22. Climate

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      Sea-ice production over the Laptev Sea shelf inferred from historical summer-to-winter hydrographic observations of 1960s–1990s

      Igor A. Dmitrenko, Sergey A. Kirillov, L. Bruno Tremblay, Dorothea Bauch and Sascha Willmes

      Article first published online: 7 JUL 2009 | DOI: 10.1029/2009GL038775

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      New perspectives on the synoptic development of the severe October 1992 Nome storm

      Michel d. S. Mesquita, David E. Atkinson, Ian Simmonds, Kevin Keay and Jon Gottschalck

      Article first published online: 14 JUL 2009 | DOI: 10.1029/2009GL038824

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      “Hook” structure in MARSIS ionogram and its interpretation

      X.-D. Wang, J.-S. Wang, E. Nielsen and H. Zou

      Article first published online: 11 JUL 2009 | DOI: 10.1029/2009GL038844

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      Observational evidence of an intensifying hydrological cycle in northern Canada

      Stephen J. Déry, Marco A. Hernández-Henríquez, Jason E. Burford and Eric F. Wood

      Article first published online: 10 JUL 2009 | DOI: 10.1029/2009GL038852

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      Demonstration of ocean surface salinity microwave measurements from space using AMSR-E data over the Amazon plume

      N. Reul, S. Saux-Picart, B. Chapron, D. Vandemark, J. Tournadre and J. Salisbury

      Article first published online: 9 JUL 2009 | DOI: 10.1029/2009GL038860

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      Cassini detection of Enceladus' cold water-group plume ionosphere

      R. L. Tokar, R. E. Johnson, M. F. Thomsen, R. J. Wilson, D. T. Young, F. J. Crary, A. J. Coates, G. H. Jones and C. S. Paty

      Article first published online: 15 JUL 2009 | DOI: 10.1029/2009GL038923

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      Reductions of NO2 detected from space during the 2008 Beijing Olympic Games

      B. Mijling, R. J. van der A, K. F. Boersma, M. Van Roozendael, I. De Smedt and H. M. Kelder

      Article first published online: 1 JUL 2009 | DOI: 10.1029/2009GL038943

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      On the precipitation susceptibility of clouds to aerosol perturbations

      Armin Sorooshian, Graham Feingold, Matthew D. Lebsock, Hongli Jiang and Graeme L. Stephens

      Article first published online: 2 JUL 2009 | DOI: 10.1029/2009GL038993

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      Magnetospheric cavity modes driven by solar wind dynamic pressure fluctuations

      S. G. Claudepierre, M. Wiltberger, S. R. Elkington, W. Lotko and M. K. Hudson

      Article first published online: 1 JUL 2009 | DOI: 10.1029/2009GL039045

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      Corrected by:

      Space Sciences: Correction to “Magnetospheric cavity modes driven by solar wind dynamic pressure fluctuations”

      Vol. 37, Issue 3, Article first published online: 9 FEB 2010

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  36. Solid Earth

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      Reply to comment by J. C. Savage on “Aseismic slip and fault-normal strain along the creeping section of the San Andreas Fault”

      F. Rolandone, R. Bürgmann, D. C. Agnew, I. A. Johanson, D. C. Templeton, M. A. d'Alessio, S. J. Titus, C. DeMets and B. Tikoff

      Article first published online: 14 JUL 2009 | DOI: 10.1029/2009GL039167

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