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Geophysical Research Letters

Cover image for Vol. 32 Issue 22

November 2005

Volume 32, Issue 22

  1. Space Sciences

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

      V. G. Merkin, G. Milikh, K. Papadopoulos, J. Lyon, Y. S. Dimant, A. S. Sharma, C. Goodrich and M. Wiltberger

      Article first published online: 16 NOV 2005 | DOI: 10.1029/2005GL023315

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  2. Climate

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

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    2. Space Sciences
    3. Climate
    4. Atmospheric Science
    5. Climate
    6. Atmospheric Science
    7. Space Sciences
    8. Atmospheric Science
    9. Solid Earth
    10. Atmospheric Science
    11. Solid Earth
    12. Atmospheric Science
    13. Climate
    14. Oceans
    15. Atmospheric Science
    16. Oceans
    17. Planets
    18. Solid Earth
    19. Hydrology and Land Surface Studies
    20. Planets
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    22. Atmospheric Science
    23. Space Sciences
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    25. Atmospheric Science
    26. Climate
    27. Solid Earth
    28. Atmospheric Science
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    30. Atmospheric Science
    31. Solid Earth
    32. Climate
    33. Oceans
    34. Planets
    35. Climate
    36. Solid Earth
    37. The Cryosphere
    38. Atmospheric Science
    39. Climate
    40. Planets
    41. Oceans
    42. Climate
    43. Solid Earth
    44. Climate
    45. The Cryosphere
    46. Climate
    47. Planets
    48. Atmospheric Science
    49. Climate
    50. Atmospheric Science
    51. The Cryosphere
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      Aerosol and cloud optical depth from GLAS: Results and verification for an October 2003 California fire smoke case

      Dennis L. Hlavka, Steven P. Palm, William D. Hart, James D. Spinhirne, Matthew J. McGill and Ellsworth J. Welton

      Article first published online: 9 SEP 2005 | DOI: 10.1029/2005GL023413

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  4. Climate

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

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    2. Space Sciences
    3. Climate
    4. Atmospheric Science
    5. Climate
    6. Atmospheric Science
    7. Space Sciences
    8. Atmospheric Science
    9. Solid Earth
    10. Atmospheric Science
    11. Solid Earth
    12. Atmospheric Science
    13. Climate
    14. Oceans
    15. Atmospheric Science
    16. Oceans
    17. Planets
    18. Solid Earth
    19. Hydrology and Land Surface Studies
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    22. Atmospheric Science
    23. Space Sciences
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    26. Climate
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    31. Solid Earth
    32. Climate
    33. Oceans
    34. Planets
    35. Climate
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    37. The Cryosphere
    38. Atmospheric Science
    39. Climate
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      Cloud and aerosol measurements from GLAS: Overview and initial results

      James D. Spinhirne, Stephen P. Palm, William D. Hart, Dennis L. Hlavka and Ellsworth J. Welton

      Article first published online: 28 SEP 2005 | DOI: 10.1029/2005GL023507

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  6. Space Sciences

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

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

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    2. Space Sciences
    3. Climate
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    5. Climate
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    7. Space Sciences
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    9. Solid Earth
    10. Atmospheric Science
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    13. Climate
    14. Oceans
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    34. Planets
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    37. The Cryosphere
    38. Atmospheric Science
    39. Climate
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    41. Oceans
    42. Climate
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    44. Climate
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    46. Climate
    47. Planets
    48. Atmospheric Science
    49. Climate
    50. Atmospheric Science
    51. The Cryosphere
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  9. Atmospheric Science

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    2. Space Sciences
    3. Climate
    4. Atmospheric Science
    5. Climate
    6. Atmospheric Science
    7. Space Sciences
    8. Atmospheric Science
    9. Solid Earth
    10. Atmospheric Science
    11. Solid Earth
    12. Atmospheric Science
    13. Climate
    14. Oceans
    15. Atmospheric Science
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    17. Planets
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    19. Hydrology and Land Surface Studies
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    33. Oceans
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    37. The Cryosphere
    38. Atmospheric Science
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    41. Oceans
    42. Climate
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    48. Atmospheric Science
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      Height distribution between cloud and aerosol layers from the GLAS spaceborne lidar in the Indian Ocean region

      William D. Hart, James D. Spinhirne, Steven P. Palm and Dennis L. Hlavka

      Article first published online: 30 SEP 2005 | DOI: 10.1029/2005GL023671

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  10. Solid Earth

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    2. Space Sciences
    3. Climate
    4. Atmospheric Science
    5. Climate
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    9. Solid Earth
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  11. Atmospheric Science

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      GLAS long-range transport observation of the 2003 California forest fire plumes to the northeastern US

      R. M. Hoff, S. P. Palm, J. A. Engel-Cox and J. Spinhirne

      Article first published online: 27 OCT 2005 | DOI: 10.1029/2005GL023723

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      Laser pulse reflectance of the ocean surface from the GLAS satellite lidar

      Redgie S. Lancaster, James D. Spinhirne and Stephen P. Palm

      Article first published online: 16 SEP 2005 | DOI: 10.1029/2005GL023732

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  12. Climate

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  13. Oceans

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      Entrainment: Local and non-local turbulence models with double diffusion

      V. M. Canuto, M. S. Dubovikov and Y. Cheng

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023771

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  14. Atmospheric Science

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      Antarctica cloud cover for October 2003 from GLAS satellite lidar profiling

      J. D. Spinhirne, S. P. Palm and W. D. Hart

      Article first published online: 30 SEP 2005 | DOI: 10.1029/2005GL023782

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      Scattering layer statistics from space borne GLAS observations

      F. M. Bréon, D. M. O'Brien and J. D. Spinhirne

      Article first published online: 18 NOV 2005 | DOI: 10.1029/2005GL023825

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  15. Oceans

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      Ocean-atmosphere in situ observations at the Brazil-Malvinas Confluence region

      L. P. Pezzi, R. B. Souza, M. S. Dourado, C. A. E. Garcia, M. M. Mata and M. A. F. Silva-Dias

      Article first published online: 24 NOV 2005 | DOI: 10.1029/2005GL023866

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  16. Planets

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      Titan's stratospheric zonal wind, temperature, and ethane abundance a year prior to Huygens insertion

      T. Kostiuk, T. A. Livengood, T. Hewagama, G. Sonnabend, K. E. Fast, K. Murakawa, A. T. Tokunaga, J. Annen, D. Buhl and F. Schmülling

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023897

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  17. Solid Earth

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      Onset of power law aftershock decay rates in southern California

      C. Narteau, P. Shebalin and M. Holschneider

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023951

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      ICESat validation of SRTM C-band digital elevation models

      Claudia C. Carabajal and David J. Harding

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023957

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      Amplitude ratios for complete moment tensor retrieval

      Zuzana Jechumtálová and Jan Šílený

      Article first published online: 17 NOV 2005 | DOI: 10.1029/2005GL023967

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      Estimates of forest canopy height and aboveground biomass using ICESat

      Michael A. Lefsky, David J. Harding, Michael Keller, Warren B. Cohen, Claudia C. Carabajal, Fernando Del Bom Espirito-Santo, Maria O. Hunter and Raimundo de Oliveira Jr.

      Article first published online: 1 NOV 2005 | DOI: 10.1029/2005GL023971

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      Further constraints on the deep lunar interior

      A. Khan and K. Mosegaard

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023985

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      The 1999 Chi-Chi, Taiwan, earthquake as a typical example of seismic activation and quiescence

      Chien-Chih Chen, John B. Rundle, James R. Holliday, Kazuyoshi Z. Nanjo, Donald L. Turcotte, Shian-Chi Li and Kristy F. Tiampo

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL023991

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      Can synthetic aperture radars be used to estimate hurricane force winds?

      J. Horstmann, D. R. Thompson, F. Monaldo, S. Iris and H. C. Graber

      Article first published online: 16 NOV 2005 | DOI: 10.1029/2005GL023992

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      The transmitter pointing determination in the Geoscience Laser Altimeter System

      J. Marcos Sirota, Sungkoo Bae, Pamela Millar, David Mostofi, Charles Webb, Bob Schutz and Scott Luthcke

      Article first published online: 29 NOV 2005 | DOI: 10.1029/2005GL024005

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      Waveform inversion of the S reflector west of Spain: Fine structure of a detachment fault

      T. Leythaeuser, T. J. Reston and T. A. Minshull

      Article first published online: 17 NOV 2005 | DOI: 10.1029/2005GL024026

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  25. Climate

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  27. Atmospheric Science

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  29. Atmospheric Science

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      Morphological and chemical modification of mineral dust: Observational insight into the heterogeneous uptake of acidic gases

      Atsushi Matsuki, Yasunobu Iwasaka, Guangyu Shi, Daizhou Zhang, Dmitri Trochkine, Maromu Yamada, Yoon-Suk Kim, Bin Chen, Tetsuji Nagatani, Takeshi Miyazawa, Masahiro Nagatani and Hiroshi Nakata

      Article first published online: 23 NOV 2005 | DOI: 10.1029/2005GL024176

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      Non-saturation of the defect moment of goethite and fine-grained hematite up to 57 Teslas

      Pierre Rochette, Pierre-Etienne Mathé, Lionel Esteban, Harison Rakoto, Jean-Luc Bouchez, Qingsong Liu and José Torrent

      Article first published online: 23 NOV 2005 | DOI: 10.1029/2005GL024196

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      Initial results of the Netlander imaging ground-penetrating radar operated on the Antarctic Ice Shelf

      J. J. Berthelier, S. Bonaimé, V. Ciarletti, R. Clairquin, F. Dolon, A. Le Gall, D. Nevejans, R. Ney and A. Reineix

      Article first published online: 18 NOV 2005 | DOI: 10.1029/2005GL024203

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  33. Planets

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  34. Climate

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      Continued deceleration of Whillans Ice Stream, West Antarctica

      I. Joughin, R. A. Bindschadler, M. A. King, D. Voigt, R. B. Alley, S. Anandakrishnan, H. Horgan, L. Peters, P. Winberry, S. B. Das and G. Catania

      Article first published online: 17 NOV 2005 | DOI: 10.1029/2005GL024319

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      Impact of particulate organic matter on the relative humidity dependence of light scattering: A simplified parameterization

      P. K. Quinn, T. S. Bates, T. Baynard, A. D. Clarke, T. B. Onasch, W. Wang, M. J. Rood, E. Andrews, J. Allan, C. M. Carrico, D. Coffman and D. Worsnop

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL024322

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      Impact demagnetization of the Martian crust: Primaries versus secondaries

      N. Artemieva, L. Hood and B. A. Ivanov

      Article first published online: 30 NOV 2005 | DOI: 10.1029/2005GL024385

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  41. Climate

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      A break in self-similarity in the Lunigiana-Garfagnana region (northern Apennines)

      P. Morasca, K. Mayeda, R. Gök, L. Malagnini and C. Eva

      Article first published online: 16 NOV 2005 | DOI: 10.1029/2005GL024443

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  43. Climate

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      On large outflows of Arctic sea ice into the Barents Sea

      Ron Kwok, Wieslaw Maslowski and Seymour W. Laxon

      Article first published online: 29 NOV 2005 | DOI: 10.1029/2005GL024485

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  45. Climate

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      Sr, Nd isotopic evidence of terrigenous flux variations in the Bay of Bengal: Implications of monsoons during the last ∼34,000 years

      S. M. Ahmad, G. Anil Babu, V. M. Padmakumari, A. M. Dayal, B. S. Sukhija and P. Nagabhushanam

      Article first published online: 29 NOV 2005 | DOI: 10.1029/2005GL024519

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  47. Atmospheric Science

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      Impact of 1998–2002 midlatitude drought and warming on terrestrial ecosystem and the global carbon cycle

      Ning Zeng, Haifeng Qian, Christian Roedenbeck and Martin Heimann

      Article first published online: 26 NOV 2005 | DOI: 10.1029/2005GL024607

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      Lightning sferics and stroke-delayed pulses measured in the stratosphere: Implications for mesospheric currents

      Jeremy N. Thomas, Robert H. Holzworth, Michael P. McCarthy and Osmar Pinto Jr.

      Article first published online: 26 NOV 2005 | DOI: 10.1029/2005GL024629

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  50. The Cryosphere

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      Rapid retreat and acceleration of Helheim Glacier, east Greenland

      I. M. Howat, I. Joughin, S. Tulaczyk and S. Gogineni

      Article first published online: 22 NOV 2005 | DOI: 10.1029/2005GL024737

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