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  • Nature Publishing Group  (363,432)
  • MDPI Publishing
  • American Meteorological Society
Collection
Publisher
Years
  • 1
    Journal cover
    Unknown
    Nature Publishing Group | ISME (International Society for Microbial Ecology)
    Online: 1.2007 –
    Publisher: Nature Publishing Group , ISME (International Society for Microbial Ecology)
    Corporation: International Society for Microbial Ecology, ISME
    Print ISSN: 1751-7362
    Electronic ISSN: 1751-7370
    Topics: Biology
    Keywords: Mikrobiologie
    Parallel titles: The ISME Journal
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  • 2
    Journal cover
    Unknown
    Shanghai Institute of Cell Biology | Nature Publishing Group
    Online: 1.1990 – (older than 12 months)
    Publisher: Shanghai Institute of Cell Biology , Nature Publishing Group
    Print ISSN: 1001-0602
    Electronic ISSN: 1748-7838
    Topics: Biology , Medicine
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  • 3
    Journal cover
    Unknown
    American Meteorological Society
    Online: 1.2009 – (older than 12 months)
    Publisher: American Meteorological Society
    Print ISSN: 1948-8327
    Electronic ISSN: 1948-8335
    Topics: Geosciences , Physics
    Keywords: Meteorologie, Bioklimatologie
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  • 4
    Journal cover
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    Springer Nature | Nature Publishing Group | PubMed Central
    Online: 1.2011 –
    Publisher: Springer Nature , Nature Publishing Group , PubMed Central
    Electronic ISSN: 2045-2322
    Topics: Natural Sciences in General
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  • 5
    Journal cover
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    Nature Publishing Group | PubMed Central
    Online: 1.1993 – (older than 12 months)
    Publisher: Nature Publishing Group , PubMed Central
    Print ISSN: 1018-4813
    Electronic ISSN: 1476-5438
    Topics: Biology , Medicine
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  • 6
    Journal cover
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    Nature Publishing Group
    Online: 1.2010 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2041-4889
    Topics: Biology , Medicine
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  • 7
    Journal cover
    Unknown
    Nature Publishing Group | Cell Death Differentiation Association
    Online: 2015 –
    Publisher: Nature Publishing Group , Cell Death Differentiation Association
    Electronic ISSN: 2058-7716
    Topics: Biology , Medicine
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  • 8
    Journal cover
    Unknown
    Nature Publishing Group | Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences
    Online: 2015 –
    Publisher: Nature Publishing Group , Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences
    Electronic ISSN: 2056-5968
    Topics: Biology , Medicine
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  • 9
    Journal cover
    Unknown
    Shanghai Institute of Cell Biology | Nature Publishing Group
    Online: 1(1).1990 –
    Publisher: Shanghai Institute of Cell Biology , Nature Publishing Group
    Print ISSN: 1001-0602
    Electronic ISSN: 1748-7838
    Topics: Biology , Medicine
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  • 10
    Journal cover
    Unknown
    Nature Publishing Group
    Online: 4(1).1997 –
    Publisher: Nature Publishing Group
    Print ISSN: 1350-9047
    Electronic ISSN: 1476-5403
    Topics: Biology , Medicine
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  • 11
    Journal cover
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    American Meteorological Society | JSTOR
    Online: 1.2009 – (older than 3 years)
    Publisher: American Meteorological Society , JSTOR
    Print ISSN: 1948-8327
    Electronic ISSN: 1948-8335
    Topics: Geosciences , Physics , Sociology
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  • 12
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    Unknown
    MDPI Publishing
    Online: 1(1).2015 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2313-576X
    Topics: Technology
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  • 13
    Journal cover
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    Nature Publishing Group | Biocentury
    Online: 1.2008 – 7.2014
    Publisher: Nature Publishing Group , Biocentury
    Electronic ISSN: 1945-3477
    Topics: Natural Sciences in General
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  • 14
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    Nature Publishing Group | JSTOR
    Online: 1(1).1845 –
    Print: 268.1993 – 303(5).2010 (Location: A17, Kompaktmagazin, 64/5-6)
    Print: 270.1994 – 282.2000 (Location: A17, Kompaktmagazin, 64/5-6)
    Publisher: Nature Publishing Group , JSTOR
    Print ISSN: 0036-8733
    Electronic ISSN: 1946-7087
    Topics: Biology , Natural Sciences in General , Physics
    Abbreviation: Sci Am
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  • 15
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    MDPI Publishing
    Online: 1(1).2012 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2079-6382
    Topics: Chemistry and Pharmacology , Medicine
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  • 16
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    American Meteorological Society | JSTOR
    Online: 1.1920 – (older than 3 years)
    Publisher: American Meteorological Society , JSTOR
    Print ISSN: 0003-0007
    Electronic ISSN: 1520-0477
    Topics: Geosciences , Physics
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  • 17
    Journal cover
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    American Meteorological Society
    Online: 1.1920 –
    Print: 52.1971 – 81(2).1999 (Location: A62, Keller, 2/4-5)
    Publisher: American Meteorological Society
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0003-0007
    Electronic ISSN: 1520-0477
    Topics: Geosciences , Physics
    Acronym: BAMS
    Abbreviation: Bull Am Meteorol Soc
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  • 18
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    MDPI Publishing
    Online: 1.2010 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2073-4433
    Topics: Geosciences
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  • 19
    Journal cover
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    MDPI Publishing
    Online: 1.2011 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2077-0472
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 20
    Journal cover
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    MDPI Publishing
    Online: 1(1).2012 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2076-0825
    Topics: Electrical Engineering, Measurement and Control Technology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 21
    Journal cover
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    Shanghai Institute of Materia Medica, Chinese Academy of Sciences | Nature Publishing Group
    Online: 1.1980 – (older than 12 months)
    Publisher: Shanghai Institute of Materia Medica, Chinese Academy of Sciences , Nature Publishing Group
    Print ISSN: 1671-4083
    Electronic ISSN: 0253-9756
    Topics: Chemistry and Pharmacology , Medicine
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  • 22
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    American Meteorological Society
    Online: 2002 –
    Publisher: American Meteorological Society
    Topics: Geography , Physics
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  • 23
    Journal cover
    Unknown
    Nature Publishing Group | ChangChun Institute of Optics, Fine Mechanics, and Physics (CIOMP)
    Online: 1.2012 –
    Publisher: Nature Publishing Group , ChangChun Institute of Optics, Fine Mechanics, and Physics (CIOMP)
    Electronic ISSN: 2047-7538
    Topics: Physics
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  • 24
    Journal cover
    Unknown
    Nature Publishing Group | Tokyo Institute of Technology
    Online: 1(1).2009 –
    Publisher: Nature Publishing Group , Tokyo Institute of Technology
    Print ISSN: 1884-4049
    Electronic ISSN: 1884-4057
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 25
    Journal cover
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    Nature Publishing Group
    Online: 1.1998 –
    Publisher: Nature Publishing Group
    Print ISSN: 1018-4813
    Electronic ISSN: 1476-5438
    Topics: Biology , Medicine
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  • 26
    Journal cover
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    American Meteorological Society | Allen Press
    Online: 1(1).1988 – (older than 12 months)
    Publisher: American Meteorological Society , Allen Press
    Print ISSN: 0894-8755
    Electronic ISSN: 1520-0442
    Topics: Geosciences , Physics
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  • 27
    Journal cover
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    Nature Publishing Group | ISME (International Society for Microbial Ecology), PubMed Central
    Online: 1.2007 – (older than 12 months)
    Publisher: Nature Publishing Group , ISME (International Society for Microbial Ecology), PubMed Central
    Corporation: International Society for Microbial Ecology, ISME
    Print ISSN: 1751-7362
    Electronic ISSN: 1751-7370
    Topics: Biology
    Keywords: Mikrobiologie
    Parallel titles: The ISME Journal
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  • 28
    Journal cover
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    Nature Publishing Group
    Online: 22.1977 – (older than 5 years)
    Publisher: Nature Publishing Group
    Print ISSN: 1434-5161
    Electronic ISSN: 1435-232X
    Topics: Biology , Medicine
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  • 29
    Journal cover
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    Nature Publishing Group
    Online: 22(1).1977 –
    Publisher: Nature Publishing Group
    Print ISSN: 1434-5161
    Electronic ISSN: 1435-232X
    Topics: Biology , Medicine
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  • 30
    Journal cover
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    MDPI Publishing
    Online: 1(1).2012 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2073-445X
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 31
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    American Meteorological Society
    Print: 1.1944 – 18.1961 (Location: A62, Keller, 3/2 ; 46/2 (Vol. 11-13))
    Continued as: Journal of the Atmospheric Sciences  (1962–)
    Publisher: American Meteorological Society
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0095-9634
    Topics: Geosciences
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  • 32
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    American Meteorological Society | Allen Press | JSTOR
    Online: 1.1988 –
    Print: 5.1992 – 20.2007 (Location: A43, LZ 10-12 Mitte | RZ)
    Print: 4(9).1991 – 8(1).1995 (Location: A62, Keller, 39/2-3)
    Publisher: American Meteorological Society , Allen Press , JSTOR
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0894-8755
    Electronic ISSN: 1520-0442
    Topics: Geosciences , Physics
    Acronym: JC
    Abbreviation: J Clim
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  • 33
    Journal cover
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    Nanjing Agricultural University | Nature Publishing Group
    Online: 1.2014 –
    Publisher: Nanjing Agricultural University , Nature Publishing Group
    Print ISSN: 2662-6810
    Electronic ISSN: 2052-7276
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 34
    Journal cover
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    American Meteorological Society | Allen Press | JSTOR
    Online: 1.2000 – (older than 3 years)
    Publisher: American Meteorological Society , Allen Press , JSTOR
    Print ISSN: 1525-755X
    Electronic ISSN: 1525-7541
    Topics: Geosciences , Physics
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  • 35
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    American Meteorological Society | Allen Press
    Online: 1.1944 –
    Print: 50.1993 – 64.2007 (Location: A43, LZ 10 Unten -12 Unten)
    Print: 19.1962 – 30.1973 (Location: A62, Keller, 3/2)
    Formerly as: Journal of Meteorology  (1944–1961)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0022-4928 , 0095-9634
    Electronic ISSN: 1520-0469
    Topics: Geography , Geosciences , Physics
    Acronym: JAS
    Abbreviation: J Atmos Sci
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  • 36
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    American Meteorological Society | Allen Press
    Online: 1.1971 –
    Print: 23.1993 – 41.2011 (Location: A17, Kompaktmagazin, 42/7 - 43/2)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0022-3670
    Electronic ISSN: 1520-0485
    Topics: Geosciences , Physics
    Acronym: JPO
    Abbreviation: J Phys Oceanogr
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  • 37
    Journal cover
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    American Meteorological Society | Allen Press
    Online: 1.2000 – (older than 12 months)
    Print: 3.2002 – 6.2005 (Location: A43, LZ 14 Mitte)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 1525-755X
    Electronic ISSN: 1525-7541
    Topics: Geosciences , Physics
    Acronym: JH
    Abbreviation: J Hydrometeorol
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  • 38
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    American Meteorological Society | Allen Press
    Online: 1.1984 – (older than 12 months)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0739-0572
    Electronic ISSN: 1520-0426
    Topics: Geography , Geosciences , Physics
    Acronym: ATOT
    Abbreviation: J Atmospher Ocean Technol
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  • 39
    Journal cover
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    American Meteorological Society | Allen Press
    Online: 1.1971 – (older than 12 months)
    Publisher: American Meteorological Society , Allen Press
    Print ISSN: 0022-3670
    Electronic ISSN: 1520-0485
    Topics: Geosciences , Physics
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  • 40
    Journal cover
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    MDPI Publishing
    Online: 1.2011 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2076-3263
    Topics: Geosciences
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  • 41
    Journal cover
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    MDPI Publishing
    Online: 1(1).2015 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2312-7481
    Topics: Chemistry and Pharmacology
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  • 42
    Journal cover
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    Nature Publishing Group
    Online: 16(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1754-2189
    Electronic ISSN: 1750-2799
    Topics: Natural Sciences in General
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  • 43
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    American Meteorological Society | Allen Press
    Online: 1.1873 –
    Print: 121.1993 – 136.2008 (Location: A43, LZ 9-11 Unten)
    Print: 2.1874 – 122.1994 (Location: A62, Konferenzraum, 2OG)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0027-0644
    Electronic ISSN: 1520-0493
    Topics: Geography , Geosciences , Physics
    Acronym: MWR
    Abbreviation: Month Weather Rev
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  • 44
    Journal cover
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    American Meteorological Society | Allen Press
    Online: 1.1873 – (older than 12 months)
    Publisher: American Meteorological Society , Allen Press
    Print ISSN: 0027-0644
    Electronic ISSN: 1520-0493
    Topics: Geography , Geosciences , Physics
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  • 45
    Journal cover
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    Nature Publishing Group
    Online: 2(1).2021 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2662-1355
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 46
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    Nature Publishing Group
    Online: 1.2007 – 4(5).2010
    Publisher: Nature Publishing Group
    Electronic ISSN: 1753-9315
    Topics: Geosciences
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  • 47
    Journal cover
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    Nature Publishing Group
    Online: 4.1997 – (older than 5 years)
    Publisher: Nature Publishing Group
    Print ISSN: 0969-7128
    Electronic ISSN: 1476-5462
    Topics: Biology , Medicine
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  • 48
    Journal cover
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    Nature Publishing Group
    Online: 1.1999 – (older than 5 years)
    Publisher: Nature Publishing Group
    Print ISSN: 1466-4879
    Electronic ISSN: 1476-5470
    Topics: Biology , Medicine
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  • 49
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    MDPI Publishing
    Online: 1(1).2013 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2075-4434
    Topics: Physics
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  • 50
    Journal cover
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    American Geophysical Union (AGU) | Association of American Geographers (AAG) | American Meteorological Society | Allen Press
    Online: 1(1).1997 –
    Publisher: American Geophysical Union (AGU) , Association of American Geographers (AAG) , American Meteorological Society , Allen Press
    Electronic ISSN: 1087-3562
    Topics: Geography , Geosciences , Physics
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  • 51
    Journal cover
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    MDPI Publishing
    Online: 1.2011 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2075-163X
    Topics: Geosciences
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  • 52
    Journal cover
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    Nature Publishing Group
    Online: 19(1).2021 –
    Online: 19(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1740-1526
    Electronic ISSN: 1740-1534
    Topics: Biology , Medicine
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  • 53
    Journal cover
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    Nature Publishing Group
    Online: 27(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1078-8956
    Electronic ISSN: 1546-170X
    Topics: Biology , Medicine
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  • 54
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    Nature Publishing Group
    Online: 2007 – 2009
    Publisher: Nature Publishing Group
    Electronic ISSN: 1754-8705
    Topics: Biology , Medicine
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  • 55
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    MDPI Publishing | International Society for Photogrammetry and Remote Sensing (ISPRS)
    Online: 1.2012 –
    Publisher: MDPI Publishing , International Society for Photogrammetry and Remote Sensing (ISPRS)
    Electronic ISSN: 2220-9964
    Topics: Architecture, Civil Engineering, Surveying , Geosciences
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  • 56
    Journal cover
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    Nature Publishing Group
    Online: 1(1).2009 – 1(9).2009
    Online: 13(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1755-4330
    Electronic ISSN: 1755-4349
    Topics: Chemistry and Pharmacology
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  • 57
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    Nature Publishing Group
    Online: 1.1992 – 41.2009
    Online: 53(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1061-4036
    Electronic ISSN: 1546-1718
    Topics: Biology , Medicine
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  • 58
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    Nature Publishing Group
    Online: 229(1).1971 – 246(155).1973
    Publisher: Nature Publishing Group
    Print ISSN: 0090-0028 , 0369-4887
    Topics: Biology
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  • 59
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    Nature Publishing Group
    Online: 2006 – 2012
    Publisher: Nature Publishing Group
    Electronic ISSN: 1756-0357
    Topics: Biology , Chemistry and Pharmacology , Geosciences , Medicine , Natural Sciences in General , Physics
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  • 60
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    Nature Publishing Group
    Online: 22(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1471-0072
    Electronic ISSN: 1471-0080
    Topics: Biology
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  • 61
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    Nature Publishing Group
    Online: 1.1994 – 16.2009
    Online: 28(1).2021 –
    Formerly as: Nature Structural Biology  (1994–2003)
    Publisher: Nature Publishing Group
    Print ISSN: 1072-8368 , 1545-9993
    Electronic ISSN: 1545-9985
    Topics: Biology , Medicine
    Acronym: NSMB
    Abbreviation: Nat Struct Mol Biol
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  • 62
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    Nature Publishing Group
    Online: 17(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1552-4450
    Electronic ISSN: 1552-4469
    Topics: Biology , Chemistry and Pharmacology
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  • 63
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    Nature Publishing Group
    Online: 1.1999 – 11.2009
    Online: 23(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1465-7392
    Electronic ISSN: 1476-4679
    Topics: Biology , Medicine
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  • 64
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    Nature Publishing Group
    Online: 1(1).2010 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2041-1723
    Topics: Biology , Chemistry and Pharmacology , Natural Sciences in General , Physics
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  • 65
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    Nature Publishing Group
    Online: 22(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1529-2908
    Electronic ISSN: 1529-2916
    Topics: Biology , Medicine
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  • 66
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    Nature Publishing Group
    Online: 16(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1748-3387
    Electronic ISSN: 1748-3395
    Topics: Biology , Chemistry and Pharmacology , Physics
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  • 67
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    Nature Publishing Group
    Online: 1.2015 –
    Publisher: Nature Publishing Group
    Print ISSN: 2055-026X
    Electronic ISSN: 2055-0278
    Topics: Biology
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  • 68
    Journal cover
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    Nature Publishing Group
    Online: 6(1).2021 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2058-8437
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 69
    Journal cover
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    Nature Publishing Group
    Online: 2015 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2373-8065
    Topics: Physics
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  • 70
    Journal cover
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    Nature Publishing Group
    Online: 2015 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2056-6387
    Topics: Physics
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  • 71
    Journal cover
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    American Meteorological Society | Allen Press | JSTOR
    Online: 45.2006 – (older than 3 years)
    Publisher: American Meteorological Society , Allen Press , JSTOR
    Print ISSN: 1558-8424
    Electronic ISSN: 1558-8432
    Topics: Geosciences , Physics
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  • 72
    Journal cover
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    American Meteorological Society | Allen Press
    Online: 1.1962 – (older than 12 months)
    Print: 31.1992 – 32.1993 (Location: A43, LZ 10 Mitte)
    Formerly as: Journal of Applied Meteorology  (1988–2005)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 1558-8424
    Electronic ISSN: 1558-8432
    Topics: Geosciences , Physics
    Acronym: JAMC
    Abbreviation: J Appl Meteorol Climatol
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  • 73
    Journal cover
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    Nature Publishing Group
    Online: 2015 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2055-5008
    Topics: Biology
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  • 74
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    Nature Publishing Group | Shanghai Institute of Ceramics of the Chinese Academy of Sciences
    Online: 2015 –
    Publisher: Nature Publishing Group , Shanghai Institute of Ceramics of the Chinese Academy of Sciences
    Electronic ISSN: 2057-3960
    Topics: Computer Science , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 75
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    Nature Publishing Group
    Online: 2015 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 2056-7189
    Topics: Biology
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  • 76
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    Nature Publishing Group
    Online: 1.2001 –
    Publisher: Nature Publishing Group
    Print ISSN: 1470-269X
    Electronic ISSN: 1473-1150
    Topics: Chemistry and Pharmacology
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  • 77
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    Nature Publishing Group
    Online: 1.2001 – (older than 5 years)
    Publisher: Nature Publishing Group
    Print ISSN: 1470-269X
    Electronic ISSN: 1473-1150
    Topics: Chemistry and Pharmacology
    Parallel titles: The Pharmacogenomics Journal
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  • 78
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    MDPI Publishing
    Online: 1(1).2012 –
    Publisher: MDPI Publishing
    Electronic ISSN: 2079-9276
    Topics: Energy, Environment Protection, Nuclear Power Engineering
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  • 79
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    Nature Publishing Group
    Online: 1(1).1970 –
    Publisher: Nature Publishing Group
    Print ISSN: 0032-3896
    Electronic ISSN: 1349-0540
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 80
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    American Meteorological Society | Allen Press
    Online: 1.1944 – (older than 12 months)
    Publisher: American Meteorological Society , Allen Press
    Print ISSN: 0022-4928 , 0095-9634
    Electronic ISSN: 1520-0469
    Topics: Geography , Geosciences , Physics
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  • 81
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    Nature Publishing Group
    Online: 1998 –
    Publisher: Nature Publishing Group
    Electronic ISSN: 1744-7933
    Topics: Natural Sciences in General
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  • 82
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    Nature Publishing Group
    Online: 229.1971 – 246.1973
    Publisher: Nature Publishing Group
    Print ISSN: 0300-8746
    Topics: Physics
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  • 83
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    Nature Publishing Group
    Online: 22(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1471-0056
    Electronic ISSN: 1471-0064
    Topics: Biology , Medicine
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  • 84
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    Nature Publishing Group
    Online: 1.1983 – 27.2009
    Online: 39(1).2021 –
    Formerly as: Bio-Technology  (1983–1996)
    Publisher: Nature Publishing Group
    Print ISSN: 0733-222X , 1087-0156
    Electronic ISSN: 1546-1696
    Topics: Biology , Process Engineering, Biotechnology, Nutrition Technology
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  • 85
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    Nature Publishing Group
    Online: 18(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1548-7091
    Electronic ISSN: 1548-7105
    Topics: Biology , Medicine
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  • 86
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    Nature Publishing Group
    Online: 24(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1097-6256
    Electronic ISSN: 1546-1726
    Topics: Biology , Medicine
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  • 87
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    Nature Publishing Group
    Online: 22(1).2021 –
    Publisher: Nature Publishing Group
    Print ISSN: 1471-003X
    Electronic ISSN: 1471-0048
    Topics: Biology , Medicine
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  • 88
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    American Meteorological Society | Allen Press
    Online: 1.1986 – (older than 12 months)
    Print: 1.1986 – 15(1).2000 (Location: A62, Keller, 38/5)
    Publisher: American Meteorological Society , Allen Press
    Corporation: American Meteorological Society, AMS
    Print ISSN: 0882-8156
    Topics: Geography , Physics
    Acronym: WF
    Abbreviation: Weather Forecast
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  • 89
    Publication Date: 2020-11-18
    Description: A realistic representation of the North Atlantic tropical cyclone tracks is crucial as it allows, for example, explaining potential changes in U.S. landfalling systems. Here, the authors present a tentative study that examines the ability of recent climate models to represent North Atlantic tropical cyclone tracks. Tracks from two types of climate models are evaluated: explicit tracks are obtained from tropical cyclones simulated in regional or global climate models with moderate to high horizontal resolution (1°–0.25°), and downscaled tracks are obtained using a downscaling technique with large-scale environmental fields from a subset of these models. For both configurations, tracks are objectively separated into four groups using a cluster technique, leading to a zonal and a meridional separation of the tracks. The meridional separation largely captures the separation between deep tropical and subtropical, hybrid or baroclinic cyclones, while the zonal separation segregates Gulf of Mexico and Cape Verde storms. The properties of the tracks’ seasonality, intensity, and power dissipation index in each cluster are documented for both configurations. The authors’ results show that, except for the seasonality, the downscaled tracks better capture the observed characteristics of the clusters. The authors also use three different idealized scenarios to examine the possible future changes of tropical cyclone tracks under 1) warming sea surface temperature, 2) increasing carbon dioxide, and 3) a combination of the two. The response to each scenario is highly variable depending on the simulation considered. Finally, the authors examine the role of each cluster in these future changes and find no preponderant contribution of any single cluster over the others.
    Description: Published
    Description: 1333–1361
    Description: 4A. Clima e Oceani
    Description: JCR Journal
    Description: restricted
    Keywords: tropical cyclones ; atlantic basin ; 01. Atmosphere::01.01. Atmosphere::01.01.02. Climate
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 90
    Publication Date: 2020-11-18
    Description: Heavy rainfall and flooding associated with tropical cyclones (TCs) are responsible for a large number of fatalities and economic damage worldwide. Despite their large socio-economic impacts, research into heavy rainfall and flooding associated with TCs has received limited attention to date, and still represents a major challenge. Our capability to adapt to future changesin heavy rainfall and flooding associated with TCs is inextricably linked to and informed by ourunderstanding of the sensitivity of TC rainfall to likely future forcing mechanisms. Here we use a set of idealized high-resolution atmospheric model experiments produced as part of the U.S. CLIVAR Hurricane Working Group activity to examine TC response to idealized global-scale perturbations: the doubling of CO2, uniform 2K increases in global sea surface temperature(SST), and their combined impact. As a preliminary but key step, daily rainfall patterns ofcomposite TCs within climate model outputs are first compared and contrasted to the observational records. To assess similarities and differences across different regions in response to the warming scenarios, analyses are performed at the global and hemispheric scales and in six global TC ocean basins. The results indicate a reduction in TC daily precipitation rates in the doubling CO2 scenario (on the order of 5% globally), and an increase in TC rainfall rates associated with a uniform increase of 2K in SST (both alone and in combination with CO2 doubling; on the order of 10-20% globally).
    Description: Published
    Description: 4622–4641
    Description: 4A. Clima e Oceani
    Description: JCR Journal
    Description: open
    Keywords: tropical cyclones ; precipitation ; rainfall ; extreme events ; 01. Atmosphere::01.01. Atmosphere::01.01.02. Climate
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 91
    Publication Date: 2021-06-08
    Description: The Aegean water masses and circulation structure are studied via two large-scale surveys performed during the late winters of 1988 and 1990 by the R/V Yakov Gakkel of the former Soviet Union. The analysis of these data sheds light on the mechanisms of water mass formation in the Aegean Sea that triggered the outflow of Cretan Deep Water (CDW) from the Cretan Sea into the abyssal basins of the eastern Mediterranean Sea (the so-called Eastern Mediterranean Transient). It is found that the central Aegean Basin is the site of the formation of Aegean Intermediate Water, which slides southward and, depending on their density, renews either the intermediate or the deep water of the Cretan Sea. During the winter of 1988, the Cretan Sea waters were renewed mainly at intermediate levels, while during the winter of 1990 it was mainly the volume of CDW that increased. This Aegean water mass redistribution and formation process in 1990 differed from that in 1988 in two major aspects: (i) during the winter of 1990 the position of the front between the Black Sea Water and the Levantine Surface Water was displaced farther north than during the winter of 1988 and (ii) heavier waters were formed in 1990 as a result of enhanced lateral advection of salty Levantine Surface Water that enriched the intermediate waters with salt. In 1990 the 29.2 isopycnal rose to the surface of the central basin and a large volume of CDW filled the Cretan Basin. It is found that, already in 1988, the 29.2 isopycnal surface, which we assume is the lowest density of the CDW, was shallower than the Kassos Strait sill and thus CDW egressed into the Eastern Mediterranean.
    Description: Published
    Description: 1841-1859
    Description: JCR Journal
    Description: reserved
    Keywords: Aegean Sea ; Water Masses ; 03. Hydrosphere::03.03. Physical::03.03.03. Interannual-to-decadal ocean variability
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 92
    Publication Date: 2021-06-01
    Description: Five non-eddy-resolving oceanic general circulation models driven by atmospheric fluxes derived from the NCEP reanalysis are used to investigate the link between the Gulf Stream (GS) variability, the atmospheric circulation, and the Atlantic meridional overturning circulation (AMOC). Despite the limited model resolution, the temperature at the 200-m depth along the mean GS axis behaves similarly in most models to that observed, and it is also well correlated with the North Atlantic Oscillation (NAO), indicating that a northward (southward) GS shift lags a positive (negative) NAO phase by 0–2 yr. The northward shift is accompanied by an increase in the GS transport, and conversely the southward shift with a decrease in the GS transport. Two dominant time scales appear in the response of the GS transport to the NAO forcing: a fast time scale (less than 1 month) for the barotropic component, and a slower one (about 2 yr) for the baroclinic component. In addition, the two components are weakly coupled. The GS response seems broadly consistent with a linear adjustment to the changes in the wind stress curl, and evidence for baroclinic Rossby wave propagation is found in the southern part of the subtropical gyre. However, the GS shifts are also affected by basin-scale changes in the oceanic conditions, and they are well correlated in most models with the changes in the AMOC. A larger AMOC is found when the GS is stronger and displaced northward, and a higher correlation is found when the observed changes of the GS position are used in the comparison. The relation between the GS and the AMOC could be explained by the inherent coupling between the thermohaline and the wind-driven circulation, or by the NAO variability driving them on similar time scales in the models.
    Description: This research was supported by the PREDICATE project of the European Community, and for M. Bentsen by the Research Council of Norway through RegClim, NOClim, and the Programme of Supercomputing.
    Description: Published
    Description: 2119–2135
    Description: 3.7. Dinamica del clima e dell'oceano
    Description: JCR Journal
    Description: reserved
    Keywords: ocean modelling ; gulf stream variability ; 03. Hydrosphere::03.01. General::03.01.03. Global climate models
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 93
    Publication Date: 2021-06-22
    Description: This work explores the impact of orbital parameters and greenhouse gas concentrations on the climate of marine isotope stage (MIS) 7 glacial inception and compares it to that of MIS 5. The authors use a coupled atmosphere-ocean general circulation model to simulate the mean climate state of six time slices at 115, 122, 125, 229, 236, and 239 kyr, representative of a climate evolution from interglacial to glacial inception conditions. The simulations are designed to separate the effects of orbital parameters from those of greenhouse gas (GHG). Their results show that, in all the time slices considered, MIS 7 boreal lands mean annual climate is colder than the MIS 5 one. This difference is explained at 70% by the impact of the MIS 7 GHG. While the impact of GHG over Northern Hemisphere is homogeneous, the difference in temperature between MIS 7 and MIS 5 due to orbital parameters differs regionally and is linked with the Arctic Oscillation. The perennial snow cover is larger in all the MIS 7 experiments compared to MIS 5, as a result of MIS 7 orbital parameters, strengthened by GHG. At regional scale, Eurasia exhibits the strongest response to MIS 7 cold climate with a perennial snow area 3 times larger than in MIS 5 experiments. This suggests that MIS 7 glacial inception is more favorable over this area than over North America. Furthermore, at 239 kyr, the perennial snow covers an area equivalent to that of MIS 5 glacial inception (115 kyr). The authors suggest that MIS 7 glacial inception is more extensive than MIS 5 glacial inception over the high latitudes.
    Description: Italian Ministry of Education, University and Research Ministry for Environment, Land and Sea through the project GEMINA
    Description: Published
    Description: 8918-8933
    Description: 4A. Clima e Oceani
    Description: JCR Journal
    Description: open
    Keywords: Arctic Oscillation ; Teleconnections ; Greenhouse gases ; Glaciation ; Paleoclimate ; 02. Cryosphere::02.03. Ice cores::02.03.05. Paleoclimate
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 94
    Publication Date: 2021-06-16
    Description: While a quantitative climate theory of tropical cyclone formation remains elusive, considerable progress has been made recently in our ability to simulate tropical cyclone climatologies and understand the relationship between climate and tropical cyclone formation. Climate models are now able to simulate a realistic rate of global tropical cyclone formation, although simulation of the Atlantic tropical cyclone climatology remains challenging unless horizontal resolutions finer than 50 km are employed. This article summarizes published research from the idealized experiments of the Hurricane Working Group of U.S. CLIVAR (CLImate VARiability and predictability of the ocean-atmosphere system). This work, combined with results from other model simulations, has strengthened relationships between tropical cyclone formation rates and climate variables such as mid-tropospheric vertical velocity, with decreased climatological vertical velocities leading to decreased tropical cyclone formation. Systematic differences are shown between experiments in which only sea surface temperature is increased versus experiments where only atmospheric carbon dioxide is increased, with the carbon dioxide experiments more likely to demonstrate the decrease in tropical cyclone numbers previously shown to be a common response of climate models in a warmer climate. Experiments where the two effects are combined also show decreases in numbers, but these tend to be less for models that demonstrate a strong tropical cyclone response to increased sea surface temperatures. Further experiments are proposed that may improve our understanding of the relationship between climate and tropical cyclone formation, including experiments with two-way interaction between the ocean and the atmosphere and variations in atmospheric aerosols.
    Description: Published
    Description: 997–1017
    Description: 4A. Clima e Oceani
    Description: JCR Journal
    Description: restricted
    Keywords: tropical cyclones ; hurricanes ; climate change ; CLIVAR ; 01. Atmosphere::01.01. Atmosphere::01.01.02. Climate
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
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  • 95
    Publication Date: 2020-11-19
    Description: A land surface model (LSM) has been included in the ECMWF Hamburg version 4 (ECHAM4) atmospheric general circulation model (AGCM). The LSM is an early version of the Organizing Carbon and Hydrology in Dynamic Ecosystems (ORCHIDEE) and it replaces the simple land surface scheme previously included in ECHAM4. The purpose of this paper is to document how a more exhaustive consideration of the land surface–vegetation processes affects the simulated boreal summer surface climate. To investigate the impacts on the simulated climate, different sets of Atmospheric Model Intercomparison Project (AMIP)-type simulations have been performed with ECHAM4 alone and with the AGCM coupled with ORCHIDEE. Furthermore, to assess the effects of the increase in horizontal resolution the coupling of ECHAM4 with the LSM has been implemented at different horizontal resolutions. The analysis reveals that the LSM has large effects on the simulated boreal summer surface climate of the atmospheric model. Considerable impacts are found in the surface energy balance due to changes in the surface latent heat fluxes over tropical and midlatitude areas covered with vegetation. Rainfall and atmospheric circulation are substantially affected by these changes. In particular, increased precipitation is found over evergreen and summergreen vegetated areas. Because of the socioeconomical relevance, particular attention has been devoted to the Indian summer monsoon (ISM) region. The results of this study indicate that precipitation over the Indian subcontinent is better simulated with the coupled ECHAM4–ORCHIDEE model compared to the atmospheric model alone.
    Description: Published
    Description: 255–278
    Description: 3.7. Dinamica del clima e dell'oceano
    Description: JCR Journal
    Description: partially_open
    Keywords: Land Atmosphere interactions ; Global climate models ; 01. Atmosphere::01.01. Atmosphere::01.01.02. Climate
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
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  • 96
    Publication Date: 2021-05-12
    Description: Producing probabilistic subseasonal forecasts of extreme events up to six weeks in advance is crucial for many economic sectors. In agribusiness, this time scale is particularly critical because it allows for mitigation strategies to be adopted for counteracting weather hazards and taking advantage of opportunities. For example, spring frosts are detrimental for many nut trees, resulting in dramatic losses at harvest time. To explore subseasonal forecast quality in boreal spring, identified as one of the most sensitive times of the year by agribusiness end users, we build a multisystem ensemble using four models involved in the Subseasonal to Seasonal Prediction project (S2S). Two-meter temperature forecasts are used to analyze cold spell predictions in the coastal Black Sea region, an area that is a global leader in the production of hazelnuts. When analyzed at the global scale, the multisystem ensemble probabilistic forecasts for near-surface temperature are better than climatological values for several regions, especially the tropics, even many weeks in advance; however, in the coastal Black Sea, skill is low after the second forecast week. When cold spells are predicted instead of near-surface temperatures, skill improves for the region, and the forecasts prove to contain potentially useful information to stakeholders willing to put mitigation plans into effect. Using a cost–loss model approach for the first time in this context, we show that there is added value of having such a forecast system instead of a business-as-usual strategy, not only for predictions released 1–2 weeks ahead of the extreme event, but also at longer lead times.
    Description: Published
    Description: 237–254
    Description: 4A. Oceanografia e clima
    Description: JCR Journal
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
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  • 97
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    Nature Publishing Group
    In:  EPIC3Nature Geoscience, Nature Publishing Group, 7(5), pp. 376-381, ISSN: 1752-0894
    Publication Date: 2014-07-14
    Description: During the Middle Miocene climate transition about 14 million years ago, the Antarctic ice sheet expanded to near-modern volume. Surprisingly, this ice sheet growth was accompanied by a warming in the surface waters of the Southern Ocean, whereas a slight deep-water temperature increase was delayed by more than 200 thousand years. Here we use a coupled atmosphere–ocean model to assess the relative effects of changes in atmospheric CO2 concentration and ice sheet growth on regional and global temperatures. In the simulations, changes in the wind field associated with the growth of the ice sheet induce changes in ocean circulation, deep-water formation and sea-ice cover that result in sea surface warming and deep-water cooling in large swaths of the Atlantic and Indian ocean sectors of the Southern Ocean. We interpret these changes as the dominant ocean surface response to a 100-thousand-year phase of massive ice growth in Antarctica. A rise in global annual mean temperatures is also seen in response to increased Antarctic ice surface elevation. In contrast, the longer-term surface and deep-water temperature trends are dominated by changes in atmospheric CO2 concentration. We therefore conclude that the climatic and oceanographic impacts of the Miocene expansion of the Antarctic ice sheet are governed by a complex interplay between wind field, ocean circulation and the sea-ice system.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
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  • 98
    Publication Date: 2014-07-17
    Description: Thermokarst lakes formed across vast regions of Siberia and Alaska during the last deglaciation and are thought to be a net source of atmospheric methane and carbon dioxide during the Holocene epoch1, 2, 3, 4. However, the same thermokarst lakes can also sequester carbon5, and it remains uncertain whether carbon uptake by thermokarst lakes can offset their greenhouse gas emissions. Here we use field observations of Siberian permafrost exposures, radiocarbon dating and spatial analyses to quantify Holocene carbon stocks and fluxes in lake sediments overlying thawed Pleistocene-aged permafrost. We find that carbon accumulation in deep thermokarst-lake sediments since the last deglaciation is about 1.6 times larger than the mass of Pleistocene-aged permafrost carbon released as greenhouse gases when the lakes first formed. Although methane and carbon dioxide emissions following thaw lead to immediate radiative warming, carbon uptake in peat-rich sediments occurs over millennial timescales. We assess thermokarst-lake carbon feedbacks to climate with an atmospheric perturbation model and find that thermokarst basins switched from a net radiative warming to a net cooling climate effect about 5,000 years ago. High rates of Holocene carbon accumulation in 20 lake sediments (47 ± 10 grams of carbon per square metre per year; mean ± standard error) were driven by thermokarst erosion and deposition of terrestrial organic matter, by nutrient release from thawing permafrost that stimulated lake productivity and by slow decomposition in cold, anoxic lake bottoms. When lakes eventually drained, permafrost formation rapidly sequestered sediment carbon. Our estimate of about 160 petagrams of Holocene organic carbon in deep lake basins of Siberia and Alaska increases the circumpolar peat carbon pool estimate for permafrost regions by over 50 per cent (ref. 6). The carbon in perennially frozen drained lake sediments may become vulnerable to mineralization as permafrost disappears7, 8, 9, potentially negating the climate stabilization provided by thermokarst lakes during the late Holocene.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev , info:eu-repo/semantics/article
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  • 99
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    Unknown
    Nature Publishing Group
    In:  EPIC3Nature, Nature Publishing Group, 512(7514), pp. 290-294, ISSN: 0028-0836
    Publication Date: 2014-09-04
    Description: During glacial periods of the Late Pleistocene, an abundance of proxy data demonstrates the existence of large and repeated millennial-scale warming episodes, known as Dansgaard–Oeschger (DO) events1. This ubiquitous feature of rapid glacial climate change can be extended back as far as 800,000 years before present (BP) in the ice core record2, and has drawn broad attention within the science and policy-making communities alike3. Many studies have been dedicated to investigating the underlying causes of these changes, but no coherent mechanism has yet been identified3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15. Here we show, by using a comprehensive fully coupled model16, that gradual changes in the height of the Northern Hemisphere ice sheets (NHISs) can alter the coupled atmosphere–ocean system and cause rapid glacial climate shifts closely resembling DO events. The simulated global climate responses—including abrupt warming in the North Atlantic, a northward shift of the tropical rainbelts, and Southern Hemisphere cooling related to the bipolar seesaw—are generally consistent with empirical evidence1, 3, 17. As a result of the coexistence of two glacial ocean circulation states at intermediate heights of the ice sheets, minor changes in the height of the NHISs and the amount of atmospheric CO2 can trigger the rapid climate transitions via a local positive atmosphere–ocean–sea-ice feedback in the North Atlantic. Our results, although based on a single model, thus provide a coherent concept for understanding the recorded millennial-scale variability and abrupt climate changes in the coupled atmosphere–ocean system, as well as their linkages to the volume of the intermediate ice sheets during glacials.
    Repository Name: EPIC Alfred Wegener Institut
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  • 100
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    American Meteorological Society
    In:  EPIC3Journal of Physical Oceanography, American Meteorological Society, 44(8), pp. 2093-2106, ISSN: 0022-3670
    Publication Date: 2019-07-16
    Description: The recently proposed Internal Wave Dissipation, Energy and Mixing (IDEMIX) model, describing the propagation and dissipation of internal gravity waves in the ocean, is extended. Compartments describing the energy contained in the internal tides and the near-inertial waves at low, vertical wavenumber are added to a compartment of the wave continuum at higher wavenumbers. Conservation equations for each compartment are derived based on integrated versions of the radiative transfer equation of weakly interacting waves. The compartments interact with each other by the scattering of tidal energy to the wave continuum by triad wave– wave interactions, which are strongly enhanced equatorward of 288 due to parametric subharmonic instability of the tide and by scattering to the continuum of both tidal and near-inertial wave energy over rough topography and at continental margins. Global numerical simulations of the resulting model using observed stratification, forcing functions, and bottom topography yield good agreement with available observations.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
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