2013q2 poster articles and poster image

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IAA Quarterly 2013Q2 2013

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  • 1/30

    2cmE

    5,800 K John Wheeler

    /

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  • 2/30

    GRB

    -ray burst; GRB GRB 1960 Vela GRB 1 2 GRB GRB 2 L-GRB 2 S-GRBGRB2013 4 5 GRB GRB 130405A

    GRB 100 GRB GRBGRB GRBL-GRB S-GRB

  • 3/30

    GRB080319B

    NASA/Swift/Mary Pat Hrybyk-Keith and John Jones

    L-GRB S-GRBGRB afterglow 1-2 GRB GRB GRB GRB GRB GRB 030329L-GRBGRB080319B5.8GRB090429B 131.4

    GRB L-GRB GRB GRB L-GRB

    /

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  • 4/30

    Miljenko emelji/

    earth magnetosphere

    magnetic reconnection--

  • 5/30

    SOHO/ESA and NASAMiljenko emelji/

    2000 2014 The Cluster magnetopausemagnetotail 2008 2 THEMIS magnetospheric substorms

    magnetic flux1957 P. Sweet E. Parker

    microscopic resistivity H. Petschek 1964

    analytical models

  • 6/30

    TIARA

    /Miljenko emelji//

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  • 7/30

    : Hayashi Track

    Martin Rees

    Pierre-Simon LaplaceHermann von Helmholtz

    10 K~100 K

    105 50

    1013 g

    cm3

    hydrostatic equilibrium 5 au protostar

    shock wave2,000 Kpre-main sequence star

  • 8/30

    -PP I

    luminosity

    -3-proton-proton chain-12 -14 CNO cycle-12 -

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  • 9/30

    inflation 103610

    32 1078 20 causally connected

    1998 Supernova Cosmology Project Mount Stromlo Brian Schmidt (High-Z Supernova Search Team )

    68

    quintessence /

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  • 10/30

    (Casimir effect) 1948

    /

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  • 11/30

    SI unitsJ1 J = 1 m2 kg s2

    W1 W = 1 J s-1

    1 = 1 kW h

    calorie1 4.2 J1

    = 1

    K k T k = 1.380 6488 10-23 J K-1

    600 60 kg

    9.8 m s-2

    101

    eV1 eV = 1.602 176 565 1019 J

    1.5

    = h = 6.626 069 57 10-34 J s

    =

    500 nm1 nm = 10-9 m 2.5 eV

    13.6 eV

    me = 9.109 382 91 10-31

    kg mec2 = 0.510 998 928 MeV

    1 MeV = 106 eVc

    mp = 1.672 621 777 x 10-27

    kg 938.272 046 MeV

    1836

    1020 eV

    TNT equivalent 1 = 4.184 109 J

    15,000 6.3 1013 J

    1 km

    30 km s-1 4.5 1020 J 1011

    1

    1.367 kW m-2

    X

    1 kW

  • 12/30

    /

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    L = 3.845 1026 W

    4r2 r 1 au

    M = 1.989 1030 kg

    0.7%

    100 1044 J

    1000

    1 ms 10 s

    1.4 M 15 km 1 s 1040 J

    T 10

    108 Tmagnetar 1010 T

    1025

    J m-3

    1000

    1046 J 99%

    1%

  • 13/30

    //

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  • 14/30

    2005

    ppmIPCC

    280 ppm 395 ppm

    []

    light water reactor LWR-235-235 2050 LWR

    -238 -238 -235 100 -238 -239-239 betafissile-239fertile-238 -239 breeding 600

    -232-232 90 142 -even-even nuclide-232 -233-233-233 - 92 141 -233 2 3 -233 2.49

  • 15/30

    LWR

    MSBR

    2-232 -233-233 -233 0.49 -232 -233

    3 4 600 2000 monazite

    []

    LWR molten salt breeder reactor MSBR MSBR LWR -238 -235

    -239 -238

    -239UF6-238-235 pyroprocessing-239

  • 16/30

    30 300

    -239 PuF3/NaF/BeF2//molten salt converter reactor MSCRThF4/-232-233-239 LWR

    LWR LWR MSBR -233

    -233 -233 ///-233MSCR-239MSBR-233 10-5

    MSBR 300 MSBR

    -233 -233 -232 -232 -233 -232 gamma ray-233/-232 -232 -233 MSBR

  • 17/30

    MSBR

    NaAc/KAc

    MSBR/ N-232/

    []

    MSBR

  • 18/30

    MSBR MSBR MSBR

    MSBR

    MSBR MSBR

    Oak Ridge National Laboratory

    MSBR

    Westinghouse AP 1000 MSBR MSBR

  • 19/30

    Bergman et al. 2005

    Crankberry

    [ ]

    volatile organic compounds; VOCsVOCs

    2000

    crankberrycrankberry

    300

    oC

    ecocoal 500 oCbiocharcarbon-negative

  • 20/30

    /

    300C 10 500

    C 11 Scanning

    Electron MicroscopeSEM 10

    20 300C

    500C

    BET

    Brunauer-Emmett-Teller

    /460

    oC

    ///

  • 21/30

    2012 81226 70%()

    []

    21 ///

    /140

    ///

    integral fast reactorIFRtraveling wave reactorTWR :

    : http://www.greenmaster.org.tw/web/web_2a_1.php?kk=110

  • 22/30

    https://sites.google.com/a/asiaa.sinica.edu.tw/iaaq-on-web/

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  • 23/30

    :1950

    The U.S. Census Bureau

    2C

    450

    ppm

    50%www.port.ac.uk

    2 C

    46 250 2 C

    2007IPCC 0.7 C 2 C 2 C 4~5 C

    2 C2 2

  • 24/30

    RPeter Hannam/

    brisbanetimes.com.au

    2 2 C 36.5 C 2 4 2C

    1987 WCEDBrundtlandOur Common Future

    fossil fuel

  • 25/30

    50

    98% 20 200 10%~20% 20% 80% 80%

    1

    2 hydrogen economy

    3

  • 26/30

    4 -235 5% 95%

    -232 -233 30 300 -239

    5 carbon capture and sequestration CCStorrefaction

  • 27/30

    Henry Mhlpfordt

    CCS2012

    50

    internationalglobal2012 RIO+20

  • 28/30

    GDP

    Nature

    Blog NetworkWallpaperWeb

    +

    GDP

    20 1,000 130 8

    =

  • 29/30

    3050 10

    50

    ///

  • 30/30

    450 ppmppm =/ 2C

    https://sites.google.com/a/asiaa.sinica.edu.tw/iaaq-on-web/

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  • 11 (02)2366-5391 epo@asiaa.sinica.edu.tw SDSS J1004+4112 European Space Agency, NASA, Keren Sharon (Tel-Aviv University) and Eran Ofek (CalTech)

    10617 23-141 epo@asiaa.sinica.edu.tw

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  • 11 (02)2366-5391 epo@asiaa.sinica.edu.tw SDSS J1004+4112 European Space Agency, NASA, Keren Sharon (Tel-Aviv University) and Eran Ofek (CalTech)

    10617 23-141 epo@asiaa.sinica.edu.tw

    CC -- 3.0

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