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    VIRGOCosmos In Brief - Aktualní novinky vesmírného výzkumu v kostce
    VIRGO
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    ESA Science & Technology: The moving Martian bow shock
    http://sci.esa.int/mars-express/59387-the-moving-martian-bow-shock/

    As the energetic particles of the solar wind speed across interplanetary space, their motion is modified
    by objects in their path. A study, based on data from ESA's Mars Express orbiter, has thrown new light on
    a surprising interaction between the planet Mars and supersonic particles in the solar wind.

    VIRGO
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    A Trace of Galaxies at the Heart of a Gigantic Galaxy Cluster
    http://www.uni-heidelberg.de/...1_a-trace-of-galaxies-at-the-heart-of-a-gigantic-galaxy-cluster.html

    Very large yet faint galaxies have been found where no one would have expected them – in the middle of a giant galaxy cluster.
    Heidelberg astronomers discovered the extremely-low-density galaxies, known as ultra-diffuse galaxies, a find that is "both
    remarkable and puzzling", states Dr Thorsten Lisker. The research work was carried out by Carolin Wittmann in Dr Lisker’s team
    at the Centre for Astronomy of Heidelberg University (ZAH). The results have been published in the “Monthly Notices of RAS”.

    VIRGO
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    Astronomers detect methanol maser emission towards nearby galaxy
    https://phys.org/news/2017-08-astronomers-methanol-maser-emission-nearby.html

    Using the Australia Telescope Compact Array (ATCA), a team of astronomers has detected methanol emission toward a nearby galaxy known as NGC 4945.
    The finding, reported Aug. 18 in a paper published on arXiv.org, could be helpful in improving our understanding of star formation processes.

    Maser lines of methanol are commonly detected toward regions of high-mass star formation. They are very widespread in our Milky Way galaxy, as they
    have been detected in more than 1200 sources in the galaxy to date. Due to their rich spectrum of masing transitions, they could be used as a powerful
    tool for probing star formation regions.

    Scientists divide methanol masers into two groups: class I and class II. Class I masers are associated with the interaction of shocked gas with
    molecular clouds, driven by outflows or expanding H II regions, while class II masers are closely associated with young stellar objects.

    Now, a team of researchers led by Tiege McCarthy of the University of Tasmania in Hobart, Australia, reports the finding of a new class I methanol maser
    beyond the Milky Way, toward NGC 4945. Located nearly 12 million light years away from the Earth, NGC 4945 is a barred spiral galaxy in the constellation
    Centaurus, and one of the brightest galaxies of the Centaurus A/M83 Group (large, nearby group of galaxies).

    VIRGO
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    Proba-2’s partial eclipses
    https://www.youtube.com/watch?v=G_ojchBu5Rs


    HINODE Observations
    HINODE Observations | Total Solar Eclipse 2017
    https://eclipse2017.nasa.gov/hinode-observations

    Hinode's View of the Eclipse - First Pass
    https://www.youtube.com/watch?v=qzkoOKegB2Q
    VIRGO
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    Probably one of the most spectacular shots of the Eclipse 2017 at 94% with flight AA 9661 from Lewiston, Idaho

    Hello Reddit. I am the accidental photographer of this once in a lifetime shot. Thanks to whoever posted it earlier! : pics
    https://www.reddit.com/r/pics/comments/6v6y1k/hello_reddit_i_am_the_accidental_photographer_of/

    VIRGO
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    During the Eclipse GBO 20 Meter Telescope made many images
    of the Sun by scanning back and forth as the Eclipse progressed.

    http://greenbankobservatory.org/telescopes/20m/

    VIRGO
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    Uááá! Michael Shainblum - Moments right before totality. This morning was absolutely amazing. The total
    eclipse was by far one of the most incredible things I have ever witnessed. This is a single exposure.

    VIRGO
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    Great American Eclipse Flight first to witness totality 2017
    https://www.youtube.com/watch?v=mJhKUhL9ckc
    VIRGO
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    Solar eclipse 2017: NASA films space station flying past crescent sun - Business Insider
    http://www.businessinsider.com/solar-eclipse-space-station-nasa-photos-video-2017-8

    VIRGO
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    NASA : The 2017 Total Solar Eclipse
    https://www.youtube.com/watch?v=2VaTYQvB6so


    Multimedia | NOAA NESDIS
    https://www.nesdis.noaa.gov/content/multimedia

    Follow the Moon's Shadow across the Northern Hemisphere
    https://www.youtube.com/watch?time_continue=1&v=uZMvd-WZH1A
    VIRGO
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    Za pár minut:

    NASA TV Public-Education
    https://www.youtube.com/watch?v=wwMDvPCGeE0
    VIRGO
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    Join Cassini's end of mission celebration with CSIRO | Cosmos
    https://cosmosmagazine.com/society/join-cassini-s-end-of-mission-celebration-with-csiro

    CSIRO is giving 30 social media superstars the opportunity to celebrate the end
    of Cassini's 20 year mission with the team at Canberra Deep Space Complex.
    VIRGO
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    Could the total solar eclipse reveal a comet? | The Planetary Society
    http://www.planetary.org/blogs/guest-blogs/2017/20170816-solar-eclipse-comet.html

    We're less than a week away from one of the most talked-about astronomical events in many years - the "Great" North American solar eclipse! The Internet
    abounds with articles that discuss how eclipses work, give you a map of the path of totality for this eclipse, and even tell you about some of the planets
    you might see during the eclipse. This is all fantastically exciting, but there's one more possibility that would put the cherry on the eclipse cake...

    Now, be forewarned: the odds are heavily stacked against us, and the level of skill required for any individual to pull this off might range from "little"
    to "legendary." But with that in mind, there does exist a chance—a slim chance—that we could see a comet next to the Sun during the eclipse!

    VIRGO
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    Closer look at red supergiant Antares suggests convection not enough to remove surface material
    https://phys.org/news/2017-08-closer-red-supergiant-antares-convection.html

    A trio of researchers with Universidad Católica del Norte and the Max-Planck-Institut für Radioastronomie has found evidence that suggests
    that convection alone cannot account for the amount of material that is pulled from the surface of a red supergiant. In their paper published
    in the journal Nature, K. Ohnaka, G. Weigelt and K.-H. Hofmann describe their study of the supergiant Antares, what they found and why they
    now believe there is an unknown force pulling some parts of the star's surface into space. Gail Schaefer with Georgia State University offers
    a News & Views piece on the work done by the team in the same journal issue.

    VIRGO
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    Tuning Up RV: A Test Case at Tau Ceti
    https://www.centauri-dreams.org/?p=38293

    The new work on Tau Ceti, which analyzes radial velocity data showing four planets there,
    looks to be a step forward in this workhouse method for planetary detection. With radial velocity,
    we’re analyzing tiny variations in the movement of a star as it is affected by the planets around it.
    These are tiny signals, and the new Tau Ceti paper discusses working with variations as low as 30
    centimeters per second. It’s a good number, but we’ll want better — to detect a true Earth analog
    around a Sun-like star, we need to get this number into the 10 cm/s range.

    VIRGO
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    UTA astrophysicists predict Earth-like planet may exist in star system only 16 light years away - UTA News Center
    http://www.uta.edu/news/releases/2017/08/New%20planet%20Suman%20Satyal.php

    Astrophysicists at the University of Texas at Arlington have predicted that an Earth-like planet may be lurking in a star system just 16 light years away.

    The team investigated the star system Gliese 832 for additional exoplanets residing between the two currently known alien worlds in this system. Their
    computations revealed that an additional Earth-like planet with a dynamically stable configuration may be residing at a distance ranging from 0.25 to 2.0
    astronomical unit (AU) from the star.

    “According to our calculations, this hypothetical alien world would probably have a mass between 1 to 15 Earth's masses,” said the lead author Suman Satyal,
    UTA physics researcher, lecturer and laboratory supervisor. The paper is co-authored by John Griffith, UTA undergraduate student and long-time UTA physics
    professor Zdzislaw Musielak.

    The astrophysicists published their findings this week as “Dynamics of a probable Earth-Like Planet in the GJ 832 System” in The Astrophysical Journal.

    VIRGO
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    Woow! Dva dni před koncem CRF kampaně mají přes 80% financí!

    Laser SETI: First Ever All-Sky All-the-Time Search | Indiegogo
    https://www.indiegogo.com/projects/laser-seti-first-ever-all-sky-all-the-time-search-science#/

    LaserSETI
    https://vimeo.com/229780383
    VIRGO
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    Eclipse – Crossroads in the sky
    https://www.youtube.com/watch?v=B50qwsy3JyM
    VIRGO
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    Superhmotná černá díra požírá kosmickou medúzu | ESO Česko
    http://www.eso.org/public/czechrepublic/news/eso1725/?lang

    Přístroj MUSE pro dalekohled ESO/VLT objevil nový způsob zásobování černých děr hmotou

    Pozorování takzvaných 'medúzovitých galaxií' pomocí dalekohledu ESO/VLT odhalila dosud neznámý způsob, jakým superhmotné černé díry získávají hmotu.
    Zdá se, že mechanismus vzniku struktur tvořených plynem i hvězdami a připomínajících chapadla medúzy, které daly těmto objektům jméno, rovněž umožňuje,
    aby se plyn dostal až do centrální oblasti galaxie, stal se kořistí černé díry a jasně se rozzářil. Výsledky byly publikovány ve vědeckém časopise Nature.

    VIRGO
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    Can Radio Telescopes Find Axions?
    http://aasnova.org/2017/08/16/can-radio-telescopes-find-axions/

    In the search for dark matter, the most commonly accepted candidates are invisible, massive particles commonly referred to as WIMPs. But as time
    passes and we still haven’t detected WIMPs, alternative scenarios are becoming more and more appealing. Prime among these is the idea of axions.

    Axions are a type of particle first proposed in the late 1970s. These theorized particles arose from a new symmetry introduced to solve ongoing
    problems with the standard model for particle physics, and they were initially predicted to have more than a keV in mass. For this reason, their
    existence was expected to be quickly confirmed by particle-detector experiments — yet no detections were made.

    Today, after many unsuccessful searches, experiments and theory tell us that if axions exist, their masses must lie between 10-6–10-3 eV. This is
    minuscule — an electron’s mass is around 500,000 eV, and even neutrinos are on the scale of a tenth of an eV!

    But enough of anything, even something very low-mass, can weigh a lot. If they are real, then axions were likely created in abundance during the
    Big Bang — and unlike heavier particles, they can’t decay into anything lighter, so we would expect them all to still be around today. Our universe
    could therefore be filled with invisible axions, potentially providing an explanation for dark matter in the form of many, many tiny particles.

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