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    VIRGOCosmos In Brief - Aktualní novinky vesmírného výzkumu v kostce
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    Earth and the Sun beyond the ISS solar arrays, photographed on July 23, 2017 over the north Pacific. Credit: NASA

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    In a Rare Pairing, a Venus-Like Planet Has Been Found Around a "Failed Star" | Science | Smithsonian
    http://www.smithsonianmag.com/...e-pairing-venus-planet-has-been-found-around-failed-star-180957124/

    The system offers clues to the way planets and moons form and may aid in the quest to find habitable worlds across the galaxy

    Astronomers using a gravitational magnifying glass have found a Venus-like planet orbiting a "failed star"—a massive but incredibly dim
    brown dwarf. This rarely seen pairing offers clues to the way planets and moons form, which may in turn help in the quest to find habitable
    worlds, whether they are Earth-like planets or life-friendly moons.

    Are Astronomers on the Verge of Finding an Exomoon? - Scientific American Blog Network
    https://blogs.scientificamerican.com/...rvations/are-astronomers-on-the-verge-of-finding-an-exomoon/

    It would be a huge discovery, but until they train the Hubble on a possible candidate, they won't know for sure—so stay tuned

    Alex Teachey : This morning David (Kipping) and I put out a paper on the arXiv that represents the culmination of years of work searching
    for the signature of exomoons in the population of stars examined by the Kepler Mission. After carefully analyzing an ensemble of the highest
    quality planetary transit signals, we have determined that exomoons appear to be quite rare in the inner regions of star systems (regions of
    space close to the host star). This finding was both remarkable and, frankly, a bit disappointing. https://arxiv.org/abs/1707.08563

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    A ještě přidám čerstvý SETIinst FB live: dnes "mladá krev" NASA Frontier Development Lab (FDL), hosted at the SETI Institute.

    https://www.facebook.com/SETIInstitute/videos/10155414100585535/

    FDL is an applied artificial intelligence research accelerator and public/private partnership between NASA Ames Research Center
    and the SETI Institute. The program tackles knowledge gaps in space science by pairing machine learning experts with astronomy and
    planetary science expertise. Interdisciplinary teams address tightly defined problems with meaningful application to the space program.

    Participants are set up in five teams consisting of four members:

    Planetary Defense: Long Period Comets
    Provide more warning time for long-period comet impacts by applying deep learning to meteor shower observations

    Planetary Defense: Radar 3D Shape Modeling
    Develop a methodology to automate the backlog of neo radar imagery that requires shape modeling – and also improve the resolution of the result

    Space Resources: Lunar Water & Volatiles
    Determine the location and most promising access points for vital lunar H2O, in terms of cost effectiveness and engineering constraints

    Space Weather: Solar-Terrestrial Interactions
    Improve understanding of solar influence on Earth’s magnetosphere and atmosphere

    Space Weather: Solar Storm Prediction
    Discovering new relationships and agents to help predict major solar events

    A sixth team comprised of undergraduate students will address AI and the space sciences by exploring the application
    of AI as a breakthrough capability for the space program, informed by the experience of FDL and its partner network.

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    Teď začínají!

    Tony Darnell / Deep Astronomy - Mercury: Bombarded by many tiny meteoroids

    https://www.pscp.tv/DeepAstronomy/1YpJkmbNmPVKj

    It has been known for a long time that Mercury, the innermost planet in the solar system does not have much of an atmosphere.
    This variable “exosphere” around Mercury has been detected several times and appears to contain numerous interesting chemical
    elements besides hydrogen. Chemicals such as potassium, sodium, oxygen and even water vapor also have been measured. Besides
    that, there also is seasonal variation in the dust/meteoroid environment of Mercury. The material varies with position on the
    planet and sometimes has a dawn–dusk asymmetry. But why? Where is the material in Mercury’s exosphere come from? Is it from
    the surface, or the blast from the Solar wind. A new analysis of comets suggests that these are the orgin of some features
    in Mercury’s exosphere.

    Join Tony Darnell and Carol Christian during Afternoon Astronomy Coffee on July 27, 2017 at 3PM Eastern (Daylight) Time as
    they discuss with Menelaus Sarantos and Diego Janches about their study of this fascinating planet.

    https://www.facebook.com/DeepAstronomy/videos/1434120169986890/
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    Half of the Milky Way comes from other galaxies | Science News
    https://www.sciencenews.org/article/half-milky-way-comes-other-galaxies

    Simulations suggest that galactic winds blew the material in from elsewhere

    New simulations suggest that nearly half the matter in the Milky Way may have been siphoned from the gas of other galaxies.
    That gas provides the raw material that galaxies use to build their bulk. The finding, scheduled to appear in the Monthly
    Notices of the Royal Astronomical Society, reveals a new, unexpected way for galaxies to acquire matter and could give
    clues to how they evolve.

    Galaxies trade gas | Science News
    https://www.youtube.com/watch?v=Opq0YATsKX8
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    Příběh tří hvězdných měst | ESO Česko
    http://www.eso.org/public/czechrepublic/news/eso1723/?lang

    Díky novým pozorováním, která pořídil dalekohled VST, se astronomům podařilo odhalit tři různé populace mladých stálic tvořících hvězdokupu
    v nitru Velké mlhoviny v souhvězdí Orion. Nečekaný výsledek přináší nový pohled na chápání procesu vzniku hvězdokup. Naznačuje totiž, že ke
    vzniku hvězd mohlo docházet v explozivních etapách, přičemž každá epizoda se odehrála mnohem rychleji, než se dříve myslelo.

    Širokoúhlá kamera OmegaCAM pracující na dalekohledu ESO/VST (VLT Survey Telescope) pořídila nové detailní a působivé záběry Velké mlhoviny
    v Orionu (Orion Nebula) a s ní spojené hvězdokupy mladých hvězd. Tato mlhovina je jednou z nejbližších oblastí s probíhajícím vznikem malých
    i velkých hvězd a nachází se ve vzdálenosti asi 1 350 světelných let od Země.

    Zooming in on the Orion Nebula | ESO Česko
    http://www.eso.org/public/czechrepublic/videos/eso1723b/

    Zooming in on the Orion Nebula
    https://www.youtube.com/watch?v=Rkg5RXxlxuk
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    Has Cassini found a universal driver for prebiotic chemistry at Titan? / Cassini-Huygens / Space Science / Our Activities / ESA
    http://www.esa.int/...-Huygens/Has_Cassini_found_a_universal_driver_for_prebiotic_chemistry_at_Titan

    The international Cassini-Huygens mission has made a surprising detection of a molecule that is
    instrumental in the production of complex organics within the hazy atmosphere of Saturn’s moon Titan.

    Titan boasts a thick nitrogen and methane atmosphere with some of the most complex chemistry seen in the Solar System.
    It is even thought to mimic the atmosphere of early Earth, before the build-up of oxygen. As such, Titan can be seen
    as a planet-scale laboratory that can be studied to understand the chemical reactions that may have led to life on Earth,
    and that could be occurring on planets around other stars.

    In Titan’s upper atmosphere, nitrogen and methane are exposed to energy from sunlight and energetic particles in Saturn’s
    magnetosphere. These energy sources drive reactions involving nitrogen, hydrogen and carbon, which lead to more complicated
    prebiotic compounds.

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    Using powerful Dark Energy Camera, scientists reach the cosmic dawn | EurekAlert! Science News
    https://www.eurekalert.org/pub_releases/2017-07/asu-upd072617.php

    Arizona State University astronomers Sangeeta Malhotra and James Rhoads, working with international teams in Chile and China,
    have discovered 23 young galaxies, seen as they were 800 million years after the Big Bang. The results from this sample have
    been recently published in the Astrophysical Journal.

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    Giant Radio Telescope Scaled Back to Contain Costs - Scientific American
    https://www.scientificamerican.com/article/giant-radio-telescope-scaled-back-to-contain-costs/

    Crowding antennas closer together may affect the Square Kilometer Array's ability to observe the early Universe

    Designs for the world’s largest radio telescope have been scaled back to save money—a decision that astronomers
    say could affect its ability to peer deep into the Universe’s past.

    The Square Kilometre Array (SKA), a telescope 50 times more sensitive than current instruments, is expected to cost
    billions of dollars. Its final design calls for around 2,000 radio dishes in Africa, together with up to one million
    antennas in Australia, that will have a total light-collecting area of roughly 1 square kilometre—hence the project's
    name.

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    Galactic David and Goliath | ESA/Hubble
    http://www.spacetelescope.org/news/heic1712/

    The gravitational dance between two galaxies in our local neighbourhood has led to intriguing visual features in both as witnessed in this new
    NASA/ESA Hubble Space Telescope image. The tiny NGC 1510 and its colossal neighbour NGC 1512 are at the beginning of a lengthy merger, a crucial
    process in galaxy evolution. Despite its diminutive size, NGC 1510 has had a significant effect on NGC 1512’s structure and amount of star formation.

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    The Making of a Pre-Planetary Nebula
    http://aasnova.org/2017/07/26/the-making-of-a-pre-planetary-nebula/

    The gas expelled by dying stars gets twisted into intricate shapes and patterns as
    nebulae form. Now a team of researchers might have some answers about how this happens.

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    Čerstvý DAH s úžasným hostem!!
    Can we really travel to other stars? Can Breakthrough Starshot meet its goals?

    Breakthrough Starshot aims to demonstrate proof of concept for ultra-fast light-driven nano-crafts, and lay the foundations
    for a first launch to Alpha Centauri within the next generation. Along the way, the project could generate important supplementary
    benefits to astronomy, including solar system exploration and detection of Earth-crossing asteroids.

    Join us this week with Dr. Avi Loeb the Chairman of the Breakthrough Starshot Advisory Committee as we discover the new projects
    and initiatives that are paving the way to travel to the nearest exoplanetary systems.

    From the First Star to Milkomeda Kindle Edition - https://www.amazon.com/dp/B014GCTXF0

    Breakthrough Starshot Updates w/ Avi Loeb
    https://www.youtube.com/watch?v=Aja7eH3faOE


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    Apollo Asteroid 2017 BS5 just missed the Earth safely at 19:19 UTC at 3.1 times the distance to the
    Moon, at a speed (relative to the Earth) of 5.8 km/s. It is estimated to be 28 - 90 meters in size.

    http://minorplanetcenter.net/db_search/show_object?object_id=2017%20BS5

    https://www.youtube.com/watch?v=mEp0ON2XcJ4
    XCHAOS
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    VIRGO: a tady praktický nápad, jak s tím komunikovat:
    SailBeam: A Conversation with Jordin Kare
    https://www.centauri-dreams.org/?p=38164
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    Massive star's dying blast caught by rapid-response telescopes
    https://phys.org/news/2017-07-massive-star-dying-blast-caught.html

    In June 2016, an international team of 31 astronomers, led by the University of Maryland's Eleanora Troja and including
    Arizona State University's Nathaniel Butler, caught a massive star as it died in a titanic explosion deep in space.

    The blast of the dying star released in about 40 seconds as much energy as the Sun releases over its entire lifetime,
    all focused into a tight beam of gamma rays aimed by chance toward Earth.

    The team's findings, reported in the scientific journal Nature, provide strong evidence for one of two competing models
    for how gamma-ray bursters (GRBs) produce their energy.

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    Comet C2015 ER61 Panstars taken by Salvador Torres Morales on July 26, 2017 @ San Juan, Puerto Rico.

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    Reaching for the Stars, Breakthrough Sends Smallest-Ever Satellites into Orbit - Scientific American
    https://www.scientificamerican.com/...-stars-breakthrough-sends-smallest-ever-satellites-into-orbit/

    Despite technical glitches and regulatory hurdles, nanosatellite swarms could someday be the cornerstone for revolutionary
    interplanetary or even interstellar space-science missions.

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    Space in Images - 2017 - 06 - Euclid flagship mock galaxy catalogue
    http://www.esa.int/spaceinimages/Images/2017/06/Euclid_flagship_mock_galaxy_catalogue

    ESA’s Euclid mission, to be launched in 2020, is set to provide a unique window into the evolution of our 13.8 billion year-old Universe.
    It will map the history of the Universe’s structure by studying billions of galaxies. In this way, it will be able to probe the nature of
    invisible dark matter, which makes itself known by the forces it exerts on ordinary matter, and the mysterious dark energy that drives
    the accelerating expansion of the Universe.

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    Mars rover spots clouds shaped by gravity waves | Science | AAAS
    http://www.sciencemag.org/news/2017/03/mars-rover-spots-clouds-shaped-gravity-waves

    NASA’s Curiosity rover usually keeps its instruments firmly focused on Mars’s ground, zapping grit with its laser or drilling
    cores in bedrock. But every few days, the SUV-sized robot, like any good dreamer, shifts its sights upward to the clouds.

    Well into its fifth year, the rover has now shot more than 500 movies of the clouds above it, including the first ground-based
    view of martian clouds shaped by gravity waves, researchers reported here this week at the Lunar and Planetary Science Conference.
    (Gravity waves, common atmospheric ripples on Earth that result from air trying to regain its vertical balance, should not be
    confused with gravitational waves, cosmological ripples in spacetime.) The shots are the best record made so far of a mysterious
    recurring belt of equatorial clouds known to influence the martian climate.



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