Tag: Science

  • Astronomy Picture of the Day | Spectacular VISTA of the Tarantula

    [Click to hugely enarachnidate, or grab the atomically-mutated, 130 Mb, 9000 x 12000 pixel megaspider version here. But be you fairly warned: you’ll lose your afternoon looking at it.]

    That is a new image of the Tarantula Nebula from the European Southern Observatory’s VISTA survey telescope in Chile. The telescope can see in the near-infrared, just outside the range of our human vision, and is being used to map a big chunk of the southern sky.

    The Tarantula is a sprawling star-forming region in the Large Magellanic Cloud, a small companion galaxy to our own Milky Way Galaxy. Of course, “small” is a matter of perspective; the LMC is still tens of thousands of light years across and has several billion stars in it. From its distance of 180,000 light years, the LMC appears as a smudge in the sky to the unaided eyes of southern observers.

    In astronomy terms the image above is huge; it covers a square degree of sky, several times the area of the full Moon! However, in real terms, if you lived in the southern hemisphere and went outside on a clear night, you could block out the entire region of the picture with the tip of one finger held at arm’s length.

    But VISTA’s 4-meter mirror has fine vision, and the image is crammed with detail. It’s hard to see in the embedded image above because it is compressed wildly to have any hope of letting y’all see it here. The higher-resolution images, however, are simply spectacular!

    And while it’s crammed with stars, gas, and dust, I didn’t pick it randomly. It has one other object in it of note: Supernova 1987A, an exploded star whose light reached us on February 23, 1987. It was, for a few shining moments, among the brightest objects in the entire Universe… but now is lost in a sea of stars, in a small section of one image of a small galaxy.

    The Tarantula Nebula is a forbidding object. It’s well over 600 light years across, has millions of times the Sun’s mass worth of gas jammed into it, and is forming stars so furiously that astronomers think it may actually be creating a globular cluster, a spherical ball of hundreds of thousands of stars. You may have heard of the Orion Nebula, one of the largest and brightest of all nebulae in the Milky Way. Well, the Tarantula is thousands of times more luminous; if it were as far away as the Orion Nebula, the Tarantula would be bright enough to cast shadows on the ground!

    VISTA will eventually map out 184 square degrees of the sky, which is truly an enormous swath of the sky at this resolution. It will guide astronomers for years to come, giving us a highly-detailed and, yes, beautiful map of stars, galaxies, and nebulae… and best of all, stuff we’re not even aware of yet. Big surveys always help us piece things together, put the details into perspective.

    But oh, sometimes, the details themselves are worth gawking at.

  • Astronomy Picture of the Day | The Not So Quiet Sun

    The Not So Quiet Sun
    Credit: NASA / Goddard / SDO AIA Team

    Explanation: After a long solar minimum, the Sun is no longer so quiet. On August 1, this extreme ultraviolet snapshot of the Sun from the Solar Dynamics Observatory captured a complex burst of activity playing across the Sun’s northern hemisphere. The false-color image shows the hot solar plasma at temperatures ranging from 1 to 2 million kelvins. Along with the erupting filaments and prominences, a small(!) solar flare spawned in the active region at the left was accompanied by a coronal mass ejection (CME), a billion-ton cloud of energetic particles headed for planet Earth. Making the 93 million mile trip in only two days, the CME impacted Earth’s magnetosphere, triggering a geomagnetic storm and both northern and southern auroral displays.


  • Caring for Animals May Have Shaped Human Evolution

    Little girl kissing a Golden Retriever puppy. Credit: Dreamstime.

    Little girl kissing a Golden Retriever puppy. Credit: Dreamstime.

    Our love of all things furry has deep roots in human evolution and may have even shaped how our ancestors developed language and other tools of civilization.

    This “animal connection” compelled humans to learn about and care for fellow creatures, said Pat Shipman, a paleoanthropologist at Penn State University. She added that the behavior seems highly abnormal for other animals on the rare occasions that, say, captive tigers nurture pigs or vice versa.

    “The animal connection runs through the whole [human history] and connects the other big evolutionary leaps, including stone tools, language and domestication,” Shipman explained. “Instead of being isolated discoveries, there’s a theme here. It’s very deep and very old.”

    Such nurturing behavior also paid off when humans learned to harness animals as living tools rather than just as food or companions, as detailed in the August 2010 issue of the journal Current Anthropology. That allowed people to essentially use the evolutionary advantages of dogs, cats, horses and other animals for themselves.

    The seemingly unique human tendency still persists in modern societies – for instance, more U.S. households have pets than have children.

    “You see homeless people on the streets with pets, and people in dire circumstances keeping pets,” Shipman told LiveScience. “That suggests there’s something humans get out of it, which is pretty old.”

    Sticks, stones and words

    Humans may have begun honing the animal connection after they made the leap from prey (think saber-tooth tigers sinking their fangs into our ancestors) to competitive hunter. That change grew from the development of tools and weapons (to defend oneself) starting around 2.6 million years ago.

    “Once you undergo that funny ecological transition that hardly any other animal has made, you have double the advantage if you become extremely alert and extremely observant of what other animals are doing, where they are, how they move, how they communicate with each other,” Shipman said.

    Next, the need to communicate that knowledge about the behavior of prey animals and other predators drove the development of symbols and language around 200,000 years ago, Shipman suggests.

    For evidence, Shipman pointed to the early symbolic representations of prehistoric cave paintings and other artwork that often feature animals in a good amount of detail. By contrast, she added that crucial survival information about making fires and shelters or finding edible plants and water sources was lacking.

    “All these things that ought to be important daily information are not there or are there in a really cursory, minority role,” Shipman noted. “What that conversation is about are animals.”

    Of course, much evidence is missing, because “words don’t fossilize,” Shipman said. She added that language may have arisen many times independently and died out before large enough groups of people could keep it alive.

    Not just food

    The third major evolutionary leap took place around 40,000 years ago, when humans began domesticating animals by selectively breeding them for certain traits. But Shipman believes that the common explanation – humans wanted domesticated animals for food – has the story backwards.

    “It takes a very long time to domesticate animals,” Shipman said. “To actually do it for the motivation of getting food, you’d have to be planning at a ridiculous time depth.”

    Besides, killing a deer in the woods gets the same amount of meat as killing a deer in a fenced area, Shipman pointed out. In her view, something else must have driven humans to corral or keep animals in the first place.

    Furthermore, the earliest known domesticated animal was not a delicious porker, but man’s best friend. Shipman considers humans’ strong connection with animals, rather than a desire for food, as the more likely explanation for why people decided to keep dogs around.

    “If you look at all the domesticated animals, they often get eaten some time at the end of their life,” Shipman said. “But they also provide all these renewable resources all their lives.”

    Such resources include cow’s milk for sustaining babies and adults alike, as well as fur or wool for making clothing or other items. Domesticated animals also have helped humans pull or carry goods. They have revolutionized transportation and exploration, not to mention carried humans into battle and changed the face of warfare.

    Evolutionary shortcuts

    The animal connection’s transformation of formerly wild beasts into living tools gave humans a decisive edge in adapting to new environments and using the evolutionary advantages of animals for themselves.

    For instance, humans living in arid regions domesticated hardy camels as reliable mounts and cargo-carriers that could survive long periods without water. In other words, humans gained an evolutionary shortcut, Shipman said.

    “If you have a dog that can hunt, you don’t need to turn into a fast-moving animal with sharp teeth,” Shipman said. “If you’re storing grains [known to attract rodents], you don’t need to evolve claws and an intense focus to kill rats, [because] you have cats that do it for you.”

    Shipman eventually hopes to explore her hypothesis in a book. Until then, she continues to look for more prehistoric evidence.

    She also admits that some people simply don’t harbor any real affection for animals, which makes sense given natural variability in populations. But the widespread nurturing of animals across practically all cultures suggests something powerful cultivated the animal connection.

    “People who are really devoted to pets or raise livestock, a lot of them get this deep in their bones,” Shipman said.