New experiments are scheduled to arrive to the International Space Station with the launch of Orbital ATK’s Cygnus cargo spacecraft on Tuesday. These science payloads will study fires, meteors, regolith, adhesion and 3-D printing in microgravity.
What is it? What happens when you set a fire in space? The Spacecraft Fire Experiment-I (Saffire-I) will find out!
How does it work? This experiment will intentionally light a large-scale fire inside an empty Cygnus resupply vehicle after it leaves the space station and before it re-enters Earth’s atmosphere.
Why is it important? The Saffire-I investigation provides a new way to study a realistic fire on an exploration vehicle, which has not been possible in the past because the risks for performing studies on manned spacecraft are too high. Instruments on the returning Cygnus will measure flame growth, oxygen use and more.
What is it? A less heated investigation, Meteor Composition Determination (Meteor) will enable the first space-based observations of meteors entering Earth’s atmosphere from space. Meteors are somewhat rare and are difficult to monitor from the ground because of Earth’s atmosphere.
How does it work? This investigation uses high-resolution video and image analysis of the atmosphere to acquire the physical and chemical properties of the meteoroid dust, such as size, density and chemical composition.
Why is it important? Studying the elemental composition of meteors adds to our understanding of how the planets developed, and continuous measurement of meteor interactions with Earth’s atmosphere could spot previously unforeseen meteors.
What is it? A more “grounded” investigation will study the properties and behavior of regolith, the impact-shatterd “soil” found on asteroids, comets, the moon and other airless worlds.
How does it work? The Strata-1 experimental facility exposes a series of regolith simulants, including pulverized meteorite material, glass beads, and regolith simulants composed of terrestrial materials and stored in multiple transparent tubes, to prolonged microgravity on the space station. Scientists will monitor changes in regolith layers and layering, size sorting and particle migration via video images and close examination after return of the samples to Earth.
Why is it important? The Strata-1 investigation could give us new answers about how regolith behaves and moves in microgravity, how easy or difficult it is to anchor a spacecraft in regolith, how it interacts with spacecraft and spacesuit materials and other important properties.
What is it? From grounded to gripping, another investigation launching takes inspiration from small lizards. Geckos have specialized hairs on their feed called setae that let them stick to vertical surfaces without falling, and their stickiness doesn’t wear off after repeated use. The Gecko Gripper investigation tests a gecko-adhesive gripping device that can stick on command in the harsh environment of space.
How does it work? The gripping device is a material with synthetic hairs much like setae that are much thinner than a human hair. When a force is applied to make the tiny hairs bend, the positively charged part of a molecule within a slight electrical field attracts the negatively charged part of its neighbor resulting in “stickiness.” Once adhered, the gripper can bear loads up to 20 pounds. The gripper can remain in place indefinitely and can also be easily removed and reused.
Why is it important? Gecko Grippers have many applications on current and future space missions, including acting as mounting devices for payloads, instruction manuals and many other small items within the space station. In addition, this technology enables a new type of robotic inspection system that could prove vital for spacecraft safety and repair.
What is it? From adhesion to additive, the new Additive Manufacturing Facility (AMF) will also launch on the flight. Additive manufacturing (3D printing) is the process of building a part layer-by-layer, with an efficient use of the material.
How does it work? The AMF uses this technology to enable the production of components on the space station for both NASA and commercial objectives.
Why is it important? Parts, entire experiments and tools can be created on demand with this technology. The ability to manufacture on the orbiting laboratory enables on-demand repair and production capability, as well as essential research for manufacturing on long-term missions.
These sticky, stony and sizzling investigations are just a sampling of the wide range of science conducted on the orbiting laboratory that benefits future spaceflight and provides Earth-based benefits as well.
You can watch the launch of Orbital ATK’s Cygnus spacecraft online. Stream live coverage starting at 10 p.m. EDT on March 22. Launch is scheduled for 11:05 p.m., which is the start of a 30-minute launch window.
Watch online: nasa.gov/nasatv
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Before US astronaut Scott Kelly returned from his year-long mission aboard the International Space Station, he shared photos of his very last sunrise in space.
I think you need to see the full photos, in all their glory:
Source
The guy that made the real life version of Mjolnir has crafted another real version of a fictional weapon: a functioning lightsaber. Allen Pan made the fabled Jedi weapon out of an igniter, butane, methanol and acetone which creates a focused pillar of flame. It even makes real sounds! Now, of course this isn’t a conventional lightsaber and you shouldn’t try this at home but it’s awesome that somebody finally accomplished something close! GIVE THIS MAN A GRANT.
On 15 March 2009, when the space shuttle Discovery was about to launch into orbit, a wounded bat grabbed ahold of its fuel tank to become an officially recognised stowaway, despite safeguards that are supposed to keep such things from happening. He was a bat pioneer hell-bent on glory, or so we choose to believe.
So what exactly happened here? The story started on a mild Sunday evening at NASA’s Kennedy Space Centre, as crew members began prepping to launch the STS-119 mission. As the crew made their rounds checking for icy buildup on theDiscovery fuel tanks and whatnot, they were shocked to find a small free tail bat clinging to the tank’s foam insulation.
“Based on images and video, a wildlife expert who provides support to the centre said the small creature was a free tail bat that likely had a broken left wing and some problem with its right shoulder or wrist,” NASA explained. Unfortunately, it did not appear to be wearing a tiny spacesuit at the time.
Astronomers Have a New Tool in the Search For Habitable Exoplanets
The quest for habitable alien worlds may get a whole lot easier. http://futurism.com/astronomers-have-a-new-tool-in-the-search-for-habitable-exoplanets/
Can we just take a moment to appreciate how incredible our Solar System is? Sure, pretty much everywhere other than our own planet is a deathtrap, with acid rain pouring down on Venus and storms three times the size of Earth swirling around Jupiter, but you don’t have to look too hard to find the unique beauty in our neighbouring planets and moons.
And with unique beauty comes… tourism! From the diamond-inspired cloud observatory of Venus to Jupiter’s aurorae-backed balloon ride, the design team from NASA’s Jet Propulsion Laboratory (JPL) have taken us back to the future with this new batch of retro space tourism posters.
The “Visions of the Future” series features seven original posters released this week, plus seven “Exoplanet Travel Bureau” posters that were published around this time last year. And these haven’t just been dreamt up by anyone - the designers behind the posters have been consulting with JPL scientists and engineers to come up with tourism scenarios that are as realistic as they are fantastical.
I should never have downloaded NASA’s Eyes. Now all I want to do is watch planets and galaxies all day.
Nor should I have checked out Experience Curiosity. Now I wanna cruise all over Mars.
Or the website where you can see the ISS (International Space Station) orbiting Earth in real time.
And yes, I linked all of those because I want everyone to join in the “oooh, shiny planets and galaxies!” :D
@geometrynerd, @ultranos
Solar Power Explorers
Inhabitat’s Week in Green: Paris climate talks, and more!
We pulled together the week’s top tech stories, just for you:
1. Formula E is planning the first racing series for driverless cars You read that right: Before every Formula E race, two autonomous vehicles will go head-to-headlights, in a race straight out of every Sci-Fi fan’s wildest dreams. via: @engadget
2. How Technology Will Transform Retirement Someday in the near future, being selfish and obsessed with technology might be qualities that senior citizens praise today’s Millennials for. All around the world, young people are hard at work creating technology that will take care of them when they’re older. via: The Wall Street Journal
3. Who’s going to fly those Amazon delivery drones? The short answer is, probably no one. Which is for the best, really. After all, the real reason we don’t have flying cars is because people are bad drivers. And adding a z axis would be like trying to navigate rush-hour traffic in midair. via: ZDNet
4. Wayfindr Is on a Quest to Optimize Cities for the Visually Impaired After a successful experiment at London’s Pimlico Station and a recently received grant of $1 million from Google.org, this company wants to change the way visually impaired commuters navigate the London Underground. via: @wired
Researchers from the University of Tehran unveiled the new generation of their humanoid robot called Surena III. The robot stands 1.9 meters tall (6.2 feet) and weighs 98 kilograms (216 lb). It is also equipped with numerous sensors that includes a Kinect-based 3D vision module, and is powered by 31 servomotors. Surena III is capable of walking up and down ramps and stairs, and along irregular surfaces up to a speed of .2m/s (about 8 inches a second).
So perhaps the robot won’t be running any marathons anytime soon, but it’s still pretty remarkable. Plus, the robot was designed for other purposes besides speed.
Read more at: http://futurism.com/links/meet-surena-iii-university-of-tehran-unveils-its-new-humanoid-robot/