Category Archives: Space participation

Mars One update – Jan.2015

Here’s the latest Mars One newsletter : The year 2014 through the eyes of Mars One. It includes items about

Volunteer ‘Disk Detectives’ classify over a million possible planetary habitats

A citizen-science project with NASA’s WISE (Wide-field Infrared Survey) mission has been a quite successful:

Volunteer ‘Disk Detectives’ Top 1 Million Classifications
of Possible Planetary Habitats

A NASA-sponsored website designed to crowdsource analysis of data from the agency’s Wide-field Infrared Survey Explorer (WISE) mission has reached an impressive milestone. In less than a year, citizen scientists using DiskDetective.org have logged 1 million classifications of potential debris disks and disks surrounding young stellar objects (YSO). This data will help provide a crucial set of targets for future planet-hunting missions.

Volunteers using DiskDetective.org, a NASA-sponsored citizen science website to find potential planetary nurseries, have made 1 million classifications in less than a year. Goddard astrophysicist Marc Kuchner, the project’s principal investigator, explains how it works. Image Credit: NASA’s Goddard Space Flight Center/S. Wiessinger.
Download this video in HD formats from NASA Goddard’s Scientific Visualization Studio

“This is absolutely mind-boggling,” said Marc Kuchner, an astrophysicist at NASA’s Goddard Space Flight Center in Greenbelt, Maryland, and the project’s principal investigator. “We’ve already broken new ground with the data, and we are hugely grateful to everyone who has contributed to Disk Detective so far.”

Combing through objects identified by WISE during its infrared survey of the entire sky, Disk Detective aims to find two types of developing planetary environments. The first, known as a YSO disk, typically is less than 5 million years old, contains large quantities of gas, and often is found in or near young star clusters. The second planetary habitat, known as a debris disk, tends to be older than 5 million years, holds little or no gas, and possesses belts of rocky or icy debris that resemble the asteroid and Kuiper belts found in our own solar system. Vega and Fomalhaut, two of the brightest stars in the sky, host debris disks.

Planets form and grow within disks of gas, dust and icy grains surrounding young stars. The particles absorb the star’s light and reradiate it as heat, which makes the stars brighter at infrared wavelengths — in this case, 22 microns — than they would be without a disk.

Computer searches already have identified some objects seen by the WISE survey as potential dust-rich disks. But software can’t distinguish them from other infrared-bright sources, such as galaxies, interstellar dust clouds and asteroids. There may be thousands of potential planetary systems in the WISE data, but the only way to know for sure is to inspect each source by eye.

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The marked asymmetry of the debris disk around the star HD 181327 (shown here in a Hubble image) suggests it may have formed as a result of the collision of two small bodies. Disk Detective aims to discover many other stellar disks using volunteer classifications of data from NASA’s WISE mission. Image Credit: NASA, ESA, G. Schneider (U. of Arizona), HST/GO 12228 Team

Kuchner recognized that searching the WISE database for dusty disks was a perfect opportunity for crowdsourcing. He worked with NASA to team up with the Zooniverse, a collaboration of scientists, software developers and educators who collectively develop and manage citizen science projects on the Internet.

At DiskDetective.org, volunteers watch a 10-second “flip book” of a disk candidate shown at several different wavelengths as observed from three different telescopes, including WISE. They then click one or more buttons that best describe the object’s appearance. Each classification helps astronomers decide which images may be contaminated by background galaxies, interstellar matter or image artifacts, and which may be real disks that should be studied in more detail.

In March 2014, just two months after Disk Detective launched, Kuchner was amazed to find just how invested in the project some users had become. Volunteers complained about seeing the same object over and over. “We thought at first it was a bug in the system,” Kuchner explained, “but it turned out they were seeing repeats because they had already classified every single object that was online at the time.”

Some 28,000 visitors around the world have participated in the project to date. What’s more, volunteers have translated the site into eight foreign languages, including Romanian, Mandarin and Bahasa, and have produced their own video tutorials on using it.

Many of the project’s most active volunteers are now joining in science team discussions, and the researchers encourage all users who have performed more than 300 classifications to contact them and take part.

One of these volunteers is Tadeáš Černohous, a postgraduate student in geodesy and cartography at Brno University of Technology in the Czech Republic. “I barely understood what scientists were looking for when I started participating in Disk Detective, but over the past year I have developed a basic sense of which stars are worthy of further exploration,” he said.

Alissa Bans, a postdoctoral fellow at Adler Planetarium in Chicago and a member of the Disk Detective science team, recalls mentioning that she was searching for candidate YSOs and presented examples of what they might look like on Disk Detective. “In less than 24 hours,” she said, “Tadeáš had compiled a list of nearly 100 objects he thought could be YSOs, and he even included notes on each one.”

Speaking at a press conference at the American Astronomical Society meeting in Seattle on Tuesday, Kuchner said the project has so far netted 478 objects of interest, which the team is investigating with a variety of ground-based telescopes in Arizona, California, New Mexico, Argentina and Chile. “We now have at least 37 solid new disk candidates, and we haven’t even looked at all the new telescope data yet,” he said.

Disk Detective currently includes about 278,000 WISE sources. The team expects to wrap up the current project sometime in 2018, with a total of about 3 million classifications and perhaps 1,000 disk candidates. The researchers then plan to add an additional 140,000 targets to the site.

“We’ve come a long way, but there’s still lots and lots more work to do — so please drop by the site and do a little science with us!” added Kuchner.

387827main_wise20090018-full[1]WISE observatory

WISE has made infrared measurements of more than 745 million objects, compiling the most comprehensive survey of the sky at mid-infrared wavelengths currently available. With its primary mission complete, the satellite was placed in hibernation in 2011. WISE was awoken in September 2013, renamed the Near-Earth Object Wide-field Infrared Survey Explorer (NEOWISE), and given a new mission to assist NASA’s efforts in identifying the population of potentially hazardous near-Earth objects (NEOs).

Facilities involved in follow-up studies of objects found with Disk Detective include Apache Point Observatory in Sunspot, New Mexico; Palomar Observatory on Palomar Mountain, California; the Fred Lawrence Whipple Observatory on Mount Hopkins, Arizona; the Leoncito Astronomical Complex in El Leoncito National Park, Argentina; and Las Campanas Observatory, located in the Atacama Desert of Chile.

NASA is exploring our solar system and beyond to understand the universe and our place in it. We seek to unravel the secrets of our universe, its origins and evolution, and search for life among the stars. Today’s announcement shares the discovery of our ever-changing cosmos, and brings us closer to learning whether we are alone in the universe.

Related Links

Fire destroys GreenHab facility at Mars Desert Research Station

An announcement from the Mars Society:

MDRS GreenHab Destroyed by Fire

The Mars Society regrets to announce the loss of the Mars Desert Research Station’s Fisher GreenHab to an accidental fire yesterday afternoon (Dec. 29th). There were no injuries to Crew 146, the four-person team currently using the MDRS facility outside Hanksville, Utah.

According to a Mars Society spokesperson, the Habitat, which includes crew work stations and living quarters, did not sustain any damage, with the fire being limited to the GreenHab. Following MDRS emergency guidelines, crew members were able to safely put out the fire.

The Fisher GreenHab was the second GreenHab built at the Utah station. An earlier prototype structure was lost during the first MDRS field season due to heavy winds. It served as a model for the second generation GreenHab, a larger and more permanent unit built by Gary Fisher in 2003.

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Interior of MDRS GreenHab prior to fire

For five seasons, the facility functioned as an experimental closed loop water recycling system, but testing ceased when it was concluded that the system was too small to maintain the Habitat with six full-time crew members.

In 2009 the GreenHab was refitted for use as a greenhouse. Under the direction of GreenHab Coordinator Nick Orenstein, it was successfully utilized for three seasons to grow crops for the MDRS crews. A variety of important experiments were scheduled to be carried out in the GreenHab during the current 2014-15 field season.

“We will work to erect a new GreenHab as soon as possible in order to conduct these critical research projects. With the help of our friends and supporters, I’m confident the Mars Society will be able to raise the necessary funds to replace the GreenHab in the very near future,” said MDRS Director Shannon Rupert.

To contribute to the Mars Society’s “Rebuild the GreenHab” Fund, please click here.

 

Commercial Crew Program 2015 Children’s Artwork Calendar now available

I mentioned here earlier the call by NASA’s Commercial Crew Program for artwork submissions for possible inclusion in a 2015 CCP calendar. The calendar can now be downloaded and printed:

CommercialCrewCalendar_ChildrensArt

DreamUP! – Raising money to send student projects to space

The DreamUP! program created by NanoRacks and FISE ( Foundation for International Space Education) aims to get STEM projects onto the International Space Station:

DreamUp: NanoRacks Breaking New Ground in STEM Education

Houston, TX—December 19th, 2014 – DreamUp, powered by NanoRacks, is a nonprofit organization now providing a place for student project teams to raise required funds to fly a science experiment to the International Space Station (ISS).

The goal of DreamUp is to help students integrate into the commercial space community by delivering their experiments via NanoRacks to the U.S. National Laboratory onboard the ISS.

“Whether you are a large company or a high school student, space is complex…and although it isn’t quite as expensive as in the past, it’s still outside of the average student budget” says DreamUp Director Patricia Mayes. “Our platforms give access to the frontlines of space research and we see all of our educational payloads as a contribution to the space industry. We are thrilled to see NASA and the ISS Program Office supporting commercial and student research on Station.”

DreamUp allows junior high, high school, and undergraduate college students to take advantage of NanoRacks’ three standardized research platforms on the International Space Station by establishing an account for each team to hold donations towards the costs. These platforms include: NanoLabs, and the NanoRacks Platform-3 and Centrifuge. Find out more about NanoRacks’ standardized research platforms onboard the ISS.

The first team to join the revamped DreamUp program calls themselves “Chicks in Space.” This team, made up of three sisters, is on the search for more science than they receive in a regular school day. The sisters, Lillith, MaryAnn, and Adia, invented a microgravity plant growing chamber named ‘The Garden of E.T.O.N. (Extra Terrestrial Organic Nutrition). They placed as semi-finalists in a 2013 National STEM contest and now want to test their project on the ISS. The Garden of E.T.O.N. uses centrifuge to water the plants in space.

http://vimeo.com/114300027

The girls have raised $1,200 out of a required $15,000 to get to space. To learn more about Chicks’ in Space experiment, check out their experiment.com page.

To further engage space youth, students across the world now have an opportunity to report where they spot the ISS flying over them, and tweet their story with the hashtag #ISSDreamUp for the chance to win a prize each month from DreamUp and NanoRacks.

For more information on DreamUp student projects and how to spot the ISS, please visit: www.unitedspaceschool.org/dreamup/

Download the full press release and further press inquiries, please contact Abby Dickes at 202 750 0914.

About NanoRacks, LLC:
NanoRacks LLC was formed in 2009 to provide commercial hardware and services for the U.S. National Laboratory onboard the International Space Station via a Space Act Agreement with NASA. NanoRacks’ main office is in Houston, Texas, right alongside the NASA Johnson Space Center. The Business Development office is in Washington, DC. The Company seeks to democratize outer space utilization by owning and marketing its own family of research equipment and by providing low-cost, high quality services in low-earth orbit and beyond.

To date over 200 payloads have been deployed by the Company on the International Space Station and our customer base includes the European Space Agency (ESA) the German Space Agency (DLR,) the American space agency (NASA,) US Government Agencies, Planet Labs, Urthecast, Space Florida, NCESSE, Virgin Galactic, pharmaceutical drug companies, and organizations in Vietnam, UK, Romania and Israel. Our customer base has propelled NanoRacks into a leadership position in understanding the emerging commercial market for low-earth orbit utilization.