Category Archives: Space participation

Enterprise in Space announces orbiter design contest winners

An announcement from the National Space Society:

Enterprise in Space Announces Orbiter Design Contest Winners

Press Release: February 3rd 2015: Enterprise In Space (EIS), a project of the National Space Society, is excited to announce the winners of the Enterprise in Space Orbiter Design Contest.  The EIS project will take the Grand Prize winning design, which is a visualization of a science fiction concept, and make it science fact. EIS will do this by building the winning design and sending it into Earth orbit as the first real spacecraft bearing the name Enterprise.  This mission is also unique in that it will carry more than 100 student experiments into space and back.

Enterprise_In_Space5-1024x635[1]Grand Prize Winner by Stanley Von Medvey

The Grand Prize winning entry was submitted by Stanley Von Medvey, a concept artist who grew up in Chicago and currently resides in California’s San Francisco Bay Area.  Von Medvey draws inspiration from the fields of aerospace and science.  When asked why he entered the contest, Von Medvey responded, “I have a deep love for space exploration. Participation in spaceflight experiments as a student was formative, so I’d love to contribute to another young person’s learning in a similar way.”

EIS_sPestana2[1]First Prize Winner by Steven Pestana

The First Prize winner is Steven Pestana, a college senior at California State Polytechnic University-Pomona studying geology and physics with plans to pursue a career in planetary and space science research and exploration. Pestana  was motivated to entered the contest in order to “support science education through the EIS project.”

NSSJohnCortesISO4.JPG-1024x576[1]Second Prize Winner by John Cortes

The Second Prize winner is John Cortes, a first-year graduate student at the University of Pennsylvania pursuing a PhD in mechanical engineering.  Originally from Colombia, Cortes migrated to the United States at the age of ten.  On entering the contest, Cortes told EIS that “I am a firm believer in educating our youth on the potential benefits of space exploration.  So much of our current technology has come from the space programs around the world, it’s only right that we continue on this path.  I entered a design because I really enjoy designing spacecraft and this was a perfect opportunity to fulfill a dream of seeing one of my designs come to life.”

“The Enterprise in Space team and I want to thank all the people who sent in their wonderful and imaginative science fiction inspired ship designs from all over the world,” said EIS Founder Shawn Case.  “It was nice to see entries from so many artistic and engineering perspectives.”

This contest constitutes the first phase of the Enterprise In Space project, whose mission is to design, build, launch, orbit, re-enter, and tour a satellite that will carry more than 100 competitively-selected student experiments into space and back.  It was an open international contest seeking science fiction inspired spacecraft designs. This was followed by a public vote to identify the most popular designs submitted to the contest. The final step of the selection process was an evaluation of each design by a panel of expert judges.

Judging the contest were EIS Contest Manager Jim Plaxco, EIS Chief Engineer Fred Becker, Terminal Velocity Aerospace CEO Dominic DePasquale, SNG Studio owner Steve Neill, Consulting Senior Illustrator Andrew Probert, International Association of Astronomical Artists President Jon Ramer, and The Light Works CEO Tobias Richter.

With respect to the judging process, Jim Plaxco stated that “the judges evaluated the design submissions based on their engineering practicality, originality, and design aesthetics. We debated the merits of the various designs and in the end it took us two rounds of voting to arrive at a consensus.” The winning designs can be seen at www.enterpriseinspace.org/winner/

The next phase of the design process is to have an aerospace engineering firm create the necessary engineering drawings and specifications from the winning entry.  Follow the progress of the historic EIS project – from winning entry to engineering design to construction and flight – at www.enterpriseinspace.org.

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About Enterprise In Space (EIS): Enterprise In Space is a first-of-its-kind publicly funded grassroots space project. The project will fly an orbiter with 100+ student experiments into space and then have it return to Earth. It is an educational project of the National Space Society, a non-profit organization. All contributions are tax-free and its wesite is www.enterpirseinspace.org

About National Space Society (NSS): NSS is an independent non-profit educational membership organization dedicated to the creation of a spacefaring civilization. NSS is widely acknowledged as the preeminent citizen’s voice on space, with over 50 chapters in the United States and around the world. The Society publishes Ad Astra magazine, an award-winning periodical chronicling the most important developments in space.  Its website is www.nss.org

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Here is a video overview of the Enterprise in Space program:

Mission to Mars 2049: A family board game

The crowd-sourcing campaign to fund production of the board game Mission to Mars 2049 has now exceeded its primary goal and is aiming for stretch goals: Mission to Mars 2049: A Family Board Game – Indiegogo.

Mission to Mars 2049 is a family board game that is set in the near future. In this game you are in control of a human colony settled on Mars (there can be up to four of them) and your objective is to build a water extraction station on top of the Martian Polar Ice Cape before any other player does. In order to do that, you will need to have a strategy for acquiring resources and building your colony faster than anyone else. 

This video gives an overview of the game:

This video outlines the rules in more detail:

Citizen Science Milky Way Project finds new ‘Yellowballs” star formation features

NASA JPL highligs citizen science:

Citizen Scientists Lead Astronomers to
Mystery Objects in Space

Sometimes it takes a village to find new and unusual objects in space. Volunteers scanning tens of thousands of starry images from NASA’s Spitzer Space Telescope, using the Web-based Milky Way Project, recently stumbled upon a new class of curiosities that had gone largely unrecognized before: yellow balls. The rounded features are not actually yellow — they just appear that way in the infrared, color-assigned Spitzer images.

PIA18908_ip[1]Finding ‘Yellow Balls’ in our Milky Way galaxy

“The volunteers started chatting about the yellow balls they kept seeing in the images of our galaxy, and this brought the features to our attention,” said Grace Wolf-Chase of the Adler Planetarium in Chicago. A colorful, 122-foot (37-meter) Spitzer mosaic of the Milky Way hangs at the planetarium, showcasing our galaxy’s bubbling brew of stars. The yellow balls in this mosaic appear small but are actually several hundred to thousands of times the size of our solar system.

“With prompting by the volunteers, we analyzed the yellow balls and figured out that they are a new way to detect the early stages of massive star formation,” said Charles Kerton of Iowa State University, Ames. “The simple question of ‘Hmm, what’s that?’ led us to this discovery.” Kerton is lead author, and Wolf-Chase a co-author, of a new study on the findings in the Astrophysical Journal.

The Milky Way Project is one of many so-called citizen scientist projects making up the Zooniverse website, which relies on crowdsourcing to help process scientific data. So far, more than 70 scientific papers have resulted from volunteers using Zooniverse, four of which are tied to the Milky Way Project. In 2009, volunteers using a Zooniverse project called Galaxy Zoo began chatting about unusual objects they dubbed “green peas.” Their efforts led to the discovery of a class of compact galaxies that churned out extreme numbers of stars.

In the Milky Way Project, volunteers scan through images that Spitzer took of the thick plane of our galaxy, where newborn stars are igniting in swaths of dust. The infrared wavelengths detected by Spitzer have been assigned visible colors we can see with our eyes. In addition to the yellow balls, there are many green bubbles with red centers, populating a landscape of swirling gas and dust. These bubbles are the result of massive newborn stars blowing out cavities in their surroundings. The green bubble rims are made largely of organic molecules called polycyclic aromatic hydrocarbons (PAHs), cleared away by blasts of radiation and winds from the central star. Dust warmed by the star appears red in the center of the bubbles.

Volunteers have classified more than 5,000 of these green bubbles using the project’s Web-based tools. When they started reporting that they were finding more reoccurring features in the shape of yellow balls, the Spitzer researchers took note and even named the features accordingly. In astronomy and other digital imaging, yellow represents areas where green and red overlap. So what are these yellow balls?

A thorough analysis by the team led to the conclusion that the yellow balls precede the green bubble features, representing a phase of star formation that takes place before the bubbles form.

“The yellow balls are a missing link,” said Wolf-Chase, “between the very young embryonic stars buried in dark filaments and newborn stars blowing the bubbles.”

“If you wind the clock backwards from the bubbles, you get the yellow ball features,” said Kerton.

PIA18909_ip[1]Evolution of a massive star

The researchers explained why the yellow balls appear yellow: The PAHs, which appear green in the Spitzer images, haven’t been cleared away by the winds from massive stars yet, so the green overlaps with the warm dust, colored red, to make yellow. The yellow balls are compact because the harsh effects of the massive star have yet to fully expand into their surroundings.

So far, the volunteers have identified more than 900 of these compact yellow features. The next step for the researchers is to look at their distribution. Many appear to be lining the rims of the bubbles, a clue that perhaps the massive stars are triggering the birth of new stars as they blow the bubbles, a phenomenon known as triggered star formation. If the effect is real, the researchers should find that the yellow balls statistically appear more often with bubble walls.

“These results attest to the importance of citizen scientist programs,” said Wolf-Chase. Kerton added, “There is always the potential for serendipitous discovery that makes citizen science both exciting for the participants and useful to the professional astronomer.”

NASA’s Jet Propulsion Laboratory, Pasadena, California, manages the Spitzer Space Telescope mission for NASA’s Science Mission Directorate, Washington. Science operations are conducted at the Spitzer Science Center at the California Institute of Technology in Pasadena. Spacecraft operations are based at Lockheed Martin Space Systems Company, Littleton, Colorado. Data are archived at the Infrared Science Archive housed at the Infrared Processing and Analysis Center at Caltech. Caltech manages JPL for NASA.

For more information about Spitzer, visit: spitzer.caltech.edu and www.nasa.gov/spitzer.

Help send the Garden of ETON to space

Back in December I posted about the DreamUP! program created by NanoRacks and FISE ( Foundation for International Space Education), which aims to send STEM projects to the International Space Station.

Chicks in Space is the first team attempting to raise the $15k needed to get an experiment to the station:

Chicks in Space is a group of high school girls who hope to advance space science. We have grown up working on NASA challenges and have had the opportunity to participate in the Conrad Spirit of Innovation – a program aimed at development of innovative ideas. We have created the Garden of ETON – or Extra Terrestrial Organic Nutrition.

This is a hydroponic garden developed to function under conditions of microgravity. It has always been our dream to have an experiment on NASA’s International Space Station. We hope to be able to have the opportunity to launch a reconfigured Garden of ETON – NanoETON – on NanoRacks LLC on NASA’s International Space Station. NanRacks LLC is a company that helps projects like ours get through NASA’s safety and review processes.

When we are not working on space related projects we enjoy golfing and hanging out with our family.

 They have raised about a third of the funding needed to Send the Garden of ETON to Space.

http://vimeo.com/117641900

Video: Copenhagen Suborbitals open house event

The Copenhagen Suborbitals private rocket development organization had an open house earlier this month: