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Hubble captures NGC 2841

The driving force behind star formation is particularly unclear for a type of galaxy called a flocculent spiral, which features short spiral arms rather than prominent and well-defined galactic limbs.
By Hubble ESA, Garching, Germany Published: February 17, 2011
NGC2841
NGC 2841 is a flocculent spiral, which features short spiral arms rather than prominent and well-defined galactic limbs. NASA/ESA/and the Hubble Heritage (STScI/AURA)-ESA/Hubble Collaboration
The galaxy NGC 2841 currently has a relatively low star formation rate compared to other spirals. It is one of several nearby galaxies that have been specifically chosen for a new study in which a pick 'n' mix of different stellar nursery environments and birth rates are being observed.

Star formation is one of the most important processes in shaping the universe. It plays a pivotal role in the evolution of galaxies, and it is also in the earliest stages of star formation that planetary systems first appear.

Yet there is much that astronomers don't understand, such as how the properties of stellar nurseries vary according to the composition and density of the gas present, and what triggers star formation in the first place. The driving force behind star formation is particularly unclear for a type of galaxy called a flocculent spiral, such as NGC 2841 shown here, which features short spiral arms rather than prominent and well-defined galactic limbs.

In an attempt to answer some of these questions, an international team of astronomers is using the new Wide Field Camera 3 (WFC3) installed on the NASA/ESA Hubble Space Telescope to study a sample of nearby, but wildly differing, locations where stars are forming. The observational targets include both star clusters and galaxies, and star formation rates range from the baby-booming starburst galaxy M82 to the more sedate star producer NGC 2841.

WFC3 was installed on Hubble in May 2009 during Servicing Mission 4, and replaced the Wide Field and Planetary Camera 2. It is particularly well-suited to this new study, as the camera is optimized to observe the ultraviolet radiation emitted by newborn stars — shown by the bright blue clumps in this image — and infrared wavelengths so that it can peer behind the veil of dust that would otherwise hide them from view.

While the image shows lots of hot young stars in the disk of NGC 2841, there are just a few sites of current star formation where hydrogen gas is collapsing into new stars. It is likely that these fiery youngsters destroyed the star-forming regions in which they were formed.


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5 stars
PATRICK T LONERGAN from ARIZONA said:
Thanks to that wonderful little "X" box down in the lower right of video, I now no longer need to wonder what the Starship Enterprise would see from a front window seat as approach is made to a nearby galaxy. Wow!!! What a ride!!!
4 stars
CLIFFORD J DAVIS from KENTUCKY said:
Wonderful picture of the galaxy! I would assume it's not as active in star forming and the arms are shallow and not defined because the central mass is much less than the 'average' galaxy.
5 stars
SARA VOLK from OREGON said:
I really like this article because I think it gives people the information they want and need to know. It was very descriptive and the picture is outstanding! I love astronomy!
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