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N90 Metal Print featuring the photograph Small Magellanic Cloud, Region N90 by Science Source

The watermark in the lower right corner of the image will not appear on the final print.

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Small Magellanic Cloud, Region N90 Metal Print

Science Source

by Science Source

$101.00

Product Details

Small Magellanic Cloud, Region N90 metal print by Science Source.   Bring your artwork to life with the stylish lines and added depth of a metal print. Your image gets printed directly onto a sheet of 1/16" thick aluminum. The aluminum sheet is offset from the wall by a 3/4" thick wooden frame which is attached to the back. The high gloss of the aluminum sheet complements the rich colors of any image to produce stunning results.

Design Details

This new image taken with NASA's Hubble Space Telescope depicts bright, blue, newly formed stars that are blowing a cavity in the center of a... more

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3 - 4 business days

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Small Magellanic Cloud, Region N90 Photograph by Science Source

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Metal Print Tags

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Photograph Tags

photographs space photos n90 photos ngc 602 photos n 90 photos star cluster photos galaxy photos galaxies photos star photos star formation photos stellar wind photos radiation photos nebula photos nebulae photos space exploration photos hubble space telescope photos

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Artist's Description

This new image taken with NASA's Hubble Space Telescope depicts bright, blue, newly formed stars that are blowing a cavity in the center of a star-forming region in the Small Magellanic Cloud. At the heart of the star-forming region, lies star cluster NGC 602. The high-energy radiation blazing out from the hot young stars is sculpting the inner edge of the outer portions of the nebula, slowly eroding it away and eating into the material beyond. The diffuse outer reaches of the nebula prevent the energetic outflows from streaming away from the cluster. Ridges of dust and gaseous filaments are seen towards the northwest (in the upper-left part of the image) and towards the southeast (in the lower right-hand corner). Elephant trunk-like dust pillars point towards the hot blue stars and are telltale signs of their eroding effect. In this region it is possible with Hubble to trace how the star formation started at the center of the cluster and propagated outward, with the youngest stars sti...

 

$101.00

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