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Stellar Spire in the Eagle Nebula 20x30 (13.5x27) Poster

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60.96 cm x 91.44 cm
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Paper Type: Value Poster Paper (Semi-Gloss)

Your walls are a reflection of your personality, so let them speak with your favorite quotes, art, or designs printed on our custom Giclee posters! High-quality, microporous resin-coated paper with a beautiful semi-gloss finish. Choose from standard or custom size posters and framing options to create art that’s a perfect representation of you.

  • Gallery quality Giclee prints
  • Ideal for vibrant artwork and photo reproduction
  • Semi-gloss finish
  • Pigment-based inks for full-color spectrum high-resolution printing
  • Durable 185gsm paper
  • Available in custom sizing up to 60”
  • Frames available on all standard sizes
  • Frames include Non-Glare Acrylic Glazing

About This Design

Stellar Spire in the Eagle Nebula 20x30 (13.5x27) Poster

Stellar Spire in the Eagle Nebula 20x30 (13.5x27) Poster

Recommended size to fit a standard frame: 20x30 inches (original size: 13.5x27 inches at 300 PPI, 33 MP). Many other sizes available. Click 'Customise it!' on the right. Appearing like a winged fairy-tale creature poised on a pedestal, this object is actually a billowing tower of cold gas and dust rising from a stellar nursery called the Eagle Nebula. The soaring tower is 9.5 light-years or about 90 trillion kilometres high, about twice the distance from our Sun to the next nearest star. Stars in the Eagle Nebula are born in clouds of cold hydrogen gas that reside in chaotic neighbourhoods, where energy from young stars sculpts fantasy-like landscapes in the gas. The tower may be a giant incubator for those newborn stars. A torrent of ultraviolet light from a band of massive, hot, young stars [off the top of the image] is eroding the pillar. The starlight also is responsible for illuminating the tower's rough surface. Ghostly streamers of gas can be seen boiling off this surface, creating the haze around the structure and highlighting its three-dimensional shape. The column is silhouetted against the background glow of more distant gas. The edge of the dark hydrogen cloud at the top of the tower is resisting erosion, in a manner similar to that of brush among a field of prairie grass that is being swept up by fire. The fire quickly burns the grass but slows down when it encounters the dense brush. In this celestial case, thick clouds of hydrogen gas and dust have survived longer than their surroundings in the face of a blast of ultraviolet light from the hot, young stars. Inside the gaseous tower, stars may be forming. Some of those stars may have been created by dense gas collapsing under gravity. Other stars may be forming due to pressure from gas that has been heated by the neighbouring hot stars. The first wave of stars may have started forming before the massive star cluster began venting its scorching light. The star birth may have begun when denser regions of cold gas within the tower started collapsing under their own weight to make stars. The bumps and fingers of material in the centre of the tower are examples of these stellar birthing areas. These regions may look small but they are roughly the size of our solar system. The fledgling stars continued to grow as they fed off the surrounding gas cloud. They abruptly stopped growing when light from the star cluster uncovered their gaseous cradles, separating them from their gas supply. Ironically, the young cluster's intense starlight may be inducing star formation in some regions of the tower. Examples can be seen in the large, glowing clumps and finger-shaped protrusions at the top of the structure. The stars may be heating the gas at the top of the tower and creating a shock front, as seen by the bright rim of material tracing the edge of the nebula at top, left. As the heated gas expands, it acts like a battering ram, pushing against the darker cold gas. The intense pressure compresses the gas, making it easier for stars to form. This scenario may continue as the shock front moves slowly down the tower. The dominant colours in the image were produced by gas energised by the star cluster's powerful ultraviolet light. The blue colour at the top is from glowing oxygen. The red colon in the lower region is from glowing hydrogen. The Eagle Nebula image was taken in November 2004 with the Advanced Camera for Surveys aboard the NASA/ESA Hubble Space Telescope. Credit: NASA, ESA, and The Hubble Heritage Team STScI/AURA)

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5 out of 5 stars rating
By Donna Y.2 June 2022Verified Purchase
Print, Size: 60.96cm x 91.44cm, Media: Value Poster Paper (Semi-Gloss)
Zazzle Reviewer Program
I originally ordered this print in a larger size but was not pleased with the clarity of it. When I contacted Zazzle, they responded really quickly and were very helpful. I was able to reorder the print in a smaller size and it was shipped to me within a couple of weeks. The print was packaged well to ensure there was no damage during transit (Eco friendly, too!), and I am really pleased with it. I am so grateful to the customer service team for the professional way they handled my order. I had this printed on matt finish card and I was really pleased with the quality. The colours were rich and the image sharp.
5 out of 5 stars rating
By Mignon G.22 December 2021Verified Purchase
Print, Size: 41.91cm x 64.77cm, Media: Value Poster Paper (Semi-Gloss)
Zazzle Reviewer Program
Very happy with this product. No complaints.
5 out of 5 stars rating
By Vincent H.5 November 2024Verified Purchase
Print, Size: 121.92cm x 81.28cm, Media: Value Poster Paper (Semi-Gloss)
Arrived very fast, even three days early. Havent opened as i will wgive to my framer next week. But the team were amazing to deal with and i highly recomend based on that alone! Oh, and im from NZ. .

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Other Info

Product ID: 228220675436741082
Posted on 25/11/2009, 4:50 PM
Rating: G