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Southern Ring Nebula Mini Binder
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Southern Ring Nebula Mini Binder
This side-by-side comparison shows observations of the Southern Ring Nebula in near-infrared light, at left, and mid-infrared light, at right, from the James Webb Space Telescope. This scene was created by a white dwarf star - the remains of a star like our Sun after it shed its outer layers and stopped burning fuel though nuclear fusion. Those outer layers now form the ejected shells all along this view. In the Near-Infrared Camera (NIRCam) image, the white dwarf appears to the lower left of the bright, central star, partially hidden by a diffraction spike. The same star appears - but brighter, larger, and redder - in the Mid-Infrared Instrument (MIRI) image. This white dwarf star is cloaked in thick layers of dust, which make it appear larger. The brighter star in both images hasn't yet shed its layers. It closely orbits the dimmer white dwarf, helping to distribute what it's ejected. Over thousands of years and before it became a white dwarf, the star periodically ejected mass - the visible shells of material. As if on repeat, it contracted, heated up, and then, unable to push out more material, pulsated. Stellar material was sent in all directions and provided the ingredients for this asymmetrical landscape. Today, the white dwarf is heating up the gas in the inner regions, which appear blue at left and red at right. Both stars are lighting up the outer regions, shown in orange and blue, respectively. The images look very different because NIRCam and MIRI collect different wavelengths of light. NIRCam observes near-infrared light, which is closer to the visible wavelengths our eyes detect. MIRI goes farther into the infrared, picking up mid-infrared wavelengths. The second star more clearly appears in the MIRI image, because this instrument can see the gleaming dust around it, bringing it more clearly into view. The stars, and their layers of light, steal more attention in the NIRCam image, while dust plays the lead in the MIRI image, specifically dust that is illuminated. Peer at the circular region at the center and you'll see a wobbly, asymmetrical belt of material. This is where two bowls that make up the nebula meet. (In this view, the nebula is at a 40-degree angle.) The light that travels through the orange dust in the NIRCam image, which look like spotlights, disappear at longer infrared wavelengths in the MIRI image. In near-infrared light, stars have more prominent diffraction spikes because they are so bright at these wavelengths. In mid-infrared light, diffraction spikes also appear around stars, but they are fainter and smaller.
Customer Reviews
4.8 out of 5 stars rating115 Total Reviews
115 Reviews
Reviews for similar products
5 out of 5 stars rating
By Denise M.November 9, 2022 • Verified Purchase
Avery Mini 1" Binder
Zazzle Reviewer Program
This product is so perfect. I’m gifting it to my sister for Christmas. I will include family recipes. It fits a half sheet of printer paper. I am super pleased with the results! I cannot wait to give this gift.
5 out of 5 stars rating
By Falln A.May 28, 2016 • Verified Purchase
Avery Mini 1" Binder
Creator Review
Once again I am partial because this is one of my own designs, but seeing it in person is so awesome, and it's exactly as I designed it! Beautiful!
The photos I am including don't do it justice since it was taken with my cell phone and the lighting was odd. But it's so pretty in person. The printing is crisp and lovely!
5 out of 5 stars rating
By Carmen T.June 16, 2018 • Verified Purchase
Avery Mini 1" Binder
Zazzle Reviewer Program
I bought this as a gift for my daughter to use as a notebook for her Bible studies and it's just perfect. It came in less than a week which was a pleasant surprise. The colors turned out very nice, the printing looks beautiful!
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Product ID: 256634000632240957
Created on: 1/25/2024, 9:56 AM
Rating: G
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