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By Dominic Kamp
October 23rd, 2013
Although it was back in 2008 when I visited the Rockefeller Center the last time, it felt like yesterday. I noticed though that the skyline had changed quite a bit. The building in the front center (between 46th & 47th streets) must have popped up out of the ground, as it's not even in Google Maps. Nevertheless, it was a beautiful day and at last, I could experience how Rockefeller enjoyed a sunny day's ending.
Adobe Photoshop CS6, Camera RAW 8.
Photo Settings: 14mm, f/5, 1/125 second, ISO 100.
Map: 40.7587, -73.9791
January 12th, 2016
By Dave Elysium
August 16th, 2012
February 22nd, 2013
ESO's VLT reveals the Carina Nebula's hidden secrets.
This broad panorama of the Carina Nebula, a region of massive star formation in the southern skies, was taken in infrared light using the HAWK-I camera on ESO's Very Large Telescope. Many previously hidden features, scattered across a spectacular celestial landscape of gas, dust and young stars, have emerged.
Credit: ESO/T. Preibisch
By NASA Images
January 31st, 2016
This composite image combines a near-infrared view from the Hubble Space Telescope, an infrared view from the Spitzer Space Telescope, and an X-ray view from the Chandra X-ray Observatory into one multi-wavelength picture.
It features the spectacle of stellar evolution: from vibrant regions of star birth, to young hot stars, to old cool stars, to seething remnants of stellar death called black holes. This activity occurs against a fiery backdrop in the crowded, hostile environment of the galaxy's core, the center of which is dominated by a supermassive black hole nearly four million times more massive than our Sun. Permeating the region is a diffuse blue haze of X-ray light from gas that has been heated to millions of degrees by outflows from the supermassive black hole as well as by winds from massive stars and by stellar explosions. Infrared light reveals more than a hundred thousand stars along with glowing dust clouds that create complex structures including compact globules, long filaments, and finger-like "pillars of creation," where newborn stars are just beginning to break out of their dark, dusty cocoons.