Hubble Deep Field. Credit: NASAThe video below is an excerpt of 2012 Enigma and I have to say this is such an amazing time to be alive!  We are entering a time that has not happened in 26,000 years approximately, where our planet is aligned exactly with all of the planets and the galactic core.  If you can imagine what a galaxy looks like, there are hundreds of billions of them and we are just one, we live in the Milky Way Galaxy and there are 100-300 billion stars in our galaxy alone, and some are yet to be discovered. As of 1995 we have found that we can see about 3,000 Galaxies. ~Wendy Zangari

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Here is another picture, this one is of the galactic core and I have also inserted an article of what is inside the galactic core.  There are stars that are creating life, this is the beginning of time for these life forms and we will be shed with light, and our hearts will go back to source (of what it once was).  Here is the article and I will insert the picture as well, below.
http://hubblesite.org/newscenter/archive/releases/2009/02/image/a/
This composite color infrared image of the center of our Milky Way galaxy reveals a new population of massive stars and new details in complex structures in the hot ionized gas swirling around the central 300 light-years. This sweeping panorama is the sharpest infrared picture ever made of the Galactic core. It offers a nearby laboratory for how massive stars form and influence their environment in the often violent nuclear regions of other galaxies.
This view combines the sharp imaging of the Hubble Space Telescope’s Near Infrared Camera and Multi-Object Spectrometer (NICMOS) with color imagery from a previous Spitzer Space Telescope survey done with its Infrared Astronomy Camera (IRAC). The Galactic core is obscured in visible light by intervening dust clouds, but infrared light penetrates the dust.
The spatial resolution of the NICMOS image corresponds to 0.025 light-years at the distance of the Galactic core of 26,000 light-years. Hubble reveals details in objects as small as 20 times the size of our own solar system.
The NICMOS mosaic image represents the largest piece of sky ever mapped for one NICMOS observing program. It was combined with a full-color Spitzer image to yield a color composite of the nuclear region. The picture measures 300 x 115 light-years. Outside the boundary of the NICMOS survey, the IRAC exposures (which are 1/10th as sharp) can be seen at wavelengths of 3.6 microns (shown as blue), 4.5 microns (shown as green), 5.8 microns (shown as orange), and 8.0 microns (shown as red).
The new NICMOS data show the glow from ionized hydrogen gas as well as a multitude of stars. Hubble reveals an important population of stars with strong stellar winds, signified by excess emission from ionized gas at one infrared wavelength (1.87 microns) compared to another slightly different wavelength (1.90 microns).
NICMOS shows a large number of these massive stars distributed throughout the region. A new finding is that astronomers now see that the massive stars are not confined to one of the three known clusters of massive stars in the Galactic Center, known as the Central cluster, the Arches cluster, and the Quintuplet cluster. These three clusters are easily seen as tight concentrations of bright, massive stars in the NICMOS image. The distributed stars may have formed in isolation, or they may have originated in clusters that have been disrupted by strong gravitational tidal forces.
The winds and radiation from these stars form the complex structures seen in the core, and in some cases, they may be triggering new generations of stars. At upper left, large arcs of ionized gas are resolved into arrays of intriguingly organized linear filaments indicating perhaps a critical role of the influence of locally strong magnetic fields.
The lower left region shows pillars of gas sculpted by winds from hot massive stars in the Quintuplet cluster. At the center of the image, ionized gas surrounding the supermassive black hole at the center of the galaxy is confined to a bright spiral embedded within a circum-nuclear dusty inner-tube-shaped torus.
The NICMOS mosaic required 144 Hubble orbits to make 2,304 science exposures. It was taken between February 22 and June 5, 2008.
Object Name: Galactic Center
Image Type: Astronomical
Credit for Hubble image: NASAESA, and Q.D. Wang (University of Massachusetts, Amherst)
Credit for Spitzer image: NASA, Jet Propulsion Laboratory, and S. Stolovy (Spitzer Science Center/Caltech)
 

© 2011 – 2012, Ready For The Shift. ™ Wendy & Greg Zangari, All rights reserved. Permission is granted to copy and redistribute these articles on the condition that the content remains complete and in tact, full credit is given to the author(s), and that it is distributed freely.

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