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The Universe

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The universe is filled with natural beauty and wonder and as we look to the heavens Spread your wings and fly for we are all wingmakers and the universe is our home and We shall move throughout the heavens were ever we wish to roam.

Please Take Note
The Universe & Space section of this website is for educational purposes and no profit is made from the material within this section of the site unless it has been personally written by the owners of this site.

Contents

Interstellar Travel

Milky Way Galaxy

Solar System

Extrasolar Planets 

88 Constellations

Constellations

Andromeda
Antila
Apus
Aquarius
Aquila
Ara
Aries
Auriga

Bootes

Caelum
Camelopardalis
Cancer
Canes Venatici
Canis Major
Canis Minor
Capricornus
Carina
Cassiopeia
Centaurus
Cepheus
Cetus
Chamaeleon
Circinus
Columba
Coma Berenices
Corona Austrina
Corona Borealis
Corvus
Crater
Crux
Cygnus

Delphinus
Dorado
Draco

Equuleus
Eridanus

Fornax

Gemini
Grus

Hercules
Horogium
Hydra
Hydrus

Indus

Lacerta
Leo
Leo Minor
Lepus
Libra
Lupus
Lynx
Lyra

Mensa
Microscopium
Monoceros
Musca

Norma

Octans
Ophiuchus
Orion

Pavo
Pegasus
Perseus
Phoenix
Pictor
Pisces
Piscis Austrinus
Puppis
Pyxis

Reticulum

Saggita
Sagittarius
Scorpio
Sculptor
Scutum
Serpens Cauda
Serpens Caput
Sextans

Taurus
Telescopium
Triangulum
Triangulum Australe
Tucana

Ursa Major
Ursa Minor

Vela
Virgo
Volans
Vulpecula

Introduction
The universe is filled with natural beauty and wonder and as we look to the heavens Spread your wings and fly for we are all wingmakers and the universe is our home and We shall move throughout the heavens were ever we wish to roam. 

But first we should start here in our own solar system for there is no place like home out there anywhere. So learn more about your own backyard before traveling to other galaxies and solar systems.

LASTED UPDATED :  02/07/2007 

This Section Of The Site is currently being updated with new planetary data and interstellar cards. In the coming weeks be sure to check out the new changes The Universe Like Never Before 

Everyone Please Note  This site and message board are not affiliated with wingmakers.com in any way nor do we wish to be. And that the interstellar cards in this site are not for retail sale There are cards available for retail sale through Inspirational Writings.co.nz 

The Universe 
The universe is the entire spacetime continuum in which we exist, together with all the energy and matter within it. It is important to understand the fact that (regardless of whether or not our universe is 
all that exists) the term universe is not defined as allexistence or all reality, but more specifically as all existence in one space-time continuum. Attempts to understand the universe in this sense, on the largest possible scales, are made in cosmology, a science that has grown from physics and astronomy. During the second half of the 20th century, the development of observational cosmology, also called physical cosmology, led to a split in the meaningof the word universe, between observational cosmologists and theoretical cosmologists; where the former abandon the hope of observing the whole spacetime continuum, the latter retain this hope, attempting to find the most reasonable speculations for modeling the whole of spacetime, despite the extreme difficulty in imagining any empirical constraints on these speculations and the possibility of crossing over to metaphysics.

Interstellar Travel 
Interstellar travel is the most advanced form of space exploration known to the human race and the Wingmakers are the masters when it comes to Interstellar Travel. Interstellar travel is possible by traveling through the elliptical time line or as it is known the grand porthole network, it is the universal time line. It is elliptical in nature because there is no beginning or end. Which means we can travel hundreds or thousands of light years a in a couple of minutes. 

The Wingmaker uses two different types of space travel. The first technique is teleportation of the Visual body and the 
second technique is teleportation of the physical body. 

So learn more about your own backyard before traveling to other galaxies and solar systems. But first we should start here in our own solar system for there is no place like home out there anywhere. 

Mer-Ka-Ba Energy 
In ancient Egyptian "Mer" means Light, "Ka" means Spirit, and "Ba"means Body. Mer-Ka-Ba means the Spirit/Body surrounded by counter-rotating fields of Light and is a vehicle to transport one's Spirit/Body from one dimension into another  through light body Activation Meditation, or into the next universe when combined with the Advanced Techniques such as BST- Blank  Slate Technology & Interstellar Travel.

Mer-Ka-Ba Energy

BST- Blank  Slate Technology Milky Way
The Milky Way sometimes referred to simply as "the Galaxy", is a barred spiral galaxy which forms part of the Local Group. Although the Milky Way is but one of billions of galaxies in the universe, the Galaxy has special significance to humanity as it is the home of the solar system, which is located near the Orion Arm. Democritus (460 BC - 370 BC) was the first known person to claim that the Milky Way consists of distant stars. 

The term "milky" originates from the hazy band of white light appearing across the celestial sphere visible from Earth, which comprises stars and other material lying within the galactic plane. The galaxy appears brightest in the direction of Sagittarius, towards the galactic center. 

Relative to the celestial equator, the Milky Way passes as far north as the constellation of Cassiopeia and as far south as the constellation of Crux, indicating the high inclination of Earth's equatorial plane and the plane of the ecliptic relative to the galactic plane. The fact that the Milky Way divides the night sky into two roughly equal hemispheres indicates that the solar system lies close to the galactic plane. 

The Milky Way Galaxy is about 80-100 thousand light years in diameter, about 3,000 light years in thickness, and about 250-300 thousand light years in circumference. It is composed of approximately 100 billion stars. As a guide to the relative physical scale of the Milky Way, if the galaxy were reduced to 130 km (80 mi) in diameter, the solar system would be a mere 2 mm (0.08 in) in width. 

Solar System
Within our planetary system, the twelve objects currently accepted as planets orbit the Sun with other objects as diverse as asteroids, meteoroids, comets, and cosmic dust. The term "minor planet" is often used to describe those objects that, while they orbit the Sun, are not seen to fulfil certain criteria common to the "true" planets. There is some debate concerning where the dividing line between these objects and "planets" should be, or even if there should be one at all. 

New Solar Systems 
Throughout the universe with the wingmaker technology of interstellar travel new solar systems such as  Mistori, Cassidian, Tristeka, Krillian, Frakanain, & Pallalonian have been discoverd. Like our own solar system all other solar system are found in galaxies and are found to orbit a sun like star.  in most cases the cental star or sun will orbit around the galatic core of the galaxy like our own solar system orbiting around the cenral galatic core of the milkyway galaxy. The Image Below is the Mistori Solar System discovered in 1996 on the first interstellar travel. You will find these card in the constellations section of this page. 

Mistori Solar System 

 
 

55 Cancri Solar System 

In 55 Cancri (in the constellation Cancer), also known as Rho-1 Cancri. The circle is actually centered on two stars that are not separated at the photo's resolution. The eastern one is 55 Cancri, the western 53 Cancri. The planet orbits 55 Cancri in only 14.6 days (16 percent that of Mercury's orbital period around the Sun), has at least 0.84 times the mass of Jupiter, and is 0.11 astronomical units from the star. That is only 16.5 million kilometers, 10.2 million miles, or 28 percent Mercury's distance from the Sun. 

Extrasolar Planets 
Of the 173 extrasolar planets (those outside our solar system) discovered to date (October 2005) most have masses which are about the same or larger than Jupiter's. 

Exceptions include a number of planets discovered orbiting burned-out star remnants called pulsars, such as PSR B1257+12, the planets orbiting the stars Mu Arae, 55 Cancri and GJ 436 which are approximately Neptune-sized [3], and a planet orbiting Gliese 876 that is estimated to be about 6 to 8 times as massive as the earth and is probably rocky in origin. 

It is far from clear if the newly discovered large planets would resemble the gas giants in our solar system or if they are of an entirely different type as yet unknown, like ammonia giants or carbon planets. In particular, some of the newly discovered planets, known as hot Jupiters, orbit extremely close to their parent stars, in nearly circular orbits. They therefore receive much more stellar radiation than the gas giants in our solar system, which makes it questionable whether they are the same type of planet at all. There is also a class of hot Jupiters that orbit so close to their star that their atmospheres are slowly blown away in a comet-like tail: the Chthonian planets 

Brown Dwarf "Planets" 
The discovery of a planet-sized satelite of a brown dwarf has blurred the distinction between "planet" and "moon." A brown dwarf, though a star in theory, in practice is often described as in between a planet and a star. It is formally defined by the International Astronomical Union by its official statement that "Substellar objects with true masses above the limiting mass for thermonuclear fusion of deuterium are "brown dwarfs", no matter how they formed nor where they are located." 

To the International Astronomical Union, the question of whether an object in orbit around a brown dwarf is a "planet" or a "moon" was simply not relevant, as it does not use the term "moon," only "satellite" and as yet has no official definition for "planet." 

Pulsar Planets 
Pulsar planets are planets that are found orbiting pulsars. Pulsars are rapidly rotating neutron stars. The first ever planets discovered around another star, were discovered around a millisecond pulsar. Pulsar planets are discovered through pulsar timing measurements, to detect anomalies in the pulsation period. Any bodies orbiting the pulsar will cause regular changes in its pulsation. Since pulsars normally rotate at near-constant speed, any changes can easily be detected with the help of precise timing measurements. 

Planetary nebula 

Planetary nebulae are the end stage of stellar evolution for most stars. Our Sun is a very average star, and only a small number of stars weigh very much more than it. Stars weighing more than a few solar masses will end their lives in a dramatic supernova explosion, but for the medium and low mass stars, the end involves the creation of a planetary nebula.

A typical star weighing less than about twice the mass of the Sun spends most of its lifetime shining as a result of nuclear fusion reactions converting hydrogen to helium in its core. The energy released in the fusion reactions prevents the star from collapsing under its own gravity, and the star is stable. 

After several billion years, the star runs out of hydrogen, and there is no longer enough energy flowing out from the core to support the outer layers of the star. The core thus contracts and heats up. Currently the sun's core has a temperature of approximately 15 million K, but when it runs out of hydrogen, the contraction of the core will cause the temperature to rise to about 100 million K. 

The outer layers of the star expand enormously because of the very high temperature of the core, and become much cooler. The star becomes a red giant. The core continues to contract and heat up, and when its temperature reaches 100 million K, helium nuclei begin to fuse into carbon and oxygen. The resumption of fusion reactions stops the core's contraction. Helium burning soon forms an inert core of carbon and oxygen, with a helium-burning shell surrounding it. 

Helium fusion reactions are extremely temperature sensitive, with reaction rates being proportional to T40. This means that just a 2% rise in temperature more than doubles the reaction rate. This makes the star very unstable - a small rise in temperature leads to a rapid rise in reaction rates, which releases a lot of energy, increasing the temperature further. The helium-burning layer rapidly expands and therefore cools, which reduces the reaction rate again. Huge pulsations build up, which eventually become large enough to throw off the whole stellar atmosphere into space [3]. 

The ejected gases form a cloud of material around the now-exposed core of the star. As more and more of the atmosphere moves away from the star, deeper and deeper layers at higher and higher temperatures are exposed. When the exposed surface reaches a temperature of about 30,000K, there are enough ultraviolet photons being emitted to ionise the ejected atmosphere, making it glow. The cloud has then become a planetary nebula. 

Galaxy 

NGC 4414, a typical spiral galaxy in the constellation Coma Berenices, is about 56,000 light years in diameter and approximately 60 million light years distant.A galaxy is a vast gravitationally bound system of stars, interstellar gas and dust, plasma, and (possibly) unseen dark matter. Typical galaxies contain 10 million to one trillion (107 to 1012) stars, all orbiting a common center of gravity. In addition to single stars and a tenuous interstellar medium, most galaxies contain a large number of multiple star systems and star clusters as well as various types of nebulae. Most galaxies are several thousand to several hundred thousand light years in diameter and are usually separated from one another by distances on the order of millions of light years. 

Although so-called dark matter and dark energy appear to account for well over 90% of the mass of most galaxies, the nature of these unseen components is not well understood. There is some evidence that supermassive black holes may exist at the center of many, if not all, galaxies. 

Intergalactic space, the space between galaxies, is filled with a tenuous plasma with an average density less than one atom per cubic meter. There are probably more than 1011 galaxies in the visible universe.

Constellations & Other Destinations In The Universe  Galaxies, Nebula's, Extra Solar Planets, And So much More!

The Constellations
A constellation is a group of stars visibly related to each other in a particular configuration. In three-dimensional space, most of the stars we see have little relation to one another, but can appear to be grouped on the celestial sphere of the night sky. Humans excel at finding patterns and throughout history have grouped stars that appear close to one another into constellations.

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