by activesally | Mar 15, 2020 | Birth of the Earth, Definitions and Equations
“The Birth of the Earth” provides a new explanation for the way in which a super-huge cloud of atoms developed into the solar system that we see today. This explanation called Mass Vortex Theory suggests a new, more simple definition of a planet. First: Mass...
by activesally | Mar 14, 2020 | Birth of the Earth, Planet Formation
Mass Vortex Theory as set forth in “The Birth of the Earth” also helps to answer the curiosity that NASA has about water on Mars. During compaction, steam (and methane) is given off by the hot mantle and crust. Therefore, Mars has water between its crust and mantle...
by activesally | Mar 13, 2020 | Birth of the Earth, Planet Formation
“Birth of the Earth,” page 37, talks about how the atmosphere of a planet starts with the light atoms of the protoplanet that are: a) above the surface of the rocky planet and b) under the ice layer. It is further explained on page 37 that due to the lack of a...
by activesally | Mar 12, 2020 | Birth of the Earth, Planet Formation, Standard Theory
National Geographic has produced a video that explains what science textbooks currently teach about how Earth and other planets in our solar system formed. http://channel.nationalgeographic.com/videos/the-birth-of-earth/ The Standard Theory...
by activesally | Mar 11, 2020 | Beginning of the Solar System, Birth of the Earth, Planet Formation
When the atoms in the pre-planet-particle form molecules, rapidly changing into a compact sphere, some of the atoms are left behind. They form light gases of different elements in a large shell around the compact rocky sphere. Then when the ice layer forms, it traps...
by activesally | Mar 10, 2020 | Beginning of the Solar System, Birth of the Earth, Planet Formation
The heat generated by the formation of molecules and reduction of space between atoms causes the new planet to give off steam. The steam rises, hits cold space and freezes. “What?” you say; frozen water surrounding a planet? If that were so certainly you would have...
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