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41:10.1 Some of the [http://en.wikipedia.org/wiki/Variable_stars variable stars], in or near the [[state]] of maximum pulsation, are in [[process]] of giving [[origin]] to subsidiary [[Solar System|systems]], many of which will [[eventually]] be much like your own [[sun]] and its revolving [[planets]]. Your sun was in just such a state of mighty [http://en.wikipedia.org/wiki/160-minute_solar_cycle pulsation] when the massive [https://nordan.daynal.org/wiki/index.php?title=Paper_57#57:5._ORIGIN_OF_MONMATIA.E2.80.94THE_URANTIA_SOLAR_SYSTEM Angona system] swung into near approach, and the outer [[surface]] of the [[sun]] began to erupt veritable [[streams]]—continuous sheets—of [[matter]]. This kept up with ever-increasing [[violence]] until nearest apposition, when the [[limits]] of solar [[Integrity|cohesion]] were reached and a vast pinnacle of [[matter]], the [[ancestor]] of the [[solar system]], was disgorged. In similar circumstances the closest approach of the attracting [[body]] sometimes draws off whole [[planets]], even a quarter or third of a [[sun]]. These major extrusions form certain peculiar cloud-bound types of worlds, spheres much like [http://en.wikipedia.org/wiki/Jupiter Jupiter] and [http://en.wikipedia.org/wiki/Saturn Saturn].
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41:10.1 Some of the [https://en.wikipedia.org/wiki/Variable_stars variable stars], in or near the [[state]] of maximum pulsation, are in [[process]] of giving [[origin]] to subsidiary [[Solar System|systems]], many of which will [[eventually]] be much like your own [[sun]] and its revolving [[planets]]. Your sun was in just such a state of mighty [https://en.wikipedia.org/wiki/160-minute_solar_cycle pulsation] when the massive [https://nordan.daynal.org/wiki/index.php?title=Paper_57#57:5._ORIGIN_OF_MONMATIA.E2.80.94THE_URANTIA_SOLAR_SYSTEM Angona system] swung into near approach, and the outer [[surface]] of the [[sun]] began to erupt veritable [[streams]]—continuous sheets—of [[matter]]. This kept up with ever-increasing [[violence]] until nearest apposition, when the [[limits]] of solar [[Integrity|cohesion]] were reached and a vast pinnacle of [[matter]], the [[ancestor]] of the [[solar system]], was disgorged. In similar circumstances the closest approach of the attracting [[body]] sometimes draws off whole [[planets]], even a quarter or third of a [[sun]]. These major extrusions form certain peculiar cloud-bound types of worlds, spheres much like [https://en.wikipedia.org/wiki/Jupiter Jupiter] and [https://en.wikipedia.org/wiki/Saturn Saturn].
    
41:10.2 The [[majority]] of [[solar systems]], however, had an [[origin]] entirely [[different]] from yours, and this is true even of those which were produced by [[gravity]]-[[tidal]] [[technique]]. But no matter what [[technique]] of world building obtains, [[gravity]] always produces the [[solar system]] [[type]] of [[creation]]; that is, a central sun or dark island with [[planets]], [[satellites]], subsatellites, and [[meteors]].
 
41:10.2 The [[majority]] of [[solar systems]], however, had an [[origin]] entirely [[different]] from yours, and this is true even of those which were produced by [[gravity]]-[[tidal]] [[technique]]. But no matter what [[technique]] of world building obtains, [[gravity]] always produces the [[solar system]] [[type]] of [[creation]]; that is, a central sun or dark island with [[planets]], [[satellites]], subsatellites, and [[meteors]].
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41:10.3 The [[physical]] aspects of the [[individual]] worlds are largely [[determined]] by mode of [[origin]], astronomical situation, and [[physical]] [[environment]]. Age, size, rate of [[revolution]], and [[velocity]] through [[space]] are also determining [[factors]]. Both the [[gas]]-contraction and the [[solid]]-[[accretion]] worlds are characterized by mountains and, during their earlier life, when not too small, by [[water]] and air. The molten-split and collisional worlds are sometimes without extensive mountain ranges.
 
41:10.3 The [[physical]] aspects of the [[individual]] worlds are largely [[determined]] by mode of [[origin]], astronomical situation, and [[physical]] [[environment]]. Age, size, rate of [[revolution]], and [[velocity]] through [[space]] are also determining [[factors]]. Both the [[gas]]-contraction and the [[solid]]-[[accretion]] worlds are characterized by mountains and, during their earlier life, when not too small, by [[water]] and air. The molten-split and collisional worlds are sometimes without extensive mountain ranges.
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41:10.4 During the earlier ages of all these new worlds, [http://en.wikipedia.org/wiki/Earthquakes earthquakes] are frequent, and they are all characterized by great [[physical]] [[Turbulence|disturbances]]; especially is this true of the [[gas]]-contraction [[spheres]], the worlds born of the immense [[nebular]] rings which are left behind in the wake of the early condensation and contraction of certain [[individual]] [[suns]]. [[Planets]] having a [[dual]] [[origin]] like [[Urantia]] pass through a less [[violent]] and stormy youthful [[career]]. Even so, your world [[experienced]] an early [[phase]] of mighty upheavals, characterized by [http://en.wikipedia.org/wiki/Volcanoes volcanoes], [http://en.wikipedia.org/wiki/Earthquakes earthquakes], [http://en.wikipedia.org/wiki/Floods floods], and terrific storms.
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41:10.4 During the earlier ages of all these new worlds, [https://en.wikipedia.org/wiki/Earthquakes earthquakes] are frequent, and they are all characterized by great [[physical]] [[Turbulence|disturbances]]; especially is this true of the [[gas]]-contraction [[spheres]], the worlds born of the immense [[nebular]] rings which are left behind in the wake of the early condensation and contraction of certain [[individual]] [[suns]]. [[Planets]] having a [[dual]] [[origin]] like [[Urantia]] pass through a less [[violent]] and stormy youthful [[career]]. Even so, your world [[experienced]] an early [[phase]] of mighty upheavals, characterized by [https://en.wikipedia.org/wiki/Volcanoes volcanoes], [https://en.wikipedia.org/wiki/Earthquakes earthquakes], [https://en.wikipedia.org/wiki/Floods floods], and terrific storms.
    
41:10.5 [[Urantia]] is comparatively [[isolated]] on the outskirts of [[Satania]], your [[solar system]], with one exception, being the farthest removed from [[Jerusem]], while [[Satania]] itself is next to the outermost [[the System|system]] of [[Norlatiadek]], and this [[constellation]] is now traversing the outer fringe of [[Nebadon]]. You were truly among the least of all [[creation]] until [https://nordan.daynal.org/wiki/index.php?title=Paper_120 Michael's bestowal] elevated your [[planet]] to a position of [[honor]] and great universe interest. Sometimes the last is first, while truly the least becomes greatest.
 
41:10.5 [[Urantia]] is comparatively [[isolated]] on the outskirts of [[Satania]], your [[solar system]], with one exception, being the farthest removed from [[Jerusem]], while [[Satania]] itself is next to the outermost [[the System|system]] of [[Norlatiadek]], and this [[constellation]] is now traversing the outer fringe of [[Nebadon]]. You were truly among the least of all [[creation]] until [https://nordan.daynal.org/wiki/index.php?title=Paper_120 Michael's bestowal] elevated your [[planet]] to a position of [[honor]] and great universe interest. Sometimes the last is first, while truly the least becomes greatest.