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46:1.2 The [[standard]] [http://www.wikipedia/org/wiki/Mile mile] of [[Jerusem]] is [[equivalent]] to about [[seven]] [[Urantia]] miles. The [[standard]] [[weight]], the "gradant," is built up through the [[decimal]] system from the [[mature]] [[ultimaton]] and [[represents]] almost exactly ten [http://www.wikipedia.org/wiki/Ounce ounces] of your [[weight]]. The [[Satania]] day [[equals]] three days of [[Urantia]] [[time]], less one hour, four minutes, and fifteen seconds, that being the [[time]] of the [[axial]] [[revolution]] of [[Jerusem]]. The system year consists of one hundred [[Jerusem]] days. The [[time]] of [[the system]] is [[broadcast]] by the master [[chronoldeks]].
 
46:1.2 The [[standard]] [http://www.wikipedia/org/wiki/Mile mile] of [[Jerusem]] is [[equivalent]] to about [[seven]] [[Urantia]] miles. The [[standard]] [[weight]], the "gradant," is built up through the [[decimal]] system from the [[mature]] [[ultimaton]] and [[represents]] almost exactly ten [http://www.wikipedia.org/wiki/Ounce ounces] of your [[weight]]. The [[Satania]] day [[equals]] three days of [[Urantia]] [[time]], less one hour, four minutes, and fifteen seconds, that being the [[time]] of the [[axial]] [[revolution]] of [[Jerusem]]. The system year consists of one hundred [[Jerusem]] days. The [[time]] of [[the system]] is [[broadcast]] by the master [[chronoldeks]].
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46:1.3 The [[energy]] of [[Jerusem]] is superbly [[controlled]] and [[circulates]] about the [[sphere]] in the zone [[channels]], which are directly fed from the [[energy]] [[charge]]s of [[space]] and expertly [[administered]] by the [http://nordan.daynal.org/wiki/index.php?title=Paper_29#29:4._THE_MASTER_PHYSICAL_CONTROLLERS Master Physical Controllers]. The [[natural]] [[resistance]] to the passage of these [[energies]] through the [[physical]] [[channels]] of [[conduction]] yields the [[heat]] required for the production of the equable [[temperature]] of [[Jerusem]]. The full-[[light]] temperature is maintained at about 70 degrees [http://www.wikipedia.org/wiki/Fahrenheit Fahrenheit], while during the period of light [[recession]] it falls to a little lower than 50 degrees.
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46:1.3 The [[energy]] of [[Jerusem]] is superbly [[controlled]] and [[circulates]] about the [[sphere]] in the zone [[channels]], which are directly fed from the [[energy]] [[charge]]s of [[space]] and expertly [[administered]] by the [http://nordan.daynal.org/wiki/index.php?title=Paper_29#29:4._THE_MASTER_PHYSICAL_CONTROLLERS Master Physical Controllers]. The [[natural]] [[resistance]] to the passage of these [[energies]] through the [[physical]] [[channels]] of [http://en.wikipedia.org/wiki/Electrical_conduction conduction] yields the [[heat]] required for the production of the equable [[temperature]] of [[Jerusem]]. The full-[[light]] temperature is maintained at about 70 degrees [http://www.wikipedia.org/wiki/Fahrenheit Fahrenheit], while during the period of light [[recession]] it falls to a little lower than 50 degrees.
    
46:1.4 The lighting system of [[Jerusem]] should not be so [[difficult]] for you to [[comprehend]]. There are no days and nights, no [[seasons]] of heat and cold. The [http://nordan.daynal.org/wiki/index.php?title=Paper_29#29:4._THE_MASTER_PHYSICAL_CONTROLLERS power transformers] [[maintain]] one hundred thousand [[centers]] from which rarefied [[energies]] are [[projected]] upward through the [[planetary]] [[atmosphere]], undergoing certain [[changes]], until they reach the [[electric]] air-ceiling of the [[sphere]]; and then these [[energies]] are [[reflected]] back and down as a gentle, sifting, and even [[light]] of about the [[intensity]] of [[Urantia]] sunlight when the [[sun]] is shining overhead at ten o'clock in the morning.
 
46:1.4 The lighting system of [[Jerusem]] should not be so [[difficult]] for you to [[comprehend]]. There are no days and nights, no [[seasons]] of heat and cold. The [http://nordan.daynal.org/wiki/index.php?title=Paper_29#29:4._THE_MASTER_PHYSICAL_CONTROLLERS power transformers] [[maintain]] one hundred thousand [[centers]] from which rarefied [[energies]] are [[projected]] upward through the [[planetary]] [[atmosphere]], undergoing certain [[changes]], until they reach the [[electric]] air-ceiling of the [[sphere]]; and then these [[energies]] are [[reflected]] back and down as a gentle, sifting, and even [[light]] of about the [[intensity]] of [[Urantia]] sunlight when the [[sun]] is shining overhead at ten o'clock in the morning.
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46:1.5 Under such conditions of lighting, the [[light]] [[rays]] do not seem to come from one place; they just sift out of the [[sky]], [[emanating]] [[equally]] from all [[space]] directions. This [[light]] is very similar to [[natural]] sunlight except that it contains very much less [[heat]]. Thus it will be [[recognized]] that such [[headquarters]] worlds are not [[luminous]] in [[space]]; if [[Jerusem]] were very near [[Urantia]], it would not be [[Invisible|visible]].
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46:1.5 Under such conditions of lighting, the [[light]] [[rays]] do not seem to come from one place; they just sift out of the [http://en.wikipedia.org/wiki/Sky sky], [[emanating]] [[equally]] from all [[space]] directions. This [[light]] is very similar to [[natural]] sunlight except that it contains very much less [[heat]]. Thus it will be [[recognized]] that such [[headquarters]] worlds are not [[luminous]] in [[space]]; if [[Jerusem]] were very near [[Urantia]], it would not be [[Invisible|visible]].
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46:1.6 The [[gases]] which [[reflect]] this [[light]]-[[energy]] from the [[Jerusem]] upper [http://en.wikipedia.org/wiki/Ionosphere ionosphere] back to the ground are very similar to those in the [[Urantia]] upper air belts which are concerned with the [[auroral]] [[phenomena]] of your so-called ''northern lights'', although these are produced by [[different]] [[cause]]s. On [[Urantia]] it is this same [[gas]] shield which prevents the [[escape]] of the [[terrestrial]] [[broadcast]] [[waves]], [[reflecting]] them earthward when they strike this [[gas]] belt in their direct outward flight. In this way [[broadcasts]] are held near the [[surface]] as they [[journey]] through the air around your world.
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46:1.6 The [[gases]] which [[reflect]] this [[light]]-[[energy]] from the [[Jerusem]] upper [http://en.wikipedia.org/wiki/Ionosphere ionosphere] back to the ground are very similar to those in the [[Urantia]] upper air belts which are concerned with the [[auroral]] [[phenomena]] of your so-called ''northern lights'', although these are produced by [[different]] [[cause]]s. On [[Urantia]] it is this same [[gas]] shield which prevents the escape of the [[terrestrial]] [[broadcast]] [[waves]], [[reflecting]] them earthward when they strike this [[gas]] belt in their direct outward flight. In this way [[broadcasts]] are held near the [[surface]] as they [[journey]] through the air around your world.
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46:1.7 This lighting of the [[sphere]] is [[uniformly]] [[maintained]] for seventy-five per cent of the [[Jerusem]] day, and then there is a [[gradual]] [[recession]] until, at the time of minimum [[illumination]], the [[light]] is about that of your full [[moon]] on a clear [[night]]. This is the [[quiet]] hour for all [[Jerusem]]. Only the [[broadcast]]-receiving stations are in operation during this period of [[rest]] and [[rehabilitation]].
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46:1.7 This lighting of the [[sphere]] is [[uniformly]] [[maintained]] for seventy-five per cent of the [[Jerusem]] day, and then there is a [[gradual]] [[recession]] until, at the time of minimum [[illumination]], the [[light]] is about that of your full [[moon]] on a clear night. This is the [[quiet]] hour for all [[Jerusem]]. Only the [[broadcast]]-receiving stations are in operation during this period of [[rest]] and [[rehabilitation]].
    
46:1.8 [[Jerusem]] [[receives]] faint [[light]] from several near-by [[suns]]—a sort of [[brilliant]] [[starlight]]—but it is not dependent on them; worlds like [[Jerusem]] are not subject to the [[vicissitudes]] of [[sun]] [http://en.wikipedia.org/wiki/Solar_flare disturbances], neither are they confronted with the [[problem]] of a [http://en.wikipedia.org/wiki/Sun#Life_cycle cooling or dying sun].
 
46:1.8 [[Jerusem]] [[receives]] faint [[light]] from several near-by [[suns]]—a sort of [[brilliant]] [[starlight]]—but it is not dependent on them; worlds like [[Jerusem]] are not subject to the [[vicissitudes]] of [[sun]] [http://en.wikipedia.org/wiki/Solar_flare disturbances], neither are they confronted with the [[problem]] of a [http://en.wikipedia.org/wiki/Sun#Life_cycle cooling or dying sun].

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