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Some events it describes, including the {{w|Big Bang}} and {{w|Inflation (cosmology)|Inflation}} are real, but others are jokes, including the ''Medium Bang'' and ''Settling''.  The size history of the visible universe is also embellished for the sake of jokes; the actual size history of the universe has one period referred to as Inflation, which occurred shortly after the Big Bang, followed by comparatively gentle but accelerating expansion.  This is artistically depicted in [https://map.gsfc.nasa.gov/media/060915/060915_CMB_Timeline150.jpg this image from NASA]. Part of the humor in this comic comes from the fact that the varied rate of change in expansion is not yet fully understood, with explanations of events leading to this change including theories such as "dark matter" and "dark energy" (this might therefore be construed as "dark humor"). At the end of the drawing four possible continuations of the timeline are suggested, with director J. J. Abrams listed as the deciding factor between them, stating that all future cosmological development has been handed over to him. Abrams directed the 2009 movie ''{{w|Star Trek (film)|Star Trek}}'', which established additional alternate timelines for the {{w|Star Trek|Star Trek franchise}}, so it may be implied that multiple timelines could result from direction by Abrams in the future. Notably, each Star Trek series has included multiple interacting timelines. For information about each of the events shown in this comic's ''Timeline of the Universe'', see detailed explanations in the section [[#Events on the Timeline of the Universe|Events on the Timeline of the Universe]] below.
 
Some events it describes, including the {{w|Big Bang}} and {{w|Inflation (cosmology)|Inflation}} are real, but others are jokes, including the ''Medium Bang'' and ''Settling''.  The size history of the visible universe is also embellished for the sake of jokes; the actual size history of the universe has one period referred to as Inflation, which occurred shortly after the Big Bang, followed by comparatively gentle but accelerating expansion.  This is artistically depicted in [https://map.gsfc.nasa.gov/media/060915/060915_CMB_Timeline150.jpg this image from NASA]. Part of the humor in this comic comes from the fact that the varied rate of change in expansion is not yet fully understood, with explanations of events leading to this change including theories such as "dark matter" and "dark energy" (this might therefore be construed as "dark humor"). At the end of the drawing four possible continuations of the timeline are suggested, with director J. J. Abrams listed as the deciding factor between them, stating that all future cosmological development has been handed over to him. Abrams directed the 2009 movie ''{{w|Star Trek (film)|Star Trek}}'', which established additional alternate timelines for the {{w|Star Trek|Star Trek franchise}}, so it may be implied that multiple timelines could result from direction by Abrams in the future. Notably, each Star Trek series has included multiple interacting timelines. For information about each of the events shown in this comic's ''Timeline of the Universe'', see detailed explanations in the section [[#Events on the Timeline of the Universe|Events on the Timeline of the Universe]] below.
  
βˆ’
The title text is a variation of one of [[Randall|Randall's]] standard jokes that his drawings are ''Not actual size''; in the case of this comic there is technically one spot near the left where the drawing depicts the actual relative size of the universe at the time the drawing represents. Where his drawing begins, at the time when the universe began, per definition, our visible universe had no measurable size. Very soon (within a tiny fraction of an attosecond) after the universe as we know it began, the inflation period blew it up very very fast and then it continued to expand until present day. So at some "time" after the big bang, our visible universe would have had a size (i.e. diameter) that would be the same as any thickness of Randall's universe "line". Since the universe as depicted in the comic goes from infinitesimal size at the moment of the Big Bang to the full size of the universe today, at some point near the left there will be a point where Randall's representation would have the same size as the universe at the correct "time period". Of course a problem with this is that there was only a very very short time period after inflation where the diameter of the observable universe is on the same scale as this comic, and that point is neither indicated nor likely to be accurate in relation to the duration of time elapsed. According to an answer given [https://physics.stackexchange.com/questions/32917/size-of-universe-after-inflation here] regarding the size of the visible universe after inflation, there is reason to believe that the size was still less than 1 mm in diameter when the stage of expansion known as Inflation ended, which is less than the thickness of the line shown at the Big Bang (depending on the screen size the comic is viewed upon); So the point along the timeline where the size of our visible universe matched the line width appears after the Inflation period is thought to have ended. Since Randall includes the ''Medium Bang'' before Inflation on his drawing he has already inserted a mistake there, but as the next three epochs after Inflation are real epochs, it is likely somewhere in this part of the drawing that the visible universe would have had the same diameter as the thickness of the drawing at a relevant time epoch on the drawing. This will thus not be that far to the left but around the Quark epoch.
+
The title text is a variation of one of [[Randall|Randall's]] standard jokes that his drawings are ''Not actual size''; in the case of this comic there is technically one spot near the left where the drawing depicts the actual relative size of the universe at the time the drawing represents. Where his drawing begins, at the time when the universe began, per definition, our visible universe had no measurable size. Very soon (attoseconds) after the universe as we know it began, the inflation period blew it up very very fast and then it continued to expand until present day. So at some "time" after the big bang, our visible universe would have had a size (i.e. diameter) that would be the same as any thickness of Randall's universe "line". Since the universe as depicted in the comic goes from infinitesimal size at the moment of the Big Bang to the full size of the universe today, at some point near the left there will be a point where Randall's representation would have the same size as the universe at the correct "time period". Of course a problem with this is that there was only a very very short time period after inflation where the diameter of the observable universe is on the same scale as this comic, and that point is neither indicated nor likely to be accurate in relation to the duration of time elapsed. According to an answer given [https://physics.stackexchange.com/questions/32917/size-of-universe-after-inflation here] regarding the size of the visible universe after inflation, there is reason to believe that the size was still less than 1 mm in diameter when the stage of expansion known as Inflation ended, which is less than the thickness of the line shown at the Big Bang (depending on the screen size the comic is viewed upon); So the point along the timeline where the size of our visible universe matched the line width appears after the Inflation period is thought to have ended. Since Randall includes the ''Medium Bang'' before Inflation on his drawing he has already inserted a mistake there, but as the next three epochs after Inflation are real epochs, it is likely somewhere in this part of the drawing that the visible universe would have had the same diameter as the thickness of the drawing at a relevant time epoch on the drawing. This will thus not be that far to the left but around the Quark epoch.
  
 
===Events on the Timeline of the Universe===
 
===Events on the Timeline of the Universe===
 
The events presented in the timeline are:
 
The events presented in the timeline are:
  
βˆ’
* '''??''' (more than 13.8 billion years ago ({{w|Billion years|Gya}})): the unknown state of the universe prior to the Big Bang, if such a statement is even sensible. There are theories that our Universe is a bubble where inflation stopped (13.8 billion years ago in this universe) in an infinite and {{w|Eternal inflation|eternally inflating}} larger universe, which would give rise to the possibility of a {{w|multiverse}} with many bubble universes like ours where inflation has stopped. See for instance this recent video on the subject: [https://www.youtube.com/watch?v=XglOw2_lozc How Many Universes Are There?] from PBS Space Time. If this is true, the universe did not start at the big bang, but our part of the infinite universe actually began when the inflation period stopped, and not at the Big Bang.
+
* '''??''' (more than 13.8 billion years ago ({{w|Billion years|Gya}})): the unknown state of the universe prior to the Big Bang, if such a statement is even sensible. There are theories that our Universe is a bubble where inflation stopped (13,8 billion years ago in this universe) in an infinite and {{w|Eternal inflation|eternally inflating}} larger universe, which would give rise to the possibility of a {{w|multiverse}} with many bubble universes like ours where inflation has stopped. See for instance this recent video on the subject: [https://www.youtube.com/watch?v=XglOw2_lozc How Many Universes Are There?] from PBS Space Time. If this is true, the universe did not start at the big bang, but our part of the infinite universe actually began when the inflation period stopped, and not at the Big Bang.
 
* '''{{w|Big Bang}}''' (13.8 Gya): The model of the origin of the universe which has achieved consensus among astronomers.  We have observed that all galaxies are receding away from Earth at rates that are roughly proportional to their distance, and the simplest explanation for this is that the universe is expanding.  If the universe is expanding, then (unless new physics are discovered) it must have at one time been very, very small and dense; that moment in time is called the Big Bang.
 
* '''{{w|Big Bang}}''' (13.8 Gya): The model of the origin of the universe which has achieved consensus among astronomers.  We have observed that all galaxies are receding away from Earth at rates that are roughly proportional to their distance, and the simplest explanation for this is that the universe is expanding.  If the universe is expanding, then (unless new physics are discovered) it must have at one time been very, very small and dense; that moment in time is called the Big Bang.
 
* '''{{w|Timeline_of_epochs_in_cosmology#Planck_epoch|Planck Epoch}}''': The time period starting from the Big Bang, the Planck epoch or Planck era is the earliest stage of expansion currently calculable, before the time passed was equal to the Planck time (tP, or approximately 10^-43 seconds). There is no currently available physical theory to describe such short times, and it is not clear in what sense the concept of time is meaningful for values smaller than the Planck time.  
 
* '''{{w|Timeline_of_epochs_in_cosmology#Planck_epoch|Planck Epoch}}''': The time period starting from the Big Bang, the Planck epoch or Planck era is the earliest stage of expansion currently calculable, before the time passed was equal to the Planck time (tP, or approximately 10^-43 seconds). There is no currently available physical theory to describe such short times, and it is not clear in what sense the concept of time is meaningful for values smaller than the Planck time.  
βˆ’
* '''Medium Bang''' (a joke): If there's a Big Bang, why not have a medium one?  There should probably also be a Little Bang, but maybe it's just too little to be featured on this chart.
+
* '''Medium Bang''' (a joke): If there's a Big Bang, why not have medium one?  There should probably also be a Little Bang, but maybe it's just too little to be featured on this chart.
 
* '''{{w|Inflation (cosmology)|Inflation}}''' (10^-36 to 10^-32 seconds after the Big Bang): A theory developed to explain the large-scale structure of the universe that postulates a period when the universe expanded very much faster than the speed of light. (The universe still expands faster than the speed of light, but only 2-3 times as fast. The limit of the speed c, is only valid for things moving in space time, not for the stretching of space itself!)
 
* '''{{w|Inflation (cosmology)|Inflation}}''' (10^-36 to 10^-32 seconds after the Big Bang): A theory developed to explain the large-scale structure of the universe that postulates a period when the universe expanded very much faster than the speed of light. (The universe still expands faster than the speed of light, but only 2-3 times as fast. The limit of the speed c, is only valid for things moving in space time, not for the stretching of space itself!)
 
* '''{{w|Timeline_of_epochs_in_cosmology#Quarks_epoch|Quark Epoch}}''' (10^-12 seconds after the Big Bang): The universe is a quark-gluon plasma, up until 10^-6 seconds when it cools enough to coalesce into hadrons, including protons and neutrons.
 
* '''{{w|Timeline_of_epochs_in_cosmology#Quarks_epoch|Quark Epoch}}''' (10^-12 seconds after the Big Bang): The universe is a quark-gluon plasma, up until 10^-6 seconds when it cools enough to coalesce into hadrons, including protons and neutrons.

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