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Aschlafly is an expert and has made his case.
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[[Image:Roth-01.gif|right|thumb|250px|"[[Paraconformity|Paraconformities]] — where one rock stratum sits on top of another rock stratum but with supposedly millions of years of geological time missing, yet the contact plane lacks any significant erosion; that is, it is a “flat gap”. E.g. Coconino sandstone / Hermit shale in the [[Grand Canyon]] (supposedly a 10 million year gap in time)."<ref>[http://creation.com/age-of-the-earth Age of the earth]</ref>. See: [http://creation.com/age-of-the-earth Age of the earth] ]]
 
[[Image:Roth-01.gif|right|thumb|250px|"[[Paraconformity|Paraconformities]] — where one rock stratum sits on top of another rock stratum but with supposedly millions of years of geological time missing, yet the contact plane lacks any significant erosion; that is, it is a “flat gap”. E.g. Coconino sandstone / Hermit shale in the [[Grand Canyon]] (supposedly a 10 million year gap in time)."<ref>[http://creation.com/age-of-the-earth Age of the earth]</ref>. See: [http://creation.com/age-of-the-earth Age of the earth] ]]
 
# [[Paraconformity|Paraconformities]] — where one rock stratum sits on top of another rock stratum but with supposedly millions of years of geological time missing, yet the contact plane lacks any significant erosion; that is, it is a “flat gap”. E.g. Coconino sandstone / Hermit shale in the [[Grand Canyon]] (supposedly a 10 million year gap in time).<ref>[http://creation.com/age-of-the-earth Age of the earth]</ref>. See: [http://creation.com/age-of-the-earth Age of the earth]
 
# [[Paraconformity|Paraconformities]] — where one rock stratum sits on top of another rock stratum but with supposedly millions of years of geological time missing, yet the contact plane lacks any significant erosion; that is, it is a “flat gap”. E.g. Coconino sandstone / Hermit shale in the [[Grand Canyon]] (supposedly a 10 million year gap in time).<ref>[http://creation.com/age-of-the-earth Age of the earth]</ref>. See: [http://creation.com/age-of-the-earth Age of the earth]
<!-- # The frequency of large [[earthquakes]] (more than 6.99 on the Richter scale) doubles roughly every 40 years,<ref>http://www.earth.webecs.co.uk/</ref> rendering long-term stability impossible.  Large earthquakes have increased by more than 20% in only the last decade <ref>http://earthquake.usgs.gov/earthquakes/eqarchives/year/eqstats.php</ref> - though according to a recent study, the global risk of big earthquakes has not increased over the last hundred years <ref>[http://www.pnas.org/content/early/2011/12/12/1118525109.abstract Peter M. Shearer, Philip B. Stark: ''Global risk of big earthquakes has not recently increased''], [http://www.pnas.org PNAS], Dec 19, 2011, doi: 10.1073/pnas.1118525109</ref> !-->
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# The frequency of large [[earthquakes]] (more than 6.99 on the Richter scale) doubles roughly every 40 years,<ref>http://www.earth.webecs.co.uk/</ref> rendering long-term stability impossible.  Large earthquakes have increased by more than 20% in only the last decade <ref>http://earthquake.usgs.gov/earthquakes/eqarchives/year/eqstats.php</ref> - though according to a recent study, the global risk of big earthquakes has not increased over the last hundred years <ref>[http://www.pnas.org/content/early/2011/12/12/1118525109.abstract Peter M. Shearer, Philip B. Stark: ''Global risk of big earthquakes has not recently increased''], [http://www.pnas.org PNAS], Dec 19, 2011, doi: 10.1073/pnas.1118525109</ref>  
 
# The continued existence of fragile natural arches without having collapsed a short time period for erosion and stresses on them.<ref>http://www.naturalarches.org/big9.htm</ref>{{fact}}
 
# The continued existence of fragile natural arches without having collapsed a short time period for erosion and stresses on them.<ref>http://www.naturalarches.org/big9.htm</ref>{{fact}}
 
# An extrapolation of time between the collapse of weaker arches<ref>http://www.washingtonpost.com/wp-dyn/content/article/2008/08/11/AR2008081102290.html</ref> with still-standing stronger arches supports a young earth age.
 
# An extrapolation of time between the collapse of weaker arches<ref>http://www.washingtonpost.com/wp-dyn/content/article/2008/08/11/AR2008081102290.html</ref> with still-standing stronger arches supports a young earth age.
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