Noahs Flood-Birth of the Ice Age

The Bible doesn't say, “And then there was an Ice Age. human generations passed from the Flood to Abraham's birth: eight.1 God's judgment . where Noah's descendants lived after the Babel dispersion during the Ice Age.
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From whose womb comes the ice? In this verse, he talks about the deepness of the water being frozen or imprisoned. Though scientists believe there were several ice ages, Morris believes there was only one. As he points out in his article, The Ice Age , these same scientists acknowledge there were men around during these ice ages and they were dramatically impacted by it. One of the problems of the ice age is coming up with a reasonable explanation of where all the water came from needed to cover nearly a third of the earth with ice.

For the ice to move outwards from the polar caps, two things needed to take place. First there needed to be a cooling and some believe this meant summer temperatures in the US of just 58 F. There also needed to be a dramatic and rapid increase of water. Morris believes that a world-wide flood as outlined in the Book of Genesis is the best explanation of what caused the ice age. Job probably never saw the glaciers associated with the ice age, but obviously had heard about them from others.

Being from one of the more frigid parts of Canada, I understand that. But ice and snow are a popular topics of conversation because we have lots of it. This suggests the Middle East climate where Job lived was undoubtedly cooler as a result of the ice age.

Noah's Not-so-big Flood

So when Job brings up cold and ice he was describing life as he knew it. Job was also clear about one more thing, God was the cause. You are commenting using your WordPress. You are commenting using your Twitter account. The ice sheet will grow as long as the large supply of moisture is available, which depends upon the warmth of the ocean. Thus, the time to reach maximum ice volume will depend upon the cooling time of the ocean. This can be found from the heat balance equation for the ocean, with reasonable assumptions of post-Flood climatology and initial and final average ocean temperatures.

However, the heat lost from the ocean would be added to the atmosphere, which would slow the oceanic cooling with cool summers and warm winters. The time to reach maximum ice volume must also consider the heat balance of the post-Flood atmosphere, which would strongly depend upon the severity of volcanic activity. Considering ranges of volcanism and the possible variations in the terms of the balance equations, the time for glacial maximum ranges from to years.

The average ice depth at glacial maximum is proportional to the total evaporation from the warm ocean at mid and high latitudes, and the transport of moisture from lower latitudes. Since most snow in winter storms falls in the colder portion of the storm, twice the precipitation was assumed to fall over the cold land than over the ocean. Some of the moisture, re-evaporated from non-glaciated land, would end up as snow on the ice sheet, but this effect should be mostly balanced by summer runoff.

The average depth of ice was calculated at roughly half uniformitarian estimates. The latter are really unknown. As Bloom states, "Unfortunately, few facts about its thickness are known.


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The time to melt an ice sheet at mid-latitudes is surprisingly short, once the copious moisture source is gone. It depends upon the energy balance over a snow or ice cover. Crevassing would increase the absorption of solar radiation, by providing more surface area. The extensive loess sheets south of and within the periphery of the past ice sheet attest to this.

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Dust settling on the ice would greatly increase the solar absorption and melting. Earth scientists believe there were many ice ages—perhaps more than 30—in regular succession during the late Cenozoic based on oxygen isotope fluctuations in deep-sea cores. Before the early 20th century, the number of ice ages was much debated.

Some scientists believed in only one ice age, but the sediments are complex and have evidence of anywhere from one to four, or possibly more till sheets, separated by non-glacial deposits.

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Four ice ages became established mainly from gravel terraces in the Alps, and reinforced by soil stratigraphy. Much has been learned about glacial behavior and sedimentation since then. The Alps terraces are now viewed as possibly ". It is difficult to know whether they are really soils.

Additional significant problems with the article

There are strong indications that there was only one ice age. As discussed previously, the requirements for an ice age are very stringent. The problem grows to impossibility, when more than one is considered. Practically all the ice-age sediments are from the last, and these deposits are very thin over interior areas, and not overly thick at the periphery.

Till can sometimes be laid down rapidly, especially in end moraines.


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Thus the main characteristics of the till favor one ice age. Pleistocene fossils are rare in glaciated areas, which is mysterious, if there were many interglacials. Practically all the megafaunal extinctions were after the last—a difficult problem if there was more than one. One dynamic ice age could explain the features of the till along the periphery by large fluctuations and surges, which would cause stacked till sheets.

The Book of Job and the ice age | leondumoulin.nl

In addition, most of the snow and ice should accumulate at the periphery, closest to the main storm tracks. Large surface slopes and warm basal temperatures at the edge are conducive to rapid glacial movement. In summary, the mystery of the ice age can be best explained by one catastrophic ice age as a consequence of the Genesis Flood.