Determination Of Sea Level After The Great Flood - Alternative View

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Determination Of Sea Level After The Great Flood - Alternative View
Determination Of Sea Level After The Great Flood - Alternative View

Video: Determination Of Sea Level After The Great Flood - Alternative View

Video: Determination Of Sea Level After The Great Flood - Alternative View
Video: This is what sea level rise will do to coastal cities 2024, May
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1. Great Flood

The Great Flood is a real event that has been described by many ancient legends.

Today we have enough information to describe the period and format of this event.

First of all, this is the Google Planet program, which gave a huge amount of material on the planet's surface.

Secondly, the emergence in the 21st century of reliable data on the Earth's climate and the composition of its atmosphere over the past 400,000 years.

The study of ice cores obtained at VOSTOK station in Antarctica provided answers to many unresolved questions.

Today there is no doubt about the existence and death of Atlantis as a result of this catastrophe.

The opening of a crack in the middle of the Atlantic Ocean, the release of magma and the sinking of the ocean floor along with the island of Atlantis, was a global catastrophe that led to the death of the entire civilization.

Promotional video:

Today we can restore many moments and parameters of that catastrophe.

Each person has the opportunity to access sources of information and make independent conclusions.

2. Determining the date of the flood

The year of the flood can be determined by analyzing data obtained from an ice core in Antarctica.

This graph is based on the VOSTOK station core, which contains more than 422,000 annual rings.

Fig. 1 Graph of temperature, dust, carbon dioxide according to Vostok station data
Fig. 1 Graph of temperature, dust, carbon dioxide according to Vostok station data

Fig. 1 Graph of temperature, dust, carbon dioxide according to Vostok station data.

The date of the flood can best be determined by looking at the dust profile.

If we believe that during the flood it rained for 40 days. then the dustiness should have dropped abruptly.

The Earth's temperature is a much more inert value; it could change for more than a thousand years.

As can be clearly seen in this graph, the concentration of dust in the atmosphere literally collapsed 12,000 years ago.

Unfortunately, we do not have accurate data for years, they have not been published by scientists.

See the dust table for this graph.

Source: ftp://ftp.ncdc.noaa.gov

Ice age (GT4)

4509 0.025

4552 0.018

4690 0.015

5259 0.033

5674 0.028

6486 0.013

6874 0.02

6924 0.018

7267 0.038

7697 0.023

7745 0.065

8091 0.038

9107 0.04

9298 0.05

10265 0.018

10515 0.03

10861 0.033

11053 0.045

11749 0.05

11973 0.025 - minimum point, with a step of more than 300 years.

12569 0.075

13055 0.075

13237 0.04

13828 0.033

14404 0.085

14713 0.163

14775 0.18

15032 0.17

16426 0.638

16502 0.773

16653 0.32

17544 1.098

We decided on the year of the flood 11,973 ± 300 years ago.

This data was obtained in 2001.

This means that the active phase of the flood (RAIN) was 11973-2001 = 9972 ± 300 BC.

This date agrees well with Plato.

In his works, Critias and Timaeus, he writes that Atlantis died 9000 years ago.

These works were written about 340 BC. e.

Then according to Plato, the death of Atlantis we get 9340 ± 500 BC.

Since Plato operates with the concept of a thousand, we will consider for a thousand accuracy ± 500

The Bible says:

In the six hundredth year of Noah's life, in the second month, on the seventeenth day of the month, on this day all the springs of the great abyss were opened, and the windows of heaven were opened and it rained on the earth for forty days and forty nights.

That is, Noah was 600 years 2 months 17 days when the flood happened.

We have reached the age of Noah and what happened during the flood.

Which is very valuable.

Unfortunately, the date of the flood is not spelled out in the Bible.

Noah is believed to have lived between 1026-2006. from the creation of the World (Adam).

The date of creation of the world (Adam) was calculated by the sages according to the life expectancy of the descendants of Adam.

It is difficult to understand at all how in this way they were able to determine the date of the creation of the world.

Calculations of the ancient sages of the date of the creation of the world:

3491 BC e. - dating according to Jerome;

3761 BC e. - (October 6/7) Jewish era

4004 BC e. (October 23) - by James Asher;

4700 BC e. - the Samaria era;

5199 BC e. - dating according to Eusebius of Caesarea;

5493 BC - (March 25) Annian Era of Alexandria

5500 BC e. - after Hippolytus and Sextus Julius Africanus;

5515 BC e. - according to Theophilus;

5508 BC e. - (March 21) Byzantine era

5509 BC e. - (September 1) Byzantine era

5551 BC e. - according to Blessed Augustine;

5872 BC e. - the so-called dating of 70 interpreters.

5969 BC e. - (September 1) Era of Antioch

It turns out that according to the calculations of medieval people, the flood was in the period 1865 … 4343. BC.

Which does not agree well with the cores of Antarctica and the messages of Plato.

Therefore, it makes no sense to rely on these calculations, their error is more than 50%.

However, the events of the flood themselves were well documented in the Old Testament.

And they agree well with Plato's data.

From the Old Testament we have:

1. It rained for 40 days.

2. The water arrived for 150 days.

If we knew the time of year when Noah was born, then it would be possible to determine the time of year when the flood began.

Conclusion: The beginning of the Flood can be considered 9972 ± 300 BC.

3. Determination of sea level after the flood

The Google Planet program will help us determine the sea level after the flood.

Since the traces of the sea have left a clear coastal footprint on all continents of the Earth.

After warm rains melted a large amount of ice, the water remained at this level for a long time.

Accordingly, in places of elevation differences, we see a clear coastline.

For example, the ancient coast of the Mediterranean Sea runs through the entire Sahara Desert.

Which you can easily spot with the naked eye.

Fig. 2 Coastline of the sea in the Sahara Desert
Fig. 2 Coastline of the sea in the Sahara Desert

Fig. 2 Coastline of the sea in the Sahara Desert.

Using a program capable of displaying sea level rise.

For example, We can determine the sea level that corresponds to the ancient coast.

Let's raise the ocean level with this program.

Fig. 3 Water rise by 100 meters. There is a lack of level
Fig. 3 Water rise by 100 meters. There is a lack of level

Fig. 3 Water rise by 100 meters. There is a lack of level.

Figure: 4. Water rise 150 meters
Figure: 4. Water rise 150 meters

Figure: 4. Water rise 150 meters.

Figure: 5 Water rise 180 meters. The coastline has been exceeded
Figure: 5 Water rise 180 meters. The coastline has been exceeded

Figure: 5 Water rise 180 meters. The coastline has been exceeded.

With this method, we can determine that the coastline in the Sahara Desert is within 150-180 m above sea level.

Let's take another part of the planet, the Caspian Sea, the Kara-Bogaz-Gol Bay.

Fig. 6 Kara-Bogaz-Gol bay
Fig. 6 Kara-Bogaz-Gol bay

Fig. 6 Kara-Bogaz-Gol bay.

Fig. 7 Kara-Bogaz-Gol bay. Level +150 meters
Fig. 7 Kara-Bogaz-Gol bay. Level +150 meters

Fig. 7 Kara-Bogaz-Gol bay. Level +150 meters.

Fig. 8 Kara-Bogaz-Gol bay. Level +200 meters
Fig. 8 Kara-Bogaz-Gol bay. Level +200 meters

Fig. 8 Kara-Bogaz-Gol bay. Level +200 meters.

Fig.9 Bay Kara-Bogaz-Gol. Level +250 meters
Fig.9 Bay Kara-Bogaz-Gol. Level +250 meters

Fig.9 Bay Kara-Bogaz-Gol. Level +250 meters.

As we see in the Kara-Bogaz-Gol gulf, the level has risen by 200-250 meters.

Fig. 10 Let's take a section of the ancient coast in Tunisia
Fig. 10 Let's take a section of the ancient coast in Tunisia

Fig. 10 Let's take a section of the ancient coast in Tunisia.

Fig. 11 Tunisia. Sea level +180 meters
Fig. 11 Tunisia. Sea level +180 meters

Fig. 11 Tunisia. Sea level +180 meters.

Figure: 12 Tunisia. Sea level +220 meters
Figure: 12 Tunisia. Sea level +220 meters

Figure: 12 Tunisia. Sea level +220 meters.

The level of the ancient coast in Tunisia is 180-220 meters above sea level.

We see that this method can be used to estimate the sea level after the flood in a given area.

The position on different continents can vary up to 100 meters.

Perhaps this is due to the raising and lowering of plates over the past 12,000 years.

With this method, we can assert that the water level after the flood was 150-250 meters higher than the current one.

Can we measure it more accurately?

Yes, there is a wonderful ruler on the Giza plateau.

This is the pyramid of Khafre.

In the pyramids on the Giza plateau, salty streaks still appear.

This suggests that the pyramids were in salt water.

The upper plaster layer of the Khafre pyramid remained intact only because it was above the water level.

Fig. 13 Pyramid of Khafre
Fig. 13 Pyramid of Khafre

Fig. 13 Pyramid of Khafre.

Height above sea level at the base of the pyramid is 74 meters. The height of the pyramid is 143 meters. The plaster layer lies at a height of about 100 meters. From this we can conclude that the sea level after the flood was 174 meters higher than the current sea level. Conclusion: The water level after the flood was 174 meters higher than today.

4. Sea level before the flood Determining the water level before the flood is even easier than after the flood. Since the coast has been stable for about 50 thousand years and has left a wonderful coastline. It is all cut by rivers and is clearly visible on the Google Planet map.

Google Planet has already done everything for us, it even highlighted this coast in blue. It remains only to measure the depth at the edge of this coast. It is equal to 180-200 meters below sea level
Google Planet has already done everything for us, it even highlighted this coast in blue. It remains only to measure the depth at the edge of this coast. It is equal to 180-200 meters below sea level

Google Planet has already done everything for us, it even highlighted this coast in blue. It remains only to measure the depth at the edge of this coast. It is equal to 180-200 meters below sea level.

Fig. 15 Here's a look at the Black Sea. Its ancient size is clearly delineated by the coastline at -180 meters
Fig. 15 Here's a look at the Black Sea. Its ancient size is clearly delineated by the coastline at -180 meters

Fig. 15 Here's a look at the Black Sea. Its ancient size is clearly delineated by the coastline at -180 meters.

We see riverbeds, horses, bays, etc.

Conclusion: The water level before the flood was 180 ± 20 meters lower than today.

5. Wind direction during the flood

It is very important where the wind was blowing during the flood.

For 40 days, torrential rains of incredible strength poured onto the Earth.

And the wind directed these streams in a certain direction.

Where the soil was washed away the most, there was more rain.

On the Google Planet map, we see this perfectly with the naked eye.

Fig. 16 Wind direction during a flood
Fig. 16 Wind direction during a flood

Fig. 16 Wind direction during a flood.

The wind drove the bulk of the steam to the east and southeast.

There is absolutely no fertile soil on the way of this shower.

She was washed into the ocean.

If you look to the west, everything is blooming and flourishing, the soil has remained in place.

We can determine the vaporization zone by islands in the Atlantic Ocean.

Those islands that have been hit by the downpours still lack vegetation.

Figure: 17 Las Palmas Island. Completely devoid of soil
Figure: 17 Las Palmas Island. Completely devoid of soil

Figure: 17 Las Palmas Island. Completely devoid of soil.

The islands to the west of the fault are in bloom, the soil has remained on them.

Fig. 18 Flores Island. Located just west of the tectonic fault. Has soil
Fig. 18 Flores Island. Located just west of the tectonic fault. Has soil

Fig. 18 Flores Island. Located just west of the tectonic fault. Has soil.

Thus, having outlined the islands without soil, we can highlight the zone of water evaporation and steam movement.

It is absolutely clear that the main blow of the showers fell on North Africa.

He turned a blooming land into a stone desert.

Fig. 19 Fossilized trees on the ancient coast
Fig. 19 Fossilized trees on the ancient coast

Fig. 19 Fossilized trees on the ancient coast.

Fig. 20 Coastline after the flood. Africa
Fig. 20 Coastline after the flood. Africa

Fig. 20 Coastline after the flood. Africa.

5. Parameters of the Great Flood. We were able to determine the following data about the Great Flood: 1. Date of the beginning of the flood: 9972 ± 300 BC. 2. Sea level after the flood: + 174 ± 10 m 3. Sea level before the flood: -180 ± 20 m 4. Wind direction: south-east 5. Duration of showers: 40 days (Old Testament) 6. Water level rise: 150 days (Old Testament) 7. Total water rise: 354 ± 30 m

Author: Yashkardin Vladimir