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All Solar, Et Al, In 12 Years?

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Since we want to keep the earth the same as it is now or make it better there is something else we have to worry about.

I Think I will start a new movement and tap into the money pool.

http://www.dailymail.co.uk/sciencet...llapsing-affect-climate-wipe-power-grids.html

article-2545465-1AFF710A00000578-793_634x305.jpg


Earth's magnetic field has weakened by 15 per cent over the last 200 years


Deep within the Earth, a fierce molten core is generating a magnetic field capable of defending our planet against devastating solar winds.

The protective field extends thousands of miles into space and its magnetism affects everything from global communication to animal migration and weather patterns.

But this magnetic field, so important to life on Earth, has weakened by 15 per cent over the last 200 years.

The impact could be devastating for mankind, knocking out power grids, radically changing Earth’s climate and driving up rates of cancer.


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But the climate scientists missed the correlation of increasing CO2 levels to decreasing magnetic field strength. Everyone knows CO2 is responsible for climate change, right Pete? With this article Carnivore posted, there is a connection to Earth's magnetic field and weather systems.

Maybe these people that run the government are shielded from the knowledge of what is going on or they know but realize nobody will believe that CO2 causes the magnetic changes. :)
 
Earth's magnetic field has weakened by 15 per cent over the last 200 years

That explains why people are getting fat. If they are heavier, they won't float out into space.

Unlike the Earth, Mars has no inner dynamo to create a major global magnetic field. This, however, does not mean that Mars does not have a magnetosphere; simply that it is less extensive than that of the Earth.

The magnetosphere of Mars is far simpler and less extensive than that of the Earth. A magnetosphere is a kind of shield that prevents charged particles from reaching the planet surface. Since the particles borne by the solar wind through the Solar System are typically electrically charged, the magnetosphere acts as a protective shield against the solar wind.

In addition to particles, the solar wind carries magnetic field lines from the Sun. As magnetic field lines cannot pass through electrically conductive objects (such as Mars), they drape themselves around the planet creating a magnetosphere, even if the planet does not necessarily have a global magnetic field.

Despite the fact that Mars no longer has an internal dynamo capable of generating a large global magnetic field as on Earth, there is evidence to suggest that Mars may once have had such a dynamo. This is mainly supported by observations from the American satellite mission MGS (Mars Global Surveyor), which from 1997 to 2006 measured the magnetic field of Mars using a small magnetometer from an altitude of 100-400 km above the planet’s surface. These measurements showed the existence of powerful magnetic crustal fields on the planet’s surface, far more powerful than those found on Earth.

The presence of these crustal fields gives rise to local mini-magnetospheres, i.e. small areas where the lines of the magnetic field locally protect the planet surface from electrically charged particles. Mini-magnetospheres occur when a magnetic field line is connected to two different points on the Martian surface, thus creating a kind of bubble. Between these ‘bubbles’, one end of the magnetic field lines can be connected to the planet and the other to the interplanetary magnetic field (IMF).

If these mini-magnetospheres are sufficiently powerful and reach high enough above the Martian surface, they can disturb the boundaries within the planet’s global magnetic field, thus affecting the interaction between the solar wind and the atmosphere, and this may help to protect what is left of Mars’ weak atmosphere.

http://www.space.dtu.dk/english/Research/Universe_and_Solar_System/magnetic_field

The universe evolves.
We are part of the universe, and part of the evolution.

This is not new information for scientists.

It's just time to get the chicken littles organized into running in the same circle.


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Evidence of briny water on Mars
Date:
May 4, 2015
Source:
University of Arkansas, Fayetteville
Summary:
Data collected on Mars by NASA's Curiosity rover indicate that water, in the form of brine, may exist under certain conditions on the planet's surface.
http://www.sciencedaily.com/releases/2015/05/150504120507.htm

The superman story is true. Instead of Krypton, it was Mars.
The earth will evolve and wind up, similar to the way Mars is today, and there is nothing humans can do to stop it. That is a hard, yet statistically proven, truth.

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New research, published this week, has provided scientists with greater insight into the climatic changes happening in the upper atmosphere. Scientists found that changes in the Earth's magnetic field are more relevant for climatic changes in the upper atmosphere (about 100-500 km above the surface) than previously thought. Understanding the cause of long-term change in this area helps scientists to predict what will happen in the future. This has key implications for life back on earth.

A good understanding of the long-term behaviour of the upper atmosphere is essential; it affects a lot of satellite-based technology, such as global navigation systems and high-frequency radio communication systems. Some satellites even operate within the upper atmosphere itself.

The increase in atmospheric CO2 concentration has been thought to be the main cause of climatic changes at these high altitudes. This study suggests that magnetic field changes that have taken place over the past century are as important.

Both increasing levels of CO2 and changes in the Earth's magnetic field affect the upper atmosphere, including its charged portion, also known as the ionosphere. Dr. Ingrid Cnossen from the British Antarctic Survey used computer simulations to compare the effects of these two factors over the past century.

While CO2 causes heat to be trapped in the lower atmosphere, it actually cools the upper atmosphere. The simulations show that the increase in CO2 concentration over the past 100 years has caused the upper atmosphere, at around 300 km altitude, to cool by around 8 degrees. At the same altitude, changes in the Earth's magnetic field caused a similar amount of cooling over parts of North America, but caused a warming over other parts of the world, with the strongest warming, of up to 12 degrees, located over Antarctica.

Dr. Ingrid Cnossen said: "Computer simulations are a very important tool in understanding the causes of climate change at high altitudes. We still can't explain all of the long-term trends that have been observed, but it helps that we now know how important the magnetic field is."

The new simulations also indicate that rising CO2 levels have caused the densest part of the ionosphere to lower by about 5 km globally. Changes in the Earth's magnetic field can cause much larger changes, but they are very dependent on location and can be either positive or negative; over the southern Atlantic Ocean a decrease in height of up to 50 km was found, while an increase in height of up to 20 km was found over western Africa.

The findings are published in the Journal of Space Weather and Space Climate.

http://phys.org/news/2014-05-earth-magnetic-field-important-climate.html

It seems that climate scientists have ignored the relationship of the Earth's magnetic field and its effect on climate. How silly was that? Well that is understandable since they can't predict or control what happens in the upper atmosphere anymore than they can in the lower atmosphere, i.e. weather.
 
The earth's magnetic field impacts climate: Danish study

COPENHAGEN (AFP) -- The earth's climate has been significantly affected by the planet's magnetic field, according to a Danish study published Monday that could challenge the notion that human emissions are responsible for global warming.

"Our results show a strong correlation between the strength of the earth's magnetic field and the amount of precipitation in the tropics," one of the two Danish geophysicists behind the study, Mads Faurschou Knudsen of the geology department at Aarhus University in western Denmark, told the Videnskab journal.

http://www.viewzone.com/magnetic.weather.html

Gee, external factors in space have a significant impact on earth's climate. No wonder climate scientists predictions are unrealistic and wrong.
 
INSTITUT DE PHYSIQUE DU GLOBE DE PARIS

Are there connections between the Earth's magnetic field and climate?

Abstract:
Understanding climate change is an active topic of research. Much of the observed increase in global surface temperature over the past 150 years occurred prior to the 1940s and after the 1980s. The main causes invoked are solar variability, changes in atmospheric greenhouse gas content or sulfur due to natural or anthropogenic action, or internal variability of the coupled ocean-atmosphere system. Magnetism has seldom been invoked, and evidence for connections between climate and magnetic field variations have received little attention. We review evidence for correlations which could suggest such (causal or non-causal) connections at various time scales (recent secular variation similar to 10-100 yr, historical and archcomagnetic change similar to 100-5000 yr, and excursions and reversals similar to 101-10, yr), and attempt to suggest mechanisms. Evidence for correlations, which invoke Milankovic forcing in the core, either directly or through changes in ice distribution and moments of inertia of the Earth, is still tenuous. Correlation between decadal changes in amplitude of geomagnetic variations of external origin, solar irradiance and global temperature is stronger. It suggests that solar irradiance could have been a major forcing function of climate until the mid-1980s, when "anomalous" warming becomes apparent. The most intriguing feature may be the recently proposed archeomagnetic jerks, i.e. fairly abrupt (similar to 100 yr long) geomagnetic field variations found at irregular intervals over the past few millennia, using the archeological record from Europe to the Middle East. These seem to correlate with significant climatic events in the eastern North Atlantic region. A proposed mechanism involves variations in the geometry of the geomagnetic field (f.i. tilt of the dipole to lower latitudes), resulting in enhanced cosmic-ray induced nucleation of clouds. No forcing factor, be it changes in CO2 concentration in the atmosphere or changes in cosmic ray flux modulated by solar activity and geomagnetism, or possibly other factors, can at present be neglected or shown to be the overwhelming single driver of climate change in past centuries. Intensive data acquisition is required to further probe indications that the Earth's and Sun's magnetic fields may have significant bearing on climate change at certain time scales.

http://www.ipgp.fr/fr/are-there-connections-between-the-earths-magnetic-field-and-climate

How about those french scientists? Talk about an open mind and not settled science, the french are not convinced that CO2 is the major driver of climate.
 
The generation of the magnetic field is linked to the rotation of the earth, since Venus with a similar iron-core composition but a 243 Earth-day rotation period does not have a measurable magnetic field. It certainly seems plausible that it depends upon the rotation of the fluid metallic iron which makes up a large portion of the interior, and the rotating conductor model leads to the term "dynamo effect" or "geodynamo", evoking the image of an electric generator.

Convection drives the outer-core fluid and it circulates relative to the earth. This means the electrically conducting material moves relative to the earth's magnetic field. If it can obtain a charge by some interaction like friction between layers, an effective current loop could be produced. The magnetic field of a current loop could sustain the magnetic dipole type magnetic field of the earth. Large-scale computer models are approaching a realistic simulation of such a geodynamo.
http://hyperphysics.phy-astr.gsu.edu/hbase/magnetic/MagEarth.html

As the Earth cools from the inside out, the molten outer core is slowly freezing. This is leading the solid inner core to grow at a rate of approximately 1 millimeter per year.

However, scientists now find that the inner core might be melting at the same time.

"The standard view has been that the inner core is freezing all over and growing out progressively, but it appears that there are regions where the core is actually melting," said researcher Sebastian Rost, a seismologist at the University of Leeds in England. "The net flow of heat from core to mantle ensures that there's still overall freezing of outer core material and it's still growing over time, but by no means is this a uniform process."

As the Earth's interior cools, relatively hot and cold matter churns around inside the planet, a process known as convection. The roiling of material in the core, coupled with the spinning of the Earth, is what generates the planet's magnetic field.

Using computer models of convection in the outer core in conjunction with seismology data, the researchers found the flow of heat at the boundary of the core and mantle depended on the overlying mantle. At times, the nature of the mantle is enough to force heat from the mantle back onto the core, leading to melting in places.

"Only a small fraction of the inner core's surface may be melting at any given time," researcher Jon Mound, a geophysicist at the University of Leeds, told OurAmazingPlanet. "However, given the size of the inner core, even if only 1 percent of the surface is melting, which is certainly possible, that corresponds to just under 200,000 square kilometers (77,000 square miles)."

For instance, when it comes to large regions under Africa and the Pacific where the lowermost mantle is hotter than average, the outer core below those areas can become hot enough to start melting the inner core. On the other hand, beneath seismically active regions around the so-called "Ring of Fire"— a zone encircling the Pacific high in volcanic and earthquake activity — the cold remnants of oceanic plates sucked to the bottom of the mantle are drawing a lot of heat from the core, helping it freeze.

These findings suggest "that the whole dynamics of the Earth's core are in some way linked to plate tectonics, which isn't at all obvious from surface observations," Mound said.

This model could also explain seismic anomalies past research detected that have suggested there is a dense layer of liquid surrounding the inner core. "The localized melting theory could also explain other seismic observations — for example, why seismic waves from earthquakes travel faster through some parts of the core than others," Rost said.

"The origins of Earth's magnetic field remain a mystery to scientists," Mound noted. "If our model is verified, it's a big step towards understanding how the inner core formed, which in turn helps us understand how the core generates the Earth's magnetic field."

Much remains uncertain about this work. "We don't know precisely how much heat is moving through the core and how strong the patterns of temperature variation at the base of the mantle are," Mound said. "So it may not be possible to get the core flows we need to induce melting — not all models we ran gave melting."

In addition, "there is the general problem that all computer models of the dynamics of the Earth's core can't actually capture the true dynamics, as nobody has sufficient computer power to run models with enough detail in terms of both spatial and temporal resolution," Mound added. "The models produce a lot of the behavior that we observe in the Earth's core, but we can't be certain that we have the dynamics correct."

To see if the core really is melting, "we would need larger arrays of seismometers spread more evenly around the world, particularly in the oceans, which is a technological hurdle," Mound said. In addition, "we need to develop lab equipment that can explore the pressure and temperature conditions of the inner core — we are just on the edge of being able to do that reliably."

Mound, Rost and their colleagues David Gubbins and Binod Sreenivasan detailed their findings in the May 19 issue of the journal Nature.

http://www.livescience.com/14214-earth-core-melting.html

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"The origins of Earth's magnetic field remain a mystery to scientists," Mound noted.
Much remains uncertain about this work.
In addition, "there is the general problem that all computer models of the dynamics of the Earth's core can't actually capture the true dynamics, as nobody has sufficient computer power to run models with enough detail in terms of both spatial and temporal resolution," Mound added. "The models produce a lot of the behavior that we observe in the Earth's core, but we can't be certain that we have the dynamics correct."

Well at least these scientists are truthful and realist whereas the climate scientists (97% of them) think they know everything. Their computer models are wrong, can't predict reality, ignore all other variables or ascribe some to CO2. CO2 is the driver of the climate and global warming. Magnetic fields, solar and cosmic radiation are held constant in their computer models. How vain is this?
 
It's not vanity,

It's propaganda to move economies.

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