Posted on 01/30/2012 1:20:59 PM PST by Ernest_at_the_Beach
From National Geographic:
Clouds of charged particles stretch a quarter the way to the moon, experts say.
Clouds of cold plasma reach from the top of Earths atmosphere to at least a quarter the distance to the moon, according to new data from a cluster of European satellites.
Earth generates cold plasmaslow-moving charged particlesat the edge of space, where sunlight strips electrons from gas atoms, leaving only their positively charged cores, or nuclei.
(Find out how cold plasma might also help explain why Mars is missing its atmosphere.)
Researchers had suspected these hard-to-detect particles might influence incoming space weather, such as this weeks solar flare and resulting geomagnetic storm. Thats because solar storms barrage Earth with similar but high-speed charged particles.
(Excerpt) Read more at wattsupwiththat.com ...
Okay. . .it's actually just one human - Michael Moore. But he's a really big human, and he generates an awful lot of "cold plasma" which he releases into the atmosphere at regular intervals.
*************************************EXCERPT*****************************************
We’re all going to die!
Danger, danger, Will Robinson.
The massive cataclismic global warming will soon ignite this plasma and we’ll be come a second sun.
Oh noes, oh noes.
/s
But........we’re all still gunna die from global warming, right?
fyi
The Globaal Warming Blanket is bigger than we thought!
interesting
Meanwhile, parts of Alaska and the northwest areas of Canada are having some of the coldest weather patterns they have had in some time. And of course record amounts of low temps in Europe as well a snow fall.
Be careful out there.
Wow....Giant Veil of Cold Plasma....Cool
Great, we live on an anorexic rock.
That raises the question of what the atmospheric pressure was in ancient times. The question has eluded science until quite recently. Last October, Sanjoy M. Som, of the U of Washington, published a PhD thesis on the topic. He suggests the atmosphere was lighter way back when. From the abstract:
For Earth, I develop a new method of investigating atmospheric density and pressure using the size of raindrop imprints, and find that raindrop imprints preserved in the 2.7 billion year old Ventersdorp Supergroup of South Africa are consistent with precipitation falling in an atmosphere of near-surface density < 2 kg/m3 and probably > 0.1 kg/m3 , compared to a modern value of 1.2 kg/m3 , further suggesting a nitrogen level of at most twice present levels and perhaps well below present levels. To constrain this further, I re-evaluate a published paleobarometry technique using the vesicle size-distribution in simply emplaced lava flows and apply it to sea-level erupted lava flows from the 2.7 billion year old Fortescue group of Western Australia. Results from three flows suggest a range for atmospheric pressure 0.07 < Patm < 0.64 atm, which has profound consequences for our interpretation of the history of the nitrogen cycle by implying that the development of the nitrogenase enzyme necessary for nitrogen fixation happened very early on in the development of life.
Yeah but how much matter is the earth gaining from meteors and other space material. Maybe it balances out.
Yeah but how much matter is the earth gaining from meteors and other space material. Maybe it balances out.
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For reference: Plasma Clouds Around the Earth
Encircling the equatorial region of the Earth, and extending to latitudes nearly as far as the Arctic Circle, are regions of space where powerful flows of particles exist. Since the late 1950s at the dawn of the Space Age, they have been called the Van Allen belts. They were at one time believed to be particles from the solar wind, trapped by the Earths magnetic field. Like an invisible bottle, particles could enter the bottle but would have a hard time leaving.
There are actually two belts which are shaped like two nested donuts centered on the Earth. The inner belt contains 10 million-volt, high-energy protons (the stripped nuclei of hydrogen atoms), and is located between 700 kilometers and 12,000 kilometers from the Earths surface. The outer belt contains mostly electrons with energies higher than 1 million volts, located between 25,000 and 40,000 kilometers from the Earths surface.
There are two other important systems of particles that invisibly orbit the Earth: the plasmasphere and the ring current. Both of these systems contain much lower energy particles than the Van Allen belts, although they occupy nearly the same regions of space extending to at least 45,000 kilometers from the Earths surface.
Low-energy particles, with energies of a few tens of volts, surround the Earth in a vast donut-shaped cloud called the plasmasphere. The Earths magnetic field in this region is so strong that the charged plasmasphere particles are pulled along with the Earths 24-hour rotation. During times of severe coronal mass ejections, atoms from the Earths atmosphere are actually pumped into the plasmasphere in a so-called polar fountain. These fountains can be detected by orbiting satellites as they pass through the arctic and antarctic regions within a few thousand kilometers of the Earth.
The ring current extends from 8,000 kilometers to nearly 30,000 kilometers from the surface and occupies nearly the same zone as the much more energetic Van Allen belts. Ring current particles carry energies of thousands of volts. It is not a complete equatorial ring, like the planet Saturns rings, but is only at its strongest on the night-side of the Earth. Its strength increases and decreases with the activity in the magnetotail region.
During times of severe storminess, when the solar wind magnetic polarity is south-type, the ring current becomes a powerful river of charged particles that create their own intense magnetic field. This field modifies the Earths own field and actually decreases its intensity in the equatorial regions of the Earth. The origin of these 100,000-volt particles is something of a scientific mystery. We dont fully understand how they are energized to such high voltages within the magnetosphere.
http://image.gsfc.nasa.gov/poetry/educator/litho8.html
Visualizations:
http://science.nasa.gov/media/medialibrary/1998/10/29/ast07jan99_1_resources/mag_sketch_633_new.jpg
http://images.sciencedaily.com/2008/12/081212141849-large.jpg