Showing posts with label coronal mass ejection. Show all posts
Showing posts with label coronal mass ejection. Show all posts

Friday, November 2, 2012

Android tools for space weather and earthquakes

I have two android tools that have made understanding the basics of the relationship of space weather and earthquakes.

By using the NASA Space Weather app and the Earthquake Alert app one can observe CMEs leave the sun and impact the earth. From flares to the impact of the magnetosphere, more data is being added all the time.

The Earthquake Alert app also tells the depth of the impact of the electrical discharge rupturing the tectonic plate. 

I use these tools along with Google Alerts "Coronal Mass Ejections", to give myself about 2 days lead time to a major seizure. I have written before that these major seizure occur at the same time +/- speed and distance from the impact.

Thankyou for building these tools.
Aaron

Tuesday, May 17, 2011

Plasma bubbles feeds Coronal Mass Ejections.

This is another amazing picture of the Sun.

I found it at space.com


Credit: Japan's Hinode Spacecraft, Lockheed Martin

Tuesday, March 15, 2011

Solar Weather effects Earth's tectonics

It has been difficult to focus on one topic when so many catastrophic issues facing us. I have been writting on the effect of CMEs on planets. We see a direct effect on the Earth's Magnetosphere and Tectonic effects caused by solar events.


Credit: NASA

---
This is the CME that caused the 9.0 Japan earthquake and tsuanmi. This video shows the event three times and then shows a bar graph. It is also interesting that an object is in orbit infront of the Sun. As the final CME explodes the object is moved drastically out of orbit.



The CME is a charged electric field, a large composite of Z bosons. This event travels at the speed of Charge (electricity) in the medium of the space. We see these events 2-3 days before the charge event hits the magnetosphere. Thus it is not possible for electricty or charge to travel at C.

The CMEC travels until it hits a W+/- boson field that is capable of storing capacitance and intensiy of the Z boson field. This process is described in the papers and postings through out this blog.

When these CMEs hit the Earth's Magnetosphere, it deforms the longitudinal field of the W+/- boson magnetosphere. The intensity absorbsion is affected by the angle of impact and charge of the object.

Credit:ESA

Another interesting thing is that Japan was not facing the Sun during the CME impact. The epicenter is the point where tension is released. This means more tension was added to the plate system in different areas to cause this release of tension where the epicenter occured.

Sunday, April 4, 2010

Again I caught that on my unshielded CRT

It was upgraded to 7.2.


Credit NASA
Great pictures of the solar flare that caused that earthquake.
http://stereo-ssc.nascom.nasa.gov/browse/2010/04/04/index.shtml

This theory show that earthquakes originate from the sun. NASA can now predict earthquakes. It will take some time to match previous data to earthquakes. This matching of datasets will show magnitude. NASA just cannot predict the location of the event, yet. The tools already exist. Congratulations to NASA for their work and results.

Earthquakes are a result of solar flares. The intense Z Boson flares from the sun and strikes the earth. This causes a discharge in the magnetosphere that strikes the earth in the most vulnerable fault. This theory shows that earthquakes are the result of coronal mass ejections.

A simple solar radiation detector. 
Take a CRT TV attached to a cable line. Remove some of the shielding on the antenna. Leave the TV power on. I had company over and was able to show him the solar radiation intensity as it was happening. It was so intense that I shut down my computer.
-----------
04/06/10 Extreme changes from black to blue from 7:00 am est.

It is my speculation that every earthquake has a corresponding solar event. 

Friday, April 2, 2010

Investigating the driving mechanisms of coronal mass ejections

Investigating the driving mechanisms of coronal mass ejections
Chia-Hsien Lin, Peter T. Gallagher, and Claire L. Raftery

I am going to spend some time reading this. I will comment on it at a later time here.