Tuesday, July 23, 2013

Nicola Tesla Energy Is Awesome

You might be wondering why everyone is not on board with this, and why so many are still under the thumb of their electrical company. The main reason is that people are skeptical that such an invention as the Tesla generator actually exists, with many of those folks quick to scoff at the idea and continue paying their huge monthly bills. Are you going to be one of those that continue to follow along like a sheep, or are you going to take a chance to see if the Nikola Tesla energy generator can actually become a reality?
A lot of time has passed since then, and as is the case with all classified documents, his original papers are now part of the public record. That means that the  Tesla generator can now be available to anyone who has the time to build it themselves. Imagine being able to save anywhere from 60% to 100% on your energy bill each and every month and you have an idea of exactly what the Nikola Tesla energy generator can do for you and your home. A simple Google search will quickly reveal all sorts of plans that will show you exactly how to build one on your own.
Solar power is quickly becoming one of the most popular ways to drive juice into the home, and while it is an incredibly effective way to do so, the start-up costs are still prohibitive for many. It seems ironic to think that the same man that invented the alternating current, which is responsible for our electrical power, would also be the same person that held the key to everyone having free power in their homes, courtesy of the Nikola Tesla energy generator.
If the quantity of water that is condensed in and subsequently precipitated from a cloud is known, then the total energy of a thunderstorm can be calculated. In an average thunderstorm, the energy released amounts to about 10,000,000 kilowatt-hours (3.6×1013 joule), which is equivalent to a 20-kiloton nuclear warhead. A large, severe thunderstorm might be 10 to 100 times more energetic.
MRI scans require a magnetic field with two properties, uniform field density and strength. The magnetic field cannot vary more than 1/10,000 of 1% and field strength ranges (depending on the scanner) from 0.2 to 3 teslas in strength in scanners currently used clinically, with research scanners investigating higher field strengths such as 7 teslas. The lower field strengths can be achieved with permanent magnets, which are often used in "open" MRI scanners for claustrophobic patients. Higher field strengths can be achieved only with superconducting magnets. An MRI with a 3.0 tesla strength magnet may be referred to as a "3-T MRI" or "3-tesla MRI"
The Tesla secret brings you FREE power, electricity, and energy that is easy to build, easy to use, and easy to transport. We;ll go step-by-step into the Tesla secret to show you how it;s possible to get FREE Electricity.
In a dual resonant solid-state Tesla coil (DRSSTC), the electronic switching of the solid-state Tesla coil is combined with the resonant primary circuit of a spark-gap Tesla coil. The resonant primary circuit is formed by connecting a capacitor in series with the primary winding of the coil, so that the combination forms a series tank circuit with a resonant frequency near that of the secondary circuit. Because of the additional resonant circuit, one manual and one adaptive tuning adjustment are necessary. Also, an interrupter is usually used to reduce the duty cycle of the switching bridge, in order to improve peak power capabilities; similarly, IGBTs are more popular in this application than bipolar transistors or MOSFETs, due to their superior power handling characteristics. Performance of a DRSSTC can be comparable to a medium power spark gap Tesla coil, and efficiency (as measured by spark length versus input power) can be significantly greater than a spark gap Tesla coil operating at the same input power.
In December 1878, Tesla left Graz and severed all relations with his family to hide the fact that he dropped out of school. His friends thought that he had drowned in the Mur River. Tesla went to Maribor (now in Slovenia), where he worked as a draftsman for 60 florins a month. He spent his spare time playing cards with local men on the streets. In March 1879, Milutin Tesla went to Maribor to beg his son to return home, but Nikola refused. Nikola suffered a nervous breakdown at around the same time.

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