Showing posts with label invent. Show all posts
Showing posts with label invent. Show all posts

Wednesday, 16 July 2008

How to Run Your Car On Water - You Can Do It Yourself: by Mark Myers

Have you ever wondered why physicists have not invented a device to run your car on water? This has already been invented and was patented over 9 decades ago. Modern science did, just a long time ago. This is nothing new, but has never made it to primetime because oil, gas, and energy was cheap.
Here is how to run your car on water.
1.Create a source of renewable electrical power (read your cars battery and alternator) 2. Mix water with something that will enable it to conduct electricity better (Arm & Hammer baking soda) 3. Electrify current from battery to water mixture 4. Watch the bubbles (The bubbles are a mixture of hydrogen and oxygen gas) 5. Use the vacuum system from your car to extract the gas mixture you created (the bubbles) 6. The vacuum injects the hydrogen gas into the cars intake 7. Mix the HHO with gasoline (inside the piston of the car through the intake) 8. Ignite the mixture with a very powerful igniter (read spark plug) 9. Enjoy 50% better fuel mileage
Sound simple? It really is. Ihave deleted a lot due to space allotted, like how much of what, in what, apply current how, etc. I only intended to cover the minimums so you could envision how to your car on water. I know, this still uses gas, correct, just much less of it.
Last time I was at Wal-Mart, gas was $3.99 a gallon, distilled water was $0.69. One gallon of fuel without this system gets you 20 miles. The gallon of water expands to almost 2000 gallons of HHO and allows you to get 50 % further on the same gallon of gas. No brainer huh?
Is this free energy? No, there is no such thing (yet). Every machine whether living like plants and animals and non living like engines and sailboats use more energy than the produce. What is amazing, is this technology uses power that is simply wasted and unused.
You car is about 25% efficient, that means it wastes 75% of the gas it uses, it only take a small increase in efficiency (5-10 percent) to get 50% better mileage. Why not take advantage of the current cheap energy that we have, water.
Products on how to run your car on water are all over the internet. They range in price from $49-$97. What do they contain? For $49 you get the same instructions contained above, they just take 60 pages to say the same thing. The instructions will require a machine shop to produce, so the average person will not be able to duplicate the system. The more expensive products ($97) can be built with common items using only simple tools. The toughest tool to use is a soldering iron, and it can look crude and still work perfectly fine.
For such a small price difference compared to what you will save, it is no wonder the $97 instruction book is the best selling, and has been sold in over 50 countries. It is your choice. You could also choose to do nothing and keep paying crazy prices at the pump. I'll be sure and honk at you as I drive by the gas station, since I know how to run my car on water.

How To Use a Telescope - Galileo's First Telescope and its History: by John B. Mayall

Galileo Galilee is known as the "father of telescopes" and rightly so. He is the inventor of the telescope and every telescope made after his invention follows the same principle that he used. Galileo's telescope was a primitive prototype of the telescopes that are used widely today. However, the principles he used are the very same ones still being used to this day. Galileo's telescope used two lenses - one concave and one convex - inside a tube-light shaped device. Convex lenses are those lenses whose edges curve inwards and concave lenses are lenses that have outward curves at the edge. The eyepiece in the telescope was constructed with the concave lens. Spy glasses, invented around the same time and used by militants to observe enemy activity in camps, were a major inspiration to Galileo in making his own telescope.
When two lenses are combined together, they are able to collect more light than individual lenses. This is the main principle behind Galileo’s telescope. Most of the telescopes in use today, use the same principle. The human eye also works on a similar principle, but cannot collect too much light. Telescopes are able to gather more light because of the double lenses used in its construction. These lenses gather light and build an image by focusing the light at a point. Refraction is the mechanism in use to form such images. As a result, telescopes are also called refracting telescopes or refractors. The phenomenon by which the collected light bends and forms images is known as refraction.
Images were magnified by a factor of 30 in Galileo's invention. However, the shape of the lenses he used was such that his image became blurred and distorted. But no one had ever invented something so exciting with which to observe the night skies before Galileo's telescope. Galileo used his telescope to view the moon and observe it closely. He was also the one to figure out that the magnification factor of a telescope was provided by the ratio of the power of the concave lens to the power of the convex lens. So he premised that the simplest way to increase this magnification factor was to use a high power concave lens with a weaker convex lens.
In Galileo's time, there were only low strength lenses available. Due to this restriction, Galileo decided to make his own lenses. He was soon able to achieve a magnification of 9x with lenses hat he had ground himself. His telescope was fitted with his own lenses. It was just another feather in his already well-decorated cap.
As time passed, Galileo improvised on his primitive telescope, making several modifications to it. He also demonstrated his invention at the Senate of Venice, and several senators climbed the highest towers of the time to observe the horizon with Galileo's invention. They viewed the distant ships from their perches and decided that the telescope was a very useful military device.
The telescope changed the face of Astronomy and became an indispensable part of the study. Several inventors used the same principle and made telescopes of their own. Gradually over the years, the study of astronomy benefited immensely from the telescope and its uses. The same principle was employed in the construction of much more powerful telescopes that made it possible to understand our plane and its surroundings more comprehensively, all thanks to Galileo's wonderful invention.