Monday, 9 September 2013

Hemp

Hemp Could Free Us From Oil, Prevent Deforestation, Cure Cancer and It's Environmentally Friendly - So Why Is It Illegal?

Hemp is a tall, beautiful and gracious looking annual plant that can reach heights over twelve feet. Although hemp (cannabis sativa) and marijuana (cannabis sativa var. indica) come from a similar species of plant, they are very different and confusion has been caused by deliberate misinformation with far reaching effects on socioeconomics as well as on environmental matters.


The reason hemp is illegal is not because of any negative impact to the environment or human health, but exactly the opposite. It is so environmentally friendly, nutritionally and medicinally beneficial, that it provides too many abundant resources which would make it impossible for powerful corporations to compete.

Historical Use


Hemp Could Free Us From Oil, Prevent Deforestation, Cure Cancer and It's Environmentally Friendly - So Why Is It Illegal - Grows from a seed to maturity in 12-16 weeks - 1 acre can produce durable paperHemp is the most universally useful plant we have at our disposal. The history of mankind's use of hemp can be traced way back in time to between about 5000 - 7000 BC. Remains of seed husks have been found at Neolithic burial sites in central Europe, which indicate that they were used in funeral rites and shamanic ceremonies. It is probable that at that time the distinctions between various strains were not as pronounced as they are today.

Up until and even during WWII, hemp was a widely grown crop, which provided the world with an excellent and most durable source of fibre. Since it is an annual with a growing cycle of only 120 days it can be harvested several times a year, depending on local weather conditions. Its biomass is considerable, which means that it absorbs large quantities of the greenhouse gas CO2.

It is resistant to bugs and requires little agrochemical treatment. It is extremely undemanding and can be grown in very poor conditions and depleted soils and will actually improve the soil structure over a period of years. For many centuries hemp was one of the most important industrial crops which provided the fibres for rope and tough, durable canvass without which the age of exploration could never have set sail.

In the US too, there have long been numerous rules and regulation in place regarding the cultivation of hemp. But unlike today's regulations that strongly prohibit any cultivation of hemp, less than a century ago hemp cultivation was not just encouraged, but mandatory, with hefty fines being levied against farmers who refused. 'Hemp for Victory' was the government coined slogan that fuelled the last big bout of legal hemp cultivation during WWII, promoting hemp cultivation as a patriotic cause.

Delierate Misinformation About THC


Hemp is a variety of cannabis sativa that has a long history of use in the United States. However, since the 1950s it has been lumped into the same category of marijuana, and thus the extremely versatile crop was doomed in the United States. Hemp is technically from the same species of plant that psychoactive marijuana comes from. However, it is from a different variety, or subspecies that contains many important differences.

Industrial hemp has very low Tetrahydrocannabinol (THC) levels, which is the principal psychoactive constituent. Compared to marijuana which is specifically cultivated for personal psychoactive use, it is nearly impossible to "get high" on hemp. Marijuana that can be smoked usually contains between 5-10%t THC, industrial hemp contains about one-tenth of that. In order to get a psychoactive effect, one would need to smoke more than a dozen hemp cigarettes over a very short period of time to achieve any kind of psychoactive effect. The reason for the low THC content in hemp is that most THC is formed in resin glands on the buds and flowers of the female cannabis plant. Industrial hemp is not cultivated to produce buds, and therefore lacks the primary component that forms the marijuana high. Furthermore, industrial hemp has higher concentrations of a chemical called Cannabidiol (CBD) that has a negative effect on THC and lessens its psychoactive effects when smoked in conjunction.

Industrial hemp also grows differently than THC-containing cannabis. Hemp is typically grown up, not out, because the focus is not on producing buds but on producing length of stalk. In this way, hemp is a very similar crop to bamboo. The stalk contains the fiber and hard, woody core material that can be used for a variety of purposes, even carpentry.

The two also differ in the areas that they can be effectively grown. THC-producing Marijuana must be grown in generally warm and humid environments in order to produce the desired quantity and quality of THC-containing buds. However, since industrial hemp does not contain these buds, and the hardy parts of the plant are the more desired, it can be grown in a wider range of areas. Generally, industrial hemp grows best on fields that provide high yields for corn crops, which includes most of the Southwest, Southeast, and Northeast United States. Furthermore, since industrial hemp can use male plants as well as female plants (since the object is not THC production), higher crop yields can result.

While there is virtually no THC in the varieties grown for industrial uses such as oil and fibre, governments have cooperated with powerful corporate lobbyists the ensure that hemp is lumped into the same category as marijuana. The primary reason is that hemp has too many abundant resources for fuel, housing, food, medicine that corporations cannot exploit. Think about how many polluting conglomerates would go down if hemp was permitted as a resource. The oil, pharmaceutical, supplement and constructions industry would need to radically shift their business model to survive.

Abundant Resources


Hemp provides the fibre to make a durable paper - a far more sensible solution than the wasteful method of clear cutting old growth forests, or even the cultivation pine plantations that are ecologically speaking dead zones that take 20 years to mature before they can be harvested. Cannabis produces 4 times more fibre per acre and can be harvested several times per year. The first dollar bills were printed on hemp paper, your old family bible is probably printed on hemp paper and even the constitution itself was drafted on hemp paper.

Hemp has the strongest natural fibres, which can be used not just to produce rough cloth, such as sails or canvass, but also durable work clothes, like the original jeans. When the plants are grown closer together the fibre becomes shorter and finer, which allows for finer textiles. Today, there are some fashion designers that are experimenting with a wide range of textiles made from hemp for their stylish, trendy hemp lines, shirts, suits, bags, jeans and more. And, no- you can't smoke them to get high!
Hemp fibres are also finding application as a modern building material, an application that has been spearheaded and exploited successfully in France. Hemp fibres can be blended with water and limestone to create an extremely tough, light-weight, natural cement that has not only excellent insulating properties, but also shows more flexibility than conventional concrete, which makes it particularly useful as a building material in earthquake prone areas.
Back in 1941, Henry Ford built a car that was not only entirely built from 'hemp plastic', but also ran on hemp fuel. Hemp oil, pressed from the seeds is also extremely versatile. It can be polymerized to create a solid plastic-like material, which is extremely durable, yet nevertheless is completely natural and biodegradable, which could replace plastics in numerous industrial processes.

Car manufacturers are again turning to hemp as a resource to provide light-weight, yet shock absorbent and environmentally friendly material for their cars. Due to the high biomass hemp would also make an ideal source of ethanol, the best bio-fuel alternative to gasoline, which is capable of fuelling engines without producing all those evil gases that are destroying our atmosphere and poisoning the air. At long last, some of the top car manufacturers are beginning to follow in Ford's steps.

Modern Uses for the Cannabis Plant - Industrial Textiles - Paper - Building Materials - Foods - Industrial Products - Personal Hygiene - Agricultural Benefits - Seeds - Leaves - Flowers - Hempseed Oil


Some Facts on Hemp


- Farming 6% of the continental U.S. acreage with biomass crops would provide all of America's energy needs.
- Hemp is Earth's number-one biomass resource; it is capable of producing 10 tons per acre in four months.
- Biomass can be converted to methane, methanol, or gasoline at a cost comparable to petroleum, and hemp is much better for the environment. Pyrolysis (charcoalizing), or biochemical composting are two methods of turning hemp into fuel.
- Hemp can produce 10 times more methanol than corn.
- Hemp fuel burns clean. Petroleum causes acid rain due to sulfur pollution.
- The use of hemp fuel does not contribute to global warming.

Hemp oil is of a very high quality and industry is using it in paints, inks and varnishes. In recent years the food industry is also discovering its virtues. Hempseed oil is one of the richest sources of essential amino acids and essential fatty acids, providing an excellent balance between omega-3, -6 and -9 fatty acids. All of these substances are currently being discussed, not only in the alternative health scene, but also by the food industry, which is searching for suitable ingredients to create so called 'functional foods'. Essential fatty acids are extremely important to the proper functioning of cells. They play a role in reducing bad cholesterol and plaque, which is responsible for arteriosclerosis. Healthfood companies are beginning to experiment with hemp as a basis for a large range of products- from hemp seed bars, to gummi bears, to beer, to hemp cheese and many more.

Studies have been released that show people suffering from cancer have low levels of melatonin in their bodies. Also studies have shown that just smoking hemp can raise the melatonin levels in our bodies. So one can only imagine what hemp oil that is in a concentrated state can do to increase melatonin levels. Hemp oil promotes full body healing and raises melatonin levels thousands of times higher than normal. When the pineal gland produces vast amounts of melatonin, it causes no harm to the body but it is very hard on the condition you are suffering from and indeed can eliminate it. For almost a decade, Rick Simpson has been showing people how to cure cancer with hemp oil.

Both the commercial legal type of hemp oil and the illegal THC laden hemp oil are one of the most power-packed protein sources available in the plant kingdom. Its oil can be used in many nutritional and transdermal applications. In other chapters in my Winning the War on Cancer book we will discuss in-depth about GLA and cancer and also the interesting work of Dr. Johanna Budwig. She uses flax seed oil instead of hemp oil to cure cancer -- through effecting changes in cell walls -- using these omega3 and omega6 laden medicinal oils.

Hemp Oil Uses


Every application that uses petroleum for it's skin and hair products can use hemp oil as it is more beneficial and herbal. It can be used in many health issues as either a pain reducer or even as the cure for it.

- Since hemp oil is natural, it is used as a moisturizing oil which can be applied after a shower or a bath. When you massage your body with it, it nourishes the skin and increases the blood circulation. More on facial skin care.
- Hemp oil is used in cooking as well, though it is not suitable for high heat cooking. Along with giving a slightly nutty and crispy taste to food, it can be the perfect salad oil just in case you're out of olive oil.
- Another application of hemp oil is it's use as biodiesel in the same manner like other vegetable oils. It is a safe replacement for petroleum as it is non-toxic and doesn't harm the environment.
- Almost all the forms of plastics can be made by using hemp oil instead of using petroleum as a base. As those made from petroleum, release harmful chemicals while decomposition, but those from hemp oil, don't.
- Hemp oil can also be used in the production of paints as it doesn't cause any armful releases when washed down from the drain and has very low emissions than the petroleum paints which are currently being used.
- Hemp oil prevents skin disorders like psoriasis, eczema, acne and dry skin. It is highly nutritious for the skin and makes a wonderful addition to homemade moisturizing blends and rejuvenating creams. (Read Andrew Weil's article on hemp oil)

The list of beneficial uses of hemp goes on and on.

So why is non-psychoactive Hemp illegal?


There is an old saying: if you want to get to the root of a problem, follow the money. This holds true for hemp. In this case we have to ask the question 'who benefits from hemp being illegal?' The logical answer is: the oil companies- and their share holders, of course. Hemp became illegalized at the time when oil was beginning to make an impact on the economy as a base material for many things that hemp could also be used for, including textiles and fibres (plastics), cosmetics and fuel. Obviously, a resource is more profitable if access to it is restricted and not every farmer can grow it himself. In an exceedingly clever PR move psychoactive marijuana and hemp have been 'thrown in the same pot' as it were, and a massive campaign has been launched to convince people of the dangers of marijuana alias hemp - a highly questionable assertion.

Although technically hemp is not illegal to grow in some states, it requires obtaining a special permit from the drug enforcement agency (DEA) to restrict mass production. These permits are rarely given out and require that the crop be surrounded by security measures such as fences, razor wire, security guards, or dogs. For a crop that has little-to-no potential to get people high, the current attitude is both irresponsible and draconian.
Hemp is the most useful plant ally we have - a sustainable resource par excellence, as some might like to call it. Instead of cursing it we should be grateful to its deva and use all its ample gifts to turn the ecological demise of our planet around.

It is not hard to see how immensely valuable hemp is and how it has the potential of solving many of our environmental problems, not to mention our health problems. Yet, we are continuously deprived of its benefits because farmers are prohibited from cultivating this crop. Obviously importing it or products made from it is very expensive and the high expense is a prohibitive factor to choosing hemp as an environmentally friendly alternative even where it is available. It makes no sense to import a crop like hemp, when it can be, should be and used to be grown in all temperate and hot regions of the world.

Industrial hemp could transform the economy of the world States in a positive and beneficial way, and therefore should be exploited to its full potential

http://en.wikipedia.org/wiki/Hemp



Graphene Aerogel - Lightest matrial in the world



A research team headed by Professor Gao Chao have developed ultra-light aerogel – it breaks the record of the world’s lightest material with surprising flexibility and oil-absorption. This progress is published in the “Research Highlights” column in Nature.

Graphene Aerogel – Lightest Material in The WorldAerogel is the lightest substance recorded by Guinness Book of World Records. It gets its name due to its internal pores filled with air. In 1931, American scientist Kistler first produced aerogel with silicon dioxide, and nicknamed it “frozen smoke”. In 2011, HRL Laboratory, University of California Irvine, and California Institute of Technology collaborated in developing nickel aerogel with a density of 0.9 mg/cubic centimeter, the record lightest material at that time.

It couldn’t even cause deformation on dandelion flower fluffs. The picture of nickel aerogel was selected as one of the top ten pictures of Nature. Deeply impressed by the picture, Prof. Gao Chao asked himself: is it possible to challenge the limit with new material?

Gao Chao’s team has long been developing macroscopic graphene materials, such as one-dimensional graphene fibers and two-dimensional graphene films. This time they decided to make three-dimensional porous material out of graphene to break the record. In their lab, the reporter saw carbon sponges of different sizes, as big as tennis balls or as small as bottle stopper. Under an electron microscope, carbon nanotubes and graphene support numerous pore. “It’s somewhat like large space structures such as big stadiums, with steel bars as supports and high strength film as walls to achieve both lightness and strength.” Ph.D. candidate Sun Haiyan introduced. “Here, carbon nanotubes are supports and graphene is the wall.”

In reported papers the carbon sponge developed by Gao’s team is the record holder of lightest material, with 0.16 mg/cubic centimeter, lower than the density of helium. A related paper was published in Advanced Materials on February 18. But the team is not interested in declaring for Guinness Book of World Records. Prof. Gao explains that the value of this achievement lies in its simple way in developing the material and the superior performance exhibited.

Graphene Aerogel - Lightest Material in The World

The basic principle of developing aerogel is to remove solvent in the gel and retain the integrity. In the past, scientists usually used sol-gel method and template-oriented method. The former can synthesize aerogel on a large scale, but with poor controllability. The latter can generate ordered structures; but due to its reliance on the fine structure and dimensions of templates, mass production was feasible. Prof. Gao’s team explored a new method -- freeze-drying method: they freeze-dried solutions of carbon nanotubes and graphene to get carbon sponge that can be arbitrarily adjusted in any shape. “With no need for templates, its size only depends on that of the container. Bigger container can help produce the aerogel in bigger size, even to thousands of cubic centimeters or larger.”

The title of review in Nature is “Solid carbon, springy and light”. This new material is amazing. Their aerogel is extremely elastic, bouncing back when compressed. It can absorb up to 900 times their own weight in oil, only oil not water. In addition, the aerogel can absorb organics at a high speed: one gram of such aerogel can absorb 68.8 grams of organics per second. It can be useful in dealing with oil spills at sea. “Maybe one day when oil spill occurs, we can scatter them on the sea and absorb the oil quickly. Due to its elasticity, both the oil absorbed and the aerogel can be recycled.” Apart from that, the aerogel may also be made into ideal phase change energy storage insulation material, catalytic carrier or efficient composite.

The new material is just like a new-born baby. Scientists are still exploring its applications and prospects with imagination and creativity to achieve more practical value.

Source: Zhejiang University

Nikola Tesla


Ere many generations pass, our machinery will be driven by a power obtainable at any point of the universe. Throughout space there is energy. -- Nikola Tesla, 1892

The 10 Inventions of Nikola Tesla That Changed The World
Nikola Tesla is finally beginning to attract real attention and encourage serious debate nearly 70 years after his death. Was he for real? A crackpot? Part of an early experiment in corporate-government control?

We know that he was undoubtedly persecuted by the energy power brokers of his day -- namely Thomas Edison, whom we are taught in school to revere as a genius. He was also attacked by J.P. Morgan and other "captains of industry." Upon Tesla's death on January 7th, 1943, the U.S. government moved into his lab and apartment confiscating all of his scientific research, some of which has been released by the FBI through the Freedom of Information Act. (I've embedded the first 250 pages below and have added a link to the .pdf of the final pages, 290 in total).

Besides his persecution by corporate-government interests (which is practically a certification of authenticity), there is at least one solid indication of Nikola Tesla's integrity -- he tore up a contract with Westinghouse that was worth billions in order to save the company from paying him his huge royalty payments.

But, let's take a look at what Nikola Tesla -- a man who died broke and alone -- has actually given to the world. For better or worse, with credit or without, he changed the face of the planet in ways that perhaps no man ever has.

1. Alternating Current -- This is where it all began, and what ultimately caused such a stir at the 1893 World's Expo in Chicago. A war was leveled ever-after between the vision of Edison and the vision of Tesla for how electricity would be produced and distributed. The division can be summarized as one of cost and safety: The DC current that Edison (backed by General Electric) had been working on was costly over long distances, and produced dangerous sparking from the required converter (called a commutator). Regardless, Edison and his backers utilized the general "dangers" of electric current to instill fear in Tesla's alternative: Alternating Current. As proof, Edison sometimes electrocuted animals at demonstrations. Consequently, Edison gave the world the electric chair, while simultaneously maligning Tesla's attempt to offer safety at a lower cost. Tesla responded by demonstrating that AC was perfectly safe by famously shooting current through his own body to produce light. This Edison-Tesla (GE-Westinghouse) feud in 1893 was the culmination of over a decade of shady business deals, stolen ideas, and patent suppression that Edison and his moneyed interests wielded over Tesla's inventions. Yet, despite it all, it is Tesla's system that provides power generation and distribution to North America in our modern era.

2. Light -- Of course he didn't invent light itself, but he did invent how light can be harnessed and distributed. Tesla developed and used florescent bulbs in his lab some 40 years before industry "invented" them. At the World's Fair, Tesla took glass tubes and bent them into famous scientists' names, in effect creating the first neon signs. However, it is his Tesla Coil that might be the most impressive, and controversial. The Tesla Coil is certainly something that big industry would have liked to suppress: the concept that the Earth itself is a magnet that can generate electricity (electromagnetism) utilizing frequencies as a transmitter. All that is needed on the other end is the receiver -- much like a radio.

3. X-rays -- Electromagnetic and ionizing radiation was heavily researched in the late 1800s, but Tesla researched the entire gamut. Everything from a precursor to Kirlian photography, which has the ability to document life force, to what we now use in medical diagnostics, this was a transformative invention of which Tesla played a central role. X-rays, like so many of Tesla's contributions, stemmed from his belief that everything we need to understand the universe is virtually around us at all times, but we need to use our minds to develop real-world devices to augment our innate perception of existence.

4. Radio -- Guglielmo Marconi was initially credited, and most believe him to be the inventor of radio to this day. However, the Supreme Court overturned Marconi's patent in 1943, when it was proven that Tesla invented the radio years previous to Marconi. Radio signals are just another frequency that needs a transmitter and receiver, which Tesla also demonstrated in 1893 during a presentation before The National Electric Light Association. In 1897 Tesla applied for two patents US 645576, and US 649621. In 1904, however, The U.S. Patent Office reversed its decision, awarding Marconi a patent for the invention of radio, possibly influenced by Marconi's financial backers in the States, who included Thomas Edison and Andrew Carnegie. This also allowed the U.S. government (among others) to avoid having to pay the royalties that were being claimed by Tesla.

5. Remote Control -- This invention was a natural outcropping of radio. Patent No. 613809 was the first remote controlled model boat, demonstrated in 1898. Utilizing several large batteries; radio signals controlled switches, which then energized the boat's propeller, rudder, and scaled-down running lights. While this exact technology was not widely used for some time, we now can see the power that was appropriated by the military in its pursuit of remote controlled war. Radio controlled tanks were introduced by the Germans in WWII, and developments in this realm have since slid quickly away from the direction of human freedom.

6. Electric Motor -- Tesla's invention of the electric motor has finally been popularized by a car brandishing his name. While the technical specifications are beyond the scope of this summary, suffice to say that Tesla's invention of a motor with rotating magnetic fields could have freed mankind much sooner from the stranglehold of Big Oil. However, his invention in 1930 succumbed to the economic crisis and the world war that followed. Nevertheless, this invention has fundamentally changed the landscape of what we now take for granted: industrial fans, household applicances, water pumps, machine tools, power tools, disk drives, electric wristwatches and compressors.

7. Robotics -- Tesla's overly enhanced scientific mind led him to the idea that all living beings are merely driven by external impulses. He stated: "I have by every thought and act of mine, demonstrated, and does so daily, to my absolute satisfaction that I am an automaton endowed with power of movement, which merely responds to external stimuli." Thus, the concept of the robot was born. However, an element of the human remained present, as Tesla asserted that these human replicas should have limitations -- namely growth and propagation. Nevertheless, Tesla unabashedly embraced all of what intelligence could produce. His visions for a future filled with intelligent cars, robotic human companions, and the use of sensors, and autonomous systems are detailed in a must-read entry in the Serbian Journal of Electrical Engineering, 2006 (PDF).

8. Laser -- Tesla's invention of the laser may be one of the best examples of the good and evil bound up together within the mind of man. Lasers have transformed surgical applications in an undeniably beneficial way, and they have given rise to much of our current digital media. However, with this leap in innovation we have also crossed into the land of science fiction. From Reagan's "Star Wars" laser defense system to today's Orwellian "non-lethal" weapons' arsenal, which includes laser rifles and directed energy "death rays," there is great potential for development in both directions.

9 and 10. Wireless Communications and Limitless Free Energy -- These two are inextricably linked, as they were the last straw for the power elite -- what good is energy if it can't be metered and controlled? Free? Never. J.P. Morgan backed Tesla with $150,000 to build a tower that would use the natural frequencies of our universe to transmit data, including a wide range of information communicated through images, voice messages, and text. This represented the world's first wireless communications, but it also meant that aside from the cost of the tower itself, the universe was filled with free energy that could be utilized to form a world wide web connecting all people in all places, as well as allow people to harness the free energy around them. Essentially, the 0's and 1's of the universe are embedded in the fabric of existence for each of us to access as needed. Nikola Tesla was dedicated to empowering the individual to receive and transmit this data virtually free of charge. But we know the ending to that story . . . until now?

Tesla had perhaps thousands of other ideas and inventions that remain unreleased. A look at his hundreds of patents shows a glimpse of the scope he intended to offer. If you feel that the additional technical and scientific research of Nikola Tesla should be revealed for public scrutiny and discussion, instead of suppressed by big industry and even our supposed institutions of higher education, join the world's call to tell power brokers everywhere that we are ready to Occupy Energy and learn about what our universe really has to offer.

The release of Nikola Tesla's technical and scientific research -- specifically his research into harnessing electricity from the ionosphere at a facility called Wardenclyffe -- is a necessary step toward true freedom of information. Please add your voice by sharing this information with as many people as possible.

For additional information about the demand for release, or to use as a template to form your own demand, please visit: http://releaseteslasresearch.weebly.com/
As they state:
Tell your friends, bring it up and discuss it at your next general assembly, do whatever you can to get the word out, organize locally to make a stand for the release of Nikola Tesla's research.... America is tired of corrupt corporate greed, supported by The American government, holding us back in a stagnant society in the name of profit . . . The Energy Crisis is a lie.
As an aside: there are some who have pointed out that Tesla's experimentation with the ionosphere very well could have caused the massive explosion over Tunguska, Siberia in 1908, which leveled an estimated 60 million trees over 2,150 square kilometers, and may even have led to the much maligned HAARP technology. I submit that we would do well to remember that technology is never the true enemy; it is the misuse of technology that can enslave rather than free mankind from its animal-level survivalism.

Please view the video below, which does an excellent job at personalizing this largely forgotten human being, as well as show the reasons why to this day he is not a household name.


And here is a video that offers an essential alternative view of ancient Egypt and other cultures that employed pyramidal structures, which suggests the staggering outer limits of what Tesla was attempting to harness and offer to humanity:

Sunday, 8 September 2013

Ultrabooks

As for me, it gotta be MacBook Air.


Top 10 Ultrabooks
By Sherri L. Smith,
Laptop, 27 August 2013.

Ultrabooks are the biggest thing in laptops. Why? Because they’re slim, light and wake from sleep almost instantly. You should also expect long battery life, which is great for everyone from students to road warriors. But with seemingly every PC maker under the sun debuting a MacBook Air alternative - or several - there’s a lot of models from which to choose at different prices. Here’s our list of the Top 10 Ultrabooks.

1. Acer Aspire S7 (2013)

New Picture 31

One of our favourite Ultrabooks, the 3-pound Acer Aspire S7 features a powerful fourth-generation Intel Haswell processor, a fast 128GB SSD and a gorgeous 1080p touch screen display. The S7 still features a beautiful glass and white aluminium chassis that’s just .51 inches thin, but it now offers nearly 9 hours of battery life.



2. Lenovo IdeaPad U310 Touch

New Picture 32

The Lenovo IdeaPad U310 Touch makes our top Ultrabook list for its fast performance and reasonable price. For just under US$600, this Ultrabook has a graceful design and comes outfitted with a third-gen Core i5 CPU. The addition of a comfy keyboard, accurate touchscreen and loud, crisp audio make the U310 Touch a winner.



3. Dell XPS 12 (2013)

New Picture 33

 
Dell’s XPS 12 Windows 8 convertible now offers excellent endurance, lasting nearly 9.5 hours on our battery test. The flip display design is as compelling as ever, making it a cinch to switch between laptop and tablet modes. At 3.2 pounds, the XPS 12 isn’t the lightest hybrid around, but we love the full HD touch display and strong performance.


 
4. Toshiba Portege Z935-P300

New Picture 34

Weighing in at just 2.4 pounds, and measuring at 12.4 x 8.9 x 0.3 - 0.6 inches, the Toshiba Portege Z935 is the lightest 13-inch Ultrabook you can get outside of Japan. The combination of a third-generation Intel Core processor and fast SSD makes the Z935 a light-weight powerhouse. Better still, this svelte system finds room for full-size VGA, HDMI and Ethernet ports.


 
5. ASUS Zenbook UX51Vz (2013)

New Picture 35

The 15-inch ASUS Zenbook UX51Vz is quite a showstopper with its lovely aluminium chassis and captivating 2880 x 1620 Retina-like display. With a powerful Core i7 GPU, discrete Nvidia graphics and blazing fast dual 256GB SSDs, ASUS backs up those good looks with serious brawn.



6. Lenovo ThinkPad X1 Carbon Touch

New Picture 36

Our favourite business Ultrabook, the ThinkPad X1 Carbon Touch, retains the fetching carbon fibre design, comfortable keyboard and accurate pointer stick of the previous model and adds a 1600 x 900 touchscreen. Throw in the snappy performance of a Core i5 CPU and 128 SSD and you’ve got a notebook that’s ready to plough through your workload.



7. Sony VAIO Pro 13

New Picture 37

Weighing in at a feather light 2.4 pounds, the VAIO Pro 13 is currently the world’s lightest 13-inch notebook with a touchscreen. On top of the svelte dimensions, the notebook comes with a 1080p display, blazing fast SSD and over 7 hours of battery life. Adding the optional sheet battery boosts the endurance to 14.5 hours.



8. Samsung ATIV Book 9

New Picture 38

Weighing 2.6 pounds and measuring just .5 inches thick, the aluminium clad ATIV Book 9 is quite the looker. It’s also quite the powerhouse, thanks to a third-gen Core i7 processor with 4GB of RAM and a 128GB SSD. Samsung also included its SideSync software for better integration with Samsung Android phones such as the Galaxy S4.



9. Lenovo Yoga 11S

New Picture 39

We’re big fans of Lenovo’s Yoga Series, with its trademark 360-degree hinge and four modes (Tablet, Laptop, Stand and Tent). The 11-inch version of this contortionist laptop features a vibrant 768p touch display, comfortable keyboard and a third-gen Core i5 processor. It’s a solid choice for consumers looking for more versatility than a traditional laptop.



10. Sony VAIO Pro 11

New Picture 40

Feast your eyes on the lightest notebook with touch. Weighing in at an astounding 1.9 pounds, the Sony VAIO Pro 11 manages to cram a fourth-gen Core i7 processor, integrated graphics and a 128GB SSD into an 11-inch chassis. The Ultrabook also offers a vivid 1080p display and offer over 14 hours of battery life with the optional battery sheet for a super-portable laptop ready for work and play.


Cutting edge technologies in development



New Picture 258
10 Incredible Cutting-Edge Technologies In Development
By Mike Floorwalker,
Listverse, 29 August 2013.

Don’t give up on flying cars or hoverboards just yet! As technology marches relentlessly on, everything goes into development sooner or later- as demonstrated by the existence of these things, which we’ll almost certainly see within our lifetimes.

10. Artificial Gills

New Picture 259

Inventors have long sought an underwater breathing apparatus that doesn’t store oxygen, but extracts it from the water the way gills do. Israeli inventor Alon Bodner has come close.
 
The device, aptly named LikeAFish, works by using a centrifuge to lower the pressure of water within an airtight chamber. Since only a little oxygen is contained in water, the device must move about 190 litres (50 gallons) per minute in order for the average person to breathe comfortably. Despite this, the only real barrier to implementation is size and weight, but it’s close enough that the device has been under consideration for military use for several years now.
 
Such a system would obviously allow for longer “bottom time” without the need for refilling oxygen and would decrease the amount of nitrogen the diver is exposed to. According to Bodner’s website, the company spent 2012 “quietly designing a prototype to be installed on board a naval submarine,” so they may be very close to solving the size and weight issues of previous prototypes.
 
9. Agricultural Robots

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Agricultural robotics are, somewhat surprisingly, still in their infancy. While unemployment seems to be levelling off, there is still talk of a possible general labour shortage in the near future - particularly in agriculture. Many companies worldwide are attempting to bring various types of robot farmhands to market, but in robotics (where government and academic projects still lead the way) it tends to take longer than in some other, more commercial industries for such projects to obtain funding, produce a product, and prove its viability.
 
But the technology is coming along, and it’s easy to imagine it implemented on a wide-scale basis before too long. One Boston company that was able to raise nearly US$8 billion in private funds in 2011 has developed a robot that it claims could perform 40 percent of the manual labour currently performed on farms. A Japanese research company has developed a robot that performs stereo imaging of strawberries to determine their ripeness before picking them, and MIT has a cherry tomato garden that is managed by a small crew of robots equipped with vision sensors. Of course, the main advantage to robot farm workers is the fact that they can work around the clock and never get tired.
 
8. Sunscreen Pills

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An effective sunscreen that can be administered orally has been sought after for some time now. One doctor claims that a fern extract, containing the compound polypodium leucotomos, can act as such. He cites a human study showing less sun damage to the skin of those who were administered the active ingredient (though he did have to admit that there were only 12 people involved).
 
Also promising is a study at King’s College in London, which has determined a method by which coral protects itself from UV rays through its relationship with a symbiotic algae that lives within it. The algae produces a chemical compound which is converted by the coral into its own UV-blocking sunscreen, benefiting not only the coral and the algae but also the fish that feed on the coral. This transference has led scientists to believe that if the compound can be isolated, it could potentially be modified into a human oral sunscreen that would protect both the skin and the eyes. Said Dr. Paul Long, head of the three-year project, “There would have to be a lot of toxicology tests done first but I imagine a sunscreen tablet might be developed in five years or so. Nothing like it exists at the moment.”
 
7. Paper-Thin, Flexible Computers and Phones
 
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In early 2013, consumer electronics shows debuted a prototype by European firm Plastic Logic of a product called the Papertab. That would be a portmanteau of “paper” and “tablet” and it is pretty much what it sounds like: a fully functional, touch screen tablet computer that is not only as thin as a sheet of paper, but as flexible as one too, and possesses the same reflective qualities. The company envisions such machines being ubiquitous within five to 10 years, as they could be inexpensive and interactive. A consumer could have several lying around, multi-tasking with different media all in service of one project.
 
A joint project between two American and Canadian universities has been creatively dubbed the Paperphone. Queens University director Dr. Roel Vertegaal has largely the same vision of the project. “This is the future,” he says. “Everything is going to look and feel like this within five years.” The machine is the size of a regular smartphone, with a 9.4-centimetre (3.7 in) display, but again, paper-thin and flexible. Users can give the phone commands by using “bend gestures.” It consumes no power when not in use and is considerably harder to damage than an ordinary phone.
 
6. Tooth Regeneration
 
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Regeneration of body parts in humans seems permanently consigned to the realm of science fiction, even though many species of animals are able to completely regrow lost parts. It’s long been known that alligators are able to regrow lost teeth, for example, but it was assumed to be a cyclical process, like snakes shedding their skin periodically. Scientists have recently discovered that this is not the case: An alligator’s tooth will grow back automatically to replace a lost one. This is quite significant because the structure of alligators’ teeth is pretty similar to ours.
 
The problem has been that the inner areas of teeth contain living tissue known as “pulp” that doesn’t grow back. But the solution may have been found in stem cells: Scientists in multiple countries are trying to figure out how to get them to produce the correct tissues and structure for the given situation on demand. A University of Utah study in November 2012 confirmed that this could be done in a lab. Perfection of this technology could result in the potential end of tooth decay, gum disease, fillings, and root canals.
 
5. Holographic TV
 
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While Ultra High Definition TV is on the way, there are really only so many pixels you can cram into a flat display - most existing models are 214-centimetre (84 in) monsters for that very reason. But the next generation of TVs, if you can call them that, won’t have screens so much as they’ll have a viewing area. As seen above, it could be a desktop display, or it could be an entire room - but holographic displays are definitely in the works.
 
Researchers at MIT, who are apparently good at the cutting-edge technology thing (hence the “T”), have created a chip that can support a holographic display of 50 gigapixels per second - enough to simulate real world objects, as reported in the journal Nature. Such amazing technology will have to wait to come to marketplace, though, until costs can be driven down - right? Well, says Michael Bove, head of MIT’s Object-Based Media group: “The technology itself is one that’s easy and inexpensive and, as far as we are aware and Nature is aware, has never been applied to displays before.” He foresees holographic displays on the market within 10 years - at the same cost as today’s regular, flat TVs. Another company, Provision, has built an inexpensive projector that displays a 45-centimetre (18 in) image. As of this writing, they’re working on ramping that up to a two-meter (six-foot) image, displayed by a unit the size of a toaster.
 
4. Real-Time Google Earth
 
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At RAL Space in Oxford, scientists are building two video cameras quite unlike any other. Meter-long tubes packed with electronics and mirrors, these cameras are to be mounted to the outside of the International Space Station. But their purpose isn’t to capture images of space - they’ll be pointed toward the Earth. And while the resolution won’t be great (roughly a meter per pixel) it will be a real-time, streaming, live video of the entire planet.
 
Meanwhile, some Georgia Tech researchers are taking a slightly different approach towards the same ends. They take footage from the many live video feeds around the world and use it to layer complex animations on top of Google Earth, sometimes piecing together multiple camera angles to extrapolate the desired information. While currently focusing on people and cars, they’d like to add animals and weather conditions soon.
 
3. Wireless Electricity
 
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The notion of wireless electric power has been around far longer than one might think: Nikola Tesla might have perfected the technology a century ago if he had not been poor, unlucky, and kind of crazy. Many today are unaware that, even though it has obviously yet to be deployed en masse, wireless power transfer actually exists.
 
Wireless device charging has been around for some time, and continues to improve. Companies like Witricity are at work developing electric “hubs” that can power your entire house. Their prototype is called “Prodigy” and is based on research done by physicist Marin Soljacic of MIT. It works by exploiting the fact that certain frequencies of electromagnetic waves facilitate ease of energy transfer, and two objects resonating with such a frequency can easily transfer electricity between them, even at some distance and even if the objects are metal. When perfected (which many see coming within the next decade), it could bring about an end to batteries as we know them.
 
2. Ultra–High Speed Tube Trains
 
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Magnetic levitation, or Maglev, trains have been in development for quite some time. In Japan, a recent successful test run means that plans are underway to connect the whole country by 2045 with trains capable of reaching over 480 kph (300 mph). They accomplish this by removing the wheels - and thereby, contact and friction - from the equation. Maglev trains levitate above the track, suspended by an electromagnetic field. And while the Japanese model is impressive, one company in the small Colorado town of Longmont is upping the ante by eliminating another barrier to shattering speeds: namely, wind resistance.
 
To be fair, eliminating this factor doesn’t so much up the ante as it blows up the entire house containing the card table. Daryl Oster of ET3 says that his company’s concept, called the Evacuated Tube Transport, is the future of transportation, and it very well may be. Its track is contained within a sealed, pressurized vacuum tube, making the capsules conceivably capable of speeds up 6,500 kph (4,000 mph), all while subjecting the passenger to G-forces comparable to that of a leisurely ride on the highway and transporting them across the entire US in less than an hour. ET3 has built prototype capsules and, as of this writing, are searching for an appropriate stretch to build the first tube.

1. Sustainable Fusion Reactor

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Nuclear fission (the process by which nuclear power plants produce energy) is much easier to control than nuclear fusion (the process by which the sun burns, and nuclear weapons work). Small nuclear fusion reactors have been built, but a large-scale, sustainable fusion reactor has yet to be attempted - until now. A consortium of six member bodies (the US, EU, Russia, China, Japan, and South Korea) has chosen a location in France to build the world’s first. And while even its champions concede it could be decades before it’s dispensing energy, nuclear fusion is cleaner and yields three to four times more power than fission.
 
The project is called ITER, for International Thermonuclear Experimental Reactor, and it is the second-largest cooperative international scientific endeavour (ranking behind only the Space Station). It will use a donut-shaped magnetic field to contain gases that will reach temperatures comparable to those at the core of the sun, in excess of 150 million degrees C (270 million F), and will produce 10 times more power than it consumes.

Top image: The ITER project (source).

Exocoetidae: The Flying Fish


I wondered why I had not seen the flying fish on National Geographic channel. Nope, there is non on Sushi King menu.

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Exocoetidae: The Fish That Flies
By Kaushik,
Amusing Planet, 3 September 2013.

Exocoetidae, commonly called Flying Fish, is a family of fishes aptly named for their ability to emerge out of the water and glide for long distances with their outstretched pectoral fins. Their streamlined torpedo shape helps them gather enough underwater speed to break the surface, and their large, wing-like fins get them airborne. Once in the air, these fishes can glide over considerable distances. Their flights are typically around 50 meters, but some fishes have been recorded to fly up to 200 meters or more. Some species of flying fish have enlarged pelvic fins as well as enlarged pectoral fins, which allows them to fly further than two winged gliders (up to 400 meters), and have far greater manoeuvrability. These fishes are known as four-winged flying fish.

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To glide upward out of the water, a flying fish moves its tail up to 70 times per second. It then spreads its pectoral fins and tilts them slightly upward to provide lift. At the end of a glide, it folds its pectoral fins to re-enter the sea, or drops its tail into the water to push against the water to lift itself for another glide, possibly changing direction. The curved profile of the "wing" is comparable to the aerodynamic shape of a bird wing. The fish is known to take advantage of updrafts created by air currents to increase its time of flight.

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Flying fish are thought to have evolved this remarkable gliding ability to escape predators, of which they have many. Their pursuers include mackerel, tuna, swordfish, marlin, and other larger fish. Unfortunately, this evasive manoeuvre is not enough to escape the biggest predator on earth - humans.

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Flying fish is commercially fished in Asian countries such as Japan, Vietnam and China, including the Caribbean where it’s a coveted delicacy. In Japanese cuisine, the fish is used to make some types of sushi. It is also a staple in the diet of the Tao people of Taiwan. In Barbados, flying fish were threatened by pollution and overfishing, changing the occurrences of flying fish in the waters off of Barbados. This sparked a fishing controversy between Barbados and Trinidad & Tobago.

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Article Sources: Wikipedia, Nat Geo, EOL


Top image: Pink-wing flying fish shortly after take-off. Credit: Wikimedia Commons.

[Post Source: Amusing Planet. Edited. Top image and video added.]

Supercomputers


AIS Infographic: 10 Fastest Supercomputers
By
AIS, 18 July 2013.
 
The computer has become one of the most ubiquitous tools in everyday life, but supercomputers blow even the most advanced desktops out of the water.
Comprised of tens of thousands of processors working in conjunction, supercomputers are capable of crunching numbers at astounding speeds.
These massive machines perform quadrillions of calculations per second, providing extensive information for research in a wide range of fields, including weather forecasting, quantum mechanics, and medicine.
Take a look at the ten fastest supercomputers in the world with the AIS infographic below.



Infographic by AIS