Sunday, 1 December 2013

Bizarre Facts About the World Wide Web, 2013

Since its inception in the 1960's, the Internet has grown from a military experiment into a gigantic living organism filled with oddities and subcultures.  Once the World Wide Web launched 24 years ago, the Net has seen truly explosive growth in tech, business, and culture.
Here are some of the bizarre factoids that describe the Internet and the World Wide Web. Grab yourself a mug of root beer and join us for some truly incredible trivia below!

1. The Internet Requires Approximately 50 Million Horsepower in Electricity

The Internet Requires Approximately 50 Million Horsepower in Electricity
Yes. With an estimated 8.7 billion electronic devices connected to the Internet, the electricity required to run the system for even one day is very substantial.  According to Russell Seitz and the calculation of Michael Stevens, 50 million brake horsepower worth of electrical power is required to keep the Internet running in its current state.

Monday, 8 July 2013

7 Websites that Will Spark Your Intelligence

If you are feeling a bit dull around the edges and need a bit of an intellectual boost, look no further; we have compiled a list of seven fantastic websites that will give you that brainy lift that you are seeking! The diverse selection of sites provides an array of intellectual stimulation from educational and cultural content to science experiments and fun quizzes to keep you sharp. So what are you waiting for? Get your smart on! Please send us your suggestions for more intellectually stimulating websites to add to the list. 

Tuesday, 14 May 2013

5G : Download Movie in 1 Second at the Speed of 1Gbps


Samsung has developed a new mobile data transfer technology that's potentially up to "several hundred times" faster than current 4G networks. More precisely, the company announced "the world’s first adaptive array transceiver technology operating in the millimeter-wave Ka bands for cellular communications."

Samsung says the technology "sits at the core" of a 5G mobile communications system, and it can say that with relative ease, as 5G (unlike LTE or 4G) is currently not a defined set of standards — more a vague idea of whatever comes next after 4G.
Samsung's new technology, which the company plans to commercialize by 2020, sounds impressive when it comes to data transfer speeds. In its testing, Samsung managed to transmit data at a speed of up to 1.056Gbps to a distance of up to 2 kilometers.
In practice, Samsung envisions mobile transmission of "massive" data files, which include high-quality movies, "practically without limitation."
Though 4G technology hasn't really reached the hands of consumers yet, the race to set the standards for 5G are already underway. In March 2013, China's Ministry of Industry and Information Technology established a working group to research 5G, and the EU announced in February it will invest 5 million euros in 5G research.

Saturday, 11 May 2013

How the Mafia Works


Introduction to How the Mafia Works

The Mafia has controlled everything from the street corner drug trade to the highest levels of government. Glorified by movies and television, hounded by law enforcement officials, marked for death by their enemies, mobsters live violent and often brief lives. The Mafia at its core is about one thing -- money. Still, there are secret rituals, complicated rules and tangled webs of family loyalty.
In this article, we'll find out how people get into the Mafia, what the Mafia does and what law enforcement agencies have done to stop them. We'll also learn about the important people and events that have shaped this not-so-secret society.

Friday, 10 May 2013

Top 5 Ways to Get Smarter


What is smart? Some people judge smarts by standard benchmarks like test scores and grade point averages. Others think common sense, problem solving abilities and "street smarts" define intelligence. Standardized testing scores have proven unreliable and biased along racial and socioeconomic lines, and cramming for classes can lead to GPAs that aren't a true indicator of intelligence.
While we can't all agree on a standard for intelligence, we can agree that the human brain is the key to all of them. It has a great capacity to adapt, rewire and grow. Neural networks expand and strengthen through learning experiences. Stimuli make the brain stronger and more vital. This reinforcement of the brain's power affects intelligence across all standards, from street smarts to testing scores. Here are five ways you can increase your brain's capacity to take in and store new data. Or, said more simply, here's how you can get smarter.

Thursday, 9 May 2013

10 Important Photography Terms

Start the Countdown



French inventors Nicéphore Niépce and Louis Daguerre conceived photography in the 19th century as a way to record light by shining it on photosensitive chemical screens. In the 21st century, most photographs are taken with digital cameras, which use sensors instead of chemicals to record images and save them as digital files. Even the most modestly priced digital cameras can take decent photos today, so high-quality photography is within the reach of almost everyone.
Even the best camera needs a good photographer behind it to take the best possible images. You might be a budding photo pro, an ardent hobbyist, or just someone who wants to take great photos at family gatherings and summer vacations. In any case, it pays to know the core fundamentals of photography. While cameras have certainly changed a lot in the last 150 years, the principles of photography remain pretty much the same.
Put a fresh set of batteries into your digital camera, make sure the lens cap is off and prepare for 10 photography terms that will help you take better photos in any situation.

Wednesday, 1 May 2013

Top 7 Fuel Saving Tips

It’s the rare person not looking for a way to trim that fuel expenditure these days – it seems like there’s no end in sight for the upward-spiraling budget line item of fuel cost. However, there’s a handful of easy ways that can help you make the most of each tankful. Take five now to read these seven tips, and we bet following even just a few of 'em will save you enough to occasionally splurge on your favorite coffee house caffeine-boost.

Sunday, 28 April 2013

Top 5 Richest Internet Entrepreneurs


The initial Internet gold rush ended abruptly, destroying many startups and established online businesses alike. But the Web richly rewarded businesspeople with the savvy to foresee technology trends and beat competitors to the next big score. For these whizzes, the Internet has bloated their bank accounts to extremes.
You may notice some famous names missing from this list.Bill Gates, Larry Ellison and others have also proven their business acumen and cemented themselves as owners of radical wealth. But they made money on computer software and hardware, not just the Internet. Instead, this list focuses on the eager youngsters who harnessed the wild, unpredictable ways of the Web and steered their way to consistently outrageous profits.

Monday, 11 March 2013

10 Cool Things You Didn't Know About Stephen Hawking


Even if you don't follow the developing theories in physics, you have probably heard of the renowned physicist Stephen Hawking. Most known as a brilliant mind in a paralyzed body, he's prided himself on making his complex physical concepts accessible to the public and writing the bestseller, "A Brief History of Time."
And if you are a fan of Conan O'Brien, "The Simpsons" or "Star Trek," you might have seen him brandishing his cool wit during guest appearances on those shows.
Even if you are familiar with his academic work, however, there are many interesting facts you might not know about Hawking, stretching from his time at school and gradual development of disability to his opinions on the future of the human race.
Many find it surprising, for instance, that, despite his influential body of work, Hawking hasn't yet been awarded the Nobel Prize. We'll talk about some of the remarkable distinctions he has received, however.
Another interesting fact: Hawking was born on Jan. 8, 1942, which just happened to be the 300th anniversary of Galileo's death.
But this has just been the warm-up. Next, we'll delve into some fascinating and unexpected facts about Hawking, including some things about his profoundly inspirational story.
Start the Countdown
10. Received Mediocre Grades in School
These days, we know Hawking as a brilliant mind whose theories are difficult for a nonscientific mind to grasp. This is why it may come as a shock to learn that Hawking was a slacker when it came to his school studies.
In fact, when he was 9 years old, his grades ranked among the worst in his class [source: Larsen]. With a little more effort, he brought those grades up to about average, but not much better.
Nevertheless, from an early age he was interested in how stuff worked. He has talked about how he was known to disassemble clocks and radios. However, he admits he wasn't very good at putting them back together so they could work again.
Despite his poor grades, both his teachers and his peers seemed to understand that they had a future genius among them, evidenced by the fact that his nickname was "Einstein."
The problem with his mediocre grades was that his father wanted to send him to Oxford, but didn't have themoney without a scholarship. Luckily, when it came time for the scholarship exams, he aced them, getting an almost perfect score on the physics exam.
9. Had an Aversion to Biology
Stephen Hawking took a liking to mathematics from an early age, and he would have liked to have majored in it. His father, Frank, however, had different ideas. He hoped Stephen would instead study medicine.
But, for all his interest in science, Stephen didn't care for biology. He has said that he found it to be "too inexact, too descriptive" [source: Larsen]. He would have rather devoted his mind to more precise, well-defined concepts.
One problem, however, was that Oxford didn't have mathematics as a major. The compromise was that Stephen would attend Oxford and major in physics.
In fact, even within physics, he focused on the bigger questions. When faced with deciding between the two tracks of particle physics, which studies the behavior of subatomic particles, versus cosmology, which studies the large universe as a whole, he chose the latter. He chose cosmology despite the fact that, at that time, he says, it was "hardly recognised as a legitimate field" [source: Hawking].
In explaining why, he said that particle physics "seemed like botany. There were all these particles, but no theory" [source: Larsen].
8. Was on Oxford Rowing Team
Biographer Kristine Larsen writes about how Hawking faced isolation and unhappiness during his first year or so at Oxford. The thing that seems to have drawn him out of this funk was joining the rowing team.
Even before being diagnosed with the illness that would eventually render him almost completely paralyzed, Hawking didn't have what one would call a large or athletic build. However, row teams recruited smaller men like Hawking to be coxswains -- a position that does not row, but rather controls steering and stroke rate.
Because rowing was so important and competitive at Oxford, Hawking's role on the team made him very popular. Remembering Hawking from those days, one fellow boatsman called him "the adventurous type" [source:Larsen].
But as much as the rowing team helped his popularity, it hurt his study habits. Occupied with rowing practice for six afternoons per week, Hawking started "to cut serious corners" and used "creative analysis to create lab reports" [source: Larsen].
7. Was Given a Few Years to Live at Age 21
As a graduate student, Hawking gradually started showing symptoms of tripping and general clumsiness. His family became concerned when he was home during his Christmas break from school and they insisted he see a doctor.
Before seeing a specialist, however, he attended a New Year's Party where he met his future wife, Jane Wilde. She remembers being attracted to his "his sense of humor and his independent personality."
He turned 21 a week later, and shortly after he entered the hospital for two weeks of tests to discover what was wrong with him. He was then diagnosed with amyotrophic lateral sclerosis (ALS), also known as Lou Gehrig's disease, which is a neurological disease that causes patients to lose control of their voluntary muscles. He was told he'd probably only have a few years to live.
Hawking remembers being shocked and wondering why this happened to him. However, seeing a boy dying of leukemia in the hospital made him realize that there were others worse off than him.
Hawking became more optimistic and started dating Jane. They were soon engaged, and he cites their engagement as giving him "something to live for" [source: Larsen].
6. Helped Create the Boundless Universe Theory
One of Hawking's major achievements (which he shares with Jim Hartle) was to come up with the theory that the universe has no boundaries in 1983.
In 1983, the effort to understand the nature and shape of the universe, Hawking and Hartle combined the concepts of quantum mechanics (the study of the behavior of microscopic particles) with general relativity (Einstein's theories aboutgravity and how mass curves space) to show that the universe is a contained entity and yet has no boundaries.
To conceptualize this, he tells people to think of the universe like the surface of the Earth. As a sphere, you can go in any direction on the surface of the Earth and never reach a corner, an edge or any boundary where the Earth can be said to "end." However, one major difference is that the surface of the Earth is two-dimensional (even though the Earth itself is three-dimensional, the surface is only two-dimensional), while the universe is four-dimensional.
Hawking explains that spacetime (see the sidebar on this page) is like the lines of latitude on the globe. Starting at the North Pole (the beginning of the universe) and going south, the circumferences get bigger until beyond the equator, when they would get smaller. This means that the universe is finite in spacetime and will re-collapse eventually -- however, not for at least 20 billion years [source: Hawking]. Does this mean that time itself would go backwards? Hawking grappled with this question, but decided no, because there is no reason to believe that the universe's trend from ordered energy into disordered energy will reverse [source: Hawking].
5. Lost a Bet on Black Holes



In 2004, the genius Hawking admitted he had been wrong and conceded a bet he made in 1997 with a fellow scientist aboutblack holes. To understand the bet, let's backpedal a little to understand what black holes are in the first place.
Stars are gigantic -- they have so much mass that their gravityis always incredibly strong. This is fine, as long as the starcontinues to burn its nuclear fuel, exerting this energy outward, thus counteracting gravity. However, once a massive enough star "dies" or burns out, gravity becomes the stronger force, and causes that big star to collapse on itself. This creates what scientists call a black hole.
The gravity is so powerful in this collapse that not even light can escape. However, Hawking proposed in 1975 that black holes are not really black. Rather, they radiate energy.
But, he said at the time, information is lost in the black hole that eventually evaporates. The problem was that this idea that information is lost conflicted with the rules of quantum mechanics, creating what Hawking called an "information paradox."
American theoretical physicist John Preskill disagreed with this conclusion that information is lost in black hole. In 1997, he made a bet with Hawking saying that information can escape from them, thus not breaking the laws of quantum mechanics.
Hawking is such a good sport that he can admit when he's wrong -- which he did in 2004. While giving a lecture at a scientific conference, he said that because black holes have more than one "topology," and when one measures all the information released from all topologies, information isn't lost [source: Rodgers].
4. Has Numerous Awards and Distinctions
In his long career in physics, Hawking has racked up an incredibly impressive array of awards and distinctions. We don't hope to be exhaustive in this small space, but we'll go over some of the highlights.
In 1974, he was inducted into the Royal Society (the royal academy of science in the U.K., dating back to 1660), and a year later, Pope Paul VI awarded him and Roger Penrose the Pius XI Gold Medal for Science. He also went on to receive the Albert Einstein Award and Hughes Medal from the Royal Society.
Hawking had so well established himself in the academic world by 1979 that he attained the post of Lucasian Professor of Mathematics at the University of Cambridge in England -- a position he would keep for the next 30 years. The chair dates all the way back to 1663, and the second person to hold it was none other than Sir Isaac Newton.
In the 1980s, he was invested as a Commander of the British Empire, which is a rank in the U.K. just under being knighted. He also became a Companion of Honour, which is another distinction given in recognition of national service. There can no more than 65 members of the order at one time.
In 2009, Hawking was awarded the United States' highest civilian honor of the Presidential Medal of Freedom.
All the while, Hawking attained at least 12 honorary degrees. However, the Nobel Prize continues to elude him.
3. Is a Children's Book Author
One of the most unexpected facets of Stephen Hawking's resume is that of being a children's book author. In 2007, Stephen and his daughter, Lucy Hawking, collaborated to write "George's Secret Key to the Universe."
The book is a fiction story about a young boy, George, who rebels against his parents' aversion to technology. He begins to befriend neighbors, one of whom is a physicist with acomputer. This turns out to be most powerful computer in the world, which offers portals to see and enter into outer space.
Of course, much of the book is meant to explain heavy scientific concepts, such as black holes and the origin of life, to children. In this context, it is very fitting that Hawking, who has always sought to make his work more accessible, would want to write such a book.
The book was written to be the first of a trilogy that would continue George's adventures. The next one in the series came out in 2009 and is called "George's Cosmic Treasure Hunt."
2. Believes in Possibility of Aliens
Considering all of Hawking's work in cosmology, people are understandably interested in his opinions on the possibility of alien life. During NASA's 50th anniversary celebration in 2008, Hawking was invited to speak, and he mentioned his thoughts on the subject.
He expressed that, given the vastness of the universe, there very well could be primitive alien life out there, and it is possible, other intelligent life.
"Primitive life is very common," Hawking said, "and intelligent life is very rare." Of course, he threw in his characteristically sharp humor to say, "Some would say it has yet to occur onEarth" [source: Hawking]. He went on the say that humans should be wary of exposure to aliens because alien life will probably not be DNA-based, and we would not have resistance to diseases.
Hawking also did an episode on the possibility of aliens for "Into the Universe with Stephen Hawking" on the Discovery Channel (the parent company of HowStuffWorks.com).
In this episode, he explains that aliens might use up their own planet's resources and "become nomads, looking to conquer and colonize whatever planets they could reach." Or, they could set up a mirror system to focus all the energy of the sun in one area, creating a wormhole -- a hole to travel through spacetime.
1. Took Zero-gravity Flight to Save the Human Race
In 2007, when Stephen Hawking was 65 years old, he got to take the ride of a lifetime. He was able to experience zero-gravity and float out of his wheelchair thanks to Zero Gravity Corp. The service involves an airplane ride in which sharp ascent and descent allows passengers to experience weightlessness in flight for several rounds, each about 25-seconds long.
Hawking, free from his wheelchair for the first time in four decades, was even able to perform gymnastic flips. Hawking also has booked a seat with Richard Branson's Virgin Galactic to ride on a sub-orbital flight.
But perhaps most interesting about this is not what he was able to do, but why he did it. When asked about why he wanted to do this, he of course cited his desire to go into space. But his reasons for going and his overall support for space travel went deeper than that.
Due to the possibility of global warming or nuclear war, Hawking has said that the future of the human race, if it is going to have a long one, will be in outer space [source: Boyle]. He supports private space exploration in hopes that space tourism will become affordable for the public. He hopes that we can travel to other planets to use their resources to survive [source: Daily Mail].
Read on for lots more information about Stephen Hawking, physics and other related subjects.
[Source : HowStuffWorks]







10 Quick Facts about Helium

                This is a diagram of a helium atom, which has 2 protons, 2 neutrons, and 2 electrons.
  1. The atomic number of helium is 2, meaning each atom of helium has two protons.
  2. Helium has the lowest melting point and boiling point of the elements, so it only exists as a gas except under extreme conditions.
  3. Helium is the second-lightest element.
  4. Helium is the second-most abundant element in the universe, though it is much less common on Earth.
  5. Helium is colorless, odorless, tasteless, non-toxic, and inert.
  6. Most helium is obtained by extracting it from natural gas.
  7. Helium is the second-least reactive noble gas (after neon).
  8. Helium is mono atomic under standard conditions.
  9. Inhaling helium temporarily changes the sound of a person's voice. Though helium is non-toxic, breathing it can result in asphyxiation due to oxygen deprivation.
  10. Evidence of helium's existence came from observation of a yellow spectral line from the sun.
[Source : About.com]

Top 8 Ways for Making Money Online


  1. Publish your own eBooks -Amazon.com(Kindle)
  2. Work-Online(Free Lancer) -Odesk.com -eLance.com
  3. Be Online Tutor -tutorvista.com -2tion.net
  4. Create your own Apps and sell -app centre
  5. Sell your Photo Online -shutterpoint.com -shutterstock.com -istockphoto.com
  6. Start your Online Shop -ebay.in -indiebazaar.com
  7. Make money by advertising on your own website or blog -google.com/adsense
  8. Sell your Old/Unwanted things online -olx.in -quickr.com 

Saturday, 2 March 2013

Top 10 things you Need to Know About your Car Engine

It's under the hood of every car, truck and SUV, but how many people really know how one works? Do you know a spark plug from a fuel injector?

  1. A car engine's job is to convert fuel into motion : There's a lot of heat in a car's engine -- and a lot of exhaust coming out of it -- but these are byproducts of the engine's true purpose. An engine has to use fuel to create motion to move the tires.
  2. A car uses a four-stroke engine. The four strokes are intake, compression, ignition and exhaust : In the intake step, a cylinder gets some fuel and air to burn. Then, it compresses the fuel to make the ignition step -- the explosion -- more powerful. In the last step, the cylinder releases its exhaust. This is also known as the Otto cycle.
  3. A device that works on the same principle as a car engine is a spud gun : In a both spud gun and a car engine, you ignite a small amount of fuel, releasing a large amount of energy. (And it's equally unwise to get in front of a moving car or a loaded spud gun.)
  4. A crankshaft's job in an engine is to change linear motion into rotational motion : When gasoline ignites in a cylinder, the piston moves in a straight line. Your wheels, on the other hand, need to turn. The piston moves a connecting rod, which turns the crankshaft, producing the rotational motion.
  5. A car's engine uses a series of small, regular explosions to run. The car doesn't move in stops and starts because the crankshaft along with the flywheel store energy and release it slowly : While a car's muffler does cut down on noise, an engine runs smoothly because the crankshaft along with the flywheel store energy and release it slowly.
  6. There are three basic failures that can happen in an engine: bad fuel mix, lack of compression and lack of spark : Lots of things can go wrong under the hood, but the big three in the engine involve fuel, compression and fire.
  7. In a car engine's cylinder, valves let fuel in and exhaust out. The camshaft moves these valves : A camshaft is a rotating rod that uses a series of lobes to open and close the valves. Most modern engines have overhead cams -- the camshaft is directly above the valves.
  8. A turbocharger is a turbine that compresses the air traveling into the engine : Turbochargers and Superchargers are both air compression systems. They pressurize the air moving into the engine, increasing the engine's power.
  9. When you turn the key to a car, the starter motor spins the engine a few revolutions, starting the combustion process : The starter motor has a big job -- it has to overcome friction, cold weather and other factors to get your engine started. If it fails, nothing happens in the engine when you turn the key.
  10. Power to run a car's radio, CD player, headlights and windshield wipers comes from the battery : A large battery powers most of a car's accessories. An alternator uses the engine's power to keep the battery charged.
[Source : HowStuffWorks]

Friday, 1 March 2013

Top 10 Signs of Transmission Trouble


Diagnosing car problems yourself may seem like an impossible task, but try to think of it in terms of your own body. For instance, if your stomach begins to hurt without warning, you'll probably start thinking of the last thing you ate in order to figure out why you're having the pain. A similar type of thinking goes into diagnosing car trouble. The moment you start noticing something out of the ordinary, it's time to start considering the problem and finding a way to fix it.

Mechanical auto problems, as opposed to electrical auto problems, are usually coupled with distinct sounds and sensations that are key indicators that something isn't functioning the way it was designed to. Transmissions take a lot of use over the years, and after a while, they're bound to start having some problems. Transmission repairs can be expensive, so it's worthwhile to pay attention to anything that seems unusual.
If you think you may be having some car trouble or if you're just looking to learn more about potential transmission problems, check out these 10 signs of transmission trouble and stay one step ahead of your car.
Start the Countdown
10. Refuses to Go Into Gear
9. Burning Smell
8. Transmission Noisy in Neutral
7. Gears Slipping
6. Dragging Clutch
5. Leaking Fluid
4. Check Engine Light
3. Grinding or Shaking
2. Whining, Clunking and Humming
1. Lack of Response
[source : HowStuffWorks]

Developing Self-Control in 4 Steps

Following are the major steps in Developing Self-Control :


  1. Performing A Task : This refers to the action taken to solve a specific problem.
  2. Self-Monitoring of Performance And Outcome : It means actual observation and recording of the action taken.
  3. Self-Evaluation : This involves revising one's beliefs about his or her competence.
  4. Self-Reinforcement : This means recognizing and approving of the accomplishment that may lead to a tangible reward or a positive self-statement.

Thursday, 28 February 2013

History Of Petroleum


Earlier History

More than four thousand years ago, according to Herodotus and confirmed by Diodorus Siculus,asphalt was employed in the construction of the walls and towers of Babylon; there were oil pits near Ardericca (near Babylon), and a pitch spring on Zacynthus ( Ionian islands, Greece ).Great quantities of it were found on the banks of the river Issus , one of the tributaries of the Euphrates. Ancient Persian tablets indicate the medicinal and lighting uses of petroleum in the upper levels of their society.

Oil was exploited in the Roman province of Dacia, now in Romania, where it was called picula.
The earliest known oil wells were drilled in China in 347 AD or earlier. They had depths of up to about 800 feet (240 m) and were drilled using bits attached to bamboo poles. The oil was burned to evaporate brine and produce salt. By the 10th century, extensive bamboo pipelines connected oil wells with salt springs.The first streets of Baghdad were paved with tar, derived from petroleum that became accessible from natural fields in the region. In the 9th century, oil fields were exploited in the area around modern BakuAzerbaijan. These fields were described by the Arab geographerAbu al-Hasan 'Alī al-Mas'ūdī in the 10th century, and by Marco Polo in the 13th century, who described the output of those wells as hundreds of shiploads.Petroleum was distilled by the Persian alchemistMuhammad ibn Zakarīya Rāzi (Rhazes), in the 9th century,producing chemicals such as kerosene in the alembic (al-ambiq), and which was mainly used for kerosene lamps.
Through Islamic Spain, distillation became available in Western Europe by the 12th century. It has also been present in Romania since the 13th century, being recorded as păcură.
In 1745 under the Empress Elisabeth of Russia the first oil well and refinery were built in Ukhta by Fiodor Priadunov. Through the process of distillation of the "rock oil" (petroleum) he received a kerosene-like substance, which was used in oil lamps by Russian churches and monasteries (though households still relied on candles).
Oil sands were mined from 1745 in Merkwiller-PechelbronnAlsace under the direction of Louis Pierre Ancillon de la Sablonnière, by special appointment of Louis XV. The Pechelbronn oil field was active until 1970, and was the birth place of companies like Antarand Schlumberger. The first modern refinery was built there in 1857.

Modern History

In 1854, Benjamin Silliman, a science professor at Yale University in New Haven, was the first person to fractionate petroleum by distillation. Meerzoeff built the first modern Russian refinery in the mature oil fields at Baku in 1861. At that time Baku produced about 90% of the world's oil. Edwin Drake's 1859 well near Titusville, Pennsylvania, discussed more fully below, is popularly considered the first modern well. Drake's well is probably singled out because it was drilled, not dug; because it used a steam engine; because there was a company associated with it; and because it touched off a major boom. 
The modern US petroleum industry began with Edwin Drake's drilling of a 69-foot (21 m) oil well in 1859, on Oil Creek near Titusville, Pennsylvania, for the Seneca Oil Company (originally yielding 25 barrels per day (4.0 m3/d), by the end of the year output was at the rate of 15 barrels per day (2.4 m3/d)). The industry grew through the 1800s, driven by the demand for kerosene and oil lamps. It became a major national concern in the early part of the 20th century; the introduction of the internal combustion engine provided a demand that has largely sustained the industry to this day. Early "local" finds like those inPennsylvania and Ontario were quickly outpaced by demand, leading to "oil booms" in OhioTexasOklahoma, and California.
Access to oil was and still is a major factor in several military conflicts of the twentieth century, including World War II, during which oil facilities were a major strategic asset and were extensively bombed.
Until the mid-1950s coal was still the world's foremost fuel, but after this time oil quickly took over. Later, following the 1973 and 1979 energy crises, there was significant mediacoverage on the subject of oil supply levels. This brought to light the concern that oil is a limited resource that will eventually run out, at least as an economically viable energy source.
The top three oil producing countries are Saudi Arabia, Russia, and the United States. About 80% of the world's readily accessible reserves are located in the Middle East, with 62.5% coming from the Arab 5: Saudi Arabia (12.5%), UAEIraqQatar and Kuwait. However, with high oil prices (above $100/barrel), Venezuela has larger reserves than Saudi Arabia due to its crude reserves derived from bitumen. [Source: Wikipedia]

Tuesday, 26 February 2013

Difference Between Hollywood and Bollywood

Bollywood and Hollywood are two words that are often used in a country like India. There is a lot of difference between the two words. Bollywood is an informal term whereas Hollywood is an original and formal term. This is one of the main differences between the two terms.

The informal term Bollywood is used to denote the Hindi film world and industry. It is mainly based in the city of Mumbai in the state of Maharashtra in India. It should be remembered that it refers only to a part of the India cinema, namely the Hindi cinema and not the whole of the Indian cinema.

Hollywood on the other hand is the formal term used to refer to the American film industry or the American cinema in general. Hollywood is actually a neighborhood in Los Angeles in California. It is considered a center of movie stars and movie studios an is famous as a cultural center.

Hindi cinema has been named Bollywood primarily because of the fact that English sentences are spoken here and there in the movies as part of the storyline. Dialogues contain English phrases quite often and sometimes whole sentences too.

It is interesting to note that name Bollywood is derived from Bombay the first name of Mumbai and Hollywood the center of American movies. The main difference between Bollywood and Hollywood is that the latter exists as a place where as the former does not exist as a place. The term Bollywood was coined sometime in the early 1970s. It was the period when India overtook America as the world’s largest producer of movies.

On the other hand Hollywood is a physical place and is a district within the country. It is not characterized by its own municipal government. The chief official of Hollywood is the Mayor of Hollywood. The place occupies a total area of about 24.96 square miles. It has a population of about 123,435.

Scholars have felt that there would have been several influences for Bollywood. Some of the influences for Bollywood include ancient Sanskrit drama, ancient Indian epics the Ramayana and the Mahabharata, the Parsi theater, the traditional folk theater of India and of course Hollywood.

It is no hyperbole that Bollywood has been influencing the music world pertaining to the western world too. This is because of the fact that several Indian film music composers have influenced the musicians worldwide.

Source: http://www.differencebetween.com

Friday, 22 February 2013

Steps for Career Planning


  1. To Understand the Self : To make a wise career choice, one should know the interests, aptitude,       abilities, skills, health conditions, personality and priorities of the person.
  2. To obtain information about various occupations.
  3. Short list some occupations (3-4) which suit the person.
  4. Thorough analysis of each of the selected occupations : To this end one may collect information about the following : 
  • Nature of work.
  • Work Environment.
  • Qualification and Physical requirements.
  • Method of entry.
  • Advancements or promotion prospects.
  • Economic Returns.
  • Advantages and Disadvantages.
     5.  Match the qualities which you possess with the qualities required for each of the selected occupations.
     6.  Select the most suitable occupation.
     7.  Work towards achievement of your goal of entering into the occupation.

Wednesday, 13 February 2013

INDIA

                                                            
India, officially the Republic of India, is a country in South Asia. It is the seventh-largest country by area, the second-most populous country with over 1.2 billion people, and the most populous democracy in the world.

Capital: New Delhi
Dialing code: 91
President: Pranab Mukherjee
Official language: Hindi Language,English Language
Population: 1,241,491,960 (2011) World Bank
Government: FederationParliamentary systemConstitutional republicFederal republic