Sunday, 27 March 2016

10 Strange Things About The Universe

The universe can be a very strange place. While groundbreaking ideas such as quantum theory, relativity and even the Earth going around the Sun might be commonly accepted now, science still continues to show that the universe contains things you might find it difficult to believe, and even more difficult to get your head around.
10
Negative Energy
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Theoretically, the lowest temperature that can be achieved is absolute zero, exactly ?273.15°C, where the motion of all particles stops completely. However, you can never actually cool something to this temperature because, in quantum mechanics, every particle has a minimum energy, called “zero-point energy,” which you cannot get below. Remarkably, this minimum energy doesn’t just apply to particles, but to any vacuum, whose energy is called “vacuum energy.” To show that this energy exists involves a rather simple experiment– take two metal plates in a vacuum, put them close together, and they will be attracted to each other. This is caused by the energy between the plates only being able to resonate at certain frequencies, while outside the plates the vacuum energy can resonate at pretty much any frequency. Because the energy outside the plates is greater than the energy between the plates, the plates are pushed towards each other. As the plates get closer together, the force increases, and at around a 10 nm separation this effect (called the Casimir effect) creates one atmosphere of pressure between them. Because the plates reduce the vacuum energy between them to below the normal zero-point energy, the space is said to have negative energy, which has some unusual properties.
One of the properties of a negative-energy vacuum is that light actually travels faster in it than it does in a normal vacuum, something that may one day allow people to travel faster than the speed of light in a kind of negative-energy vacuum bubble. Negative energy could also be used to hold open a transversible wormhole, which although theoretically possible, would collapse as soon as it was created without a means to keep it open. Negative energy also causes black holes to evaporate. Vacuum energy is often modeled as virtual particles popping into existence and annihilating. This doesn’t violate any energy conservation laws as long as the particles are annihilated shortly afterwards. However, if two particles are produced at the event horizon of a black hole, one can be moving away from the black hole, while the other is falling into it. This means they won’t be able to annihilate, so the particles both end up with negative energy. When the negative energy particle falls into the black hole, it lowers the mass of the black hole instead of adding to it, and over time particles like these will cause the black hole to evaporate completely. Because this theory was first suggested by Stephen Hawking, the particles given off by this effect (the ones that don’t fall into the black hole) are called Hawking radiation. It was the first accepted theory to unite quantum theory with general relativity, making it Hawking’s greatest scientific achievement to date.
9
Frame Dragging
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One prediction of Einstein’s theory of general relativity is that when a large object moves, it drags the space-time around it, causing nearby objects to be pulled along as well. It can occur when a large object is moving in a straight line or is rotating, and, although the effect is very small, it has been experimentally verified. The Gravity Probe B experiment, launched in 2004, was designed to measure the space-time distortion near Earth. Although sources of interference were larger than expected, the frame-dragging effect has been measured to an uncertainty of 15%, with further analysis hoping to reduce this further.
The expected effects were very close to predictions: due to the rotation of the Earth, the probe was pulled from its orbit by around 2 meters per year, an effect purely caused by the mass of the Earth distorting the space-time surrounding it. The probe itself would not feel this extra acceleration because it is not caused by an acceleration on the probe, but rather on the space-time the probe is traveling through–analogous to a rug being pulled under a table, rather than moving the table itself.
8
Relativity of Simultaneity
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The relativity of simultaneity is the idea that whether two events occur simultaneously or not is relative and depends on the observer. It is a strange consequence of the special theory of relativity, and applies to any events that happen that are separated by some distance. For example, if a firework is let off on Mars and another on Venus, one observer traveling through space one way might say they happen at the same time (compensating for the time light takes to reach them), while another observer traveling another way might say the one on Mars went off first, and yet another might say the one on Venus went off first. It is caused by the way different viewpoints become distorted compared to each other in special relativity. And because they are all relative, no observer can be said to have the correct viewpoint.
This can lead to very unusual scenarios, such as an observer witnessing effect before cause (for example, seeing a bomb go off, then later seeing someone light the fuse). However, once the observer sees the effect, they cannot interact with the cause without traveling faster than the speed of light, which was one of the first reasons faster-than-light travel was believed to be forbidden, because it is akin to time travel, and a universe where you can interact with the cause after the effect makes no sense.
7
Black Strings
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One of the longest outstanding mysteries in physics is how gravity is related to the other fundamental forces, such as electromagnetism. One theory, first proposed in 1919, showed that if an extra dimension is added to the universe, gravity still exists in the first four dimensions (three space dimensions and time), but the way this four dimensional space curves over the extra fifth dimension, naturally produces the other fundamental forces. However, we cannot see or detect this fifth dimension, so it was proposed that the extra dimension was curled up, and hence became invisible to us. This theory was what ultimately led to string theory, and is still included at the heart of most string theory analysis.
Since this extra dimension is so small, only tiny objects, such as particles, can move along it. In these cases, they ultimately just end up where they started, since the extra dimension is curled up on itself. However, one object that becomes much more complex in five dimensions is a black hole. When extended to five dimensions, it becomes a “black string,” and unlike a normal 4D black hole, it is unstable (this ignores the fact that 4D black holes eventually evaporate). This black string will destabilize into a whole string of black holes, connected by further black strings, until the black strings are pinched off entirely and leave the set of black holes. These multiple 4D black holes then combine into one larger black hole. The most interesting thing about this is that, using current models, the final black hole is a “naked” singularity. That is, it has no event horizon surrounding it. This violates the Cosmic Censorship Hypothesis, which says that all singularities must be surrounded by an event horizon, in order to avoid the time-travel effects that are believed to happen near a singularity from changing the history of the entire universe, as they can never escape from behind an event horizon.
6
Geon
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As is best shown in the equation E=MC2, energy and matter are fundamentally connected. One effect of this is that energy, as well as mass, creates a gravitational field. A geon, first investigated by John Wheeler, in 1955, is an electromagnetic or gravitational wave whose energy creates a gravitational field, which in turn holds the wave itself together in a confined space. Wheeler speculated that there may be a link between microscopic geons and elementary particles, and that they might even be the same thing. A more extreme example is a “kugelblitz” (German for “ball lightning”), which is where such intense light is concentrated at a particular point that the gravity caused by the light energy becomes strong enough to collapse into a black hole, trapping the light inside. Although nothing is thought to prevent the formation of a kugelblitz, geons are now only believed to be able to form temporarily, as they will inevitably leak energy and collapse. This unfortunately indicates that Wheeler’s initial conjecture was incorrect, but this has not been definitively proven.
5
Kerr Black Hole
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The type of black hole most people are familiar with, which has an event horizon on the outside acting as the “point of no return” and a point singularity of infinite density on the inside, actually has a more specific name: a Schwarzschild black hole. It is named after Karl Schwarzschild, who found the mathematical solution of Einstein’s field equations for a spherical, non-rotating mass in 1915, only a month after Einstein actually published his general theory of relativity. However, it wasn’t until 1963 that mathematician Roy Kerr found the solution for a rotating spherical mass. Hence, a rotating black hole is called a Kerr black hole, and it has some unusual properties.
At the centre of a Kerr black hole, there is no point singularity, but rather a ring singularity—a spinning one-dimensional ring held open by its own momentum. There are also two event horizons, an inner and outer one, and an ellipsoid called the ergosphere, inside which space-time itself rotates with the black hole (because of frame dragging) faster than the speed of light. When entering the black hole, by passing through the outer event horizon, space-like paths become time-like, meaning that it is impossible to avoid the singularity at the centre, just like in a Schwarzschild black hole. However, when you pass through the inner event horizon, your path becomes space-like again. The difference is this: space-time itself is reversed. This means gravity near the ring singularity becomes repulsive, actually pushing you away from the centre. In fact, unless you enter the black hole exactly on the equator, it is impossible to hit the ring singularity itself. Additionally, ring singularities can be linked through space-time, so they can act as wormholes, although exiting the black hole on the other side would be impossible (unless it was a naked singularity, possibly created when the ring singularity spins fast enough). Traveling through a ring singularity might take you to another point in space-time, such as another universe, where you could see light falling in from outside the black hole, but not leave the black hole itself. It might even take you to a “white hole” in a negative universe, the exact meaning of which is unknown.
4
Quantum Tunneling
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Quantum tunneling is an effect where a particle can pass through a barrier it would not normally have the energy to overcome. It can allow a particle to pass through a physical barrier that should be impenetrable, or can allow an electron to escape from the pull of the nucleus without having the kinetic energy to do so. According to quantum mechanics, there is a finite probability that any particle can be found anywhere in the universe, although that probability is astronomically small for any real distance from the particles expected path.
However, when the particle is faced with a small-enough barrier (around 1-3 nm wide), one which conventional calculations would indicate is impenetrable by the particle, the probability that the particle will simply pass through that barrier becomes fairly noticeable. This can be explained by the Heisenberg uncertainty principle, which limits how much information can be known about a particle. A particle can “borrow” energy from the system it is acting in, use it to pass through the barrier, and then lose it again.
Quantum tunneling is involved in many physical processes, such as radioactive decay and the nuclear fusion that takes place in the Sun. It is also used in certain electrical components, and it has even been shown to occur in enzymes in biological systems. For example, the enzyme glucose oxidase, which catalyses the reaction of glucose into hydrogen peroxide, involves the quantum tunneling of an entire oxygen atom. Quantum tunneling is also a key feature of the scanning tunneling microscope, the first machine to enable the imaging and manipulation of individual atoms. It works by measuring the voltage in a very fine tip, which changes when it gets close to a surface due to the effect of electrons tunneling through the vacuum (known as the “forbidden zone”) between them. This gives the device the sensitivity necessary to make extremely high resolution images. It also enables the device to move atoms by deliberately putting a current through the conducting tip.
3
Cosmic Strings
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Shorty after the Big Bang, the universe was in a highly disordered and chaotic state. This means that small changes and defects didn’t change the overall structure of the universe. However, as the universe expanded, cooled, and went from a disorderly state to an orderly one, it reached a point where very small fluctuations created very large changes.
This is similar to arranging tiles evenly on a floor. When one tile is placed unevenly, this means that the subsequent tiles placed will follow its pattern. Therefore, you have a whole line of tiles out of place. This is similar to the objects called cosmic strings, which are extremely thin and extremely long defects in the shape of space-time. These cosmic strings are predicted by most models of the universe, such as the string theory wherein two kinds of “strings” are unrelated.  If they exist, each string would be as thin as a proton, but incredibly dense. Thus, a cosmic string a mile long can weigh as much as the Earth. However, it would not actually have any gravity and the only effect it will have on matter surrounding it would be the way it changes the form and shape of space-time. Therefore, a cosmic string is, in essence, just a “wrinkle” in the shape of space-time.
Cosmic strings are thought to be incredibly long, up to the order of the sizes of thousands of galaxies. In fact, recent observations and simulations have suggested that a network of cosmic strings stretches across the entire universe. This was once thought to be what caused galaxies to form in supercluster complexes, although this idea has since been abandoned. Supercluster complexes consist of connected “filaments” of galaxies up to a billion light-years in length. Because of the unique effects of cosmic strings on space-time as you bring two strings close together, it has been shown that they could possibly be used for time travel, like with most of the things on this list. Cosmic strings would also create incredible gravitational waves, stronger than any other known source. These waves are what those current and planned gravitational wave detectors are designed to look for.
2
Antimatter Retrocausality
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Antimatter is the opposite of matter. It has the same mass but with an opposing electrical charge. One theory about why antimatter exists was developed by John Wheeler and Nobel laureate Richard Feynman based on the idea that physical systems should be time-reversible. For example, the orbits of our solar system, if played backwards, should still obey all the same rules as when they are played forwards. This led to the idea that antimatter is just ordinary matter going backwards in time, which would explain why antiparticles have an opposite charge, since if an electron is repelled while going forwards in time, then backwards in time this becomes attraction. This also explains why matter and antimatter annihilate. This isn’t a circumstance of two particles crashing into and destroying each other; it is the same particle suddenly stopping and going back in time. In a vacuum, where a pair of virtual particles are produced and then annihilated, this is actually just one particle going in an endless loop, forwards in time, then backwards, then forwards, and so on.
While the accuracy of this theory is still up for debate, treating antimatter as matter going backwards in time mathematically comes up with identical solutions to other, more conventional theories. When it was first theorized, John Wheeler said that perhaps it answered the question of why all electrons in the universe have identical properties, a question so obvious that it is generally ignored. He suggested that it was just one electron, constantly darting all over the universe, from the Big Bang to the end of time and back again, continuing an uncountable number of times. Even though this idea involves backwards time travel, it can’t be used to send any information back in time, since the mathematics of the model simply doesn’t allow it. You cannot move a piece of antimatter to affect the past, since in moving it you only affect the past of the antimatter itself, that is, your future.
1
Gödel’s incompleteness theorems
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It is not strictly science, but rather a very interesting set of mathematical theorems about logic and the philosophy that is definitely relevant to science as a whole. Proven in 1931 by Kurt Gödel, these theories say that with any given set of logical rules, except for the most simple, there will always be statements that are undecidable, meaning that they cannot be proven or disproven due to the inevitable self-referential nature of any logical systems that is even remotely complicated. This is thought to indicate that there is no grand mathematical system capable of proving or disproving all statements. An undecidable statement can be thought of as a mathematical form of a statement like “I always lie.” Because the statement makes reference to the language being used to describe it, it cannot be known whether the statement is true or not. However, an undecidable statement does not need to be explicitly self-referential to be undecidable. The main conclusion of Gödel’s incompleteness theorems is that all logical systems will have statements that cannot be proven or disproven; therefore, all logical systems must be “incomplete.”
The philosophical implications of these theorems are widespread. The set suggests that in physics, a “theory of everything” may be impossible, as no set of rules can explain every possible event or outcome. It also indicates that logically, “proof” is a weaker concept than “true”; such a concept is unsettling for scientists because it means there will always be things that, despite being true, cannot be proven to be true. Since this set of theorems also applies to computers, it also means that our own minds are incomplete and that there are some ideas we can never know, including whether our own minds are consistent (i.e. our reasoning contains no incorrect contradictions). This is because the second of Gödel’s incompleteness theorems states that no consistent system can prove its own consistency, meaning that no sane mind can prove its own sanity. Also, since that same law states that any system able to prove its consistency to itself must be inconsistent, any mind that believes it can prove its own sanity is, therefore, insane.

courtesy by : listverse.com

Friday, 25 March 2016

10 Scariest Drugs You’ve Never Heard Of

Drugs are a simple fact of life. Millions if not billions are taken every day, many in the form of legal medications. But a huge volume of drugs come from the criminal underworld, with the use of illegal narcotics like heroin remaining disturbingly widespread despite legal restrictions and the obvious health risks. Drugs are chemical substances which can alter the body’s physical and mental reactions, and some produce some really bizarre effects. They’re created in many and varied ways, some simply being products naturally manufactured by nature whereas others are crudely thrown together with copious amounts of poisonous ingredients creating a deadly concoction of a potent hypnotic.
Some drugs can affect humans’ central nervous systems in almost unbelievable ways, ranging from extreme suggestibility, to instant death from the smallest microgram. The body seems to sometimes crave the things that are the worst for it; when drugs are cut off from an addict, they experience withdrawal symptoms, forcing them to take more or force the mental torture of not receiving their golden dose they need to end the hell thrust upon them by a shortage of their chosen narcotic.
These drugs have crazy – and even tempting – effects on the body, effects which are completely different to the well-known reactions to most popularised drugs. The following ten dangerous, little-known narcotics will changes your perspective on the power of naturally-occurring products and the weakness of the human’s consciousness to simple compounds.

10. Scopolamine

Angel's Trumpet
This is a fascinating drug that is exploited by Colombian criminal gangs for its exceptional properties. This drug causes amnesia and suggestibility; what this really means is criminals can pretty much tell you to do anything you want.
It puts the victim in a trance where they will do anything they are told to do, and won’t remember it when they finally break free of the sleep-like state. This is often used by criminals by blowing it into victims faces before telling them to empty their bank accounts, but the victim won’t remember it the next day, potentially pulling off the ‘perfect’ crime.
Luckily, this drug seems to be sealed in Columbia and it hasn’t reached the United States just yet – one can only hope it never does. It could cause a revolution in the North American criminal world and make walking down the street at night that much more dangerous.

9. DIPT

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Why would anyone ever take this drug in the first place? Unlike other hallucinogens which create eerie psychological effects which seem real, this drug is mostly sound based, creating loud high pitched noises which can drive you to madness. Naïve individuals who have been foolish enough to even take this drug have reported ringing in their ears lasting up to 4 weeks, quite literally driving them crazy. Pain in the ears is also a side effect of this drug, adding to its already great effects.
Worryingly, this dangerous drug is not actually banned under federal law in the US, it’s in a grey area; it could potentially come under some drug acts but nonetheless it is still manufactured by dodgy chemists around the world.

8. ‘Bromo-Dragonfly’

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This is one of the most potent hallucinogens known to man, creating deep hallucinogenic episodes which can last up to 3 days; 3 whole days of having terrible nightmares and vomiting blood. Sadly, this uncommon drug is very similar in appearance to a lot of mainstream drugs, so it is often mistakenly mislabelled and sold under a different name. Unaware users take a higher dose expecting a less potent drug and quickly overdose on this extremely potent drug, resulting in several deaths having been reported due to the mislabelling of this rare narcotic.
Its potency is relatively low when placed in the shadow of LSD, which is 5 times more potent. The extraordinary thing about Bromo-Dragonfly, though,  is its extremely long duration – around 3 days, compared to LSD’s 6 hours.

7. DMHP

Sleeping recruit with tablet PC and optical rifle in forest
This drug mimics one of nature’s safer products – marijuana. The active ingredient in marijuana is THC, a strong chemical however it is only present in very small amounts in marijuana. DMHP is the result of a crazy chemist extracting this precious yellow oil from the plant. A minuscule 0.0002 grams of this drug can render a human completely useless and with the most extreme case of munchies known to man.
This drug is particularly smart since it is actually isn’t capable of killing humans, only leaving them giggling hysterically. It was developed by the military with the intention of spraying it over the enemies’ base and then marching in unopposed. It was discontinued when more advanced and effective drugs were developed.

6. Yage / Ayahuasca

AMAZON, BRAZIL - CIRCA MARCH 2014: Indian tribe ritual in Amazon
Made from a blend of the ayahuasca vine and a shrub named chacruna, this mix creates one of nature’s most powerful hallucinogens which has been used since ancient times for spiritual journeys for tribesmen to find their inner selves.
Yage is a tribal hallucinogen which is used commonly used in spiritual rituals since it creates vivid hallucinogenic episodes, however these are usually so strong that they can result in the user literally losing their mind, going completely crazy. It also comes with side effects of vomiting blood and diarrhoea, which I would guess isn’t very pleasant.
Deep in the forests of Colombia flocks of tourists travel there every year to experience this spiritual journey and the experience it can offer them, however health organisations have warned that drinking yage can trigger a previously unknown medical condition and cause mental illness for the unlucky few.

5. Krokodil

Crocodiles in a farm
Unflatteringly, the name suggests what this drug does to its victims. From humble beginnings of being used as a legitimate painkiller back since its creation in 1932, it was soon outlawed due to its dangerous repercussions on the body. It’s fairly easy to synthesise using a combination of widely available drugs, most of which are common in the production of meth. The name Krokodil relates to its side effect of dramatically drying out the user’s skin, leaving them with an almost reptile-like appearance.
This narcotic originates from the country of Russia and it is only used by the most hardcore drug users. It is a massive five times more potent than its inspiration, morphine, but also a tolerance is quickly developed to the drug as well as it being addictive, creating a recipe for danger.

4. Jenkem

People In Traditional Village Of Dassanech Tribe. Omorato, Ethio
In the classy underworld of the drug trade, they’re really stepping it up a notch. The latest drug on the developing markets is Jenkem. Now imagine the worst possible thing to inhale the fumes off? Chances are you probably guessed it.
Jenkem is a hallucinogenic drug made from fermented human waste. Fermented human waste. Who even discovers this stuff? Apparently it is popular in poorer countries such as Zambia where ‘normal’ drugs are too expensive for them to buy, so I guess smelling your own faeces is the next best thing. It causes mild hallucinogenic trips for its users and is obviously pretty cheap to make – which is the cause for the boom in popularity in these countries.

3. Benzo – Fury

via vice.com
via vice.com
Don’t you wish you could buy your MDMA and Ecstasy over the counter? Better yet, online? Well, you can now! Sorta. Benzo-fury is a ‘designer’ drug which uses legal loopholes to allow sales online completely legally. The manufacturers optimistically call it a ‘research drug’ while the guinea pigs seem to say it has similar effects to MDMA and Ecstacy.
This is just one example in a growing market of ‘legal highs’ sweeping the globe, but don’t be fooled – most of these drugs are as lethal as or potentially more lethal than their imprisoned cousins. Lawmakers are beginning to trap this law-evading drug into a corner and it looks likely it will soon be made illegal, taken off the mainstream internet and back onto the black market.

2. Freon

Colored retro Refrigerators
If you take this stuff, you won’t be needing rolling papers or a spoon, you’ll be needing a shovel. Wherever there is any substance, there’ll always be a group who use it to try to get high.
Freon is a gas commonly found in air conditioning units and fridges, but some use it as a gas inhalant to experience mild hallucinogenic effects, dizziness, unconsciousness (great fun right?) but the worst part is even purposely inhaling this gas once can cause major brain damage, although you probably already weren’t thinking straight by inhaling it in the first place. Fortunately this gas is slowly being phased out due to its harmful effects on the atmosphere so this drug is becoming less and less common and harder to get hold of.

1. Etorphine

African elephant (Loxodonta africana) cow with young calf, Addo
Everyone knows the tragic, brutal impact heroin has on the human body and mind. Now, imagine that drug multiplied by 5000. Believe it or not, scientists actually sat down andcreated this drug, which is a full 5000 times more powerful than the notorious narcotic which has ruined countless lives.
The only use they could think for this abomination is to sedate large animals, but boy does it do that well. 1/100th of a gram can completely knock out an elephant weighing 300 kg. This drug has never been abused by humans due to its incredibly potency; a milligram of this stuff touching your skin and you’ll be out cold in a matter of minutes.

courtesy by : therichest

Wednesday, 23 March 2016

Top 10 Most Beautiful Birds in the World

The nature has gifted us with a lot of beautiful and amazing plant and animal species. We happen to see dogs, cats, trees, flowers and birds around us everyday. The view of the living things other than human beings makes us feel thankful to God for all His blessings and wonders. A lot of beautiful birds are there in the air but here is the list of top 10 most beautiful birds in the world.

10. Green Wing Macaw Parrot:

most beautiful birds
This beautiful parrot is also known with the name of Ara chloroptera. It is found in green lands and forests. This gorgeous parrot is winged well than Macaw and it possesses yellow-bared eyes which enhance its beauty.

9. Stork-billed Kingfisher:

most beautiful birds
This South Indian bird is also known as Pelargopsis capensis. It is mainly found in tropical lands and in forests of South Asia especially India and Sri Lanka. This beautiful bird is enough catchy to keep the tourists intact.

8. Peafowl:

most beautiful birds
We know Peafowl with two of its common names, Peacock and Pavo. It is a large yet beautiful bird of pheasant family. God has made it with distinctive colors and shades. It usually lives in shady and dark areas this is why the zoo owners, whenever have to keep it in their zoos, provide it with the similar habitat.

7. Painted Bunting:

most beautiful birds
The scientific name of Painted Bunting is Passerina ciris. It is a male bird of North America. We can also view it in the forests and gardens of South Africa. Its beautiful colors like blue-head, green-back and so on, make it a spectacular creature.

6. Keel-billed Toucans:

most beautiful birds
Also known with its scientific name (Ramphastos sulfuratus), Keel-billed Toucans is a native bird of Belize. This comes in plenty of colorful bills and is said to be a fearless birds. It can easily survive in storms and thunders and remain in its nest for days and months when weather is unfavorable.

5. Rainbow Lorikeet:

most beautiful birds
Rainbow Lorikeet’s scientific name is Trichoglossus haematodus and this bird is found in America, Australia and Austria. Its colorful body and charming eyes are enough to keep us intact with its beauty. The tourists love to save its beauty in their camera memories.

4. Northern Oriole:

most beautiful birds
Northern Oriole (Icterus galbula) is a former bird of WestIslands and Finland. It is small in size and weighs about 35 grams. Its bright and sharp colors make it a beautiful and charming bird.

3. Flamingo:

most beautiful birds
Flamingo is a commonly found bird and amazingly beautiful. Its scientific name is Phoenicopteridae and it is present both in Southern and Western Hemispheres. This bird can also be found in different zoos of your country and it usually stands on one leg for hours. It’s a delicate and beautiful bird indeed.

2. Hyacinth Macaw:

most beautiful birds
Anodorhynchus hyacinthinus is the scientific name of Hyacinth Macaw. This bird is found in America and parts of Africa. Also some of its species have been discovered in New Zealand. It is considered as a light weight bird having an estimated weight of 2-3 kilograms. In USA, it is sold at $1000 or even more.

1. Golden Pheasant:

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courtesy by : top10for.com

Monday, 21 March 2016

Banana is a respectable and useful fruit so stop humiliating it

25 Powerful Reasons to Eat Bananas

You'll never look at a banana the same way again after discovering the many health benefits and reasons to add them to your diet. Bananas combat depression, make you smarter, cure hangovers, relieve morning sickness, protect against kidney cancer, diabetes, osteoporosis, and blindness. They can cure the itch of a mosquito bite and put a great shine on your shoes. Here are 25 reasons to eat bananas you might have never considered before.

If You Think Bananas Are Just For Monkeys, Think Again

  1. Bananas help overcome depression due to high levels of tryptophan, which is converted into serotonin -- the happy-mood brain neurotransmitter.
  2. Eat two bananas before a strenuous workout to pack an energy punch and sustain your blood sugar.
  3. Protect against muscle cramps during workouts and night time leg cramps by eating a banana.
  4. Counteract calcium loss during urination and build strong bones by supplementing with a banana.
  5. Improve your mood and reduce PMS symptoms by eating a banana, which regulates blood sugar and produces stress-relieving relaxation.
  6. Bananas reduce swelling, protect against type II diabetes, aid weight loss, strengthen the nervous system, and help with the production of white blood cells, all due to high levels of vitamin B-6.
  7. Strengthen your blood and relieve anemia with the added iron from bananas.
  8. High in potassium and low in salt, bananas are officially recognized by the FDA as being able to lower blood pressure and protect against heart attack and stroke.

Eating Bananas Aids Digestion

  1. Rich in pectin, bananas aid digestion and gently chelate toxins and heavy metals from the body.
  2. Bananas act as a prebiotic, stimulating the growth of friendly bacteria in the bowel. They also produce digestive enzymes to assist in absorbing nutrients.
  3. Constipated? High fiber in bananas can help normalize bowel motility.
  4. Got the runs? Bananas are soothing to the digestive tract and help restore lost electrolytes after diarrhea.
  5. Bananas are a natural antacid, providing relief from acid reflux, heartburn, and GERD.
  6. Bananas are the only raw fruit that can be consumed without distress to relieve stomach ulcers by coating the lining of the stomach against corrosive acids. 

Natural Cures From A Simple Banana

  1. Eating bananas will help prevent kidney cancer, protects the eyes against macular degeneration and builds strong bones by increasing calcium absorption.
  2. Bananas make you smarter and help with learning by making you more alert. Eat a banana before an exam to benefit from the high levels of potassium.
  3. Bananas are high in antioxidants, providing protection from free radicals and chronic disease.
  4. Eating a banana between meals helps stabilize blood sugar and reduce nausea from morning sickness.
  5. Rub a bug bite or hives with the inside of the banana peel to relieve itching and irritation.
  6. Control blood sugar and avoid binging between meals by eating a banana.
  7. Eating a banana can lower the body temperature and cool you during a fever or on a hot day.
  8. The natural mood-enhancer tryptophan helps to relieve Seasonal Affective Disorder (SAD).
  9. Quitting smoking? Bananas contain high levels of B-vitamins as well as potassium and magnesium to speed recovery from the effects of withdrawal.
  10. Remove a wart by placing the inside of a piece of banana peel against the wart and taping it in place.
  11. Rub the inside of a banana peel on your leather shoes or handbag and polish with a dry cloth for a quick shine.

Oh, and remember -- bananas make great snacks and delicious smoothies.


courtesy by : foodmatters.Tv


Wonderfully sweet with firm and creamy flesh, bananas come prepackaged in their own yellow jackets and are available for harvest throughout the year.
The banana plant grows 10 to 26 feet and belongs to the Musaceae family of plants along with plantains.
The cluster of fruits contain anywhere from 50 to 150 bananas with individual fruits grouped in bunches, known as "hands," containing 10 to 25 bananas. 
Banana, fresh
1.00 medium
(118.00 grams)
Calories: 105
GI: low
NutrientDRI/DV


 manganese16%

 vitamin C14%

 potassium12%

 fiber12%

 copper10%

 biotin10%

This chart graphically details the %DV that a serving of Bananas provides for each of the nutrients of which it is a good, very good, or excellent source according to our Food Rating System. Additional information about the amount of these nutrients provided by Bananas can be found in the Food Rating System Chart. A link that takes you to the In-Depth Nutritional Profile for Bananas, featuring information over 80 nutrients, can be found under the Food Rating System Chart.

    courtesy by : whfoods


    Bananas: Health Benefits, Facts, Research

    Possible health benefits of bananas

    Listed below are the possible health benefits associated with bananas. It is important to note that more high quality studies are required before these health benefit links are proved definitive.

    1) Blood pressure

    Bananas
    Maintaining a low sodium intake is essential to lowering blood pressure, however increasing potassium intake may be just as important because of its vasodilation effects. According to the National Health and Nutrition Examination Survey, fewer than 2% of US adults meet the daily 4700 mg recommendation.3
    Also of note, a high potassium intake is associated with a 20% decreased risk of dying from all causes.3

    2) Asthma

    A study conducted by the Imperial College of London found that children who ate just one banana per day had a 34% less chance of developing asthma.

    3) Cancer

    Consuming bananas, oranges and orange juice in the first two years of life may reduce the risk of developing childhoodleukemia. As a good source of vitamin C, bananas can help combat the formation of free radicals known to cause cancer. High fiber intakes from fruits and vegetables like bananas are associated with a lowered risk of colorectal cancer.

    4) Heart health

    The fiber, potassium, vitamin C and B6 content in bananas all support heart health. An increase in potassium intake along with a decrease in sodium intake is the most important dietary change that a person can make to reduce their risk of cardiovascular disease, according to Mark Houston, MD, MS, an associate clinical professor of medicine at Vanderbilt Medical School and director of the Hypertension Institute at St Thomas Hospital in Tennessee.3
    In one study, those who consumed 4069 mg of potassium per day had a 49% lower risk of death from ischemic heart disease compared with those who consumed less potassium (about 1000 mg per day).3
    High potassium intakes are also associated with a reduced risk of stroke, protection against loss of muscle mass, preservation of bone mineral density and reduction in the formation of kidney stones.3

    5) Diabetes

    Studies have shown that type 1 diabetics who consume high-fiber diets have lower blood glucose levels and type 2 diabetics may have improved blood sugar, lipids and insulin levels. One medium banana provides about 3 grams of fiber.
    The Dietary Guidelines for Americans recommends 21-25 g/day for women and 30-38 g/day for men.

    6) Treating diarrhea

    Bland foods such as apple sauce and bananas are recommended for diarrhea treatment. Electrolytes like potassium are lost in large quantities during bouts of diarrhea and may make those affected feel weak. Bananas can help to promote regularity and replenish potassium stores.

    7) Preserving memory and boosting mood

    Bananas also contain tryptophan, an amino acid that studies suggest plays a role in preserving memory and boosting your mood.
    courtesy by: medicalnewstoday