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Tampilkan postingan dengan label 2014 at 02:00AM. Tampilkan semua postingan

Selasa, 04 Maret 2014

Here's who will be playing Li'l Bruce Wayne and Catwoman in Gotham onlinecollegedegreee.blogspot.com

Written By 12; About: Here's who will be playing Li'l Bruce Wayne and Catwoman in Gotham onlinecollegedegreee.blogspot.com on Selasa, 04 Maret 2014

onlinecollegedegreee.blogspot.com Here's who will be playing Li'l Bruce Wayne and Catwoman in Gotham

Here's who will be playing Li'l Bruce Wayne and Catwoman in Gotham S


Warner Bros. has announced David Masouz and Camren Bicondova will play preteen Bruce Wayne and the 14-year-old cat burglar Selina Kyle in Fox's Batman-less Batman series Gotham. Try not to think about how their characters will be boning each other on rooftops 10 or so years from now.


Here's the official character description for Bruce and Selina per the press release:



David Mazouz (Touch) has been cast as the preteen Bruce Wayne, sentenced to a solitary life after the tragic murder of his wealthy parents. Serious and soulful, young Bruce relies on the guidance and protection of Alfred Pennyworth and James Gordon.


Acting newcomer Camren Bicondova has been cast as Selina Kyle, a teenage orphan who is suspicious and wholly unpredictable. A street thief and skilled pickpocket, she's dangerous when cornered.


(Note: As has been reported previously, GOTHAM is the origin story of Commissioner James Gordon and not a "Batman" show. Please note for stories that David is playing the young Bruce Wayne —not Batman.)



YEAH, WE KNOW. YOU DON'T NEED TO KEEP REMINDING US OF THE SHOW WE WISH YOU WERE MAKING INSTEAD OF GOTHAM, JERKS.


onlinecollegedegreee.blogspot.com Here's who will be playing Li'l Bruce Wayne and Catwoman in Gotham

Minggu, 02 Maret 2014

Scientists Demonstrate Laser-Powered Mind Control in Best Way Possible onlinecollegedegreee.blogspot.com

Written By 12; About: Scientists Demonstrate Laser-Powered Mind Control in Best Way Possible onlinecollegedegreee.blogspot.com on Minggu, 02 Maret 2014

onlinecollegedegreee.blogspot.com Scientists Demonstrate Laser-Powered Mind Control in Best Way Possible

Scientists Demonstrate Laser-Powered Mind Control in Best Way Possible S


Researchers call it the Fly Mind-Altering Device (aka "FlyMAD"), and to demonstrate the system's effectiveness, they've shown that firing a laser at the head of a fly can compel it to flirt, and attempt to copulate, with a ball of wax. (Come on. You know you want to watch this.)


Photo Credit: Alex Wild | A female D. melanogaster, and one bearing a white- rather than TRPA1-mutation, but a beautiful photograph


FlyMAD works by tracking a fly's movement and firing an infrared laser directly at its head. The heat from the laser triggers neural circuits in the fly's brain that have been genetically engineered to activate when heated. Conceptually, the technique is similar to optogenetics (which triggers neurons with light), but while optogenetics has been successfully demonstrated in mice, it's proven difficult to implement in flies, whose heads are too small to accommodate the fibre-optic cables necessary to deliver light to the brain.


Heat activation can be engineered into neural circuits by outfitting them with a heat-sensitive protein called TRPA1. Previous studies have studied how fly behavior can be altered by adding TRPA1 to neural circuits involved in mating. When TRPA1 flies are placed in a hot box, the neurons are activated, and the flies get randy.



But triggering neurons with a hot box can be slow-going, and that's why researchers led by HHMI Janelia Farms neuroscientist Barry Dickson – in collaboration researchers Dan Bath, John Stowers, Dorothea Hörmann and Andrew Straw – developed FlyMAD. FlyMAD's laser channels heat quickly and directly to the flies' heads, allowing them to trigger behavioral changes almost immediately. Nature News' Sara Reardon explains the video demonstrating the technique featured above:



As proof that the FlyMAD works, the group made flies with TRPA1 in a neural circuit involved in courtship. When the researchers activated the TRPA1 neurons with the laser, the fly began trying to mate with a ball of wax, circling it and 'singing' by vibrating its wings (see 'Laser love'). The fly continued courting for about fifteen minutes after the laser was shut off, suggesting that the heat had triggered a lasting, complex behavioural state. The researchers also made flies with TRPA1 in neurons involved in muscular coordination. Switching the laser on instantly made the flies walk backwards. They immediately stopped when it was switched off.



Dickson's group is in the process of submitting its work to peer-reviewed journals, so we'll have more details on FlyMAD when the publication lands. Until then, you can read more over at Nature News.


HT Sian!


onlinecollegedegreee.blogspot.com Scientists Demonstrate Laser-Powered Mind Control in Best Way Possible

Rabu, 26 Februari 2014

​How to Comprehend Incomprehensibly Large Numbers onlinecollegedegreee.blogspot.com

Written By 12; About: ​How to Comprehend Incomprehensibly Large Numbers onlinecollegedegreee.blogspot.com on Rabu, 26 Februari 2014

onlinecollegedegreee.blogspot.com ​How to Comprehend Incomprehensibly Large Numbers

​How to Comprehend Incomprehensibly Large Numbers S


We humans are a smart bunch, but we really suck when it comes to understanding and handling excessively large numbers. Here's why we're so bad at it — and what you can do to make sense of concepts and figures that are unreasonably huge.


To learn more about grasping and processing large numbers, I spoke to mathematician Spencer Greenberg, co-founder of the A.I. powered hedge fund Rebellion Research, and founder of ClearerThinking.org, an online project offering free, interactive training programs that help people enhance their decision making skills.


A Cognitive Limitation


It shouldn't be too surprising that humans have great difficulty with large numbers. While living and evolving in a so-called state-of-nature, our paleolithic ancestors had no need (i.e. no environmental pressures) to develop such a capacity. Back then, and prior to the advent of a formal numbering system, early humans only really needed to get a basic sense of small batches of quantities, like the number of people in the clan, or how many animals might occupy a certain area.


These days, however, we're surrounded by large numbers. Like, stupid large numbers. We're told that there are 7-billion humans on Earth, that there are 300-billion stars in the Milky Way, and that there may be upwards of 70-sextillion stars in the Universe (that's 1021, or a 1 with 21 zeros behind it). Good luck trying to wrap your head around what such a quantity actually means or signifies.


Related: Why We Should Switch to a Base-12 Counting System | Does Infinity Really Exist?


In addition to this cognitive limitation, and as Greenberg pointed out to me, some languages don't even distinguish large numbers from each other at all. Take the Pirahã language, for example, a dialect of an indigenous hunter-gatherer tribe from the Amazon. This language is devoid of words for precise numbers, but instead has concepts for 'a small amount' and 'a larger amount.'


"So it seems humans can survive well — in at least some, maybe most or all — natural environments without differentiating large from very large," Greenberg told io9. "This bolsters the argument that it really is not essential from an evolutionary perspective."


But that doesn't mask the fact that humans are absolutely awful with large numbers. Once numbers get beyond a certain point, they tend to lose all meaning.


"We can easily visualize five things," says Greenberg. "We can even roughly visualize approximately 100 things — by, say, picturing a large crowd gathered. But when we're talking about millions of things our ability to visualize completely fails." He says that trying to imagine a million people is about as useless as trying to imagine a hundred million.


He adds that, by using numbers for our whole lives, we've built up our intuitions to "feel" that 10 is a lot bigger than one, and that 100 is a lot bigger than 10. But we have no such "feeling" about a quadrillion versus a trillion. In fact, we might not even know which is bigger. Even when we see them written out:



1,000,000,000,000,000 versus 1,000,000,000,000



Indeed, our eyes could easily miss that one is a thousand times bigger if we're not paying close attention. But thankfully, there are some tricks we can use to help us make better sense of numbers like these.


Break It Down


Greenberg says it's a good idea to convert large numbers to a different unit to make the large numbers smaller.


For instance, the U.S. national total public debt is about $17 trillion. That number is nearly impossible to understand intuitively if left in units of dollars. But there are two much easier ways to think about it.


"With about 317 million people in the U.S., that comes out to $54 thousand per person," he says. "That's a number that's much easier to make sense of — there is $54 thousand dollars debt owed for each person."


The other way to think more intuitively about this is that the U.S. has about $16.8 trillion in GDP, so the debt is about equal to the total market value of all final goods produced in the US in a single year.


But Greenberg says we should avoid units that don't have any relevance, like "A billion pennies on top of each other forms a tower that's about 870 miles high."


Change the Unit of Measurement


We're often confronted with excessively large figures that would be better expressed with a different unit, like switching from feet to miles (or meters to kilometers), from ounces to pounds, from seconds to years, and so on.


"For instance, if someone says that the Mariana Trench reaches to a maximum depth of 36,000 feet, that's tough to make sense of," says Greenberg. "It's much easier for our brains to understand that as 6.8 miles (11 km), which is a distance we already have a pretty good intuition for."


That said, be sure to avoid units for which you don't have an intuitive grasp. Most people, for example, have little intuitive sense of how much a tonne of weight is.


Convert Large Numbers to Batches You're Familiar With


What does it mean to think about 400,000 people? One thing I like to do is break it down into something I'm familiar with and that I can kind of visualize: the crowd attending a sporting event. For example, hockey arenas seat about 20,000 people. So, you could envision 200,000 people as 20 hockey arenas worth of people.


​How to Comprehend Incomprehensibly Large Numbers S


Tumar/Shutterstock


Or as Greenberg told me, if you have $100,000 worth of savings, that means someone with a hundred million dollars has 1,000 times more money than you. No doubt, 1,000 is way easier to wrap your mind around than a hundred million.


This technique can also be used to assess risk.


"If you go hang gliding, you have a roughly 1 in 116,000 chance of being killed during that flight," he says. "Is that a lot of risk? It's very tough to tell. But here's another way to think about it. If you're a 30 year old male in the U.S., you have about a 1 in 260,000 chance of dying tomorrow. So that means that tomorrow, by going hang gliding once, you're taking on 3.2 times more risk than you usually do in a given day! So that gives a new way of thinking about hang gliding risk if you're a 30 year old male in the United States: You're tripling your usual risk of death for each such flight you take."


Again, like the previous trick, just be sure you really understand those familiar units as well as you think.


Incorporate Time


Another great idea suggested by Greenberg is to incorporate time to turn numbers into occurrences over time.


​How to Comprehend Incomprehensibly Large Numbers


So, let's take a figure like $400,000 dollars — which happens to be Powerball's next jackpot amount. How much money is that, really? (image: Mark LaMoyne/Shutterstock)


"That's tough to make sense of," says Greenberg. "But if you live for 60 more years, that's 525,600 hours remaining in your life, so if you win that jackpot — not taking into account time/value discounting and inflation considerations — that's like getting paid $761 per hour for each hour in the rest of your life (including when you're asleep)."


Here's another example: San Francisco's metro area has about 4.3 million people. How many is that? Well, if you spoke to each person for one minute, and you did that eight hours a day, it would take you 24.5 years to speak to them all. Whoa.


"To me, that gives me the sense of how insanely unknowable a community of that size is," adds Greenberg.


This reminds me of a tactic used by the Soviets at the Battle of Stalingrad during World War II. To demoralize the enemy, loudspeakers blared this rather discouraging message: "Every seven seconds a German soldier dies in Russia." In reality, it was closer to nine each minute. That's about 540 deaths an hour, 12,960 a day, 90,720 a week, or 388,800 a month.


There's also the Battle of Borodino to consider — an incredibly bloody 19th Century engagement in which some 65,000 soldiers were killed over an eight hour period. To better conceptualize this, historian Gwynne Dyer used a trick we described earlier, the batching method. He compared the carnage at Borodino to "a fully-loaded 747 crashing, with no survivors, every 5 minutes for eight hours."


Avoid Exponents


I asked Greenberg if exponents, or scientific notation, can be helpful. He said that scientific notation is fantastic for helping us calculate with large numbers — 10 billion divided by 1 million becomes 1010 / 106 = 10(10-6) = 104 — but it is not very helpful for grasping them intuitively. In fact, for intuitions sake, he says it can be confusing.


"Look at the two numbers, 1032 and 1039," he says. "It's easy to forget that the latter is TEN-MILLION times bigger than the former, since written in this notation they seem to be off by a "mere" 7 (i.e. 39-32 = 7)."


Hitting a Wall


Needless to say, there are limits to these tricks. We can only manipulate these figures so much before they once again regress into meaninglessness. For example, I asked Greenberg how we could better conceptualize something as large as the total number of stars in the Milky Way, which has about 300 billion stars.


​How to Comprehend Incomprehensibly Large Numbers S


Serge Brunier


"That's really a tough one," he replied. "The best I can do off the cuff is think about it in terms of the human population. If we somehow could colonize the Milky Way, that would be 300 billion / 7.1 billion = about 42 stars for each person currently alive on the earth today. Not super satisfying, but maybe that helps a bit. Of course, the number of people on the earth today is so large that it's hard to make sense of even that number."


Ultimately, Greenberg says large numbers will remain beyond our grasp (at least until the era of human cognitive enhancement), especially the really huge ones, and ones that we can't relate to meaningful things we already understand.


"This is why when dealing with large numbers we often have to just 'do the math'," he says, "rather than trying to truly grasp these numbers. That is, we can work with extremely large numbers in calculations, and still get useful answers out the other end, we just can't necessarily grasp the numbers used throughout that process."


Top image: NASA.


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onlinecollegedegreee.blogspot.com ​How to Comprehend Incomprehensibly Large Numbers

Senin, 24 Februari 2014

What will life be like when digital brains outnumber humans? onlinecollegedegreee.blogspot.com

Written By 12; About: What will life be like when digital brains outnumber humans? onlinecollegedegreee.blogspot.com on Senin, 24 Februari 2014

onlinecollegedegreee.blogspot.com What will life be like when digital brains outnumber humans?

What will life be like when digital brains outnumber humans? S


These days, people worry about robots stealing our jobs. But maybe we should be more concerned about massive populations of computerized human brains. Called "ems," these infinitely-reproducible brains could change the world. Here's what will happen when digital brains vastly outnumber biological ones.


To learn more about this prospect, I spoke to economist and futurist Robin Hanson. He's an Associate Professor at George Mason University, a Research Associate at Oxford University's Future of Humanity Institute, and the Chief Scientist at Consensus Point. Hanson is currently writing a book on the economic and social implications of whole brain emulations — or what he simply refers to as "ems."


Remaking the World


A brain emulation can be thought of as a type of brain upload. To make an em, a future neuroscientist would scan a particular human brain in high spatial and chemical resolution. Then, for all brain cell types, math models would be developed that map input signals to output signals and internal state changes. The final step would be to combine these to fill out a computer model of that particular brain.


"If the scan and cell models are good enough, the whole model must have the same input-output behavior as the original brain," Hanson told io9. "So if you add artificial eyes, ears, hands, and so on, it could talk with you and do tasks as well as the original. It could also do as well at arguing that it's conscious and deserves moral consideration."


"Ems would remake the world," says Hanson. "We humans are made of meat, our brains run at the same speed, we take decades to build, and we must be trained individually."


In contrast, argues Hanson, em brain models could be run at many different speeds in order to match different tasks. Being made of electronics, and built quickly in factories, the em population could grow very fast, allowing the em economy to also grow very fast. It could even double monthly.


"Because ems are easily copied, you could train one to be a good lawyer and then make a billion copies who are all good lawyers," he says. "That one initial em could come from the very best suited human; the typical em would be as sharp and capable as the very best humans in the world. The em economy would thus be much more competitive because small efficiency gains would lead to a bigger displacements of behavior."


Eventually, ems will be made cheaply — and they'll displace humans in virtually every niche. They'll basically do everything.


What will life be like when digital brains outnumber humans? S


"Some would do physical jobs, like assembling or cleaning, and would have robotic bodies with sizes and shapes matched to their tasks," says Hanson. "But most would do desk jobs, like engineering or finance, while sitting in virtual reality offices. And almost all leisure time would be spent in virtual reality."


Since ems who are close enough can meet in virtual offices without having to move their brains, em cities have much lower travel congestion costs, allowing much bigger cities. "Picture a few huge tall hot cities packed dense with computer hardware, and with about half the volume devoted to pipes to move cooling fluids," says Hanson.


Why Ems?


I asked Hanson why brain emulations would perform all these tasks, and not advanced algorithms.


"We have worked for centuries to automate jobs, and we've had a lot of success." he responded. Indeed, humans have been pushed out of many jobs. Even so, we still pay far more to "rent" human workers than to rent machines — showing that human workers still create far more value.


"I was a researcher in the field of artificial intelligence (AI) from thirty to twenty years ago, and I've asked lots of old AI hands how much progress they've seen in the last twenty years in the AI subfield they know best," he continued. "Their typical answer is that we've moved about five to ten percent of the distance to human level abilities, with no noticeable acceleration. At this rate it would take two to four centuries for machines to be as good as humans in most AI task areas. So we still have far to go."


In response to the question of why it's so hard to automate jobs, Hanson says that, because most brain activity is unconscious, we tend to vastly underestimate how much our minds do in simple-seeming tasks.


"It isn't just a few general algorithms; we have inherited a vast storehouse of tricks. There aren't five magic equations to make machines smart at everything, any more than there are for making successful cities or bacteria. As in biology or business, success requires not messing up on a million little niggly tasks."


Intense Competition


Ems will (primarily) live in supercomputers and they'll be copied easily, so their populations will quickly skyrocket. This intense competition will have a profound impact on ems in terms of their market value as employees and as potentially rights-bearing citizens. I asked Hanson to elaborate on both these points.


What will life be like when digital brains outnumber humans? S


"Supply and demand work well to analyze this," he says. "When we can make lots of em computers fast, then the wage for each type of job must fall to the cost of renting and running enough computer hardware for an em brain, plus the cost to train an em for that type of job divided by the number of trained copies, plus whatever extra payoff it takes to get two productive ems to compete for that job type."


In such a work environment, and with very cheap computer hardware, wages would be very low — near an em 'subsistence level,' and far less than what humans need to survive.


Hason agrees that minimum wage laws could force higher wages. But he says that such wages could put the jurisdictions that enact them at a competitive disadvantage in a very competitive world. And the higher that minimum wages rise above natural wages, the more eagerly business-folk would evade it via hidden copies of themselves. Draconian enforcement, warns Hanson, might be required.


"Now supply and demand doesn't tell you who owns stuff, only the price of trades in that stuff. So it doesn't tell you if ems would be slaves or fully autonomous citizens. But as we've seen in history, slavery offers little profit when wages are near subsistence; it was higher wages that enticed slavers."


But What About the Humans?


Needless to say, an economy over-saturated with highly productive and motivated digital brains will have a tremendous impact on biological humans. To cope, meat-based humans will have to find ways to add meaning to their lives. Disturbingly, Hanson predicts that human servants could become status symbols among the rich.


"But to survive, most humans would need assets other than their ability to work," Hanson told io9. "Like stocks, bonds, real estate, or patents. Humans without such assets may or may not get charity from other humans. Em charity to humans may focus on offering humans a chance to become ems."


Disturbing, no? Hanson made it clear to me that his analysis is designed to forecast likely outcomes, and not those outcomes we currently desire.


"We first need a clear idea of what is likely if we do nothing, before we can decide where to push the future away from that no-pushing scenario," he says.


Alienating Speed


As noted, digital brains will function at different speeds, so some ems will be faster than others. Given the type of uber-competitive environment Hanson describes, this will likely create severe social and economic stratifications.


According to Hanson, it would cost twice as much for hardware to run an em mind twice as fast. So very cheap ems might run at one-thousandth of human speed, while ems costing a billion times more might run a million times faster than humans.


This could result in em subtypes, including kilo-ems and milli-ems, who think and execute tasks a thousand times faster or slower than humans, and potentially micro-ems, who run a million times faster or slower.


"Ems who manage small fast physical systems like nano-factories must be fast," says Hanson. "Those who run big slow systems like supertankers can be slow. Fast bosses could manage many diverse slower subordinates, enabling bigger organizations. Most ems would run near the speed of their interaction partners."


Over time, however, adaptive complex systems tend to get fragile (they become worse at adapting to new contexts). Brains, says Hanson, are no exception. This will likely put a limit of perhaps several centuries on the useful subjective career of ems. So, to fit this career into an economic doubling time, the typical em office worker may run a thousand times faster than humans.


"Ems running at different speeds would find it hard to interact naturally, and their cultures would quickly get out of synch," predicts Hanson. "Faster ems would have many markers of higher status, including more wealth. So yes, em society would stratify by speed."


Indeed, most ems would find it excruciating to converse with biological humans. From the perspective of a milli-em, a single conversation could require so much time it would not be worth the trouble.


Short Lives and Virtual Retirement


Perhaps surprisingly, Hanson also predicts that some ems will voluntarily choose to have short lives.


"Compared to an em who works eight hours a day and then rests for 16, a copy of that em who works for eight hours and then ends would incur only one third the hardware costs per work hour," he says. "This is such a huge savings that most em workers would be such short-lived ems."


Alternatively, and to reduce stress, Hanson says it could be affordable to retire this copy to a slow life of leisure, instead of ending it (the slower the functional speed, the cheaper it will be to live). The main obstacles to an indefinite duration of retirement, however, would be low interest rates, or civilization-wide instabilities like revolutions or wars.


"In virtual reality, ems need never experience physical pain, hunger, disease, or grit," says Hanson. "Furthermore, spectacular quality virtualities would cost little compared to the cost of running an em brain. While retiree minds would eventually become fragile, frail minds can still enjoy life. And retirees might play key symbolic roles in em rituals."


Given these near-Dystopian scenarios, I asked Hanson what would motivate ems and why they would choose to cooperate with traditional power structures.


"Since ems are psychologically human, they would deal with hierarchy, group divisions, and coalition politics very much like humans do," he explained. "The main difference is that ems would have a new unit of organization: the clan of copies of the same original human. Since ems could trust their clans more, clans may become the strongest unit of social organization. Clans may negotiate and invest for their ems and offer them life coaching based on the experiences of millions of similar copies."


The Dark Side


As if a lot of this isn't already grim enough, ems will have to deal with a host of other concerns.


For example, a stolen copy of an em mind could be tortured to extract secrets, or enslaved to compete with the original. Even a credible threat to steal and torture a copy could also confer great power.


"So most ems would be careful to avoid mind theft," he says. "Some, however, would offer themselves as open source ems, free to copy and ready to do any task assigned them."


Not-yet-retired ems would also be wary of entering unknown virtualities that might be so pleasurable or engrossing as to tempt them not to return to work.


Taming The Wild Digital West


Hanson assumes low regulation scenarios because he says low base scenarios are easier to analyze. But eventually, many jurisdictions would regulate many things


"And also because a more competitive em economy will select more strongly against jurisdictions whose regulations create competitive disadvantages," he adds. "For example, if most human-dominated jurisdictions are slow and cautious regarding the first ems, the em economy would blossom in the few places that allow quick adoption of em-friendly practices. Such places would soon dominate the world."


Hanson says the most likely regulations are those that will create competitive advantages. Those could include intellectual property rules that encourage innovation, and combinatorial auctions for the allocation, sizing, and pricing of urban land use and utilities.


Regardless, the future that Hanson describes is a far cry from what many of us are hoping for. Living as a stream of 1's and 0's may have its benefits — but a digital utopia has never seemed more elusive.


Image: imredesiuk/Shutterstock | iurii/Shutterstock

Follow me on Twitter: @dvorsky

onlinecollegedegreee.blogspot.com What will life be like when digital brains outnumber humans?

Minggu, 23 Februari 2014

This Health Scare Article from TIME Is Full of Unfortunate Haikus onlinecollegedegreee.blogspot.com

Written By 12; About: This Health Scare Article from TIME Is Full of Unfortunate Haikus onlinecollegedegreee.blogspot.com on Minggu, 23 Februari 2014

onlinecollegedegreee.blogspot.com This Health Scare Article from TIME Is Full of Unfortunate Haikus

This Health Scare Article from TIME Is Full of Unfortunate Haikus


When a reader sends a particularly poetic message to the Jezebel inbox, some of the writers will notice the message's linguistic symmetry and gleefully announce, "Haiku!" Truthfully, most of these messages aren't perfect haikus (or "hokkus" for all those Ezra Pound fascists lurking in the comments), but they are very haiku-like, which is exciting for two very obvious (but not so obvious that I'll forgo naming them) reasons: 1) even the banal can be made interesting with the right configuration of punctuation and spacing and 2) unintentional poetry immediately neutralizes the gravity of any particular sentiment. Be honest — if someone accidently rhymes something (the paparazzi didn't follow Brad Pitt and Angelina Jolie on their diplomatic trip to Benghazi) you're way more likely to dismiss that person for frivolity.


The inherent frivolity of poetry is what makes this otherwise disposable TIME listicle about men's health so heartbreakingly ridiculous. "7 Weird Signs of Health Trouble" should be a semi-serious bit of health journalism scare mongering in the proud tradition of local news reports about arsenic-laced discount cereals and impending blizzards, but it manages to undermine its authority through an unfortunate series of introductory imperatives.


Observe what happens to the first health tip:



Check Your: Fingernails


For: Lupus.



Fingernail discoloration, you see, could be a clue that one has lupus. It's a legitimate fact made absurd by colons and a simple line break. "Check your fingernails for lupus!" sounds like the beginning of a Weird Al song. Actually, all of these tips, taken together, could flesh out one verse of a Weird Al accordion song about hypochondria:



Check Your: Hairline


For: Thyroid disease.


Check Your: Reflection


For: Heart attack.


Check Your: Breath


For: Erectile dysfunction.


Check Your: Eyes


For: Cognitive decline.


Check Your: Hearing


For: Diabetes.



There are endless couplings, which means that this TIME may have unwittingly spawned a new poetic form. Try it out yourself — it's super fun.


Check Your: Belly Button


For: Knives


Check Your: Eyelashes


For: Smaller knives


Check Your: Nipples


For: Mites


Check Your: Ankles


For: Broken Ankles


Go on — you get the idea.


Image via Getty


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onlinecollegedegreee.blogspot.com This Health Scare Article from TIME Is Full of Unfortunate Haikus

NASA's IRIS Spots its Biggest Solar Flare Yet onlinecollegedegreee.blogspot.com

onlinecollegedegreee.blogspot.com NASA's IRIS Spots its Biggest Solar Flare Yet

NASA's IRIS Spots its Biggest Solar Flare Yet S


Late last month, NASA's Interface Region Imaging Spectrograph (aka IRIS) witnessed the strongest solar flare it's glimpsed since its launch last year.


IRIS spacecraft was deployed last June to observe the little-explored lower layers of the Sun's multi-level atmosphere in unprecedented detail. Since then, it's turned up never before-seen-images of the Sun's chromosphere, the so-called "interface region" that serves as an energy conduit between the Sun's low-level photosphere and its outer corona, but it's also recorded a number of solar flares. This one, which it spied on January 28th, was the biggest it'd seen yet:


Via NASA:



IRIS can't look at the entire sun at the same time, so the team must always make decisions about what region might provide useful observations. On Jan. 28, scientists spotted a magnetically active region on the sun and focused IRIS on it to see how the solar material behaved under intense magnetic forces. At 2:40 p.m. EST, a moderate flare, labeled an M-class flare — which is the second strongest class flare after X-class – erupted from the area, sending light and x-rays into space.


IRIS studies the layer of the sun's atmosphere called the chromosphere that is key to regulating the flow of energy and material as they travel from the sun's surface out into space. Along the way, the energy heats up the upper atmosphere, the corona, and sometimes powers solar events such as this flare.



[NASA Goddard]


onlinecollegedegreee.blogspot.com NASA's IRIS Spots its Biggest Solar Flare Yet

Sabtu, 22 Februari 2014

Have you ever seen a snowflake blossom? onlinecollegedegreee.blogspot.com

Written By 12; About: Have you ever seen a snowflake blossom? onlinecollegedegreee.blogspot.com on Sabtu, 22 Februari 2014

onlinecollegedegreee.blogspot.com Have you ever seen a snowflake blossom?

This is what the birth of a snowflake looks like


One of the more technically creative time lapses we've seen in a long while, Snowtime is a 2-minute "microscopic time-lapse" by Vyacheslav Ivanov that captures the mesmerizing bloom of budding ice crystals in all their hexagonal glory.


This is what the birth of a snowflake looks like


The ice crystal(s) in snowflakes owe their six-fold rotational symmetry to the hydrogen bonds in water molecules. As water freezes, water molecules bound to other water molecules crystallize into a hexagonal structure, where each point on the hexagon is an oxygen atom and each side of the hexagon is a hydrogen bonded to an oxygen. As freezing continues, more water molecules are added to this microscopic six-sided structure, causing it to grow in size into the six-sided macroscopic structure that we recognize as snow flakes.


Water's tendency to expand as it nears freezing – rather than condense, like most substances – is part of what lends its frozen crystal structure its unique shape. (It's also responsible for a number of water's unique properties, and why it's so essential to the existence of life.) Something to keep in mind the next time you're experimenting with good old H2O.


Complement with some stunning close-up photographs of snowflakes, here and here.


[Vyacheslav Ivanov via Kuriositas]


onlinecollegedegreee.blogspot.com Have you ever seen a snowflake blossom?

Jumat, 21 Februari 2014

This weekend is Ragnarok. Here's why that isn't the end of the world. onlinecollegedegreee.blogspot.com

Written By 12; About: This weekend is Ragnarok. Here's why that isn't the end of the world. onlinecollegedegreee.blogspot.com on Jumat, 21 Februari 2014

onlinecollegedegreee.blogspot.com This weekend is Ragnarok. Here's why that isn't the end of the world.

This weekend is Ragnarok. But it isn't the end of the world. S


You may have read that this weekend is supposed to mark the coming of Ragnarok, the violent "Viking Apocalypse" prophesied in Old Norse poetry. But the mythical apocalypse that inspired Game of Thrones' long winter isn't actually on the books—and may refer to events that happened centuries ago.


It was just a little over a year ago that we were talking about the Maya non-apocalypse, and now it's the vikings turn to kind of, sort of predict the world's end. Stories are swirling around the Internet that February 22nd marks the "predicted" date of Ragnarok, which will coincide with this weekend's Jorvik Viking Festival. But don't stock up on wolf-repellent just yet; this isn't the end of the world.


What is Ragnarok?


Ragnarok is an event that is referenced in a handful of poems in the Poetic Edda and in Gylfaginning, a book from the Prose Edda. The Poetic Edda is a collection of Old Norse poems that were collected in the 13th century (but in some cases composed centuries earlier) and it informs much of our current knowledge about Norse mythology. The Prose Edda is another compilation of Old Norse poems, likely written out by the Icelandic historian Snorri Sturluson, also in the 13th century. Gylfaginning is the second book in the Prose Edda (following the Prologue), and it focuses on the creation and destruction of the world in Norse mythology, quoting heavily from works in the Poetic Edda. Various stone carvings dating from the 10th and 11th centuries also depict images believed to be scenes from Ragnarok, notably Odin, the Allfather of the gods, being devoured by the wolf Fenrir, son of the trickster god Loki.


This weekend is Ragnarok. But it isn't the end of the world. S


Both the Völuspá (a poem from the Poetic Edda in which a seeress relates the lore of the giants and gods and goes on to predict the gods destruction) and the Gylfaginning discuss at length the final battle between the gods of Asgard (the Æsir) and the Jötnar (giants), joined by the monstrous children of Loki and the Eldjötnar (fire giants). Although the two poems contradict each other in places, several events overlap: Jörmungandr, the serpent that surrounds the world (and is another child of Loki) will cause the seas to quake; Fenrir swallows Odin whole but is then immediately slain by Odin's son Víðarr; the god Thor manages to kill Jörmungandrm, but is fatally poisoned by the serpent and dies after walking a mere nine steps away. In the Gylfaginning, Loki and the Æsir Heimdallr battle and kill one another.


Ragnarok sees the destruction of the world and the heavens; the jötunn Sutr, who guards the fiery realm Muspelheim, burns the mortal world (Midgard) and Asgard. However, Ragnarok isn't just the end of the world; it's also a time of renewal. A new, fertile earth is supposed to rise from the seas and a field called Iðavöllr stands in Asgard's place, and the Asgardian survivors of Ragnarok, joined by the dead gods Baldr and Höðr, will gather there, will gather there. Thus, the cycle of the cosmos begins anew.


Winter is (Not) Coming


The final battle of the gods and giants doesn't come unannounced, however. Vafþrúðnismál, the third poem in the Poetic Edda, references a "Fimbulvetr" (also termed Fimbulwinter) a "mighty winter" that is linked to Ragnarok. According to the Gylfaginning, Ragnarok will be preceded by three successive winters, in which snow blows from all directions, with no summer between them. It is a time not just of cold and starvation but of violence; wars will rage, family members will kill each other "for greed's sake," and siblings will commit incest with one another. After that, a wolf will swallow the sun. According to both works, only two humans survive the events of Ragnarok: Líf and Lífthrasir, who will repopulate the new world.


It's possible that the idea of the pre-apocalyptic Fimbulvetr was inspired by real-life climate events. In an article in Antiquity, Bo Gräslund and Neil Price link the myth to the long winter that began in 536. They note that the Gylfaginning refers to very specific weather conditions and duration—three years of winter, the sun being useless, snow drifting in from all directions—and that there is some evidence that material culture described in the poem comes from the mid-sixth century. That years-long winter of long ago may have such a profound mark on the psyche of the Nordic culture that it became a marker of the apocalypse.


Why is this weekend supposed to be Ragnarok?


Because the organizers of the Jorvik Viking Festival say so. In fact, all of the announcements of Ragnarok coming out of the festival have been playful rather than dire. In November, the Jorvik Viking Centre in York, England, announced that a figure had blown what they called the Gjallerhorn, the mythical horn of Heimdallr, signaling a 100-day countdown to Ragnarok. When I inquired as to what makes this year the year of Ragnarok, the organization pointed me to their "Signs of Ragnarok" page. Aside from blowing of the Gjallerhorn (which the Centre itself organized), they analogized the movements of the serpent Jörmungandr to the oarfish that recently beached themselves in California and the Fimbulvetr to the mistaken predictions of the coming ice age. It just so happens that these "predictions" of Ragnorak place its start date during the Viking Centre's annual celebration of the viking feast of Jolablot this weekend. In interviews about the coming Ragnarok, it's clear that the organizers aren't terribly attached to the idea of the apocalypse, noting that Jolablot celebrates the start of spring, which, like Ragnarok, is a time of renewal.


This weekend is Ragnarok. But it isn't the end of the world. S


Image from the Jorvik Viking Festival.


It's all a cheeky—and rather successful—marketing campaign for the Jorvik Viking Festival. But even though the world isn't about to end, we can still use this invented Ragnarok as an excuse to feast like vikings and celebrate the coming transition in the Northern Hemisphere from the snows of winter to the fertile fields of spring.


onlinecollegedegreee.blogspot.com This weekend is Ragnarok. Here's why that isn't the end of the world.

Minggu, 16 Februari 2014

Attending a masquerade ball? Consider wearing your own face! onlinecollegedegreee.blogspot.com

Written By 12; About: Attending a masquerade ball? Consider wearing your own face! onlinecollegedegreee.blogspot.com on Minggu, 16 Februari 2014

onlinecollegedegreee.blogspot.com Attending a masquerade ball? Consider wearing your own face!

Attending a masquerade ball? Consider wearing your own face! S


We're big fans of Sandra Holmbom's work. The Swedish makeup artist can do blood and gore with the best of them, but it's her uncanny turns of visual trickery that really set her apart. And when the two combine? Well, that's when you get masterpieces like this. (Fair warning: this is some pretty graphic costume gore.)


Holmbom's gruesomely literal take on the masquerade-ball face mask is disgusting, and it is fantastic:


Attending a masquerade ball? Consider wearing your own face! S


Remember: When attending a masquerade ball, the most intriguing face you can wear is your own.


Attending a masquerade ball? Consider wearing your own face! S


Attending a masquerade ball? Consider wearing your own face! S


Attending a masquerade ball? Consider wearing your own face! S


Attending a masquerade ball? Consider wearing your own face! S


Attending a masquerade ball? Consider wearing your own face! S


Attending a masquerade ball? Consider wearing your own face! S


See more of Holmbom's incredible work on her website.


ht Tyger!


onlinecollegedegreee.blogspot.com Attending a masquerade ball? Consider wearing your own face!

Sabtu, 15 Februari 2014

Nike Designer Says Marty McFly's Power Laces Are Coming Next Year onlinecollegedegreee.blogspot.com

Written By 12; About: Nike Designer Says Marty McFly's Power Laces Are Coming Next Year onlinecollegedegreee.blogspot.com on Sabtu, 15 Februari 2014

onlinecollegedegreee.blogspot.com Nike Designer Says Marty McFly's Power Laces Are Coming Next Year

Nike Designer Says Marty McFly's Power Laces Are Coming Next Year


If there was one disappointment about Nike's awesome Back to the Future II Air Mag, it's that the shoes didn't have Marty's power laces (and that they only made 1,500 and neither you nor I own a pair). But Nike designer Tinker Hatfield says that's about to change—power laces are coming in 2015. The future is here!


Yes, as Sole Collector tells it, designer Tinker Hatfield showed up at the Jordan Brand's Flight Lab space in New Orleans yesterday. When asked about power laces, his answer was pretty unequivocal:



"Are we gonna see power laces in 2015? To that, I say YES!"



Sole Collector points out that Hatfield didn't specify whether power laces will show up on the Nike Mag, or some other product, but who cares? POWER LACES PEOPLE. And there's some meaningful chronology here: Marty's self-lacing sneaks, you'll recall were from the year 2015.


Was Nike was holding out, making sure they didn't create a time paradox that would unravel the very fabric of the space-time continuum and destroy the entire universe? If so, smart move. 2015 is gonna be awesome. [Sole Collector]


onlinecollegedegreee.blogspot.com Nike Designer Says Marty McFly's Power Laces Are Coming Next Year

Kamis, 13 Februari 2014

Are photographic memories real -- and could you have one? onlinecollegedegreee.blogspot.com

Written By 12; About: Are photographic memories real -- and could you have one? onlinecollegedegreee.blogspot.com on Kamis, 13 Februari 2014

onlinecollegedegreee.blogspot.com Are photographic memories real -- and could you have one?

Are photographic memories real -- and could you have one? S


There are people out there who can remember almost every detail of what they did on a random day ten years ago. But is it possible to have an actual photographic memory, whether developed by nature or nurture? Here's the truth.


A case study of one — or possibly none


The list of people claiming to have photographic memories is a long one, but when you look at the list of documented scientific studies, that list narrows quite considerably, to one: a single paper published in 1970 in Nature. And some scientists, suggest that the number might be whittled down even further, to zero.


Are photographic memories real -- and could you have one? S


Image: An example of a random dot stereogram, this one showing a shark. / Fred Hsu


In Nature, Charles Stromeyer, a vision researcher at Harvard, detailed the case of a woman, Elizabeth, whose memory was so exceptional that she could view a 10,000 dot-image stereogram with one eye one day, view a second dot-image with the other eye the next day, and then layer those two dot-images over top of each other in her memory so accurately that she could see the full, 3-d image they would create. Other researchers started to become skeptical, however, when she didn't try to replicate the tests with any researchers besides Stromeyer — and became even more skeptical later on when Elizabeth and Stromeyer eventually married.


Scientific literature is riddled with other instances of "superior rememberers," some with exceptional skills. But, the kind of total, instantaneous recall — uniting visual, spatial, audio, and verbal memories — that defines a photographic memory is noticeably absent. So, if real-life photographic memories (the strange case of Elizabeth notwithstanding) don't exist, what about those people who just seem to have really, really good memories? There, with these superior rememberers, the scientific ground gets much more solid.


"Like a movie that never stops."



In 2000, Jill Price emailed scientists at the University of California, Los Angeles to describe the remarkable, and unusual, personal memory she had seemingly been born with. "Most have called it a gift but I call it a burden," she wrote. "I run my entire life through my head every day and it drives me crazy!!!"


At first, the researchers were skeptical, but over five years of tests that gradually became convinced that the woman who called herself a "human calendar" was for real, describing her memory in the paper they published in 2006 in Neurocase as "nonstop, uncontrollable, and automatic." What it also was was, though, was limited.


Are photographic memories real -- and could you have one? S


Price did, indeed, seem to have near perfect recall, at one point dazzling researchers by dashing off a complete list of her last 20 years of Easters in 10 minutes. But that recall was entirely focused on herself and the day-to-day moments that had made up her life. In contrast to other superior rememberers, she did not practice to develop her memory. In fact, if anything, she seems to have found it rather unpleasant. Here's how Price described her condition:



It's like a running movie that never stops. It's like a split screen. I'll be talking to someone and seeing something else ... Like we're sitting here talking and I'm talking to you and in my head I'm thinking about something that happened to me in December 1982, December 17, 1982, it was a Friday, I started to work at Gs (a store)... . It's all about dates... . I just know these things about dates...



In most tests of memory — for instance memorizing a long string of digits or recalling information read in a book — she did no better than average. She also noted that her memory skills were no help to her in school, not even in history. Her knowledge of dates is limited purely to the days that she herself has experienced, and even then it was not infallible. Researchers point out that Price did, on occasion, either misremember a date or not recall a previously told story.


To call Price's command over her memory photographic, therefore, seems not quite accurate, instead researchers coined the term "hyperthymestic syndrome" as a way to describe Price and a handful of other people whose exceptional memories seem to be purely confined to their own experiences.


But, if a photographic memory isn't a gift that can be granted by nature, then perhaps it is instead a goal that can be attained by other methods — as some other famous "superior remembers" tried.


Can you develop a super-memory?


Chao Lu currently holds the world record for reciting Pi to the most decimal places from memory. In 2005, Lu — who was studying Chemistry at the time in China — rattled off Pi to the 67,890th place. It took him more than 24 hours of continuous speech. Surely this seems on the surface to be an extraordinary act of memory — and it absolutely was, but it was also just as much an act of creativity.


To get to the point where he was able to grab a world record, Lu spent more than 4 years memorizing the digits comprising Pi. But he wasn't memorizing the numbers, instead he was memorizing a story. Lu explained that he had broken down pairs of digits into corresponding images, which he then used to compose a series of stories. In essence, Lu had spent those four years composing and memorizing an epic novel, which he then recited for onlookers much in the same way that a traveling storyteller would memorize and then recite a favorite tale.


Are photographic memories real -- and could you have one? S


Image: A pi pie / Paul Smith


What's more, Lu, only got a little more than 3/4 of the way through that tale on the day that he broke the record — he can actually, he says, make it all the way through 100,000 digits:



I've got 100,000 digits of pi, and I was going to recite 91,300 digits of them. But I made a mistake at the 67,891th digit. It was "0" but I said "5" in my recitation. Then after a few while the challenge stopped.



Once a year, a carefully-curated group of some of the most exceptional memories in the world can be found all gathered together at the World Memory Championship. There, they compete at besting each other in tricks such as speed-recalling the order of cards in a deck, memorizing strings of binary numbers, and matching faces with names. In 2002, Neuroscientist Eleanor Maguire decided to do a series of MRIs on the memory champions, for a study that she would eventually publish in Nature, to see what differences she could find in their brains that might explain their remarkable facility for memory.


What she found was nothing.


The memory champions showed no differences in brain structure, no unusual levels of cognitive activity, no exceptional skills in either verbal or non-verbal areas. The only difference Maguire was able to find was that, curiously, when the memory champions performed a feat of memory there was brain activity in areas that were usually associated with remembering physical locations or recalling directions.





Are photographic memories real -- and could you have one? S


In interviews with the memory champions, almost all of them told Maguire that they had been using what a memory technique popular in Ancient Greece, "the method-of-loci," what you may know better as the mind palace technique.


"It's based on navigation," Maguire explains, "they imagine going down a street they know well, place items at certain positions along the street, then mentally retrace their route to find the items."


A pharmaceutical solution?


So, it seems as though — through a great deal of work and mental training — it is possible to train your brain to become, if not photographic, then certainly still very good at recall. But what if there was a way to skip the hours of practice, the tricks, and the years of training? What if the problem of improving your memory was as simple as taking a pill? There's a number of researchers working on just that.


Are photographic memories real -- and could you have one? S


In a recent study published in Nature Neuroscience, researchers at Johns Hopkins University found that a caffeine pill could cause a temporary boost in memory performance over a 24 hour period. Unfortunately, they also found that either having caffeine regularly or having more than might be present in a single, small cup of coffee quickly negated all the benefits.


In the world of memory research, though, the most sought after prize is usually much longer than a 24-hour bump. The real goal is finding a way to boost recall to superior levels over the longterm — and some researchers have done just that, with mice. In 2009, research published in Science showed that mice could be given a near perfect visual memory for a span of two months by boosting production of a protein found in their visual cortex. Later research published from Baylor College in Cell found that by surpressing levels PKR, a molecule involved in sensing viruses, researchers could boost spatial memory in mice to similar levels.


In both instances, researchers thought that the research could eventually lead to similar results in humans. But, though the studies might be good enough reason for mice to throw out their day planners and accumulated post it notes, no such pill exists for absent-minded humans — not yet, anyway.


The wrong primate?


So, is the existence of an actual photographic memory just a myth? For humans it seems to be — but maybe that means we've just been looking at the wrong primate. A study from Kyoto University pitted humans, adult chimps, and young chimps against each other in a test to see who could best recall the location of a remembered sequence of numbers on a touch screen. Adult chimps and humans performed roughly equally, but the results of the young chimps blew both out of the water. What's more, researchers noticed that the young chimps times were actually showing response times that were faster than their eye's ability to scan the screen — making researchers believe that some young chimps might possess photographic memories.


It's not just chimpanzees that have the potential to possess what might be called a photographic memory, however. The humble fruit fly has also been targeted by researchers as the potential possessor of a photographic memory — but only if it's mutated. A Current Biology study of fruit flies with the CREB gene boosted suggested that they were able to gain what researchers called a form of photographic memory over the course of their brief lives. In turns out that the CREB gene is one that humans also share with fruit flies, but the potential for a similar boost in humans hasn't yet been studied.


onlinecollegedegreee.blogspot.com Are photographic memories real -- and could you have one?

Senin, 10 Februari 2014

Satellite image reveals the wreckage from a Martian disaster onlinecollegedegreee.blogspot.com

Written By 12; About: Satellite image reveals the wreckage from a Martian disaster onlinecollegedegreee.blogspot.com on Senin, 10 Februari 2014

onlinecollegedegreee.blogspot.com Satellite image reveals the wreckage from a Martian disaster

Satellite image reveals the wreckage from a Martian disaster S


What you're seeing are the scars left on the surface of Mars after an enormous meteorite hit the planet's surface and unleashed torrents of molten rock and boiling water.


Captured by ESA's Mars Express orbiter in 2007, these images show us perspective shots of a region of Mars known for its enormous, winding troughs that once held fast-moving water. Though a likely explanation for these troughs is water unleashed by the impact, scientists aren't entirely sure that's what happened. It's possible that these were ancient riverbeds, or a flood plain, that were already in existence when a large rock impacted the area.


According to ESA:



The region is dotted with craters and channel systems and lies at about 21°N and 126°E on the Red Planet. Named after the Greek god of fire, Hephaestus Fossae extends for more than 600 km on the western flank of Elysium Mons in the Utopia Planitia region.


The surface is mostly smooth, and is covered by several small impact craters measuring 800 to 2800 m in diameter. Smaller craters are scattered across the entire region. The left side of the image shows a large impact crater measuring 20 km in diameter. Covering an area of approximately 150 sq km, a crater of this size on Earth could harbour cities such as Bonn or Kiel. In contrast to the smaller craters, it shows a blanket of ejecta with flow forms surrounding the rim.



Below you can see the large crater in the distance, and get a better sense of how massive this zone of troughs really is. They do appear to originate mostly from the impact site.


Satellite image reveals the wreckage from a Martian disaster S


onlinecollegedegreee.blogspot.com Satellite image reveals the wreckage from a Martian disaster

Minggu, 09 Februari 2014

Here's the first recorded instance of the F-word in English onlinecollegedegreee.blogspot.com

Written By 12; About: Here's the first recorded instance of the F-word in English onlinecollegedegreee.blogspot.com on Minggu, 09 Februari 2014

onlinecollegedegreee.blogspot.com Here's the first recorded instance of the F-word in English

Here's the first recorded instance of the F-word in English


And it's a monk expressing his displeasure at an abbot. In the margins of a guide to moral conduct. Because of course.


Technically, "fuck" appeared two times before this. In 1500, it was used in a satirical poem to describe some friars. In that case, nothing like "fuck" was actually written out. Instead, the word was hidden in a code. And in 1513, it appeared in a Scottish poem as "fukkit."


But for English's first use, we've got a dissatisfied 1528 monk. He's written "O D fuckin abbot." Melissa Mohr, author of Holy Sh*t: A Brief History of Swearing, says this "fuck" could be either literal or metaphorical:



It is difficult to know whether the annotator intended "fucking" to mean "having sex," as in "that guy is doing too much fucking for someone who is supposed to be celibate," or whether he used it as an intensifier, to convey his extreme dismay; if the latter, it anticipates the first recorded use by more than three hundred years. Either is possible, really—John Burton, the abbot in question, was a man of questionable monastic morals.



So, either this monk was recording his abbot's sex life or he was the first person to be so angry that only "fuck" could convey it's scope.


What's also great is that the "D" probably stands for "damned." The monk had no problem with fucking, but damnation was a curse too far. Honestly, given the meanings, that's fair.


Photo by nigelpornberry via superlinguo


onlinecollegedegreee.blogspot.com Here's the first recorded instance of the F-word in English

Minggu, 02 Februari 2014

Artist perfectly captures genderswapped Disney princess onlinecollegedegreee.blogspot.com

Written By 12; About: Artist perfectly captures genderswapped Disney princess onlinecollegedegreee.blogspot.com on Minggu, 02 Februari 2014

onlinecollegedegreee.blogspot.com Artist perfectly captures genderswapped Disney princess

Artist perfectly captures genderswapped Disney princess S


Animation student Miyuli decided to spend some time re-designing Disney princesses as their opposite gender. Now what needs to happen is a team up between these and the princesses in their princes' clothes. Come on, Internet!


I have to say, I love the sassy male version of Megara and Jasmin's counterpart with Rajah. See the rest (and the entirely swapped Frozen characters) below.


Artist perfectly captures genderswapped Disney princess S


Artist perfectly captures genderswapped Disney princess S


Artist perfectly captures genderswapped Disney princess S


Artist perfectly captures genderswapped Disney princess S


Artist perfectly captures genderswapped Disney princess S


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onlinecollegedegreee.blogspot.com Artist perfectly captures genderswapped Disney princess