Tuesday, October 25, 2011

Falling German satellite could hit Earth today

A huge German satellite destined to tumble from space could plunge to Earth today (Oct. 22), but it is still too soon for agency officials to know precisely where the doomed spacecraft could fall.

"Re-entry of ROSAT currently expected between 22 October 2011, 18:00 UTC (20:00 CEST) and 23 October 2011, 12:00 UTC (14:00 CEST)," German Aerospace Center officials said in an update yesterday. That places the potential impact between 2 p.m. EDT today and 8 a.m. EDT on Sunday (Oct. 23).

The 2.7-ton Roentgen Satellite, or ROSAT, is expected to break up as it re-enters Earth's atmosphere, but up to 30 large pieces of the X-ray observatory, including its heat resistant mirrors and other ceramic parts, could survive the fiery journey and reach the surface of the planet, according to German aerospace officials. The total mass of these fragments is estimated to reach up to 1.9 tons (1.7 metric tons).?

The ROSAT satellite launched in June 1990 on a joint mission for Germany, the United States and the United Kingdom. The observatory, which weighs about 5,348 pounds (2,426 kilograms), is an X-ray telescope that studied radiation from stars, nebulas, black holes and supernovas. [Photos of Doomed ROSAT Satellite]

Since Earth's atmosphere absorbs most X-ray radiation, ROSAT helped scientists gain a better understanding of the origin, structure and evolution of the universe, according to its mission description. The satellite was designed for an 18-month mission, but greatly outlived its original planned mission.

In 1998, the satellite suffered a malfunction and was irreparably damaged. The German Aerospace Center officially decommissioned the observatory in February 1999. Now, after years adrift around Earth, the satellite's orbit has decayed to the point that it will soon fall from space.

About a month ago, a much larger satellite met a similar demise when it plunged uncontrolled into the ocean. NASA's defunct Upper Atmosphere Research Satellite, or UARS, crashed into the Pacific Ocean, well away from the North American coastline, on Sept. 24. The 6.5-ton UARS satellite was the largest satellite to re-enter Earth's atmosphere uncontrolled since 1979.

At 2.7 tons, the German ROSAT satellite is considerably smaller, but if pieces of debris survive the re-entry process, agency officials predict they could be scattered along a 50-mile (80-kilometer) swath of the Earth's surface.

ROSAT's orbital path reaches from the latitudes of 53 degrees north to 53 degrees south, which means that the satellite could fall anywhere in an area that stretches from Canada to South America.

Still, the odds of any fragments falling onto a densely populated area and causing harm are extremely remote.

German aerospace officials calculated that there is a 1-in-2,000 chance that someone somewhere on Earth will be struck by ROSAT debris. But, given that majority of the planet is covered in water, it is more than likely that ROSAT will not fall over land at all, orbital debris experts have said.

Mission controllers are actively tracking the satellite as its orbit gradually decays, but officials will not be able to make more precise determinations of when and where the satellite will fall until a few hours before ROSAT impacts the Earth.

Editor's note: If you snap a photo or observe the re-entry of the ROSAT satellite and want to share it with SPACE.com for a story or gallery, contact managing editor Tariq Malik at: tmalik@space.com.

You can follow SPACE.com staff writer Denise Chow on Twitter @denisechow. Follow SPACE.com for the latest in space science and exploration news on Twitter @Spacedotcomand on Facebook.

? 2011 Space.com. All rights reserved. More from Space.com.

Source: http://www.msnbc.msn.com/id/44992707/ns/technology_and_science-space/

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Monday, October 24, 2011

Forte?wild as?Bears beat Bucs

Matt Forte

By STEPHEN WILSON

updated 4:30 p.m. ET Oct. 23, 2011

WEMBLEY, England - Matt Forte ran for 145 yards and a touchdown and the Chicago Bears held on to beat the Tampa Bay Buccaneers 24-18 on Sunday in the fifth annual NFL regular-season game at Wembley Stadium.

Jay Cutler threw for 226 yards and a touchdown and the Bears (4-3) intercepted Josh Freeman four times to win their second game in a row.

The Buccaneers (4-3) lost for the second time in three years in London.

Tampa Bay scored two touchdowns in the fourth quarter to pull within three points. But after a 25-yard field goal by Chicago's Robbie Gould, Freeman was picked off with 37 seconds left by D.J. Moore.

Copyright 2011 The Associated Press. All rights reserved. This material may not be published, broadcast, rewritten or redistributed.


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??Plaxico Burress caught three touchdown passes as?New York stormed back to defeat San Diego Chargers 27-21.

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??Tim Tebow rallied the Denver Broncos for two touchdowns in the final 2:44 of the fourth quarter to force overtime, and Matt Prater's 52-yard field goal gave them an improbable 18-15 victory Sunday over the stunned Miami Dolphins.

Source: http://nbcsports.msnbc.com/id/45007869/ns/sports-nfl/

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Up to 20 million tons of debris from Japan?s tsunami moving toward Hawaii (The Envoy)

Debris from Japan's tsunami approaching Hawaii. (KITV/ABC)

Some 5 to 20 million tons of debris--furniture, fishing boats, refrigerators--sucked into the Pacific Ocean in the ake of Japan's March 11 earthquake and tsunami are moving rapidly across the Pacific. Researchers from the University of Hawaii tracking the wreckage estimate it could approach the U.S. West Coast in the next three years, the UK Daily Mail reports.

"We have a rough estimate of 5 to 20 million tons of debris coming from Japan," University of Hawaii researcher Jan Hafner told Hawaii's ABC affiliate KITV.

Crew members from the Russian training ship the STS Pallada "spotted the debris 2,000 miles from Japan," last month after passing the Midway islands, the Mail wrote. "They saw some pieces of furniture, some appliances, anything that can float, and they picked up a fishing boat," said Hafner. The boat was 20-feet long, and was painted with the word "Fukushima." ?"That's actually our first confirmed report of tsunami debris," Hafner told KITV.

Crew on Russian ship STS Pallada spotted the debris almost 2,000 miles from Japan, including a fishing boat from??


Researchers say up to 20 mn tons of debris from Japan's March 11 tsunami could reach U.S. West Coast in three years.??

The 9.0 magnitude earthquake and tsunami that hit northeastern Japan on March 11 has left some 20,000 people dead or missing.

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? U.S. pulls out Syria envoy after threats
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Want more of our best national security stories? Visit The Envoy or connect with us on Twitter.

Source: http://us.rd.yahoo.com/dailynews/rss/japan/*http%3A//news.yahoo.com/s/yblog_theenvoy/20111024/ts_yblog_theenvoy/up-to-20-million-tons-of-debris-from-japans-tsunami-moving-toward-hawaii

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Merciful Metal

In 2029, A Young Ace on the police force has been rising up in the station to become a detective. His dream is achieved: That is until some really bad luck befalls him.

He gets paired up with a chick that tends to act like a total bitch, she's also his roommate, and he's automatically assigned to a series of crimes thought to be done by a major crime syndicate. Essentially this results much later in him being gunned down by some goons.

Fearing for his life, said chick partner accepts a scientist's offer to save him with bio-implants and a suit of armor that is capable of working with said implants to make him "Stronger and better than Robocop." Now they have to do battle with a mysterious series of violent criminals with abilities ranging from Mega-Drugs and street-cybernetics to powerful Psychics and Mutants.

It'll be a piece of cake is what this ace thinks: He's got superhuman strength, the durability of the terminator, and a killer revolver shot. Almost nothing can stop him, especially the fact that the scientist (who now holds a high rank in the department) is progressively creating upgrades and attachments for him to use.

Let's just hope the streets aren't too dirty: He's gonna wipe the floor with some crooks!

-

Other details:

- The main character and his partner, maybe a little before he was shot up, could have had a 'friends with benefits' type relationship. It could make it interesting between them. It provides a reason as to why the partner took the offer, maybe because she fell in love.

- again, this is in the year 2029. Technology won't be crazy advanced for everybody. But I have a feeling some important players in the storyline may get some impressive stuff.

-Yes, above I also mentioned "Mega-Drugs" like Bane's steroid thing from Batman, or something like that. I also mentioned powerful psychics and mutants. Seriously, why NOT see a cyborg/android, who, with the special armor, has near infinite tolerance to pain (not invincibility, he can just get hurt and act like nothing happened), go up against some crazy results of science experiments?

Source: http://feedproxy.google.com/~r/RolePlayGateway/~3/ZOJgJ_roUDg/viewtopic.php

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Sunday, October 23, 2011

Plants feel the force

Friday, October 21, 2011

"Picture yourself hiking through the woods or walking across a lawn," says Elizabeth Haswell, PhD, assistant professor of biology in Arts & Sciences at Washington University in St. Louis. "Now ask yourself: Do the bushes know that someone is brushing past them? Does the grass know that it is being crushed underfoot? Of course, plants don't think thoughts, but they do respond to being touched in a number of ways."

"It's clear," Haswell says, "that plants can respond to physical stimuli, such as gravity or touch. Roots grow down, a 'sensitive plant' folds its leaves, and a vine twines around a trellis. But we're just beginning to find out how they do it," she says.

In the 1980s, work with bacterial cells showed that they have mechanosensitive channels, tiny pores in the cells membrane that open when the cell bloats with water and the membrane is stretched, letting charged atoms and other molecules to rush out of the cell. Water follows the ions, the cell contracts, the membrane relaxes, and the pores close.

Genes encoding seven such channels have been found in the bacterium Escherichia coli and 10 in Arabidopsis thaliana, a small flowering plant related to mustard and cabbage. Both E. coli and Arabidopsis serve as model organisms in Haswell's lab.

She suspects that there are many more channels yet to be discovered and that they will prove to have a wide variety of functions.

Recently, Haswell and colleagues at the California Institute of Technology, who are co-principal investigators on an National Institutes of Health (NIH) grant to analyze mechanosensitive channels, wrote a review article about the work so far in order to "get their thoughts together" as they prepared to write the grant renewal. The review appeared in the Oct. 11 issue of Structure.

Swelling bacteria might seem unrelated to folding leaflets, but Haswell is willing to bet they're all related and that mechanosensitive ion channels are at the bottom of them all. After all, plant movements ? both fast and slow ? are ultimately all hydraulically powered; where ions go the water will follow.

Giant E. coli cells

The big problem with studying ion channels has always been their small size, which poses formidable technical challenges.

Early work in the field, done to understand the ion channels whose coordinated opening and closing creates a nerve impulse, was done in exceptionally large cells: the giant nerve cells of the European squid, which had projections big enough to be seen with the unaided eye.

Experiments with these channels eventually led to the development of a sensitive electrical recording technique known as the patch clamp that allowed researchers to examine the properties of a single ion channel. Patch clamp recording uses as an electrode a glass micropipette that has an open tip. The tip is small enough that it encloses a "patch" of cell membrane that often contains just one or a few ion channels.

Patch clamp work showed that there were many different types of ion channels and that they were involved not just in the transmission of nerve impulses but also with many other biological processes that involve rapid changes in cells.

Mechanosensitive channels were discovered when scientists started looking for ion channels in bacteria, which wasn't until the 1980s because ion channels were associated with nerves and bacteria weren't thought to have a nervous system.

In E. coli, the ion channels are embedded in the plasma membrane, which is inside a cell wall, but even if the wall could be stripped away, the cells are far too small to be individually patched. So the work is done with specially prepared giant bacterial cells called spherophlasts.

These are made by culturing E. coli in a broth containing an antibiotic that prevents daughter cells from separating completely when a cell divides. As the cells multiply, "snakes" of many cells that share a single plasma membrane form in the culture. "If you then digest away the cell wall, they swell up to form a large sphere," Haswell says.

Not that spheroplasts are that big. "We're doing most of our studies in Xenopus oocytes (frog eggs), whose diameters are 150 times bigger than those of spheroplasts," she says.

Three mechanosensitive channel activites

To find ion channels in bacteria, scientists did electrophysiological surveys of spheroplasts. They stuck a pipette onto the spheroplast and applied suction to the membrane as they looked for tiny currents flowing across the membrane.

"What they found was really amazing," Haswell says. "There were three different activities that are gated (triggered to open) only by deformation of the membrane." (They were called "activities" because nobody knew their molecular or genetic basis yet.)

The three activities were named mechanosensitive channels of large (MscL), small (MscS) and mini (MscM) conductance. They were distinguished from one another by how much tension you had to introduce in order to get them to open and by their conductance.

One of the labs working with spheroplasts was led by Ching Kung, PhD, at the University of Wisconsin-Madison. The MscL protein was identified and its gene was cloned in 1994 by Sergei Sukharev, PhD, then a member of Kung's lab. His tour-de-force experiment, Haswell says, involved reconstituting fractions of the bacterial plasma membrane into synthetic membranes (liposomes) to see whether they would confer large-channel conductance.

In 1999, the gene encoding MscS was identified in the lab of Ian Booth, PhD, at the University of Aberdeen. Comparatively, little work has been done on the mini channel, which is finicky and often doesn't show up, Haswell says, though a protein contributing to MscM activity was recently identified by Booth's group.

Once both genes were known, researchers did knockout experiments to see what happened to bacteria that didn't have the genes needed to make the channels. What they found, says Haswell, was that if both the MscL and MscS genes were missing, the cells could not survive "osmotic downshock," the bacterial equivalent of water torture.

"The standard assay," Haswell says, "is to grow the bacteria for a couple of generations in a very salty broth, so that they have a chance to balance their internal osmolyte concentration with the external one." (Osmolytes are molecules that affect osmosis, or the movement of water into and out of the cell.) "They do this," she says, "by taking up osmolytes from the environment and by making their own."

"Then," she says, "you take these bacteria that are chockfull of osmolytes and throw them into fresh water. If they don't have the MscS and MscL proteins that allow them to dump ions to avoid the uncontrolled influx of water, they don't survive." It's a bit like dumping saltwater fish into a freshwater aquarium.

Why are there three mechanosenstivie channel activities? The currently accepted model, Haswell says is that the channels with the smaller conductances are the first line of defense. They open early in response to osmotic shock so that the channel of large conductance, through which molecules the cell needs can escape, doesn't open unless it is absolutely necessary. The graduated response thus gives the cell its best chance for survival.

Crystallizing the proteins

The next step in this scientific odyssey, figuring out the proteins' structures, also was very difficult. Protein structures are traditionally discovered by purifying a protein, crystallizing it out of a water solution, and then bombarding the crystal with X-rays. The positions of the atoms in the protein can be deduced from the X-ray diffraction pattern.

In a sense crystallizing a protein isn't all that different from growing rock candy from a sugar solution, but, as always, the devil is in the details. Protein crystals are much harder to grow than sugar crystals and, once grown, they are extremely fragile. They even can even be damaged by the X-ray probes used to examine them.

And to make things worse MscL and MscS span the plasma membrane, which means that their ends, which are exposed to the periplasm outside the cell and the cytoplasm inside the cell, are water-loving and their middle sections, which are stuck in the greasy membrane, are repelled by water. Because of this double nature it is impossible to precipitate membrane proteins from water solutions.

Instead the technique is to surround the protein with what have been characterized as "highly contrived detergents," that protect them ? but just barely ? from the water. Finding the magical balance can take as long as a scientific career.

The first mechanosensitive channel to be crystallized was MscL?not the protein in E. coli but the analogous molecule (a homolog) from the bacterium that causes tuberculosis. This work was done in the lab of one of Haswell's co-authors, Douglas C. Rees a Howard Hughes investigator at the California Institute of Technology.

MscS from E. coli was crystallized in the Rees laboratory several years later, in 2002, and an MscS protein with a mutation that left it stuck in the presumed open state was crystallized in the Booth laboratory in 2008. "So now we have two crystal structures for MscS and two (from different bacterial strains) for MscL," Haswell says.

Of plants and mutants

Up to this point, mechanosensitive channels might not seem all that interesting because the lives of bacteria are not of supreme interest to us unless they are making us ill.

However, says, Haswell, in the early 2000s, scientists began to compare the genes for the bacterial channels to the genomes of other organisms and they discovered that there are homologous sequences not just in other bacteria but also in some multicellular organisms, including plants.

"This is where I got involved," she says. "I was interested in gravity and touch response in plants. I saw these papers and thought these homologs were great candidates for proteins that might mediate those responses."

"There are 10 MscS-homologs in Arabidopsis and no MscL homologs," she says. "What's more, different homologs are found not just in the cell membrane but also in chloroplast and mitochondrial membranes. "

The chloroplast is the light-capturing organelle in a plant cell and the mitochondria is its power station; both are thought to be once-independent organisms that were engulfed and enslaved by cells which found them useful. Their membranes are vestiges of their free-living past.

The number of homologs and their locations in plant cells suggests these channels do much more than prevent the cells from taking on board too much water.

So what exactly were they doing? To find out Haswell got online and ordered Arabidopsis seeds from the Salk collection in La Jolla, Calif., each of which had a mutation in one of the 10 channel genes.

From these mutants she's learned that two of the ten channels control chloroplast size and proper division as well as leaf shape. Plants with mutations in these two MscS channel homologs have giant chloroplasts that haven't divided properly. The monster chloroplasts garnered her lab the cover of the August issue of The Plant Cell.

"We showed that bacteria lacking MscS and MscL don't divide properly either,"Haswell says, "so the link between these channels and division is evolutionarily conserved."

The big idea

But Haswell and her co-authors think they are only scratching the surface. "We are basing our understanding of this class of channels on MscS itself, which is a very reduced form of the channel," she says. "It's relatively tiny."

"But we know that some of the members of this family have long extensions that stick out from the membrane either outside or inside the cell. We suspect this means that the channels not only discharge ions, but that they also signal to the whole cell in other ways. They may be integrated into common signaling pathways, such as the cellular osmotic stress response pathway.

We think we may be missing a lot of complexity by focusing too exclusively on the first members of this family of proteins to be found and characterized," she says. "We think there's a common channel core that makes these proteins respond to membrane tension but that all kinds of functionally relevant regulation may be layered on top of that."

"For example," she says, "there's a channel in E. coli that's closely related to MscS that has a huge extension outside the cell that makes it sensitive to potassium. So it's a mechanosensitive channel but it only gates in the presence of potassium. What that's important for, we don't yet know, but it tells us there are other functions out there we haven't studied."

What about the sensitive plant?

So are these channels at the bottom of the really fast plant movements like the sensitive plant's famous touch shyness? (To see a movie of this and other "nastic" (fast) movements, go to the Plants in Motion site maintained by Haswell's colleague Roger P. Hangartner of Indiana University).

Haswell is circumspect. "It's possible," she says. "In the case of Mimosa pudica there's probably an electrical impulse that triggers a loss of water and turgor in cells at the base of each leaflet, so these channel proteins are great candidates.

###

Washington University in St. Louis: http://www.wustl.edu

Thanks to Washington University in St. Louis for this article.

This press release was posted to serve as a topic for discussion. Please comment below. We try our best to only post press releases that are associated with peer reviewed scientific literature. Critical discussions of the research are appreciated. If you need help finding a link to the original article, please contact us on twitter or via e-mail.

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Source: http://www.labspaces.net/114530/Plants_feel_the_force_

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Saturday, October 22, 2011

Dead Body Found At College Football Stadium

AKRON, Ohio -- Authorities say the body of someone who apparently committed suicide was found at a college football stadium in Ohio, hours before a game was to kick off.

Gregg Bach, a spokesman for the University of Akron football team, says the body was discovered Saturday morning and that university police have concluded their investigation. He didn't say where in the stadium the body was found or who found it.

University spokeswoman Laura Massey says police have told her the death appears to be a suicide. She gave no further details.

University police did not immediately return phone calls.

Akron is to play Ohio at 3 p.m. Eastern on Saturday. Bach says the game will be played as scheduled.

Need help? In the U.S., call 1-800-273-8255 for the National Suicide Prevention Lifeline. '; var coords = [-5, -72]; // display fb-bubble FloatingPrompt.embed(this, html, undefined, 'top', {fp_intersects:1, timeout_remove:2000,ignore_arrow: true, width:236, add_xy:coords, class_name: 'clear-overlay'}); });

Source: http://www.huffingtonpost.com/2011/10/22/body-found-akron-football-stadium-ohio_n_1026503.html

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Flooding fears loom large for Bangkok residents

A woman walks past a window of a coffee shop piled up with sand bags for a flood protection in Bangkok, Thailand Thursday, Oct. 20, 2011. Thailand's Prime Minister Yingluck Shinawatra acknowledged Thursday that efforts to block floodwaters from entering the capital are failing and authorities will instead risk potential overflow with a controlled release of water through the city's canals. (AP Photo/Apichart Weerawong)

A woman walks past a window of a coffee shop piled up with sand bags for a flood protection in Bangkok, Thailand Thursday, Oct. 20, 2011. Thailand's Prime Minister Yingluck Shinawatra acknowledged Thursday that efforts to block floodwaters from entering the capital are failing and authorities will instead risk potential overflow with a controlled release of water through the city's canals. (AP Photo/Apichart Weerawong)

A Thai girl talks on her cellphone at a flooded bus stop in Nonthaburi province, north of Bangkok, Thailand, Thursday, Oct. 20, 2011. Thailand's new premier acknowledged the country's flood crisis has overwhelmed her government, pleading for mercy from the media and solidarity from the country in battling the relentless waters. (AP Photo/Sakchai Lalit)

Thai people ride on a military truck to wade through floodwaters in Nonthaburi province, north of Bangkok, Thailand, Thursday, Oct. 20, 2011. Thailand's new premier acknowledged the country's flood crisis has overwhelmed her government, pleading for mercy from the media and solidarity from the country in battling the relentless waters. (AP Photo/Sakchai Lalit)

Thai women on floats flee from the flood in Nonthaburi province, north of Bangkok, Thailand, Thursday, Oct. 20, 2011. Floodwaters have been seeping into some northern neighborhoods as Thai Prime Minister Yingluck Shinawatra acknowledged the country's flood crisis has overwhelmed her government. (AP Photo/Sakchai Lalit)

Thai people wade through floodwaters in Nonthaburi province, north of Bangkok,Thailand, Thursday, Oct. 20, 2011. Thailand's new premier acknowledged the country's flood crisis has overwhelmed her government, pleading for mercy from the media and solidarity from the country in battling the relentless waters. (AP Photo/Sakchai Lalit)

(AP) ? The threat has loomed large over this giant metropolis for weeks: Floodwaters could rapidly swamp glitzy downtown Bangkok, ruining treasured ancient palaces and chic boutiques on skyscraper-lined avenues in the heart of the Thai economy.

The floods haven't come, but the sense of imminent doom is growing by the day, seeping in through worried conversations, school closings and emptied store shelves. One measure of the fear: the protective walls of sandbags scattered across the city's canals, homes and shop-fronts are expanding in number and height daily.

Many Bangkokians are girding for the worst after a week of mixed government messages that have failed to answer their most pressing question: Will the capital succumb to the worst floods to strike Thailand in half a century?

"The water is coming, it's inevitable," said Oraphin Jungkasemsuk, a 40-year-old employee of Bangkok Bank's headquarters. Its outer wall is protected by a six-foot-high (two-meter-high) wall of sandbags wrapped in thin plastic sheeting.

"They are fighting a massive pool of water. They cannot control it anymore," Oraphin said. "There are barriers, but it can come into the city from any direction, even up through the drains."

A long season of monsoon rains and storms has wasted a vast swath of Asia this year, killing 745 people ? a quarter of them children ? in Thailand, Cambodia, Vietnam, Laos and the Philippines, according to the United Nations.

Thailand's government says at least 320 of those deaths occurred here, mostly from drowning as floodwaters crept across this Southeast Asian nation since July, submerging whole towns under water more than six-feet-high (two-meters-high) and damaging as much as one-tenth of rice fields in the world's top rice exporter.

About two weeks ago, the capital itself began waking up to the reality of potential catastrophe as floods dramatically overwhelmed neighboring provinces. The drama has fueled panicked exoduses from the hardest-hit areas and, in Bangkok, shopping sprees as residents stocked up on emergency supplies.

Prime Minister Yingluck Shinawatra on Wednesday acknowledged the crisis has overwhelmed her nascent government. On Thursday, she announced authorities were opening floodgates that had been keeping water out of the city. It's an attempt to let the vast flood pools empty into the sea, but the move risks a potential overflow as water runs through already inundated canals.

"We must allow the water to flow through. Very little has been driven to the sea," Yingluck said. She added: the water is "all over the place and has nowhere to go."

Much is at stake. Economic analysts say the floods have already cut Thailand's 2011 GDP projections by as much as 2 percent. Damages could run as high as $6 billion ? an amount that could double if floods swamp Bangkok.

This week, Bangkok's governor called for 1 million sandbags to reinforce vulnerable spots ? on top of 1 million more called for earlier this month. The Thai military and volunteers have been bolstering flood walls that ring Bangkok for miles (kilometers), many of them along a complex network of swamped canals.

Record water levels have already sent water spilling over the city's main Prapa canal, spattering the streets Bangkok, which has so far escaped unharmed.

Still, there is plenty to worry about. Authorities have urged residents in seven of the city's northern districts to prepare for inundation and move belongings to higher ground.

On Thursday, vehicles began parking on elevated expressway bridges on the northern outskirts of the city, snarling traffic as trucks piled high with people apparently fleeing flood-hit zones moved through the streets.

But much of downtown looked totally normal, if eerily calm, and a quiet panic was palpable.

Oraphin Milintanon, who works at a camera shop in the capital where customers must step across sandbags to get inside, has watched the floods advance with increasing alarm.

The water first swept through her hometown in the now-heavily submerged city of Ayutthaya, just north of Bangkok. Then it poured through her current home in Nonthaburi province.

Oraphin now lives with a sister in a dry part of Bangkok, but tales of water creeping closer are spooking residents. She said her brother, living elsewhere in Nonthaburi, was recently awaken by the flood water itself ? which welled up suddenly into his home as he slept on his bed.

"It can come very fast ... the problem is, nobody knows from where it will come," Oraphin said. The only thing certain, she added, "We know it is coming soon."

___

Associated Press writers Vee Intarakratug, Thanyarat Doksone and Grant Peck contributed to this report.

Associated Press

Source: http://hosted2.ap.org/APDEFAULT/cae69a7523db45408eeb2b3a98c0c9c5/Article_2011-10-20-AS-Thailand-Floods/id-092c861e517c4badb30611985fe0fb9a

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