Saturday, January 21, 2012

Colo. girl escapes apparent kidnapper, calls 911 (AP)

DENVER ? A missing 9-year-old girl escaped from an apparent kidnapper and called 911 herself from a convenience store in Colorado Springs on Friday.

The Pueblo girl was reported missing Thursday night after she didn't return home from school.

The suspect, Jose Garcia, 29, is also a suspect in an alleged molestation involving a different girl, Pueblo police Capt. Eric Bravo said.

The car of the man accused of kidnapping the girl broke down Friday morning in Colorado Springs, and a passerby gave them a ride to a Circle K, police said.

The girl ran into the convenience store and asked to use the phone to call her uncle but instead called 911, which prompted the man to take off, authorities said.

"Once she realized she had that window of opportunity, she became a hero and rescued herself by calling 911," Colorado Springs police spokeswoman Barbara Miller said in a statement.

Efren Vialpando told The Gazette he saw the girl come in the Circle K with two black eyes and a bruise on her lip and face. She had refused to leave the store with the man, saying, "I ain't going nowhere. I'm waiting for my momma." He said the suspect fled after that.

A Circle K employee declined to comment, citing store policy.

Police immediately began a search for Garcia when they arrived at the store and notified transportation hubs. An employee at a bus terminal recognized Garcia and notified police, who quickly arrested the man without incident.

The girl was taken to a hospital Friday morning. Miller said details of the girl's condition won't be released because of her age.

Garcia was in custody Friday. Pueblo police haven't said how they connected him to the kidnapping and where Garcia was with the girl for more than 15 hours overnight. Pueblo police Sgt. Darren Velarde said Garcia is being held on suspicion of kidnapping and could face a charge of sexual assault on a child.

The FBI helped with the investigation.

Pueblo County court records said Garcia was wanted for suspicion of kidnapping and sex assault on a child, and Bravo said allegations in that case involved Garcia's 9-year-old former stepdaughter. Both the former stepdaughter and the girl who escaped Friday attended Columbian Elementary School in Pueblo.

In the case involving the ex-stepdaughter, Bravo said Garcia was listed as an emergency contact at the school and told officials there he was picking the girl up for a dentist's appointment. Bravo said Garcia is suspected of kidnapping and sexually assaulting the girl in about a half hour before he took the girl back to school.

"We don't know if there's a connection to that girl and (the girl who escaped Friday)," Bravo said.

A family member told The Associated Press by phone that Garcia worked construction in Colorado Springs and he had known his ex-stepdaughter since she was about 3 years old.

___

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Source: http://us.rd.yahoo.com/dailynews/rss/us/*http%3A//news.yahoo.com/s/ap/20120121/ap_on_re_us/us_girl_escapes

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Faster-than-fast Fourier transform

ScienceDaily (Jan. 18, 2012) ? The Fourier transform is one of the most fundamental concepts in the information sciences. It's a method for representing an irregular signal -- such as the voltage fluctuations in the wire that connects an MP3 player to a loudspeaker -- as a combination of pure frequencies. It's universal in signal processing, but it can also be used to compress image and audio files, solve differential equations and price stock options, among other things.

The reason the Fourier transform is so prevalent is an algorithm called the fast Fourier transform (FFT), devised in the mid-1960s, which made it practical to calculate Fourier transforms on the fly. Ever since the FFT was proposed, however, people have wondered whether an even faster algorithm could be found.

At the Association for Computing Machinery's Symposium on Discrete Algorithms (SODA) this week, a group of MIT researchers will present a new algorithm that, in a large range of practically important cases, improves on the fast Fourier transform. Under some circumstances, the improvement can be dramatic -- a tenfold increase in speed. The new algorithm could be particularly useful for image compression, enabling, say, smartphones to wirelessly transmit large video files without draining their batteries or consuming their monthly bandwidth allotments.

Like the FFT, the new algorithm works on digital signals. A digital signal is just a series of numbers -- discrete samples of an analog signal, such as the sound of a musical instrument. The FFT takes a digital signal containing a certain number of samples and expresses it as the weighted sum of an equivalent number of frequencies.

"Weighted" means that some of those frequencies count more toward the total than others. Indeed, many of the frequencies may have such low weights that they can be safely disregarded. That's why the Fourier transform is useful for compression. An eight-by-eight block of pixels can be thought of as a 64-sample signal, and thus as the sum of 64 different frequencies. But as the researchers point out in their new paper, empirical studies show that on average, 57 of those frequencies can be discarded with minimal loss of image quality.

Heavyweight division

Signals whose Fourier transforms include a relatively small number of heavily weighted frequencies are called "sparse." The new algorithm determines the weights of a signal's most heavily weighted frequencies; the sparser the signal, the greater the speedup the algorithm provides. Indeed, if the signal is sparse enough, the algorithm can simply sample it randomly rather than reading it in its entirety.

"In nature, most of the normal signals are sparse," says Dina Katabi, one of the developers of the new algorithm. Consider, for instance, a recording of a piece of chamber music: The composite signal consists of only a few instruments each playing only one note at a time. A recording, on the other hand, of all possible instruments each playing all possible notes at once wouldn't be sparse -- but neither would it be a signal that anyone cares about.

The new algorithm -- which associate professor Katabi and professor Piotr Indyk, both of MIT's Computer Science and Artificial Intelligence Laboratory (CSAIL), developed together with their students Eric Price and Haitham Hassanieh -- relies on two key ideas. The first is to divide a signal into narrower slices of bandwidth, sized so that a slice will generally contain only one frequency with a heavy weight.

In signal processing, the basic tool for isolating particular frequencies is a filter. But filters tend to have blurry boundaries: One range of frequencies will pass through the filter more or less intact; frequencies just outside that range will be somewhat attenuated; frequencies outside that range will be attenuated still more; and so on, until you reach the frequencies that are filtered out almost perfectly.

If it so happens that the one frequency with a heavy weight is at the edge of the filter, however, it could end up so attenuated that it can't be identified. So the researchers' first contribution was to find a computationally efficient way to combine filters so that they overlap, ensuring that no frequencies inside the target range will be unduly attenuated, but that the boundaries between slices of spectrum are still fairly sharp.

Zeroing in

Once they've isolated a slice of spectrum, however, the researchers still have to identify the most heavily weighted frequency in that slice. In the SODA paper, they do this by repeatedly cutting the slice of spectrum into smaller pieces and keeping only those in which most of the signal power is concentrated. But in an as-yet-unpublished paper, they describe a much more efficient technique, which borrows a signal-processing strategy from 4G cellular networks. Frequencies are generally represented as up-and-down squiggles, but they can also be though of as oscillations; by sampling the same slice of bandwidth at different times, the researchers can determine where the dominant frequency is in its oscillatory cycle.

Two University of Michigan researchers -- Anna Gilbert, a professor of mathematics, and Martin Strauss, an associate professor of mathematics and of electrical engineering and computer science -- had previously proposed an algorithm that improved on the FFT for very sparse signals. "Some of the previous work, including my own with Anna Gilbert and so on, would improve upon the fast Fourier transform algorithm, but only if the sparsity k" -- the number of heavily weighted frequencies -- "was considerably smaller than the input size n," Strauss says. The MIT researchers' algorithm, however, "greatly expands the number of circumstances where one can beat the traditional FFT," Strauss says. "Even if that number k is starting to get close to n -- to all of them being important -- this algorithm still gives some improvement over FFT."

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The above story is reprinted from materials provided by Massachusetts Institute of Technology. The original article was written by Larry Hardesty.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Haitham Hassanieh, Piotr Indyk, Dina Katabi, Eric Price. Nearly Optimal Sparse Fourier Transform. Arxiv, 2012 [link]

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/~3/3952fSfnVo4/120118123054.htm

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Friday, January 20, 2012

The Most Expensive Plane of All Time Takes Its First Gorgeous Night Flight [Image Cache]

The F-35 may be a lot of dubious things (overpriced, underused, occasionally broken)—but it sure is beautiful. Enjoy the eye candy your tax dollars bought in all its splendor—the F-35 just took its first flight into darkness. More »


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/wrC95uQfxzg/

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6 Marines die in Afghanistan helicopter crash

Six United States Marines were killed when their helicopter went down in Southern Afghanistan. An investigation is under way, but U.S. military officials say there was no evidence of enemy activity in the area. NBC's Jim Miklaszewski reports.

By NBC News and news services

Updated at 3:33 a.m. ET: A helicopter crash in Helmand province in southern Afghanistan killed six U.S. Marines, the NATO?military command in Kabul told NBC News early Friday.

Officials said?there were no signs of enemy activity in the area at time of the crash.


The Marines have a substantial presence in Helmand province.

"We are still in the process of gathering more information on the incident," an official told Reuters.

It is the worst crash since last August?when 30 soldiers, including 22 elite Navy SEAL commandos, died when their helicopter came down in eastern Afghanistan.

The Helmand helicopter crash occurred on the same day seven civilians were killed outside a crowded gate at Kandahar Air Field, a sprawling base for U.S. and NATO operations, after a suicide attacker set off a vehicle laden with explosives. The Taliban claimed responsibility, saying?they were targeting a NATO convoy.

On Wednesday, 13 civilians, including three Afghan policemen, were killed when a suicide attacker blew himself up in a bazaar in? Helmand province. At least 22 others were wounded in the blast in Kajaki district.

????More from msnbc.com and NBC News:

NBC News, The Associated Press?and Reuters contributed to this report.

Source: http://worldnews.msnbc.msn.com/_news/2012/01/19/10194355-6-marines-die-in-afghanistan-helicopter-crash

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Thursday, January 19, 2012

Video: Obama pushes back on the Pentagon

Silva: Breaking down AFC, NFC championship games

Silva: The NFL's crucial weekend has arrived. Four teams, two title games and the winners advance to Super Bowl XLVI. Here's breakdown of the divisional games this weekend, which focuses on each team's strengths, weaknesses, X-factors and the keys to winning.

Source: http://www.msnbc.msn.com/id/3036697/vp/46046855#46046855

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Your Taste for Fat May Reside in Your Genes (HealthDay)

MONDAY, Jan. 16 (HealthDay News) -- Variations in a certain gene can make people more or less sensitive to the taste of fat and affect their risk for obesity, researchers report.

The team at the Washington University School of Medicine in St. Louis studied 21 obese people and found that those with a particular variant of the CD36 gene were far more sensitive to the taste of fat.

This is the first study to identify a receptor on human tongues that can taste fat. The finding was recently published in the Journal of Lipid Research.

"The ultimate goal is to understand how our perception of fat in food might influence what foods we eat and the quantities of fat that we consume," senior investigator Nada Abumrad, a professor of medicine and obesity research, said in a university news release.

"In this study, we've found one potential reason for individual variability in how people sense fat. It may be, as was shown recently, that as people consume more fat, they become less sensitive to it, requiring more intake for the same satisfaction. What we will need to determine in the future is whether our ability to detect fat in foods influences our fat intake, which clearly would have an impact on obesity," Abumrad noted.

Previous research found that rats and mice without a working CD36 gene no longer had a preference for fatty foods and that animals that can't make the CD36 protein have difficulty digesting fat.

It's believed that up to 20 percent of people have a CD36 gene variant that's associated with making significantly less CD36 protein. This, in turn, could make them less sensitive to the presence of fat in food, the researchers said.

More information

The U.S. National Institutes of Health has more about dietary fats.

Source: http://us.rd.yahoo.com/dailynews/rss/biotech/*http%3A//news.yahoo.com/s/hsn/20120117/hl_hsn/yourtasteforfatmayresideinyourgenes

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Wednesday, January 18, 2012

Micro Vault Mach is Sony?s first USB 3.0 flash drive

USB 3.0 has been around for over two years now, and it is slowly filtering down to all portable storage devices including pocket-friendly flash drives. The latest manufacturer to embrace the fastest SuperSpeed USB standard is Sony with the announcement of a new range of flash Micro Vault sticks.

The Sony Micro Vault Mach will be offered in 8GB, 16GB, 32GB, and 64GB capacities with transfer speeds of up to 120MB/s reads and 90MB/s writers. The only exception to that is the 8GB Mach, which is limited to 60MB/s reads. Real world usage will most likely be well below those figures, but still a significant boost over USB 2.0.

The Mach range includes a silver aluminum casing and retractable USB connector. Sony has been very generous with the warranty and your Mach will be covered for 5 years. There?s also a couple of pieces of downloadable software in the form of File Rescue for recovering deleted files, and Pict Story for creating photo presentations automatically from the pictures stored on the drive.

In terms of the overall design of the stick, it?s nothing special beyond having a metal rather than plastic casing. It weighs a mere 14 grams and measures 19.7 x 9.7 x 69.4mm making it easily pocketable, but not something you want to hang of a key chain.

All models of the Mach range are set to become available before the end of January, but so far pricing hasn?t been announced. A 16GB USB 3.0 stick typically costs upwards of $25, a 32GB around $40, and then prices spike for 64GB drives. Expect pricing in the same region for the Mach drives.

More at Sony

Source: http://www.geek.com/articles/gadgets/micro-vault-mach-is-sonys-first-usb-3-0-flash-drive-20120118/

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