Friday, 14 October 2011

Leading Light: What Would Faster-Than-Light Neutrinos Mean for Physics?

News | More Science

Most physicists are betting against the idea that neutrinos can pierce the cosmic speed limit, but that has not stopped some researchers from exploring the implications


SN 1987AFAST AND ELUSIVE? Observations of supernova 1987A indicated that photons and neutrinos obey the same speed laws. But neutrinos might still have some tricks up their sleeve. Image: NASA, ESA, P. Challis and R. Kirshner (Harvard-Smithsonian Center for Astrophysics)

The stunning recent announcement of neutrinos apparently exceeding the speed of light was greeted with startled wonderment followed by widespread disbelief. Although virtually every scientist on record expects this discovery to vanish once more detailed analysis takes place, dozens of researchers are exploring the question whose answer could shake the foundations of physics: What if this anomaly is real?

Neutrinos are ghostly particles that only weakly interact with normal matter; trillions of neutrinos stream through our bodies every second. Last month researchers from the European OPERA (Oscillation Project with Emulsion-tRacking Apparatus) collaboration reported clocking pulses of neutrinos moving at speeds that appeared to be a smidgen faster than light-speed. That might seem impossible, given the universal speed limit set by Albert Einstein's long-standing and well-tested special theory of relativity, but neutrinos have proved chock full of surprises over the years. For instance, in the late 1990s they were found to have mass after decades of thought to the contrary.

The credibility of the OPERA scientists who made the supposed discovery of superluminal neutrinos is not in doubt. "This is legitimate, professionally done science?these are not cranks," says neutrino physicist John Learned of the University of Hawaii at Manoa. Astroparticle physicist Steen Hannestad of Aarhus University in Denmark agrees that "there are no obvious problems with the experiment." Still, Hannestad adds, "on any given year, one or more such anomalies show up in experiments?this is particularly true for neutrino physics, where measurements are notoriously hard."

Virtually every physicist interviewed strongly doubts the results will hold up, including the experimenters themselves. Recent calculations also suggest that any neutrinos traveling faster than light would have radiated most of their energy away before reaching detectors, something the researchers did not see.

Nevertheless, if scientists really have discovered superluminal neutrinos, "it probably presents the biggest revolution to fundamental physics in about a century, and almost every physicist loves this challenge," Learned says. As such, a multitude of studies have already popped up to address the OPERA results, including some that suggest new physics to explain the findings.

One explanation that a number of researchers have proposed is that the neutrinos might be traversing extra dimensions of reality beyond the familiar three of space and one of time. As such, they would only appear to be traveling faster than light from our perspective. This idea would keep Einstein's theory of relativity intact and help end decades of debate over whether extra dimensions actually exist.

"However, these models have other potential problems," says Hannestad, a researcher with a potential extradimensional explanation for the neutrino results. For instance, he notes, the neutrino pulses predicted to emerge from a trip through extra dimensions may differ in their attributes from the pulses the OPERA researchers actually detected.

Another notion is that neutrinos may travel faster through Earth than through empty space, with Earth essentially acting like a lens, says theoretical physicist Dmitri Semikoz of University of Paris Diderot in France. "Several checks of our proposal can be performed," he adds. "In particular, it predicts that the effect is proportional to the intensity of the neutrino wave. This can be checked experimentally by the OPERA and MINOS collaborations with data they already have." (MINOS, the Main Injector Neutrino Oscillation Search, is a competing neutrino experiment in the U.S.)

Dark energy, the mysterious force apparently driving the accelerating expansion of the universe, or dark matter, the as-yet unidentified substance making up about 85 percent of all matter in the universe, might be the explanation instead, suggests theoretical physicist Susan Gardner at the University of Kentucky in Lexington. The idea is that photons of light might interact more strongly with the dark universe than neutrinos do, such that the speed of light measured on Earth might be lower than its theoretical speed due to dark matter and dark energy found throughout the universe slowing it down. As such, neutrinos on Earth might only go faster than the highest speed of light we have so far discovered.

A challenge to Gardner's model comes from analysis of neutrinos from supernova SN 1987A, which strongly indicated the ethereal particles obey the cosmic speed limit. Perhaps, however, the light and neutrinos did not emanate from the explosion simultaneously, as assumed, and instead the star actually emitted faster-than-light neutrinos after it did the light. "Prior to SN 1987A theory told us that blue supergiant stars did not explode?SN 1987A came as something of a surprise," Gardner says. Perhaps this explosion behaved differently from more familiar supernovae, with its neutrino and light bursts occurring farther apart in time, and only by a fantastic coincidence did astronomers detect them close together.

To help settle the neutrino mystery, OPERA and MINOS will continue to make ever-more precise measurements of neutrino speeds.

"I think all we have to do is sit back and cheer our OPERA [and] MINOS colleagues onwards, and in two years or so we will know whether to get really excited," Learned says. "This is a great example of science in action, a great drama unfolding. It is either a fantastic discovery which seemingly cannot but have huge and as yet unknown consequences or it is a mistake. One would be a fool not to bet against the results, but yet they are not obviously wrong. Stay tuned!"

Source: http://rss.sciam.com/click.phdo?i=e84b37bf34ee7f8e36c15dbac17f7efa

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By reprogramming skin cells into brain cells, scientists gain new insights into mental disorders

By reprogramming skin cells into brain cells, scientists gain new insights into mental disorders [ Back to EurekAlert! ] Public release date: 12-Oct-2011
[ | E-mail | Share Share ]

Contact: James Cohen
cohen@kavlifoundation.org
The Kavli Foundation

For many poorly understood mental disorders, such as schizophrenia or autism, scientists have wished they could uncover what goes wrong inside the brain before damage ensues.

Now in a significant advancement, researchers are using genetic engineering and growth factors to reprogram the skin cells of patients with schizophrenia, autism, and other neurological disorders and grow them into brain cells in the laboratory. There, under their careful watch, investigators can detect inherent defects in how neurons develop or function, or see what environmental toxins or other factors prod them to misbehave in the petri dish. With these "diseases in a dish" they can also test the effectiveness of drugs that can right missteps in development, or counter the harm of environmental insults.

"It's quite amazing that we can recapitulate a psychiatric disease in a petri dish," says neuroscientist Fred Gage, a professor of genetics at the Salk Institute for Biological Studies and member of the executive committee of the Kavli Institute for Brain and Mind (KIBM) at the University of California, San Diego. "This allows us to identify subtle changes in the functioning of neuronal circuits that we never had access to before."

Prior to this disease-in-a-dish approach, the only main avenue researchers had to study human brain disorders in detail was to look for abnormalities in brain tissue removed from patients after their deaths. But such specimens were usually of poor quality, and often were taken from patients when they were in the end stages of a brain disorder. This made it difficult to assess what went awry earlier before much brain damage ensued and treatments would be more likely to be effective.

So there was great excitement when Gage reported this year that using this "disease in a dish" approach, he could see subtle anatomic differences between the neurons of normal and schizophrenic patients too small to be seen in imaging studies. When comparing the genes expressed in the neurons derived from schizophrenic patients to that of normal neurons, he also discovered altered expression of several genes that govern certain neuronal developmental pathways.

"The most amazing developments in the field over the last year or so are these examples where you can see differences in cells isolated from controls and patients," Anirvan Ghosh, a neurobiologist at the University of California at San Diego and executive committee member of KIBM. "It's something people have been speculating about for awhile, but to actually see the differences is very exciting from a scientific point of view."

The findings are helping explain the causes of mental disorders that have baffled researchers for generations because they couldn't peer inside the brains of patients. Drug companies are also excited about these models. "Now we can use cultures derived from individuals who are living to test drugs on their neurons to see their effectiveness and toxicity," Gage said, pointing out that this personalized approach for assessing treatment is more likely to be effective than standard drug tests, given the variability in what causes mental disorders and people's varied reactions to the same drugs.

###

For the complete interview with Gage and Ghosh, visit: http://www.kavlifoundation.org/science-spotlights/neuroscience-diseases-dish-modeling-mental-disorders


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AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


By reprogramming skin cells into brain cells, scientists gain new insights into mental disorders [ Back to EurekAlert! ] Public release date: 12-Oct-2011
[ | E-mail | Share Share ]

Contact: James Cohen
cohen@kavlifoundation.org
The Kavli Foundation

For many poorly understood mental disorders, such as schizophrenia or autism, scientists have wished they could uncover what goes wrong inside the brain before damage ensues.

Now in a significant advancement, researchers are using genetic engineering and growth factors to reprogram the skin cells of patients with schizophrenia, autism, and other neurological disorders and grow them into brain cells in the laboratory. There, under their careful watch, investigators can detect inherent defects in how neurons develop or function, or see what environmental toxins or other factors prod them to misbehave in the petri dish. With these "diseases in a dish" they can also test the effectiveness of drugs that can right missteps in development, or counter the harm of environmental insults.

"It's quite amazing that we can recapitulate a psychiatric disease in a petri dish," says neuroscientist Fred Gage, a professor of genetics at the Salk Institute for Biological Studies and member of the executive committee of the Kavli Institute for Brain and Mind (KIBM) at the University of California, San Diego. "This allows us to identify subtle changes in the functioning of neuronal circuits that we never had access to before."

Prior to this disease-in-a-dish approach, the only main avenue researchers had to study human brain disorders in detail was to look for abnormalities in brain tissue removed from patients after their deaths. But such specimens were usually of poor quality, and often were taken from patients when they were in the end stages of a brain disorder. This made it difficult to assess what went awry earlier before much brain damage ensued and treatments would be more likely to be effective.

So there was great excitement when Gage reported this year that using this "disease in a dish" approach, he could see subtle anatomic differences between the neurons of normal and schizophrenic patients too small to be seen in imaging studies. When comparing the genes expressed in the neurons derived from schizophrenic patients to that of normal neurons, he also discovered altered expression of several genes that govern certain neuronal developmental pathways.

"The most amazing developments in the field over the last year or so are these examples where you can see differences in cells isolated from controls and patients," Anirvan Ghosh, a neurobiologist at the University of California at San Diego and executive committee member of KIBM. "It's something people have been speculating about for awhile, but to actually see the differences is very exciting from a scientific point of view."

The findings are helping explain the causes of mental disorders that have baffled researchers for generations because they couldn't peer inside the brains of patients. Drug companies are also excited about these models. "Now we can use cultures derived from individuals who are living to test drugs on their neurons to see their effectiveness and toxicity," Gage said, pointing out that this personalized approach for assessing treatment is more likely to be effective than standard drug tests, given the variability in what causes mental disorders and people's varied reactions to the same drugs.

###

For the complete interview with Gage and Ghosh, visit: http://www.kavlifoundation.org/science-spotlights/neuroscience-diseases-dish-modeling-mental-disorders


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2011-10/tkf-brs101211.php

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Thursday, 13 October 2011

FOR KIDS: Breaking the universal speed limit

Particles appear to race faster than the speed of light

Web edition : Wednesday, October 12th, 2011

Once upon a time, the brilliant physicist Albert Einstein argued that the universe has a speed limit. The year was 1905, and the speed limit was the speed of light. He argued that no particles, people or spaceships can ever travel faster than light, be it the beam from a flashlight or the blazing explosion of a supernova. Ever since then, light has been viewed as the fastest way to get across the universe.

Until now. Maybe. A tiny particle called a neutrino might be breaking the limit.

Visit the new?Science News for Kids?website?to read the full story:?Breaking the universal speed limit


Found in: Science News For Kids

Source: http://www.sciencenews.org/view/generic/id/335151/title/FOR_KIDS_Breaking_the_universal_speed_limit

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Wednesday, 12 October 2011

Video: Trade Lower in the S&P 500

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Source: http://www.msnbc.msn.com/id/21134540/vp/44844317#44844317

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Commercial Truck Financing ??? Finance For Commercial Vehicle ...

You want to start your new trucking business and you need finance. Buying a requires a huge amount of cash. On the other hand, you are unable to get loan because of your poor credits when you approach any finance company. Commercial Truck Financing provides you cash instead of your bad credits. This financing company gives you advances without any credit checks.

If you need advances with a less amount of interest, you may compare the other truck financing with low interest rates. The borrower should keep his documents ready before he applies for the loan. The borrower may need to present his monthly income letter, bank statement, employment letter, and so on. You must make sure that the documents submitted by you to the lender are true. To apply for these loans you may place your loan request personally by making a visit to the bank or by filling an online application.

You can grab these loans in tow forms i.e. in secured and unsecured form.
For secured loans you may place, any of your valuable assets like your house, vehicle, but in this case, the vehicle itself is can collateral. If in case the borrower is not able to repay the amount borrowed is at risk of losing his property.

For unsecured loans, you may not place any collateral. These advances are a great help for non-homeowners and poor credit holders. In this case, the lender is at risk of not getting his money in time. The borrower can avail for the sum of 2000 ? 50000.the repayment period is 5 7 years.

To benefit these fiscal loan you should be very convincing to the lender that you are capable to repay the borrowed amount and you also need to be an UK citizen. You need to be 18 years and above. You should have a bank account. You need to be employed and should have a regular income.

Source: http://fcyd.org/commercial-truck-financing-finance-for-commercial-vehicle

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Tuesday, 11 October 2011

New areas of DNA linked to skin cancer | COSMOS magazine

LONDON: Four new areas on human chromosomes that hold genes related to the risk of developing melanoma, the most dangerous type of skin cancer, have been identified.

In two studies to be published in this week's issue of Nature Genetics, researchers have examined the DNA of several thousand melanoma patients, and compared that to DNA of healthy controls. They hope their discoveries could one day help identify individuals prone to developing melanoma to ensure suitable precautions and early diagnoses.

"This new finding is exciting as early diagnosis is critical in melanoma to improve the outcome of people who develop the disease," said lead author Stuart MacGregor, researcher at the Queensland Institute of Medical Research in Brisbane.

Assessing the risk of melanoma

Scientists have previously identified other areas on the chromosome - called genetic loci - that encode traits that make people susceptible to the development of skin cancer. The composition of a genetic locus differs from one person to the other, and this diversity is referred to as a variant.

Most gene variants that have previously been shown to be associated with an increased risk for melanoma are related to a fair skin tone, blue or green eyes, blonde or red hair and a high mole count.

Now the new studies, one led by researchers in Brisbane and the other by researchers at the Cancer Research UK Centre in Britain, report of four novel variants unrelated to these usual pigmentation risk factors.

These variants may instead favour development of melanoma by interfering with the skin cells' ability to repair DNA damage caused by UV radiation, or they may play a critical role in the control of cell proliferation and cell death.

Examining DNA

The two groups of scientists have independently performed genome-wide association studies (GWAS), in which an individual's DNA, obtained from a cell sample, is examined and compared to other individuals' DNA.

By associating the discovered gene variations with certain traits, such as physical appearance or a disease, it is possible to identify novel genes linked to certain conditions.

In their respective GWAS studies, the scientists compared varieties in the DNA of several thousand melanoma patients to equally large numbers of healthy controls. The research group in Australia, led by MacGregor, has identified a variant locus on chromosome 1 that correlated with risk of melanoma, while the researchers in the UK discovered three loci on chromosomes 2, 11 and 21.

Screening the population

For now, it is only known that the loci are different in healthy individuals as compared to melanoma patients. Determining exactly what different genes in these newly discovered loci do is the next step on the scientists' agenda. "This could potentially give us novel insights into how melanoma develops and how we can either prevent or treat it", said co-author Mark Iles from the Cancer Research UK Centre.

When asked whether their findings could be used to screen an entire population to determine individual risk for melanoma, Iles emphasised that the newly discovered variants alone don't influence the risk of developing melanoma enough for such large-scale screenings to be worthwhile. However, the discoveries may prove beneficial for future genetic scanning of "individuals already known to be at higher risk, such as people who have a close relative with melanoma, but further work is needed to evaluate this", he added.

Development of new therapies

Veronique Bataille, an expert in the field of genetic research and melanoma who was not involved in either study, finds the discoveries encouraging. "They may be interesting for the pathophysiology of the disease and help us understand better the relative contribution of genetic and environmental risk factors," she said.

But she acknowledged that there is a long way to go. "Like all cancers, melanoma is likely to be influenced by a large number of genes each having a small effect and dissecting this may take quite a while. We have to wait and see if these variants come up with successes in terms of genetic pathways and treatment."

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Source: http://www.cosmosmagazine.com/news/4825/new-areas-dna-linked-skin-cancer

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Monday, 10 October 2011

Anytime It Consists Of Dubai Green Living Become Familiar With ...

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Leading A Green Life Could Mean Many Things

Living the green life is more than the big things, as there are a lot of little things that can be done as well. Living green is something that you can start doing today by simply making a few adjustments in your life. It will make you feel good to do things that benefit the environment, and you won?t have to give up anything that you really need. While you will find that water is a necessity, you may want to think about getting a water cooler instead of the individual bottles.

You can also get yourself reusable bottles that you can fill up with water. You can even assign different colored bottles to the different people in your family. Doing this will not only save you money, but it will also reduce the amount of plastic put into the environment. There are several individuals who will still end up purchasing all those plastic bottles, and if you do make sure to recycle the plastic. If you don?t wish to have to drive to the beverage store weekly to get new 5 gallon jugs of water, you can always have it delivered to your house. You will find that you can get all natural spring water from these 5 gallon jugs as well. This will also be a much cheaper way than buying from vending machines or mini marts.

We have included a few basic items about Dubai Green living, and they are important to consider in your research. There is a remarkable amount you really should take the time to find out about. Nonetheless, you will find them to be of great utility in your search for information. However, we always stress that anyone takes a closer examination at the overall big picture as it relates to this subject. The rest of the document will provide you with a few more important factors to bear in mind.

When it involves home improvement, you will discover that you can help as well. Leftover supplies when working on your home is something that almost every homeowner ends up with. One thing you must not ever do is to take leftover paint and toss it in the trash. You will find that the chemical substances in paint can penetrate the soil and cause a lot of harm. If the excess supplies can still be used, giving them away will be the best solution. These excess supplies will be able to do good for church groups or even other groups in your community. Actually, locating these organizations can be difficult so you can get on the Internet to find these groups. No matter much paint you have left over, be aware that it can be combined with other paints to get enough to paint other things without wasting it. You can help other people and our earth by donating these excess items.

And if you happen to be one of those who change your own oil, you must recycle your oil the right way. When you change your car?s engine oil and you have collected it in a container, you can just take it to one of the oil change places because they have to take your used oil. You must not pour the old oil on the soil or even throw it down a drain. The oil is terrible enough for the soil, but when it gets into the water, it will be bad to the aquatic life. And you will discover that this can not just affect our wildlife but you can end up dirtying our water supply also.

As you can see, it is essential to do small things to take care of the planet. If every person begins? small,? you will? see? that? the? results can end? up? being big.

We can give you great advice on dubai property, property dubai or dubai marina accommodation for apartments and villas.

Source: http://powerenergycenter.com/anytime-it-consists-of-dubai-green-living-become-familiar-with-various-descriptions-6.php

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