Friday, November 2, 2012

A next-generation X-ray telescope ready to fly

A next-generation X-ray telescope ready to fly [ Back to EurekAlert! ] Public release date: 1-Nov-2012
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Contact: Susan Hendrix
Susan.m.hendrix@nasa.gov
301-286-7745
NASA/Goddard Space Flight Center

Those who watch the sun are regularly treated to brilliant shows dancing loops of solar material rise up, dark magnetic regions called sunspots twist across the surface, and dazzling flares of light and radiation explode into space. But there are smaller, barely visible events, too: much smaller and more frequent eruptions called nanoflares. Depending on how many and how energetic these are, nanoflares may be the missing piece of the puzzle to help understand what seeds the cascade that causes a much bigger flare, or to explain how the sun transfers so much energy to its atmosphere that it's actually hotter than the surface.

At the beginning of November, 2012 a NASA mission called FOXSI (for Focusing Optics X-ray Solar Imager) will launch from White Sands, N.M. to study these nanoflares. To do so, it will make use of a state-of-the-art x-ray telescope that will be able to focus incoming x-rays from the sun in a way that has never before been possible.

"Most people like to look at the really big flares. They're complicated and do crazy things," says Steven Christe, a solar scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. who is the project scientist for FOXSI. "But FOXSI is geared to look at very, very faint events."

FOXSI is due to launch no earlier than Nov. 2, 2012 on board what is known as a sounding rocket, rockets that take short trips some 200 miles up and gather as much data as possible in about six minutes. During that time FOXSI will first look at an active region on the sun, with its characteristic flares or loops and then switch its gaze to a more quiet region to observe an undiluted patch of smaller flares. Since the nanoflares happen constantly, Christe points out that the sounding rocket need not wait for a special time frame to launch, an advantage when it comes to finding an acceptable launch window.

However, viewing such faint events requires extra sensitive optics. FOXSI carries a telescope -- built by NASA's Marshall Space Flight Center in Huntsville, Ala. that is unlike any previous ones launched into space for solar observations.

"This is really the next generation solar hard x-ray telescope we are testing out here," says Sm Krucker, the principal investigator for FOXSI and a solar scientist at the University of California, Berkeley, and at the University of Applied Sciences Northwestern Switzerland. "The technology we're using will capture much better images of the sun at this particular range of x-rays."

Previously, techniques to collect and observe the high energy x-rays streaming from the sun were hampered by the fact that x-rays at high energies cannot be focused with conventional lenses the way visible light can be. When an x-ray encounters a standard glass lens it passes through the lens completely. X-ray telescopes have therefore relied on imaging that doesn't rely on focusing. This is a very effective technique when looking at a single bright event on the sun, such as the large burst of radiation and x-rays from a solar flare, but doesn't work as well when searching for many faint events occurring simultaneously.

The FOXSI instrument, however, makes use of new iridium-coated nickel/cobalt mirrors that do successfully cause x-rays to reflect, as long as the x-rays come in from a nearly horizontal direction. Several of these mirrors in combination help collate the x-ray light before funneling it to the detector. These focusing optics make faint events appear brighter and crisper.

Another advance for the telescope comes in the very building of the optics system. In general, better optics require more accurate mirrors, which in turn requires labor- and money-intensive polishing to get a flawless finish. The FOXSI mirrors use a replication technique whereby a surface is perfectly polished once and mirrors are created off of that surface by nickel-plating it. This process can be repeated many times thus saving time and money.

By using such optics on the sounding rocket, Christe hopes they'll be able to perfect their performance for use on a sun-observing satellite some day. This is another benefit of sounding rockets: testing innovative technology on a less expensive rocket sets the instruments up for potential deployment on a permanent spacecraft. Instruments like those on FOXSI will be important to nail down the mystery of what causes these small flares and what they in turn effect.

"There are two basic possibilities," says Christe. "One is that small flares are similar to large flares. But then we'd have to explain why they appear at a different rate and in different places than the big ones. So we need to determine whether these small events are really happening all the time, all over the sun. The other possibility is that they are fundamentally different than large flares and that would be extremely interesting and would point to a difference in the physics that powers large versus small flares."

Another question to solve is whether all those tiny flares add up to enough energy shooting into the sun's corona to heat it to the temperatures of over a million degrees K (kelvin). Just what heats the corona is part of what's known as the "coronal heating problem" a question of how it gets so much hotter than the sun's surface, which is a mere 6,000 K.

"If you think of a stove," says Krucker, "the surface of the stove is hotter, and the air gets cooler as you move farther away. But with the sun, something else is happening to make the atmosphere 1,000 times hotter than the surface."

Answering such large questions will not be solved by a single rocket launch, but FOXSI's data will provide new insights into the x-ray portion of the sun's spectrum, filling in yet another piece of the puzzle while also paving the way for future sun-observing technology.

###


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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.


A next-generation X-ray telescope ready to fly [ Back to EurekAlert! ] Public release date: 1-Nov-2012
[ | E-mail | Share Share ]

Contact: Susan Hendrix
Susan.m.hendrix@nasa.gov
301-286-7745
NASA/Goddard Space Flight Center

Those who watch the sun are regularly treated to brilliant shows dancing loops of solar material rise up, dark magnetic regions called sunspots twist across the surface, and dazzling flares of light and radiation explode into space. But there are smaller, barely visible events, too: much smaller and more frequent eruptions called nanoflares. Depending on how many and how energetic these are, nanoflares may be the missing piece of the puzzle to help understand what seeds the cascade that causes a much bigger flare, or to explain how the sun transfers so much energy to its atmosphere that it's actually hotter than the surface.

At the beginning of November, 2012 a NASA mission called FOXSI (for Focusing Optics X-ray Solar Imager) will launch from White Sands, N.M. to study these nanoflares. To do so, it will make use of a state-of-the-art x-ray telescope that will be able to focus incoming x-rays from the sun in a way that has never before been possible.

"Most people like to look at the really big flares. They're complicated and do crazy things," says Steven Christe, a solar scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. who is the project scientist for FOXSI. "But FOXSI is geared to look at very, very faint events."

FOXSI is due to launch no earlier than Nov. 2, 2012 on board what is known as a sounding rocket, rockets that take short trips some 200 miles up and gather as much data as possible in about six minutes. During that time FOXSI will first look at an active region on the sun, with its characteristic flares or loops and then switch its gaze to a more quiet region to observe an undiluted patch of smaller flares. Since the nanoflares happen constantly, Christe points out that the sounding rocket need not wait for a special time frame to launch, an advantage when it comes to finding an acceptable launch window.

However, viewing such faint events requires extra sensitive optics. FOXSI carries a telescope -- built by NASA's Marshall Space Flight Center in Huntsville, Ala. that is unlike any previous ones launched into space for solar observations.

"This is really the next generation solar hard x-ray telescope we are testing out here," says Sm Krucker, the principal investigator for FOXSI and a solar scientist at the University of California, Berkeley, and at the University of Applied Sciences Northwestern Switzerland. "The technology we're using will capture much better images of the sun at this particular range of x-rays."

Previously, techniques to collect and observe the high energy x-rays streaming from the sun were hampered by the fact that x-rays at high energies cannot be focused with conventional lenses the way visible light can be. When an x-ray encounters a standard glass lens it passes through the lens completely. X-ray telescopes have therefore relied on imaging that doesn't rely on focusing. This is a very effective technique when looking at a single bright event on the sun, such as the large burst of radiation and x-rays from a solar flare, but doesn't work as well when searching for many faint events occurring simultaneously.

The FOXSI instrument, however, makes use of new iridium-coated nickel/cobalt mirrors that do successfully cause x-rays to reflect, as long as the x-rays come in from a nearly horizontal direction. Several of these mirrors in combination help collate the x-ray light before funneling it to the detector. These focusing optics make faint events appear brighter and crisper.

Another advance for the telescope comes in the very building of the optics system. In general, better optics require more accurate mirrors, which in turn requires labor- and money-intensive polishing to get a flawless finish. The FOXSI mirrors use a replication technique whereby a surface is perfectly polished once and mirrors are created off of that surface by nickel-plating it. This process can be repeated many times thus saving time and money.

By using such optics on the sounding rocket, Christe hopes they'll be able to perfect their performance for use on a sun-observing satellite some day. This is another benefit of sounding rockets: testing innovative technology on a less expensive rocket sets the instruments up for potential deployment on a permanent spacecraft. Instruments like those on FOXSI will be important to nail down the mystery of what causes these small flares and what they in turn effect.

"There are two basic possibilities," says Christe. "One is that small flares are similar to large flares. But then we'd have to explain why they appear at a different rate and in different places than the big ones. So we need to determine whether these small events are really happening all the time, all over the sun. The other possibility is that they are fundamentally different than large flares and that would be extremely interesting and would point to a difference in the physics that powers large versus small flares."

Another question to solve is whether all those tiny flares add up to enough energy shooting into the sun's corona to heat it to the temperatures of over a million degrees K (kelvin). Just what heats the corona is part of what's known as the "coronal heating problem" a question of how it gets so much hotter than the sun's surface, which is a mere 6,000 K.

"If you think of a stove," says Krucker, "the surface of the stove is hotter, and the air gets cooler as you move farther away. But with the sun, something else is happening to make the atmosphere 1,000 times hotter than the surface."

Answering such large questions will not be solved by a single rocket launch, but FOXSI's data will provide new insights into the x-ray portion of the sun's spectrum, filling in yet another piece of the puzzle while also paving the way for future sun-observing technology.

###


[ 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/2012-11/nsfc-anx110112.php

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Home Is Where the Heart Is ? Homeless Prenatal Program

After a multi-year journey to find a permanent home, HPP purchased its three-story building in 2005 for $4.65 million, solidifying the agency?s permanent place in our community.?? However, HPP put its capital needs on hold in 2007 to better support programming in response to the recession.? Last year, the agency re-launched the Capital Campaign following a very generous $650,000 gift from a donor advised fund of the San Francisco Foundation, which was directed by the late Dr. Gilbert W. Cleasby and his wife Mrs. Marie Mendenhall Cleasby.? Now with a remarkable donation from Board Member Barry Lipman and his wife Marie HPP is thrilled to announce that our building will be paid off by the new year, and will now be named the Barry and Marie Lipman building!? In addition, the Lipmans? gift will launch the agency?s first ever endowment.

Barry and Marie Lipman with Barbara Kimport (center)

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HPP is honored to be the recipient of such inspiring philanthropic vision.? With many thanks to the Cleasby Family, the San Francisco Foundation, the Lipman family and all the donors and volunteers who have invested in the agency?s mission to end the cycle of childhood poverty, we look forward to sharing our home with families in need for years to come.

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Our home at 2500 18th Street.

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Source: http://www.homelessprenatal.org/featured/home-is-where-the-heart-is

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Work now under way on Pennsylvania Ballet's new home ...

Pa. Ballet new homeThis building at Broad and Wood streets in the Callowhill Loft District, which looks like a little brother of the Packard Motor Car Building next door, represents the return of the Pennsylvania Ballet to the Avenue of the Arts ? only this time, north of Market Street.

Actually, the Ballet has never left the thoroughfare ? its performances take place in the National Historic Landmark Academy of Music and the University of the Arts? Merriam Theater next door. But its administrative offices did once the Ballet outgrew the building at Broad Street and Washington Avenue in Passyunk Square that it had converted in 1992 to house the company and its school, now the independent Rock School for Dance Education.

Site of new Pennsylvania Ballet complex

Two of the three buildings that stood on this site are being repurposed for the Pennsylvania Ballet. The third has been demolished; its site will serve as an entrance courtyard to the new Louise Reed Center for Dance.

So in 2007, the Ballet purchased the plot of land at the northeast corner of Broad and Wood streets with the goal of building its new home on it. That building, the Louise Reed Center for Dance, an adaptive reuse project by Erdy McHenry Architecture, is now on its way to completion in January 2013, the start of the Ballet?s 50th anniversary year. In addition to the Ballet?s administrative offices and studios, the complex will also house the brand-new School of the Pennsylvania Ballet, a pre-professional training academy.

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Wood Street studio building

Work has already progressed quite a ways on the one-story Wood Street building that will house the company's studios and dance school. It appears that work has yet to commence on the Broad Street building that will house administrative offices.

A $25 million fundraising campaign, including $17.5 million to build the center, is ongoing as construction proceeds.

Promotional sign

The billboard at the site includes a rendering of the completed facility by Erdy McHenry Architecture. Now that Hurricane Sandy has passed through the area, the Ballet might want to consider spending a little of the money it raises in its campaign to repair the banner announcing it, which Sandy blew off its frame.

-By Sandy Smith for PhiladelphiaRealEstate.com

All photos by the author

Thanks to former contributor Joseph Brin for tipping us off to this project.

Media professional with more than 30 years' experience in journalism and public relations. Launched award-winning newspapers at the University of Pennsylvania and Widener University. Editor-in-chief of this blog since May 2012.

Source: http://blog.philadelphiarealestate.com/work-now-under-way-on-pennsylvania-ballets-new-home/

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Verizon Business Security Blog ? Blog Archive ? Everyday I'm CIFfling

So as we?ve talked about before, preventive controls by themselves do not provide sufficient defense in today?s threat environment. Instead, defenders must continually adapt to their adversaries, and this includes sharing threat intelligence with trusted partners.

The open-source Collective Intelligence Framework (CIF), developed by the REN-ISAC with support from the National Science Foundation, Internet2, and Indiana University, enables the sharing of basic technical indicators between systems. This post will give an overview of the system and its usage, discuss tools we have developed to extend and integrate it, and lay out a roadmap for future development with plenty of opportunity for community involvement.

Fundamentals

As previously discussed, when planning a framework for sharing intelligence, operational security (OPSEC) concerns require significant thought and consideration. CIF tries to reduce the opportunities for an analyst to leak information out to attackers by downloading data and performing the lookups locally rather than perform remote lookups.

Just as (or perhaps more) importantly, CIF enables the inter-system exchange of threat data. This enables faster reactions by bringing data immediately into a watch list or even a block list, though you must take care to choose which data to use for blocking. Waiting for an analyst to have time to download the data manually and then enter it into your systems introduces too much chance for problems, whether related to the analyst?s workload, typical hours, or just human error.

CIF Dev team

The core Collective Intelligence Framework is primarily developed at the REN-ISAC by a team headed by Wes Young. Other committers include Gabriel Iovino, Jeff Murphy, and Kevin Benton.

The Verizon RISK team focuses on two development roles around CIF: QA / debugging and contributing to the ecosystem of tools that work with CIF. (We have some posts lined up to discuss some of these tools like CIFGlue, IOC Extractor, and integration with other analysis tools in greater detail.) Generally, that means we try to make CIF more usable in our environment and contribute this work back out to the broader community. We believe that making these capabilities more widely accessible will improve the overall state of security. We also help maintain a bleeding-edge repository of additional OSINT sources.

Tech

CIF currently runs on a typical LAPP (LAMP-type) stack: Linux / Apache / PostgreSQL / Perl. Internally, the data is stored in an IODEF-like format as JSON. However, according to the roadmap, the framework will soon be rewritten in C and the data structures will use protocol buffers, though JSON output will of course continue to be supported.

We?ve worked with it for quite a few months now, and we?ll tell you that the suggested system specifications definitely matter. You?ll want to run CIF on a server with multiple cores, lots of RAM, and good I/O throughput. Separating out the database from the application server may also improve performance significantly once you need to scale past a pilot deployment.

Usage concepts

CIF works by ingesting public or private feeds of structured threat data. It can handle most delimited and non-delimited text formats (CSV, tab, etc.) as well as RSS/XML and JSON. Other formats can be parsed with helper scripts written in whatever language you prefer.

Analysts can issue two core query types: searches for specific indicators or feeds for particular indicator types subject to parameters. CIF has a command-line tool for interactive use (or building into local tools) as well as support for a RESTful API for integration into other web interfaces. A prototype web interface exists, but your environment may already allow for using the API in conjunction with your SIEM or similar tool.

To properly understand the data contained within CIF, analysts must understand the defined taxonomies: impact, severity, and confidence. Impact describes the general type of threat; examples might include phishing-related indicators, botnets, scanners, or perhaps even informational only. Severity is relatively straightforward: how much pain could this cause a victim? Confidence is slightly more subtle and represents your belief in the accuracy of the indicator. Information that an investigator has thoroughly vetted might carry a score of 95 (on a scale of 0-99), whereas public lists of scanning IP addresses might instead have a score of 50.

Community

As open-source (libre/free) software, CIF relies on community help to grow. Contributing back to the project in the form of testing, documentation, code, or (at a minimum) discussing your use cases and deployments helps everyone. The ROI from assisting the project may surprise you.

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Source: http://securityblog.verizonbusiness.com/2012/11/01/everyday-im-ciffling/

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San Diego Military Divorce Lawyers at The Men?s Legal Center Offering Free Initial Consultations to Active Duty Military Personnel

The San Diego military divorce lawyers at The Men?s Legal Center, a law firm is dedicated to fighting for the rights of husbands, fathers and noncustodial parents with regards to California family law issues hereby announces that the firm is offering free initial consultations to all active duty military personnel who may be experiencing family law-related problems. Their Web site can be found at http://www.menslegal.com.

San Diego, CA (PRWEB) November 02, 2012

The San Diego military divorce attorneys at The Men?s Legal Center, Family Law Advocates?, a law firm, announces the firm is offering a waiver of their initial consultations for active duty military personnel who may be experiencing family law difficulties such as custody, visitation and support with regards to their spouses and children.

This free initial consultation offer comes as a response to the Department of Defense?s news release indicating that since the beginning of the military actions in Afghanistan and Iraq in 2001, the military divorce rate has increased by a factor of about 40 percent in 2011 and is still increasing in 2012. Family law-related problems will increase as troops begin to come home from overseas deployment. Returning home, to California, for a married soldier means attempting to reunify with a spouse with whom they have not been living with. For those already separated, coming home means attempting to return to the pre-deployment child sharing arrangement and support level.

The Men?s Legal Center is uniquely qualified to represent military personnel in family law matters of all types. Their managing attorney, Craig A. Candelore, has been practicing family law for more than 26 years. In addition, Attorney Candelore earned his Bachelor of Science from West Point before serving on active duty and the Reserves, ultimately earning the rank of Colonel from the United States Army. His active tours of duty include Operation Desert Storm and Operation Iraqi Freedom. Since 2008, he worked as a senior military police and an anti-terrorist officer. Attorney Candelore and his team have also organized, produced and given a MCLE accredited military divorce seminar.

The San Diego military divorce lawyers at The Men?s Legal Center encourage military personnel who may be experiencing family law problems to schedule a free initial consultation before their problems become more severe. The firm will use this initial consultation to advise potential clients regarding their legal rights and options.

About the Men?s Legal Center

The Men?s Legal Center, Family Law Advocates? is a San Diego family law firm whose attorneys dedicate themselves to representing and fighting for the legal rights of husbands, fathers and noncustodial parents. The firm handles cases that include military divorce, California divorce, legal separation, property division, child support, spousal support, child custody, child visitation, child support modification and high asset divorces among many others.

Allan Candelore
Men's Legal Center
619-234-3838
Email Information

Source: http://news.yahoo.com/san-diego-military-divorce-lawyers-men-legal-center-130235259.html

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Italy cops: US teen critical after stabbing

Praxilla Trabattoni / NBC News

A student was allegedly stabbed in this building in Rome, Italy, on Thursday.

By Praxilla Trabattoni, NBC News

ROME - A 19-year-old American was in a critical condition Friday after he was allegedly stabbed while he slept by a fellow student following a night of partying in the Italian capital, officials told NBC News.

The victim, New Jersey-born Fabio Malpeso underwent surgery for stab wounds to his lungs and other parts of his body.?Police said Friday that Malpeso was in a critical but stable condition in intensive care at a hospital in Rome.?

Authorities said the motive for the attack, which happened in an apartment that overlooks Rome's famous Colosseum?early Thursday morning, was unclear. However, detectives suspect "drug- and alcohol-related delirium" might be a factor.

The alleged assailant, who was taken to a police station and then a prison central Rome, was named in a police document as Alexander Schepis Reid, 20. Police said Reid, a resident of Reggio Calabria in southern Italy, appeared to have joint U.S. and Italian citizenship but were working to establish his nationalities.

A third man, an Italian aged in his 30s called Andrea Rinaldi, suffered injuries to his arms and hands trying to defend Malpeso, and was also in hospital, police said.

Paolo Guiso, a judiciary police inspector who is leading the investigation, told NBC News Friday that Reid, Malpeso, Malpeso's sister Federica and her boyfriend, Rinaldi, had returned to the apartment after partying in a nightclub Wednesday night and early Thursday.

Cop: Suspect 'at times catatonic'
Malpeso had drank alcohol, while Reid, Federica and Rinaldi had consumed "alcohol, hashish and ecstasy," Guiso said, explaining that all four had been tested for drugs and alcohol.

"Federica, Rinaldi and Fabio went to bed at 6 a.m. [Thursday]. Reid stayed in the living room. At a certain point, he went to the kitchen fetched a knife and went into Fabio's room, where he started to stab the sleeping youth," Guiso alleged.?

"Hearing the screaming and commotion, Rinaldi and the victim's sister ran in to see what was happening. They stepped in to defend Fabio, which resulted in Rinaldi suffering cuts to his hands and arms," he said.

"The motive of the attack is still not clear. At present we ? believe that the violence was brought on due to a drug- and alcohol-related delirium," Guiso added.

More international coverage from NBC News

Guiso said he had not been able to speak properly with Reid as he was "still half asleep and at times catatonic ... ?he was almost in a state of unconsciousness at times."

"We have taken him to Regina Coeli prison in the heart of Rome. Within 48 hours from the arrest, he will have to go before the judge who will need to confirm his arrest,? he added.

Reid's lawyer Vincenzo Comi was visiting his client in jail on Friday and declined to comment further until after the meeting.

Thursday was the fifth anniversary of the brutal murder of British student Meredith Kercher in Perugia, Italy, that led to the arrest, trial and eventual acquittal of American student Amanda Knox.

More world stories from NBC News:

Follow World News from NBCNews.com on Twitter and Facebook

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Source: http://worldnews.nbcnews.com/_news/2012/11/02/14873005-italy-police-us-teen-stabbed-in-his-sleep-by-fellow-student?lite

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Rove: Sifting the Numbers for a Winner (WSJ)

Share With Friends: Share on FacebookTweet ThisPost to Google-BuzzSend on GmailPost to Linked-InSubscribe to This Feed | Rss To Twitter | Politics - Top Stories Stories, RSS and RSS Feed via Feedzilla.

Source: http://news.feedzilla.com/en_us/stories/politics/top-stories/259762563?client_source=feed&format=rss

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