Wednesday, April 10, 2013

Why You'll Want to Spend More Time Gardening, Less Time Stock ...

Tuesday, April 9th, 2013
By George Leong, B.Comm. for Profit Confidential

Less Time Stock-Picking This MayIt has been a great five months so far for stocks, as we get set for the blooming of the flowers in May. Unfortunately, the rebirth of your garden and everything that comes along with spring and summer doesn?t coincide with the best months for investing in the market, according to my stock analysis.

April tends to be characterized by rain, but it could also be the final leg of the current six-month bull cycle from November to April that has historically resulted in the best gains, according to the Stock Trader?s Almanac and its founder Yale Hirsch.

Just take a look at the recent five months from November. The S&P 500 has reported gains in five straight months, with a combined gain of 9.4%, based on my stock analysis.

According to the Stock Trader?s Almanac, the upcoming May?October period is considered the weakest six months for stocks, which is why you will soon begin to hear the common phrase, ?Sell in May, and go away.? The historical records reflect the cycle. In the past half-century, the Dow moved up, on average, less than one percent from May to October but averaged over seven percent in the other six months, based on my stock analysis.

My stock analysis suggests that while the historical tendency is not foolproof, if I were a betting man, I might wager on the cycle proving itself once again this year as the stock market is currently stalling. (Read ?Market Action Driven by Headlines; Investors Should Be Nervous.?)

Take a look at the chart of the S&P 500 below. Note the three blue circles that highlight the approximate May to October periods in 2010, 2001, and 2012. Note the decline during this bearish cycle, versus the market rally prior to this period, according to my stock analysis.

Could we be in for another decline this year? My stock analysis indicates the current stalling by the S&P 500 suggests this.

$SPX S&P 500 Large Cap Index stock market chart

Chart courtesy of www.StockCharts.com

And while I?m not saying to completely go away, as there will always be trading opportunities, it will just become much more difficult to make money than the November to April period, based on my stock analysis.

So while spring is in the air, you may want to lighten up your positions, take some profits off the table, and spend more time in the garden, helping your plants grow rather than your investments. Of course, for many of you who are just like me, trading and investing are year-round activities, not just the six months ending in April. In this case, you may spend only a bit more time in the garden.

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Source: http://www.profitconfidential.com/stock-market-advice/why-youll-want-to-spend-more-time-gardening-less-time-stock-picking-this-may/

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Instantgram.Me Turns Your Instagram Photos Into Magnets, Calls The Whole Fridge Into Question

magnet_detail3These days, you can get your Instagram photos printed onto just about anything. There are companies that print out post-it sized Instagrams, Instagrams on Canvas, Instagrams on wood and fiber glass, and everything in between. Today, Instantgram.me is joining those ranks with its new Instagram magnet-making business. The service offers 9 magnets, all 5cm x 5cm, for $17.00 with free worldwide shipping.

Source: http://feedproxy.google.com/~r/Techcrunch/~3/WSU-H8EPEVs/

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Tuesday, April 9, 2013

Suzaku 'post-mortem' yields insight into Kepler's supernova

Tuesday, April 9, 2013

An exploding star observed in 1604 by the German astronomer Johannes Kepler held a greater fraction of heavy elements than the sun, according to an analysis of X-ray observations from the Japan-led Suzaku satellite. The findings will help astronomers better understand the diversity of type Ia supernovae, an important class of stellar explosion used in probing the distant universe.

"The composition of the star, its environment, and the mechanism of the explosion may vary considerably among type Ia supernovae," said Sangwook Park, an assistant professor of physics at the University of Texas at Arlington. "By better understanding them, we can fine-tune our knowledge of the universe beyond our galaxy and improve cosmological models that depend on those measurements."

The best way to explore the star's makeup is to perform a kind of post-mortem examination on the shell of hot, rapidly expanding gas produced by the explosion. By identifying specific chemical signatures in the supernova remnant, astronomers can obtain a clearer picture of the composition of the star before it blew up.

"Kepler's supernova is one of the most recent type Ia explosions known in our galaxy, so it represents an essential link to improving our knowledge of these events," said Carles Badenes, an assistant professor of physics and astronomy at the University of Pittsburgh.

Using the Suzaku satellite's X-ray Imaging Spectrometer (XIS), the astronomers observed the remnant of Kepler's supernova in 2009 and 2011. With a total effective XIS exposure of more than two weeks, the X-ray spectrum reveals several faint emission features from highly ionized chromium, manganese and nickel in addition to a bright emission line from iron. The detection of all four elements was crucial for understanding the original star.

"Suzaku's XIS instrument is uniquely suited to this type of study thanks to its excellent energy resolution, high sensitivity and low background noise," said team member Koji Mori, an associate professor of applied physics at the University of Miyazaki, Japan.

Cosmologists regard type Ia supernovae as "standard candles" because they release similar amounts of energy. By comparing this standard to the observed peak brightness of a type Ia supernova, astronomers can pin down its distance. Their similarity stems from the fact that the exploding star is always a compact stellar remnant known as a white dwarf.

Although a white dwarf star is perfectly stable on its own, pair it with another white dwarf or a normal star and the situation eventually may turn volatile. The normal star may transfer gas onto the white dwarf, where it gradually accumulates. Or the orbits of binary white dwarfs may shrink until the two objects merge.

Either way, once a white dwarf begins tipping the scales at around 1.4 times the sun's mass, a supernova soon follows. Somewhere within the white dwarf, carbon nuclei begin merging together, forming heavier elements and releasing a vast amount of energy. This wave of nuclear fusion rapidly propagates throughout the star, ultimately shattering it in a brilliant explosion that can be detected billions of light-years away.

Astronomers can track some details of the white dwarf's composition by determining the abundance of certain trace elements, such as manganese, that formed during the explosion. Specifically, the ratio of manganese to chromium produced by the explosion turns out to be sensitive to the presence of a neutron-rich version of neon, called neon-22. Establishing the star's neon-22 content gives scientists a guide to the abundance of all other elements heavier than helium, which astronomers call "metals."

The findings provide strong evidence that the original white dwarf possessed roughly three times the amount of metals found in the sun. Progressive stellar generations seed interstellar gas with increasing proportions of metals. The remnant, which lies about 23,000 light-years away toward the constellation Ophiuchus, lies much closer to our galaxy's crowded central region than the sun does. There, star formation was probably more rapid and efficient. As a result, the star that blazed forth as Kepler's supernova likely formed out of material that already was enriched with a higher fraction of metals.

Park, Badenes, Mori and their colleagues discuss the findings in a paper scheduled for publication in the April 10 issue of the Astrophysical Journal Letters and now available online.

While the Suzaku results do not directly address which type of binary system triggered the supernova, they indicate that the white dwarf was probably no more than a billion years old when it exploded, or less than a quarter of the sun's current age.

"Theories indicate that the star's age and metal content affect the peak luminosity of type Ia supernovae," Park explained. "Younger stars likely produce brighter explosions than older ones, which is why understanding the spread of ages among type Ia supernovae is so important."

In 2011, astrophysicists from the United States and Australia won the Nobel Prize in physics for the discovery that the expansion of the universe is picking up speed, a conclusion based on measurements of type Ia supernovae. An enigmatic force called dark energy appears to be responsible for this acceleration, and understanding its nature is now a top science goal. Recent findings by the European Space Agency's Planck satellite reveal that dark energy makes up 68 percent of the universe.

Launched on July 10, 2005, Suzaku was developed at the Japanese Institute of Space and Astronautical Science (ISAS), which is part of the Japan Aerospace Exploration Agency (JAXA), in collaboration with NASA and other Japanese and U.S. institutions.

###

NASA/Goddard Space Flight Center: http://www.nasa.gov/goddard

Thanks to NASA/Goddard Space Flight Center 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/127652/Suzaku__post_mortem__yields_insight_into_Kepler_s_supernova

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Does class shape men's attitudes toward home improvement projects?

Does class shape men's attitudes toward home improvement projects? [ Back to EurekAlert! ] Public release date: 9-Apr-2013
[ | E-mail | Share Share ]

Contact: Mary-Ann Twist
JCR@bus.wisc.edu
608-255-5582
University of Chicago Press Journals

Financial pressure and workplace stress lead some American men to take on home improvement projects, according to a new study in the Journal of Consumer Research.

"Depending on their social class, men tend to use DIY home improvement to envision themselves as either suburban craftsmen or family handymen," write authors Risto Moisio (California State University, Long Beach), Eric J. Arnould (University of Bath), and James Gentry (University of Nebraska, Lincoln).

Consumer research has tended to focus on demonstrating how masculine identity is constructed away from home in arenas such as the golf course or the barber shop. In contrast, through in-depth interviews, the authors discovered how men develop their masculine identities via DIY home improvement.

For upper class male consumers, DIY home improvement offers the means of unleashing the inner suburban craftsman who relishes in physical labor. In contrast to their day jobs, upper class men enjoy the process of toiling away on various projects and feeling self-fulfilled in the process.

For lower class male consumers, a different pattern emerges. Work around the house allows lower class men to assert their identities, and in particular, construct an identity of the family handyman relative to their female partners. In this way, lower class men find meaning in their DIY home improvement projects as a masculine form of caring for their families and providing them with better homes than otherwise possible due to their subordinate economic and social standing.

"For upper class men, DIY home improvement is a therapeutic escape from the burdens of knowledge work, allowing them to experience a blue-collar fantasy by working with their hands. In contrast, lower class men treat DIY home improvement as a chore rather than a therapeutic outlet. Projects around the house represent an essential part of their male territory and housework repertoire," the authors conclude.

###

Risto Moisio, Eric J. Arnould, and James Gentry. "Productive Consumption in the Class-Mediated Construction of Domestic Masculinity: Do-It-Yourself (DIY) Home Improvement in Men's Identity Work." Journal of Consumer Research: August 2013. For more information, contact Risto Moisio (rmoisio@csulb.edu) or visit http://ejcr.org/.


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

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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.


Does class shape men's attitudes toward home improvement projects? [ Back to EurekAlert! ] Public release date: 9-Apr-2013
[ | E-mail | Share Share ]

Contact: Mary-Ann Twist
JCR@bus.wisc.edu
608-255-5582
University of Chicago Press Journals

Financial pressure and workplace stress lead some American men to take on home improvement projects, according to a new study in the Journal of Consumer Research.

"Depending on their social class, men tend to use DIY home improvement to envision themselves as either suburban craftsmen or family handymen," write authors Risto Moisio (California State University, Long Beach), Eric J. Arnould (University of Bath), and James Gentry (University of Nebraska, Lincoln).

Consumer research has tended to focus on demonstrating how masculine identity is constructed away from home in arenas such as the golf course or the barber shop. In contrast, through in-depth interviews, the authors discovered how men develop their masculine identities via DIY home improvement.

For upper class male consumers, DIY home improvement offers the means of unleashing the inner suburban craftsman who relishes in physical labor. In contrast to their day jobs, upper class men enjoy the process of toiling away on various projects and feeling self-fulfilled in the process.

For lower class male consumers, a different pattern emerges. Work around the house allows lower class men to assert their identities, and in particular, construct an identity of the family handyman relative to their female partners. In this way, lower class men find meaning in their DIY home improvement projects as a masculine form of caring for their families and providing them with better homes than otherwise possible due to their subordinate economic and social standing.

"For upper class men, DIY home improvement is a therapeutic escape from the burdens of knowledge work, allowing them to experience a blue-collar fantasy by working with their hands. In contrast, lower class men treat DIY home improvement as a chore rather than a therapeutic outlet. Projects around the house represent an essential part of their male territory and housework repertoire," the authors conclude.

###

Risto Moisio, Eric J. Arnould, and James Gentry. "Productive Consumption in the Class-Mediated Construction of Domestic Masculinity: Do-It-Yourself (DIY) Home Improvement in Men's Identity Work." Journal of Consumer Research: August 2013. For more information, contact Risto Moisio (rmoisio@csulb.edu) or visit http://ejcr.org/.


[ 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/2013-04/uocp-dcs040913.php

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Monday, April 8, 2013

Moving cells with light holds medical promise

Apr. 8, 2013 ? Scientists at Washington University School of Medicine in St. Louis have shown they can coax cells to move toward a beam of light. The feat is a first step toward manipulating cells to control insulin secretion or heart rate using light.

Their research is published April 8 in the Proceedings of the National Academy of Sciences Online Early Edition.

"We have succeeded in using light as a kind of on-off switch to control cells' behavior," says principal investigator N. Gautam, PhD, a professor of anesthesiology. "Much of the way cells behave is due to their ability to sense signals in the environment. In these experiments, what the cells sense is the presence of light."

The new research focuses on immune cells. By adding a light-sensitive protein to the cells, the scientists could direct cells to move simply by shining a laser in the direction they wanted a cell to travel.

"We were interested in the idea that you could activate receptors on a single area of a cell's exterior," says Gautam. "It's what happens naturally when an immune cell senses something amiss in its environment and then migrates toward that potential trouble, perhaps a bacterial infection or inflammation."

The researchers used genetic engineering techniques to introduce a light-sensing protein, called an opsin, into immune cells. Humans and other animals make opsins in the eye, and when activated by light, they allow cells in the eye to translate light signals into vision.

Gautam and the study's first author, Ajith Karunarathne, PhD, postdoctoral research associate in anesthesiology, introduced several different opsins into immune cells. After demonstrating that those cells had an affinity for light, the researchers performed the same experiment with nerve cells, with equal success. The idea is to "trick" the cells into thinking that the opsin is a normal receptor protein.

The light-sensing opsin they snuck into immune cells and nerve cells belongs to a family of receptors that recently has been in the spotlight. These are G protein-coupled receptors whose importance was recognized in the awarding of the 2012 Nobel Prize in Chemistry. The same receptors play a key role in vision, smell, behavior and mood, regulation of the immune system, heart rate and the spread of some tumors.

In another recent study, also in the Proceedings of the National Academy of Sciences Online Early Edition, Gautam's team made nerve cells grow branches, called neurites, when the cells were exposed to light. Currently, the laboratory is working with cardiac cells to test whether light signals can speed up or slow down the rate at which heart cells pulse.

"Eventually, we would like to introduce multiple light-sensing proteins into these cells," says Karunarathne. "The idea would be to use two different wavelengths of light. That way, when you shine one light for example, it could signal the first light-sensing protein to make the heart beat faster. Then a different wavelength of light could be used to slow down the heart rate."

In future studies, the researchers plan to use the same kind of strategy to learn whether light can influence insulin secretion and the regeneration of nerve cells. They also are using the approach to study signaling circuitry in cells to find out how networks of molecular pathways control cell behavior.

"This strategy can be valuable," Gautam says. "We can control migration of cells, which is important not only to the immune system but also during embryonic development to ensure that cells that make the heart, liver and other organs go to the right place. It's also key in cancer metastasis, when a tumor releases cells that migrate to other parts of the body. We are excited by the many possibilities."

Funding for this research comes from the National Institute of General Medical Sciences (NIGMS) of the National Institutes of Health (NIH). NIH grant numbers are GM069027 and GM080558.

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The above story is reprinted from materials provided by Washington University School of Medicine. The original article was written by Jim Dryden.

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


Journal Reference:

  1. Karunarathne WKA, Giri L, Patel AK, Venkatesh KV, Gautam N. Optical control demonstrates switch-like PIP3 dynamics underlying the initiation of immune cell migration. PNAS, 2013 DOI: 10.1073/pnas.1220755110

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

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/~3/VA20H9rmQZM/130408152910.htm

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HBT: Marmol out, Fujikawa in for Cubs

As first reported by Paul Sullivan of the Chicago Tribune, the Cubs have made a change at closer.

Kyuji Fujikawa, who was signed to a two-year, $9.5 million free agent contract this winter after spending the last 12 seasons in Japan, will be Chicago?s new ninth-inning man. He struggled mightily in Saturday night?s late loss to the Braves, allowing three earned runs in the eighth inning, but the Cubs still feel that he will be a big upgrade over Carlos Marmol.

Marmol has surrendered six hits, two walks and five earned runs over 1 2/3 innings this season. He will serve as a mop-up man until he gets himself right.

If Fujikawa can?t cut it, the Cubs will probably try either Shawn Camp or James Russell next.

Source: http://hardballtalk.nbcsports.com/2013/04/07/kyuji-fujikawa-replaces-carlos-marmol-as-cubs-closer/related/

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Blackmagic's Production Camera 4K gets full size cinema sensor, $3,995 pricetag

Image

No matter how hard companies try and keep secrets, when it comes to trade show floors there's always the risk that someone will snap a picture and steal their thunder. The latest casualty is Blackmagic, which will be announcing both a Pocket Cinema Camera and this, its Production Camera 4K. We're fairly sure that this will sit above its Cinema Camera, offering a bigger Super 35 sensor, global shutter and Thunderbolt connector alongside the SSD recorder, touchscreen LCD and EF lens mount we found on last year's model. When the company gets around to announcing the hardware properly, it'll be available for $3,995 -- low enough to make even the most ardent of DSLR fans think twice.

[Image Credit: Danielo Garcia]

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Via: 43 Rumors, Mu-43

Source: Danielo Garcia (Twitter)

Source: http://www.engadget.com/2013/04/08/blackmagic-production-camera-4k/

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