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GoDaddy Looks Unscathed By Bob Parsons Elephant Killing

Posted by Unknown on Friday, July 29, 2011 , under | comments (0)







Was all that outrage and boycott talk just hot air?




If you want to boost sales for your business, kill an elephant.
No, seriously – take a video of yourself shooting an elephant in the dark as well as the subsequent slaughtering and throw it up on YouTube. Then, advertise said video all over Twitter. Once you start to receive any backlash, double-down on your position that said elephant killing was the right thing to do.
I'm sure this storyline is beginning to sound familiar to you. When GoDaddy CEO Bob Parsons did all of the above things back in March, many wondered how it would affect the company. The outrage was overwhelming.
Not only did people threaten to pull their sites from GoDaddy's services, but other companies attempted to cash-in on Parson's faux pas. NameCheap offered domain transfers for special prices, even donating 25% of their revenue to Save The Elephants. They tweeted that they raised over $20,000 for the charity. Venovix followed suit, offering to donate revenue generated from domain switches to the International Elephant Foundation. This promotion was cleverly titled "NoDaddy."
And man did Parsons piss off PETA.
It appears, however, that all the outrage and publicized domain switching hasn't really translated into people leaving GoDaddy. On the contrary, new figures show that they have raised domain registrations 8% and their sales rate 4% following the elephant shooting.
Flippa has released an infographic for their first "State of the Website Economy" report. To see that full infographic, check out their blog post. The pertinent GoDaddy part of the report is this:
There was an uproar and threats of GoDaddy boycotts from across the globe when Bob Parsons shot an elephant in Zimbabwe, but the event failed to resonate in the long-term as website creators continue to use GoDaddy. In fact, their share of registrations seems to have increased since the shooting, and their share of website sales hasn't diminished when looked at relative to the rest of the website market. We doubt the event even factored into GoDaddy's $2.25 billion sale to private equity firms last month!
Earlier this month, GoDaddy sold itself to three private equity firms for $2.25 billion. Parsons said that it "isn't a sale. It's a partnership that's reinvesting in Go Daddy."
Parson, the wonderful well of Twitter activity, tweeted about his role in the restructured GoDaddy. In response to a user asking about the future of his video blog, Parson replied with this tweet –
@DanSodkiewicz Hi Dan, I'm going to keep doing it. I will remain Chairman at GoDaddy and also am the largest single investor in the co. 21 days ago via web · powered by @socialditto
His latest tweet comes from Wednesday. I wonder what PETA will have to say about this one –
@Yellsback Hi Kate. No animal catches mice/rats like a Jack Russell terrier. What takes cats weeks they do in a day or so. 2 days ago via web · powered by @socialditto

'Brain Cap' Technology Turns Thought Into Motion; Mind-Machine Interface Could Lead to New Life-Changing Technologies for Millions of People

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"Brain cap" technology being developed at the University of Maryland allows users to turn their thoughts into motion. Associate Professor of Kinesiology José 'Pepe' L. Contreras-Vidal and his team have created a non-invasive, sensor-lined cap with neural interface software that soon could be used to control computers, robotic prosthetic limbs, motorized wheelchairs and even digital avatars.


"We are on track to develop, test and make available to the public- within the next few years -- a safe, reliable, noninvasive brain computer interface that can bring life-changing technology to millions of people whose ability to move has been diminished due to paralysis, stroke or other injury or illness," said Contreras-Vidal of the university's School of Public Health.
The potential and rapid progression of the UMD brain cap technology can be seen in a host of recent developments, including a just published study in the Journal of Neurophysiology, new grants from the National Science Foundation (NSF) and National Institutes of Health, and a growing list of partners that includes the University of Maryland School of Medicine, the Veterans Affairs Maryland Health Care System, the Johns Hopkins University Applied Physics Laboratory, Rice University and Walter Reed Army Medical Center's Integrated Department of Orthopaedics & Rehabilitation.
"We are doing something that few previously thought was possible," said Contreras-Vidal, who is also an affiliate professor in Maryland's Fischell Department of Bioengineering and the university's Neuroscience and Cognitive Science Program. "We use EEG [electroencephalography] to non-invasively read brain waves and translate them into movement commands for computers and other devices.
Peer Reviewed
Contreras-Vidal and his team have published three major papers on their technology over the past 18 months, the latest a just released study in the Journal of Neurophysiology in which they successfully used EEG brain signals to reconstruct the complex 3-D movements of the ankle, knee and hip joints during human treadmill walking. In two earlier studies they showed (1) similar results for 3-D hand movement and (2) that subjects wearing the brain cap could control a computer cursor with their thoughts.
Alessandro Presacco, a second-year doctoral student in Contreras-Vidal's Neural Engineering and Smart Prosthetics Lab, Contreras-Vidal and co-authors write that their Journal of Neurophysiology study indicated "that EEG signals can be used to study the cortical dynamics of walking and to develop brain-machine interfaces aimed at restoring human gait function."
There are other brain computer interface technologies under development, but Contreras-Vidal notes that these competing technologies are either very invasive, requiring electrodes to be implanted directly in the brain, or, if noninvasive, require much more training to use than does UMD's EEG-based, brain cap technology.
Partnering to Help Sufferers of Injury and Stroke
Contreras-Vidal and his team are collaborating on a rapidly growing cadre projects with researchers at other institutions to develop thought-controlled robotic prosthetics that can assist victims of injury and stroke. Their latest partnership is supported by a new $1.2 million NSF grant. Under this grant, Contreras-Vidal's Maryland team is embarking on a four-year project with researchers at Rice University, the University of Michigan and Drexel University to design a prosthetic arm that amputees can control directly with their brains, and which will allow users to feel what their robotic arm touches.
"There's nothing fictional about this," said Rice University co-principal investigator Marcia O'Malley, an associate professor of mechanical engineering. "The investigators on this grant have already demonstrated that much of this is possible. What remains is to bring all of it -- non-invasive neural decoding, direct brain control and [touch] sensory feedback -- together into one device."
In a NIH-supported project underway, Contreras-Vidal and his colleagues are pairing their brain cap's EEG-based technology with a DARPA-funded next-generation robotic arm designed by researchers at the Johns Hopkins Applied Physics Laboratory to function like a normal limb. And the UMD team is developing a new collaboration with the New Zealand's start-up Rexbionics, the developer of a powered lower-limb exoskeleton called Rex that could be used to restore gait after spinal cord injury.
Two of the earliest partnerships formed by Contreras-Vidal and his team are with the University of Maryland School of Medicine in Baltimore and the Veterans Affairs Medical Center in Baltimore. A particular focus of this research is the use of the brain cap technology to help stroke victims whose brain injuries affect their motor-sensory control. Originally funded by a seed grant from the University of Maryland, College Park and the University of Maryland, Baltimore, the work now also is supported by a VA merit grant (anklebot BMI) and an NIH grant (Stroke).
"There is a big push in brain science to understand what exercise does in terms of motor learning or motor retraining of the human brain," says Larry Forrester, an associate professor of physical therapy and rehabilitation science at the University of Maryland School of Medicine.
For the more than a year, Forrester and the UMD team have tracked the neural activity of people on a treadmill doing precise tasks like stepping over dotted lines. The researchers are matching specific brain activity recorded in real time with exact lower-limb movements.
This data could help stroke victims in several ways, Forrester says. One is a prosthetic device, called an "anklebot," or ankle robot, that stores data from a normal human gait and assists partially paralyzed people. People who are less mobile commonly suffer from other health issues such as obesity, diabetes or cardiovascular problems, Forrester says, "so we want to get [stroke survivors] up and moving by whatever means possible."
The second use of the EEG data in stroke victims is more complex, yet offers exciting possibilities. "By decoding the motion of a normal gait," Contreras-Vidal says, "we can then try and teach stroke victims to think in certain ways and match their own EEG signals with the normal signals." This could "retrain" healthy areas of the brain in what is known as neuroplasticity.
One potential method for retraining comes from one of the Maryland research team's newest members, Steve Graff, a first-year bioengineering doctoral student. He envisions a virtual reality game that matches real EEG data with on-screen characters. "It gives us a way to train someone to think the right thoughts to generate movement from digital avatars. If they can do that, then they can generate thoughts to move a device," says Graff, who brings a unique personal perspective to the work. He has congenital muscular dystrophy and uses a motorized wheelchair. The advances he's working on could allow him to use both hands -- to put on a jacket, dial his cell phone or throw a football while operating his chair with his mind.
No Surgery Required
During the past two decades a great deal of progress has been made in the study of direct brain to computer interfaces, most of it through studies using monkeys with electrodes implanted in their brains. However, for use in humans such an invasive approach poses many problems, not the least of which is that most people don't' want holes in their heads and wires attached to their brains. "EEG monitoring of the brain, which has a long, safe history for other applications, has been largely ignored by those working on brain-machine interfaces, because it was thought that the human skull blocked too much of the detailed information on brain activity needed to read thoughts about movement and turn those readings into movement commands for multi-functional high-degree of freedom prosthetics," said Contreras-Vidal. He is among the few who have used EEG, MEG or other sensing technologies to develop non-invasive neural interfaces, and the only one to have demonstrated decoding results comparable to those achieved by researchers using implanted electrodes.
A paper Contreras-Vidal and colleagues published in theJournal of Neuroscience in March 2010 showed the feasibility of Maryland's EEG-based technology to infer multidimensional natural movement from noninvasive measurements of brain activity. In their two latest studies, Contreras-Vidal and his team have further advanced the development of their EEG brain interface technology, and provided powerful new evidence that it can yield brain computer interface results as good as or better than those from invasive studies, while also requiring minimal training to use.
In a paper published in April in the Journal of Neural Engineering, the Maryland team demonstrated that people wearing the EEG brain cap, could after minimal training control a computer cursor with their thoughts and achieve performance levels comparable to those by subjects using invasive implanted electrode brain computer interface systems. Contreras-Vidal and his co-authors write that this study also shows that compared to studies of other noninvasive brain control interface systems, training time with their system was substantially shorter, requiring only a single 40-minute session.

Trend in Young Adults' Dating Habits, Committed Relationships May Not Lead to Marriage

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Changes in relationship formation and dissolution in the past 50 years have revealed new patterns in romantic relations among young adults. The U.S. Census indicates that young people are choosing to marry later and cohabitating more often than past generations. Now, a University of Missouri researcher has found that people in their 20s are redefining dating by engaging in "stayover relationships," spending three or more nights together each week while maintaining the option of going to their own homes.


"Instead of following a clear path from courtship to marriage, individuals are choosing to engage in romantic ties on their own terms -- without the guidance of social norms," said Tyler Jamison, a researcher in the Department of Human Development and Family Studies (HDFS). "There is a gap between the teen years and adulthood during which we don't know much about the dating behaviors of young adults. Stayovers are the unique answer to what emerging adults are doing in their relationships."
Jamison found that "stayover relationships" are a growing trend among college-aged couples who are committed, but not interested in cohabiting. However, little is known about the effects of stayovers on future commitment decisions or marriage.
"A key motivation is to enjoy the comforts of an intimate relationship while maintaining a high degree of personal control over one's involvement and commitment," said Larry Ganong, professor in HDFS. "We see this interest in personal control nationally in more single adult households, and in the growing phenomenon of 'living apart together' (middle-aged and older monogamous couples who maintain their own households). It may also help explain why marriage is on the decline, particularly among young adults."
Jamison conducted interviews among college-educated adults who were in committed, exclusive relationships. She found that although living together before marriage has become less taboo, many young adults want to avoid the potential negative social consequences of cohabitation.
"As soon as couples live together, it becomes more difficult to break up," Jamison said. "At that point, they have probably signed a lease, bought a couch and acquired a dog, making it harder to disentangle their lives should they break up. Staying over doesn't present those entanglements."
Jamison found that couples who had a stayover routine were content in their relationships, but did not necessarily plan to get married or move in together.
"Many college-aged adults are students who will soon be facing a transition point in their lives," Jamison said. "Most students do not have a definite plan for where they will live or work after graduation, and stayovers are a way for couples to have comfort and convenience without the commitment of living together or having long-term plans."
The study, "We're not living together: Stayover relationships among college-educated emerging adults," is in the current issue of the Journal of Social and Personal Relationships. Jamison recommends future research to determine the effect of stayovers on marriage and divorce rates. Her follow-up research is focused on stayover relationships in unmarried parents. She is a doctoral candidate in the MU College of Human Environmental Sciences

50-Million-Year-Old Snake Gets a CT Scan

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Even some of the most advanced technology in medicine couldn't get Clarisse to give up all of her secrets. After all, she's protected them for more than 50 million years.


Clarisse is a snake, found in the Fossil Butte region of Wyoming, perfectly fossilized in limestone and the only one of her kind known to be in existence. Palentologist Hussan Zaher came to Houston at the behest of the Museum of Natural Science to study her.
He brought the precious find to The Methodist Hospital and subjected her to a detailed CT (computerized tomography) scan in hopes of finding where Clarisse fits along the timeline of evolution.
"Most fossilized remains of snakes are individual pieces of bone," said Zaher. "This is unique because it's a complete snake, which gives us an opportunity to study her makeup and hopefully learn more about her."
CT scan technician Pam Mager conducted the scan on a 64-slice scanner that is capable of sending laser-guided X-rays through a target. "We can take almost 3,000 images in less than a minute," she explained, "and then we can use those images to construct a three-dimensional picture of the snake's bone structure."
Zaher, professor and curator of the collections of herpetology and paleontology at the Museu de Zoologia of the Universidade de São Paulo in Brazil, worked with the Museum of Natural Science in Houston to get Clarisse to Methodist for the scan. He believes Clarisse could be an evolutionary link between snakes who take a lot of small bites to eat their prey and snakes who swallow their prey whole.
The snake fossil was preserved in what is now limestone, and the entire chunk of rock was placed on the bed of the CT scanner. In less than a minute, the images were taken and assembled by computer into a three-dimensional image that could be rotated 360 degrees.
Taking a preliminary look at the images, Zaher said he saw no traces of limbs. "That places it higher up the evolutionary scale, but the snake is still very old," he said. For more than an hour, he and technician Mager studied the images, looking at tiny details of the snake's skull to find clues to how it may have eaten its prey.
Clarisse is the best preserved Caenozoic snake known in a U.S. scientific collection. According to preliminary analysis, this snake is believed to be closely related to Boavus indelmani, a booid snake described in the late 1930′s. Zaher and the Houston museum hoped that getting a look at the underside of this unique fossil, as well as the inside of bones like the skull would shed some light on the evolutionary history of the species, and its relationship to booid snakes (like pythons and boas).
"This is a very important step in studying this specimen ... I will be able to take away copies of the images for further investigation and I believe this will help us learn about this snake," Zaher said. "I cannot express my gratitude enough to (The Methodist Hospital) and the radiology services department here."
The snake is part of the collection at the Houston Museum of Natural Science.

World's Smallest Snake Found In Barbados

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The world's smallest species of snake, with adults averaging just under four inches in length, has been identified on the Caribbean island of Barbados. The species -- which is as thin as a spaghetti noodle and small enough to rest comfortably on a U.S. quarter --was discovered by Blair Hedges, an evolutionary biologist at Penn State.

Hedges found the new snake -- a type of threadsnake -- in a tiny forest fragment on the eastern side of Barbados. He believes the species is rare because most of its potential habitat has been replaced by buildings and farms. "Habitat destruction is a major threat to biodiversity throughout the world," he said. "The Caribbean is particularly vulnerable because it contains an unusually high percentage of endangered species and, because these animals live on islands, they have nowhere to go when they lose their habitat."
Hedges determined that the Barbados species is new to science on the basis of its genetic differences from other snake species and its unique color pattern and scales. He also determined that some old museum specimens that had been misidentified by other scientists actually belong to this new species.
Scientists use adults to compare sizes among animals because the sizes of adults do not vary as much as the sizes of juveniles and because juveniles can be harder to find. In addition, scientists seek to measure both males and females of a species to determine its average size. Using these methods, Hedges determined that this species, which he named Leptotyphlops carlae, is the smallest of the more than 3,100 known snake species.
According to Hedges, the smallest and largest species of animals tend to be found on islands, where species can evolve over time to fill ecological niches in habitats that are unoccupied by other organisms. Those vacant niches exist because some types of organisms, by chance, never make it to the islands. For example, if a species of centipede is missing from an island, a snake might evolve into a very small species to "fill" the missing centipede's ecological niche.
Hedges thinks the Barbados snake may be at or near the minimum possible size for snakes, though he cannot say for sure that no smaller species exists -- several other snake species are nearly as small. While it is possible that a smaller species exists, finding such an animal is unlikely. "Snakes may be prevented by natural selection from becoming too small because, below a certain size, there may be nothing for their young to eat," said Hedges, adding that the Barbados snake, like others to which it is related, likely feeds primarily on the larvae of ants and termites.
In contrast to larger species -- some of which can lay up to 100 eggs in a single clutch -- the smallest snakes, and the smallest of other types of animals, usually lay only one egg or give birth to one offspring. Furthermore, the smallest animals have young that are proportionately enormous relative to the adults. For example, the hatchlings of the smallest snakes are one-half the length of an adult, whereas the hatchlings of the largest snakes are only one-tenth the length of an adult. The Barbados snake is no exception to this pattern. It produces a single slender egg that occupies a significant portion of the mother's body.
"If a tiny snake were to have two offspring, each egg could occupy only half the space that is devoted to reproduction within its body. But then each of the two hatchlings would be half the normal size, perhaps too small to function as a snake or in the environment," said Hedges. "The fact that tiny snakes produce only one massive egg -- relative to the size of the mother -- suggests that natural selection is trying to keep the size of hatchlings above a critical limit in order to survive."
Hedges has discovered and described more than 65 new species of amphibians and reptiles throughout the Caribbean in the course of his genetic and evolutionary studies. In the paper in which he describes the Leptotyphlops carlae snake that he discovered on Barbados, he also describes another new snake that he discovered on the nearby island of St. Lucia, a new threadsnake that is nearly as small as the Barbados snake. Finding new species, collecting them, and naming them is a necessary first step for other types of research. Hedges said this exploration and discovery of new species also is critical for protecting biodiversity. "It is difficult to protect a species if you don't know it exists," he said.
Funding for the research to be published in Zootaxa was provided by the National Science Foundation and the National Aeronautics and Space Administration.

Hulu Plus on Android Now a Reality

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Hulu Plus has made its way to Android, which could be key in its competition with other players like Netflix, who also recently launched Android support.
Like Netflix, however, Android support doesn't mean availability for all Android devices. Only certain smartphone models work, but also like Netflix, Hulu promises to expand upon that number of devices.
On Hulu's blog, Director of Product Management Rob Wong writes:
We've always said our mission is to provide the world's premium content to people when, how and where they want it. And we know that a lot of people want that content on their Android smartphones. We've been working hard to make that a reality, and today, we have begun our early rollout of theHulu Plus application on Android smartphones.
With the first phase of the Android rollout, Hulu Plus is available on six phones, including the Nexus One, Nexus S, HTC Inspire 4G, Motorola Droid II, Motorola Droid X, and the Motorola Atrix. We expect to add to the number of Android smartphones and will be making additional device announcements throughout the year.
The free Hulu Plus app is available for download from Android Market, and once installed, Hulu Plus subscribers will be able to enjoy the service on the go. As always, Hulu Plus offers new subscribers one free week to try the service.
Hulu Plus on Android
Hulu Plus on Android
Netflix has talked in the past about why they couldn't must push out an Android app that works on everything.
"We regard Android as an exciting technology that drives a range of great devices that our members could use to instantly watch TV shows and movies from Netflix," explained Netflix's Greg Peters late last year. "We are eager to launch on these devices and are disappointed that we haven't been able to do so already. The hurdle has been the lack of a generic and complete platform security and content protection mechanism available for Android. The same security issues that have led to piracy concerns on the Android platform have made it difficult for us to secure a common Digital Rights Management (DRM) system on these devices. Setting aside the debate around the value of content protection and DRM, they are requirements we must fulfill in order to obtain content from major studios for our subscribers to enjoy. Although we don't have a common platform security mechanism and DRM, we are able to work with individual handset manufacturers to add content protection to their devices. Unfortunately, this is a much slower approach and leads to a fragmented experience on Android, in which some handsets will have access to Netflix and others won't."
I'm going to go out on a limb and speculate that Hulu has had similar issues.
Besides select Android devices, Hulu Plus is also available for iOS devices, Xbox 360, Sony PS3, Roku's streaming player, various TVs and Blu-Ray players from Samsung, Sony, Vizio, Panasonic, LG, and Haier, WD TV media players, TiVo Premiere, and of course PCs.

Netflix Earnings Released

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Projections for Third Quarter Subscriber Mix



Netflix released its earnings report for the second quarter today, as well as a 75% year-over-year increase in subscribers, having added 1.8 million in the quarter. The company has 25.56 million subscribers globally.
As far as the financials, the company reported $789 million in revenue for the quarter, up 52% year-over-year.
Netflix numbers
"We are happy to report that Q2 was another great quarter for Netflix," the company told investors in a letter. "Streaming is continuing to grow rapidly, and with the recently introduced price changes, we'll be able to further increase the scope and quality of our streaming content. At the end of the quarter, Netflix had over 25 million global subscribers, up 70% from 15 million just one year ago."
"We've spoken frequently of how we are directing savings generated from declining DVD demand into additional streaming content and marketing. During the quarter, we substantially increased sequential spending on streaming content as titles from our new content deals (discussed below) became available for streaming. At the same time, though, we maintained a disciplined approach to what content we license and at what price, spending somewhat less on streaming content than we budgeted for in the quarter. Also, DVD shipments came in even lower than forecasted, in part due to the popularity of our streaming only plan."
Here's the picture of what Netflix is expecting for the third quarter, in terms of the subscriber mix between streaming and DVD services. The recently announced price hike will obviously impact this.
Netflix Subscriber Mix
Netflix's results were apparently not up to shareholders' standards, as stock is down in after hours trading.

Google’s Page Speed Online Launched

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Tool will analyze page performance and offer suggestions


Over at the Google Webmaster Central blog, they've announced "Page Speed Online," which allows users to check out the performance of any page on the internet, at any time.  Users will receive a page performance score calculated out of 100 and will be given prioritized suggestions upon which to improve.
When you run a test for a particular page, you will receive a score.
That score will be accompanied on the left hand side by suggestions for improving the page.
Google ranks these suggestions either high, medium or low priority.  The high priority suggestions are the ones that will give you the most improvement for the most minimal effort.  The medium priority suggestion will not give you as much improvement and may require much more work.  The low priority suggestions are to be concerned with only when you take care of the higher priority ones.
As you can see above, on the bottom right of where you see the number score, there is an option for a mobile analysis.  Google has added support for mobile pages to this new tool:
Due to the relatively limited CPU capabilities of mobile devices, the high round-trip times of mobile networks, and rapid growth of mobile usage, understanding and optimizing for mobile performance is even more critical than for the desktop.
The mobile recommendations are tuned for the unique characteristics of mobile devices, and contain several best practices that go beyond the recommendations for desktop browsers, in order to create a faster mobile experience. New mobile-targeted best practices include eliminating uncacheable landing page redirects and reducing the amount of JavaScript parsed during the page load, two common issues that slow down mobile pages today.
Google also notes that Page Speed Online is powered in the same way as many Chrome and Firefox extensions as well as webpagetest.org.

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