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The biggest problem with Microsoft’s fractured TikTok deal

Tuesday, August 4, 2020


Microsoft has six weeks to close one of the strangest deals in tech industry history. On Sunday, the company publicly announced it was in talks with President Trump to buy portions of TikTok from its Chinese parent company ByteDance. For months, Trump has been raising national security concerns about TikTok, even threatening to ban the app, and now he’s presenting a sale to Microsoft as a last chance effort to save it. If the deal goes through, it would give Microsoft a new vantage on social networks and solve a variety of US national security concerns around TikTok’s newfound popularity.

But there’s a problem at the heart of the deal that no one on either side has addressed — and it’s serious enough to doom the entire project if it can’t be resolved. Microsoft isn’t bidding for TikTok; it’s bidding for the portion of TikTok in four countries: the US, Canada, Australia, and New Zealand. No one has ever split up a social network along regional lines, much less under threat of a national ban from the president. Peeling those four countries away from the rest of TikTok would be enormously difficult, and even if it were successful, it would leave Microsoft with an undersized and strangely regional social network, presenting significant investment and revenue challenges. Trump, ByteDance, and Microsoft have a lot to hash out over the next six weeks, but if they can’t solve that central problem, then none of it matters. And that central problem is much harder than anyone is willing to admit.

In practical terms, Microsoft is probably limiting the deal to four countries because it has to. Through the Committee on Foreign Investment in the United States (CFIUS), Trump has the power to force ByteDance to sell its US holdings. Canada, Australia, and New Zealand are the countries most closely aligned with the US in national security matters — most notoriously, as part of the Five Eyes intelligence sharing network (minus the UK) — and it’s likely that they’re on this list because they’re willing to make a similar move. When the US raised similar doubts about Huawei, the UK followed America’s lead, but only under duress, and Europe still hasn’t made the leap. Given the muddled justification and Trump’s pariah status among other major democracies, this is likely as far as the US can extend its influence in this particular fight.

But while the four-country approach makes sense for Trump, it’s not clear that it makes sense for Microsoft. No one has ever acquired a regional section of a social network before, and peeling away the Microsoft-owned portion of TikTok will be harder than it looks. As TikTok officials keep reminding us, the app is based in California, but the majority of its users are still in Asia or Europe. India’s TikTok ban has put a dent in those numbers, but Microsoft would still be buying less than a third of the total platform. We don’t know exactly which portions of TikTok’s operations Microsoft would get in the deal, but if the point is to sever TikTok from China, the company will have to rebuild any teams or infrastructure that are currently operated by ByteDance.

In essence, TikTok will split into two apps (let’s call them MS-TikTok and BD-TikTok), with separate servers, a separate codebase, and separate users. That would impact nearly everyone who works with the app: advertisers would reach fewer users with a single ad buy, influencers would have a smaller pool to go viral in, and users would have less content to pick from. TikTok succeeds when it can show users interesting posts, and without K-Pop stans or African dance memes, it will be harder to deliver on that. Even letting users share content from one network to another — sharing a Turkish TikTok to a US account, say — would require significant engineering work, work that would only be more difficult as the two apps continued to develop on different tracks. Given the concerns about algorithmic propaganda, it’s not clear such sharing would even be allowed.

Splitting the network would also be expensive. Even after the initial shock of rebuilding the ByteDance infrastructure, Microsoft will be stuck with a smaller audience and a smaller pool of revenue. Any investments into the platform — important work developing new features, say, or a new ad format — will be spread out over a much smaller pool of users, which means less money, less investment, and less growth. This is the iron law of scale, the power that let Facebook become so profitable so quickly as its user base grew. MS-TikTok would be taking that journey in reverse, assuming similar costs with far fewer users and far less revenue as a result. That new version of TikTok would be wildly less profitable, and with BD-TikTok already owning the market in the rest of the world, it’s not clear how much room there would be to scale up.

That’s not the only factor in the deal, to be sure. As Tom Warren laid out yesterday, there would be lots of advantages for Microsoft in owning a social network, even a small, region-locked one. The threat of CFIUS action really is an extraordinary circumstance, and it’s possible that ByteDance will sell at fire-sale prices, making the whole thing worthwhile. There’s so much we don’t know about the deal and so much still to be determined, so it would be foolish to discount it completely.

But the deal that’s been proposed relies on an unprecedented kind of corporate and technological fission. The internet is borderless by nature, and most social networks take advantage of that to run globe-spanning empires from comparatively regional headquarters. Paring the network back into national terms, with users in Korea seeing a different app from those in Hawaii, is a monumental task. It would be difficult under the best of circumstances. But doing it on a frantic six-week timetable, cheered on by a belligerent president and an ever-changing set of national security restrictions, seems downright impossible.

Startup uses spatial intelligence tech to build 'mirror worlds'

Sunday, April 12, 2020


BEIJING -- As more 5G mobile networks come online and artificial intelligence matures, a relatively new technology is emerging that enhances views of the real world by linking spatial elements, images and data.

Called spatial intelligence technology, Chinese startup Deep Mirror is using it to create a "mirror world" -- a three-dimensional digital duplicate of environmental features such as land, roads and buildings that can be shared by multiple users in real time.

The technology has the potential to become integral to the development of even newer technologies and services through the use of 5G, AI and augmented reality.

According to Deep Mirror Chief Technology Officer Lei Jiabei, spatial intelligence transforms the current, two-dimensional human-computer interface into a three-dimensional one, enabling people to generate information in a more efficient and intuitive manner.

Helping develop smart cities is a good example of putting spatial intelligence technology to work, as Deep Mirror has shown in its Pearl Bay Mirror World, a joint project with Nansha District in Guangzhou.

The startup is led by an impressive cast of tech notables, including Hu Wen, chief operating officer and chief financial officer of Pony.ai, a Chinese autonomous driving startup, and Qi Zichao, a gold medalist at the International Olympiad in Informatics. Other top brass include CTO Lei, a former member of Google X, a skunk works lab that has since been renamed X, as well as graduates of prestigious universities from around the world.

According to the company, the roughly 30 founding members have all put in time at some of the world's most respected tech companies, including Waymo, Google, Facebook, Baidu and drone developer DJI. Over half have worked for autonomous driving developers.

Deep Mirror has drawn support from Andrew Chi-Chih Yao, dean of the Institute for Interdisciplinary Information Sciences at Tsinghua University and the only Chinese to have won the A.M. Turing Award, often called computer science's Nobel Prize. The dean is also offering the startup the services of Yao Class, a crack computer science group from the university.

Deep Mirror wants to build its core technology around a spatial intelligence cloud, natural language understanding, deep learning and other technologies.

Established in the Nansha District, Guangzhou in July 2019, the startup has tied up with the local government on a number of projects using spatial intelligence and augmented reality, including Pearl Bay Mirror World.

The virtual world is modeled on the current environment, with simulated buildings, landscapes and other features superimposed over the real world and viewed with Microsoft's HoloLens 2 mixed-reality headset.

Pearl Bay Mirror World provides a robust interactive experience that transcends other platforms, which Deep Mirror is using to design a virtual free trade zone in Nansha.

According to Qi Zichao, the leading architect at Deep Mirror, spatial intelligence and mirror worlds will become increasingly important as 5G, AI and augmented reality technologies mature and merge.

The mirror world that the company has been developing with Nansha will help lay the foundations for future projects.

Deep Mirror has raised several millions of dollars through an angel round and other means. Yang Fei, a former IDG Capital partner, and several tech company founders have jointly invested in Deep Mirror.

Publicis Beehive wins creative duties of Club Factory, will play integral role in brand launch in India

Monday, July 16, 2018


Publicis Beehive, the full-service ad agency from Publicis Worldwide, has won the creative mandate of Chinese e-commerce fashion brand Club Factory. As its creative partner, Publicis Beehive will play an integral role in launching the brand in India.

Club Factory has a strong presence in South Asia, Europe, the United States, the Middle East and other regions. It allows users to shop through multiple products that are trendy and fashionable and available at unbeaten prices.

Commenting on the partnership and the launch of the brand in India, Aviva Wu, Marketing Director, Club Factory said, “Club Factory has managed to carve a unique niche in the hearts of the consumers across various markets where we operate. India is no exception with consumers, especially the youth, having taken a liking to the brand in a very short span of time. We have ambitious plans for the market and are glad Publicis Beehive is our creative partner.”

Paritosh Srivastava, COO, Publicis Beehive, said, “The Indian online retail market is at an interesting juncture right now with a plethora of brands vying for some share of the customer’s attention and also his wallet. Though a late entrant, Club Factory is already a well-known brand and our task was to make it a popular and regular online partner of its patrons and keep them coming back for more. With the inaugural launch communication already out, we are confident of achieving that.”

Club Factory recently announced Bollywood actor Ranveer Singh and Miss World Manushi Chhillar as brand ambassadors. The two together star in a high-decibel brand campaign that has been executed and conceptualised by Publicis Beehive. The film portrays the broad range of products available on the platform and how users can own these trendy and factory priced brands at just the click of a button.

Shyamashree D’Mello, ECD and Head of Creative Services, Publicis Beehive, said, “It was great fun working on the Club Factory launch campaign, as it challenges the notion of fashion being the fiefdom of expensive brands. The bonus was getting the energy of Ranveer Singh and the elegance of Manushi Chhillar, paired together for the first time ever, to do that. The light-hearted reverse snobbery they bring to the fore hits home as it’s all about being trendy and original in style choices, but paying a fair price for it. Fashion pundits be damned!”

The film has been launched on various digital platforms and has been receiving some rave reviews from the viewers. It has already surpassed 24million views on Youtube since it went live a few days ago. The campaign has also been launched across various platforms including television, digital, outdoor and print.

The TVC:



Credits:

Client: Club Factory

Client Team: Aviva Wu

Agency: Publicis Beehive

MD & CCO: Bobby Pawar

MD: Srija Chatterjee

COO: Paritosh Srivastava

Creative Team: Shyamashree D’Mello, Avinash Parab, Savita Nair, Nikhil Warrier, Harish Iyengar, Shreyas Shetty

Account Management: Smita Das, Khushbu Hisaria

Account Planning: Binita Tripathy

Production House: Prodigious

Production Team: Vandana Watsa, Anup Das, Andalib Patel, Sajid Shaikh

Director: Karan Kapadia

Resource: http://bestmediainfo.com/

This Week In Science History: Marie Curie Dies

Tuesday, July 3, 2018


In its obituary for Marie Curie, who died on July 4, 1934, The New York Times wrote: “Few persons contributed more to the general welfare of mankind and to the advancement of science than the modest, self-effacing woman whom the world knew as Madam Curie. Her epoch-making discoveries of polonium and radium, the subsequent honours that were bestowed upon her – she was the only person to receive two Nobel prizes – and the fortunes that could have been hers had she wanted them, did not change her mode of life.

“She remained a worker in the cause of science ... And thus she not only conquered great secrets of science but the hearts of the people the world over.”

Born Maria Sklodowska in Warsaw, Poland, on November 7, 1867, Marie Curie became the first woman to win a Nobel prize and, as The Times noted, at the time she was the only person to win the award twice.

In 1891 she went to Paris and studied at the Sorbonne, where she was recognised in physics and mathematics. She met Pierre Curie, professor in the School of Physics, in 1894 and they were married the following year. She succeeded her husband as head of the physics laboratory at the Sorbonne, gained her Doctor of Science degree in 1903, and following Pierre’s death in 1906 took his place as professor of general physics in the Faculty of Sciences. It was the first time a woman had held the position.

The Curies built upon the work of French physicist Henri Becquerel, who in 1896 had been investigating X-rays, which had been discovered the previous year.

According to Nobelprize.org, “By accident, [Becquerel] discovered that uranium salts spontaneously emit a penetrating radiation that can be registered on a photographic plate. Further studies made it clear that this radiation was something new and not X-ray radiation.”

The Curies took Becquerel’s work a few steps further. Marie was studying uranium rays and found they were not dependent on the uranium's form, but on its atomic structure. Her theory created a new field of study, atomic physics. She coined the phrase "radioactivity”.

Marie and Pierre worked with the mineral pitchblende, a form of the crystalline uranium oxide mineral uraninite, which is about 50 to 80% uranium. Through this research, they discovered the radioactive elements polonium and radium. In 1902 the Curies announced that they had produced a decigram of pure radium, demonstrating its existence as a unique chemical element.

In 1903, Marie and her husband won the Nobel prize in physics for their work on radioactivity. In 1911, Marie won her second Nobel, this time in chemistry.

By the late 1920s her health was beginning to deteriorate. She died from leukaemia, caused by exposure to high-energy radiation from her research. The Curies' eldest daughter Irene was also a scientist, and also won a Nobel prize for chemistry.

German Science Facility Is Very Flash

Thursday, June 28, 2018


One is linear and the other circular, one underground and the other outside, one opened just 12 months ago, the other has been operating for years – but together they comprise one of the world’s largest science facilities. Their names are European XFEL and DESY, and they are located not far from the famous harbour of Hamburg in Germany.

The European XFEL is a collaboration between 11 countries. The acronym stands for X-Ray Free-Electron Laser. It is the world’s largest and most powerful device able to generate ultrashort laser X-ray light flashes.

X-rays are electromagnetic waves, similar to radio waves, microwaves, or visible light, but with a much shorter wavelength.

Conventional optical microscopes cannot see objects smaller than the wavelength of visible light, but X-rays detectors exploit their shorter wavelengths to “see” matter down to an molecular level of detail.

Scientists classify X-rays in two sub-classes: “soft”, which are less energetic and with wavelengths comparable to large molecules, and “hard”, with even shorter wavelengths comparable to small molecules and even atoms.

What are Free-Electron Lasers, or ‘FELs’? In conventional lasers light is emitted by the electrons of excited atoms. Since these electrons are bound to specific levels of atomic energy, this kind of device can produce light only at pre-determined wavelengths. In FELs, instead, light is emitted by electrons that are stripped from their atomic bounds.

The wavelengths at which they can emit are determined by their velocity, so in principle can produce light at any band in the electromagnetic spectrum.

To generate X-ray flashes, bunches of electrons are first accelerated to high energy and then directed through special arrangements of magnets called “undulators.” The accelerated particles emit radiation that is increasingly amplified until an extremely short and intense X-ray flash is finally created. Undulators can be arranged in several ways to generate flashes with different characteristics.

The European XFEL generates its intense X-ray flashes – typically lasting between a few tens and a few hundreds of femtoseconds, or quadrillionths of second – through high-energy electrons from a super-conducting particle accelerator.

The device comprises a tunnel 3.4 kilometres long and was built over the past seven years by a consortium of 17 research institutions. The project was led by scientists at the Deutsches Elektronen-Synchrotron (DESY), which is located at the other end of it.

The accelerator releases up to 27,000 flashes per second, each with a brilliance that is a billion times higher than that of the pulses made by DESY itself, which was considered the best source for X-ray radiation before the development of free-electron lasers.

This is important, because with its extraordinarily bright, highly energetic and extremely intense X-ray flashes, the European XFEL will yield new insights in a wide range of research fields.

For instance, it will enable scientists to take 3D images of nanoparticles, to produce images of viruses and biomolecules at atomic resolution, and investigate how materials behave under the extreme conditions that reign deep within giant gas planets or stars.

The high number of flashes per second will also make it possible to film chemical reactions in super-slow motion.

There are many fields of application, including photonics, biology, energy research, medicine, pharmacology, chemistry and physics, astrophysics, materials science, electronics, nanotechnology, and environmental research into artificial photosynthesis.

The “first lasing”, or the first laser light, was produced at the beginning of May 2017, delivering one X-ray flash per second. The European XFEL started user operations in September the same year, attracting research teams from all over the world.

Microsoft opens “startup for big business” in Denver Tech Center

Thursday, May 3, 2018


Microsoft opened a new tech center Thursday that caters to business professionals, community members and children who want to learn more about technology — and Microsoft’s software and services.

The new Microsoft Technology Center, one of dozens around the globe, moved into space carved out of the company’s existing sales operation in the Denver Tech Center. The center has eight dedicated employees, while Microsoft’s sales group employs about 120 at the same location.

The 10,000-square-foot facility, at 7595 E. Technology Way, was turned into lounge areas and meeting spots plus a small amphitheater. Tracey Kelly, director of MTC Denver, said the space is open to businesses looking for free advice (“Basically, we’re a startup for big business,” she said). It’s even open to business partners who want to have meetings with prospective clients — but they’re not allowed to charge a cent while on the premises, Kelly said.

It’s also a spot where the company hopes to host community events and student programs promoting science, technology, engineering and math or STEM.

“A lot of companies are very far behind the eight ball in technology, they’re almost in Lotus Notes. We help them think about not catching up but leapfrogging,” Kelly said. “… And the second focus is education. If you want to come back next week, we’re going to have DigiCamp with 80 middle school kids. We’re going to get them exposed to VR, AR, data and bots and help them understand what that means because they’re our future.”

Dark matter isn’t interacting with itself after all

Thursday, April 5, 2018


Dark matter is still the shyest particle in physics. New observations show that dark matter in galaxy cluster Abell 3827 stubbornly ignores all other kinds of matter — including itself, astronomers reported April 6 at the European Week of Astronomy and Space Science in Liverpool, England.

The research, also posted online at arXiv.org, negates an earlier finding that stars were separated from their dark matter in Abell 3827, a cluster including four colliding galaxies about 1.3 billion light-years from Earth (SN: 5/16/15, p. 10). At the time, cosmologist Richard Massey and colleagues suggested the dark matter may have lagged behind its galaxy because it was interacting with another clump of dark matter — something dark matter is not supposed to do, according to standard theory. Dark matter, which makes up most of the mass of the universe, is only known to interact with ordinary, visible matter via gravity.

But more recent observations made with the Atacama Large Millimeter Array in Chile show that the dark matter was actually behaving exactly as expected.

“We looked for longer and found the dark matter was hiding just where it ought to be,” says Massey, of Durham University in England. “It’s a sort of eating humble pie on some level.”

It’s still possible that other galaxy clusters will reveal lagging clouds of dark matter, Massey says. His team has designed a balloon-borne telescope called SuperBIT, which they hope to use to check hundreds of galaxy clusters for misbehaving dark matter.

“We just know embarrassingly little about it,” says Massey. “We keep trying to take a step forward, and find ourselves going back to the beginning.”

12 Startups Utilizing Blockchain Technology in New Ways

Friday, March 16, 2018


Cryptocurrency created quite the buzz this past year. Although the technology has been around for a few years, 2017 was the year it really took off. Bitcoin, the first application of cryptocurrency technology, hit $20,000 a coin, while coins like Ethereum also saw their prices increase. However, the technology behind these tokens, blockchain, has far more applications than just cryptocurrencies.

Through a network of smart contracts that operate utilizing decentralized information on a ledger, blockchain is able to provide unmatched security and speed for data transfers. This means that blockchain technology has an application in nearly every industry where value is exchanged.

For this reason, many startups have started to explore how this technology can change the way the world works. Here are twelve of those startups, each of which are utilizing blockchain technology in new ways.

1. Fr8
Fr8's blockchain network facilitates the digitization of record-keeping related to the trade of assets, even in scenarios where intermediaries and brokers are incentivized to resist change. Last year, trucks drove 29 billion empty miles in the U.S. alone. By applying blockchain, Fr8 helps to streamline and organize the industry in a trustworthy manner.

2. IOST
The internet of Services (IOST) is a new cryptocurrency that is attempting to solve scalability problems. A technological descendant of Ethereum, IOST is a blockchain with the purpose of serving as infrastructure for developers to create decentralized applications. Building on top of a blockchain allows businesses to cut out intermediaries, and also gives them peace of mind in terms of data safety, as blockchain networks are notoriously secure.

3. ImpactPPA
ImpactPPA is creating the SmartPPA (PPA stands for power purchase agreement), a platform that connects the blockchain community with environmentally concerned and socially impactful projects that fuel the development of sustainable solutions. The platform is designed to manage renewable energy resources from generation to distribution to payment. Its aim is solving the globe's most pressing environmental and humanitarian issues.

4. ShipChain
ShipChain is a freight and logistics platform built on blockchain. The platform focuses on an end-to-end track and trace, which allows for unification across the entire supply chain, among all carriers. ShipChain is member of the Enterprise Ethereum Alliance (EEA) alongside Microsoft, and the Blockchain in Transport Alliance (BiTA), alongside UPS and DHL. The company recently announced a pilot program with Perdue Farms.

5. Nano Vision
Nano Vision is empowering global citizens to step up and lend their efforts to furthering disease-prevention research and development. Through blockchain's inherently decentralized solution, anyone, whether they are scientists, doctors or simply engaged civilians, will have access to the data that has been collected and the research that has been recorded on Nano Vision's platform. The initiative anticipates that this will fuel new steps in the research process, thus sparking faster innovation.

6. Inveniam
Inveniam is the first organization to successfully structure and tokenize a debt instrument that is capable of being listed on a public market. Equipped with a working product, Inveniam uses Decentralized Ledger Technology (DLT) and "regulated" contracts and tokens to transform structuring, clearing, custody and settlement of fixed-income instruments. This "regulated" token acts as the passkey for all of the underlying documentation associated with the debt, which trades with the token for the life of the instrument.

7. BuzzShow
BuzzShow is a platform that incorporates proof of contribution to reward online video users. It focuses on creating a decentralized social video ecosystem with a full economic cycle and rewards for creating, curating, viewing and sharing videos. Users retain full privacy and control over their video within the social media space. The platform currently has over 15,000 users.

8. Patron
Patron is a global influencer marketing platform built with blockchain technology. Started by Atsushi Hisatsumi, a Japanese influencer and entrepreneur, the company seeks to connect global influencers with brands in a secure and transparent ecosystem. Benefits of the platform include the elimination of most common intermediary fees, incentivization and voting using tokens to match parties. The company has raised over $10 million to date.

9. Photochain
Photochain is a decentralized stock photography platform built on the blockchain. Using the Photochain marketplace, photographers can retain up to 95 percent of their potential earnings, while ensuring all copyrights and protections are in place using the company's Digital Copyright Chain (DCC) solution. The marketplace will also connect buyers for a fair and seamless experience, eliminating most of the fees and copyright problems currently found in the stock photography market.

10. ODEM
ODEM is the world's first decentralized on-demand education marketplace. Using the power of blockchain technology and its smart contract-based payment platform, ODEM will enable students and professors to interact directly and participate in the exchange of education and learning, without the involvement of intermediaries. This means greater access to quality education at a lower cost, helping bridge the educational gap for millions of students globally.

11. MEvU
MEvU is a decentralized P2P (peer-to-peer) betting application that allows people to bet on anything, at any time and against anyone. MEvU uses smart contracts on the Ethereum blockchain to store players' funds and information, providing players with confidence that their wagers will be executed securely and quickly. The goal is to reduce black market gaming, while promoting fun and transparent gaming between parties.

12. Boon Tech
Boon Tech is an artificial intelligence-powered micro-job platform on blockchain. With a technology developed to eliminate cryptocurrency volatility in their platform, Boon Tech has the potential to revolutionize the freelance economy. As an IBM business partner, Boon Tech uses IBM's Watson AI algorithms in its ranking and review systems available on the platform.

Latin American Women Win Top Science Award

Sunday, February 25, 2018


Ecuador's Silvia Gonzalez and Guyana's Dawn Iona Fox have been awarded the Elsevier Awards for early-career female scientists in the developing world for their contributions in the field of chemistry.

Other awardees in the 2018 edition of the annual Elsevier Award were Hasibun Naher (Bangladesh), Germanie Djuidje (Cameroon), and Witri Wahyu (Indonesia).

Nominations are accepted from early career scientists (within ten years of graduating with a Ph.D. degree) from the 81 countries with low scientific output as defined by the World Academy of Science and reviewed by the president of the Organization for Women in Science for the Developing World. 

The winners receive each a cash award of US$5,000 and all-expenses-paid attendance at the Annual Meeting of the American Association for the Advancement of Science.

Silvia Gonzalez was recognized for her achievements in molecular modelling of new sustainable materials, Hasibun Naher for her work on computer simulation of tsunamis, Djuidje Kenmoe for the study of molecular friction-and-wear to improve energy efficiency, Wahyu for her research on the synthesis of metal-organic frameworks for various applications in medicine or environmental protection, and Fox for her work on converting waste into materials with added value.

This year’s awardees, who also mentor young scientists in their countries and improve the lives and livelihoods of their communities, were honored in a ceremony on Feb. 17.

The award seeks to encourage women scientists in, particularly challenging conditions.

According to 2015 report compiled by UNESCO and reported on by SciDev: "women in much of the world face social, political and economic barriers to dedicating their working life to science — but those who live in developing countries can face additional, different obstacles.#

They explained women “face social, political and economic barriers to dedicating their working life to science... but those who live in developing countries can face additional, different obstacles,” such as poverty and cultural barriers.

According to the UNESCO, poverty plays an important role in keeping girls out of school because families opt for sending their sons to school and keep their girls at home.

OWSD president, Jennifer Thomson, said the women, who received this year´s award, “show that, if they have the opportunities and support, women in the developing world can become leaders in their fields.”

Essential Phone Price Just Dropped Again

Thursday, January 25, 2018


Over at Amazon the price of the Essential Phone PH-1 just dropped once again. While the original price of the Essential Phone was a whopping $700 USD, the device now costs closer to $435 – with free shipping, to boot. This is not the first time the price of this device has dropped – the company’s experienced some early roadblocks on their way to any sort of major unit sales of this device. The fact that this device is on even FURTHER sale now suggests that we may well be headed toward a second gen device that’s sold by Essential completely on its own.

When I reviewed the Essential Phone PH-1, I suggested that the original price was not correct for the phone. I also said that the reduced price – closer to $500 – was far better. Users able to attain this device for $435 are getting a gosh-darned bargain if I do say so myself. That’s a judgement of mine, mind you, not necessarily of every writer here at SlashGear.

The device suffers from some less-than-even public image problems, not least of all because no two technology publications can agree completely on what they see in Essential’s future. The phone here, as it stands today, is a highly decent piece of hardware. The company that sells it will need to become a bit more seasoned before they’re in a position to out-sell the bigger brands in mobile device manufacturing.

The Essential Phone you see here on Amazon is unlocked and comes in white. Users will have a cool 128GB of internal storage available, and they’ll have options to use most any carrier they like. That includes AT&T, T-Mobile, Verizon, and others. Check with your carrier before buying the phone – but chances are good you’ll be ready to roll if you’ve already got a SIM card in the phone you’re currently using.

OF NOTE: The link above is NOT an affiliate link, and SlashGear does not earn cash for clicks or sales or anything such as that. This article should serve as another traffic sign on the road Essential is traveling into the future. Expect this article to pop up on timelines aplenty well into the future.

Open Accessibility To The Internet Vital To Development Of Technology

Friday, January 12, 2018


This week, tens of thousands of innovators, engineers, policymakers, and thought leaders from around the globe have descended on Las Vegas to meet at CES and share what is new and next in our digital world.

It’s an exciting gathering at an important time. That’s because the future is coming at us faster than ever. Smart transportation systems, including connected vehicles, are poised to change how we drive, reducing traffic congestion and accidents. Drones that deliver medical equipment can change how we respond to emergencies. The ability to send photos and videos directly from devices to first responders can radically improve public safety response.

But with these incredible new innovations and opportunities, new challenges also arise — from supporting cybersecurity to ensuring that gatekeepers don’t get in the way of our internet experience. It’s critical to ask questions now, at the get-go, so that the opportunities stemming from these new technologies are as inclusive as possible — and can improve the lives of everyone. In that spirit, here are a few questions we hope spark conversation during this time in Las Vegas and beyond:

How do we ensure an internet that is open to future innovation?

We believe that it is vital to protect our freedom online to go where we want and do what we want without our broadband provider getting in the way.

However, just a few weeks ago the FCC rolled back its net neutrality rules. As a result, our broadband providers now have the legal right to block content, throttle speeds and engage in pay-for-play prioritization deals that can change our experience online.

This is troubling. Because while we don’t know what the next game-changing inventions will be, you can bet they involve the internet. It’s important to ensure that connecting to our online world remains open and fair to everyone who creates and consumes online. The fight for this openness is not over. Expect action in court and in Congress. We will not give up — and we hope you won’t, either.

How do we increase diversity in science, technology, engineering and math?

Right now, women hold almost half of the jobs in our economy, but only 24 percent of the jobs in STEM fields. This math needs to change. Because STEM jobs are growing at six times the rate of other occupations and STEM workers earn 29 percent more than their non-STEM counterparts, the diversity of these new opportunities should reflect the full diversity of our country.

It’s time to use clubs, classes and apprenticeships to build a more diverse STEM pipeline. It’s also important to support legislative efforts with an eye to the same — like the Code Like a Girl Act.

Plus, we can take note of initiatives like the one at UNR, where an effort is underway to increase the participation of low-income first-generation students from underrepresented communities to pursue careers in the life sciences.

How do we guarantee a fair shot at digital age success for every American, including the next generation?

Already, there is no part of our lives that are untouched by the internet. Everything from starting a business to applying for jobs to doing homework now requires online access. But it’s especially cruel that 12 million kids nationwide are regularly assigned homework that requires internet access but they lack broadband at home.

This is known as the Homework Gap. Too many of our students are falling into this gap and at a moment when digital skills are essential for future success find themselves consigned to the wrong side of the digital divide. It’s a problem that our communities, states and nation need to fix. If we do, the next generation of digital creators coming to Las Vegas to gather will be even bolder and bigger than the community gathering here this week.

These questions may not have easy answers. But it’s time to get going and resolve them.

Because if we get them right, the digital future will be more powerful, more potent, more exciting and more beneficial — for all of us. And we think that’s a future worth fighting for.

Big Tech Makes Vast Gains At Our Expense

Monday, September 18, 2017


Pressure has been growing in the past few weeks for politicians and regulators to clamp down on the monopoly power of Big Tech. In a speech given in Washington DC on September 12, Maureen Ohlhausen, the acting chair of the Federal Trade Commission in the US, tried to pour cold water on the idea. “Given the clear consumer benefits of technology-driven innovation,” she said. “I am concerned about the push to adopt an approach that will disregard consumer benefits in the pursuit of other, perhaps even conflicting, goals.”

Her words echo US antitrust policy of the past 40 years: if companies bring down prices for consumers, they can be as big and as powerful, economically and politically, as they want to be. This hugely favours companies such as Google, Facebook and Amazon, which offer up services and products, from search results to self-publishing platforms, that are not just cheap, but free.

Yet Ms Ohlhausen is overlooking a key point: free is not free when you consider that we are not paying for these services in dollars, but in data, including everything from our credit card numbers to shopping records, to political choices and medical histories. How valuable is that personal data?

It is a question of growing interest to everyone from economists to artists. For example, at Datenmarkt, an art installation cum grocery store set up in Hamburg in 2014, a can of fruit sold for five Facebook photos; a pack of toast for eight “likes” and so on.

The bottom line is that it is almost impossible to put an exact price on personal data, in part because people have widely varying behaviours and ideas about how likely they are to part with it, depending on how offers are posed. In one recent study, when consumers were asked straight out whether they would consent to being tracked by a brand name digital media firm in exchange for being targeted with more “useful” advertising, four-fifths said no. Yet another study published this year by researchers from Massachusetts Institute of Technology and Stanford University shows how pathetically little incentive is required to convince people to give up their entire email contact list. Students in the study were far more likely to do it if offered a free pizza.

One might argue that this is simply the market working as it should. Consumers were given a choice, and they made it. And whether or not it was a bad one is not for us to judge.

But as the latter study also showed, companies can nudge users to part with data more freely by telling them it will be protected by technology designed to “keep the prying eyes of everyone from governments to internet service providers . . . from seeing the content of messages”. In fact, the encryption technology in question could not guarantee this.

The bottom line is that big data tilts the playing field decisively in favour of the largest digital players themselves. They can extract information and plant suggestions there that will lead us to entirely different decisions, which results in ever more profit for them.

Not only is that too much power for any one company to have, it is anti-competitive and market-distorting in the sense that the basic rules of capitalism as we know it are being overturned. There is no equal access to market information in this scenario. There is certainly no price transparency.

The personal data we give away so freely are being lavishly monetised by the richest companies on the planet (Facebook’s second-quarter operating margin, for example, was 47.2 per cent). They get their raw material (our data) more or less for free, then charge retailers and advertisers for it, who then pass those costs on to us in one form or another — a dollar more for that glass of wine at the bistro you found via a search, say. They have a licence to print money, without many of the restrictions, in terms of all sorts of corporate liability, that other industries have to grapple with.

These companies are not so much innovators as “attention merchants”, to borrow a phrase from Columbia University law school professor Tim Wu. Economists have yet to put good figures on their net effect on productivity and gross domestic product growth. Surely it is high. Yet any tally would also have to include the competition costs as these firms devour competitors and reshape the 21st-century economy to suit themselves.

Whatever the FTC might say now, there are a growing number of legal cases that could change the ground rules for Big Tech. While American antitrust law has been based on very literal interpretations of the 1890 Sherman Act, lawmakers in Europe take a broader approach. They are trying to gauge how multiple players in the economic ecosystem are being affected by the digital giants.

I am beginning to wonder if we should not all have a more explicit right not only to control how our data are used, but to any economic value created from them. When wealth lives mainly in intellectual property, it is hard to imagine how else the maths will work. We are living in a brave new world, with an entirely new currency. It will require creative thinking — economically, legally and politically — to ensure it does not become a winner-takes-all society.

Space Weather May Be Killing Sperm Whales

Wednesday, September 6, 2017


The same phenomenon that creates the Northern Lights might also be confusing male sperm whales. In case you’ve forgotten already (really, how could you?), early 2016 brought a veritable tidal wave of beached spermaceti in the North Sea. No one could figure out why at the time, but thanks to a study in the International Journal of Astrobiology, we now have a working hypothesis: it was those gosh darned solar storms at it again.

So...what’s a solar storm?

Charged particles from the Sun are constantly flying towards the Earth and getting all mixed up in our magnetosphere, which is the magnetic field surrounding our planet. They mostly impact at the poles, where the magnetosphere has its poles and is therefore most susceptible to disruption. The collisions between particles give us an aurora (a.k.a. The Northern Lights). Sometimes the Sun spews more particles than normal during what’s called a coronal mass ejection, and when that cloud hits us, it creates a solar storm. They don’t just happen at the poles, though they are more frequent in those areas. And they happen on other planets, too.

What does this have to do with whales?

Solar storms can knock out systems that rely on the magnetic field, like GPS units and electricity grids. They can also knock out birds. Not literally—the birds stay airborne. But because some of our avian friends navigate using the Earth’s magnetic field, the disruptions caused by solar storms can pull them off-course.
Whales are similar to birds, at least in this respect. The going theory is that some species use the magnetosphere to navigate over long distances in much the same way that migrating avians do, since whales also travel quite far on a regular basis. It’s not the only way they navigate. Sperm whales use a lot of echolocation both to find their prey and to, you know, not crash into things.

Disruptions in the magnetosphere mess with that navigation system. Migratory birds seem to change altitudes in magnetically abnormal areas, and homing pigeons have more trouble finding their way. If whales use the same kind of internal navigation, they too might be running off course.

Sperm whales especially are used to quiet magnetic fields, because they live in warmer waters where the magnetosphere is calmer. The females and calves tend to stay in those climes, but young males leave their families to form bachelor pods. They travel north together, many of them bound for the Norwegian sea, where there are squids a-plenty—a delicacy in sperm whale cuisine. That area, along with the North sea, is far shallower than their normal feeding grounds, and dotted with many more land masses. It’s possible that if their internal navigation is out of whack, they could get disoriented and accidentally swim towards a shore. This wouldn’t be a problem in the open ocean, but in coastal regions it spells a beaching.

Do we know that this is how those sperm whales died?

Unfortunately, we don’t. These researchers have identified two solar storms that would align well, timing-wise, with the mass beachings we saw in 2016. But they couldn’t say for sure that this was the cause. Whale autopsies showed that the spermaceti were perfectly healthy and had recently been chowing on some squid, which implies that they were traveling south from their annual feeding fest when they got lost. Beyond that, we may never know for sure what happened.

It’s worth noting that past studies have found an association between solar storms and whale beachings, so this theory isn’t totally out of the blue.

It’s also worth noting, just as a fun fact, that sperm whales aren’t so-named because of their resemblance with sperm (though honestly, there is one). Back when the oil industry was pretty much just whaling, sailors would go out in search of sperm whales to gather the waxy oil that they store in their giant, square heads. The whales themselves seem to use their spermaceti oil to create loud clicks for use in echolocation and communication. Humans liked it because the purified oil could be burned and stayed liquid even in very cold weather. So sailors would kill a sperm whale, hack off its head, and pull it on board. There they would crack open the head to reveal the spermaceti, which with its whitish hue and semi-liquid appearance, looked to seamen like semen. So they called it spermaceti: “sperma” meaning semen in Latin, and “ceti” meaning whale. Why the sailors thought a whale’s semen was stored in its head is still a mystery.

The Lifeline For The Socially Isolated

Tuesday, September 5, 2017


With every week that passes I grow increasingly upset with the world, so trying to change it for the better simply makes sense. The idea of somebody suffering in solitude, lacking meaningful connections in their life, is something I cannot abide. People need to be social. We are fundamentally dependent on others, and social interaction should not be reserved for those that fit perfectly into the ‘norm’.

Whether it’s a day out enjoying nature with friends, a trip to the cinema to see the latest blockbuster, or dining out with family, there are many ways in which we interact socially with others. Though the unfortunate truth is, whether due to long-term illness or other factors, not everyone has the capability or opportunity to foster these connections, which can be extremely damaging to their social development. Technology can change this.

Social connectedness is a known protector against loneliness, and technology can play a key role in addressing this by enabling people to stay connected and empowered. The advance in technology is often blamed for the decline in real, face-to-face socialising, but for those unable to, these platforms can offer a much needed lifeline.

While the development of social networks, such as Facebook, Whatsapp and Instagram, have completely changed the ways in which we communicate and allow us to maintain more relationships than ever, it is argued that this form of communication is less meaningful, and lacks the genuine intimacy humans crave. However,  John Cacioppo, the world’s leading expert on loneliness, suggests that although online contact can sometimes increase loneliness, these sites can be valuable tools if they are used to develop offline social connections:

“If you use Facebook to increase face-to-face contact, it increases social capital.”

It may be unhealthy to turn to social media as a substitute for actual encounters, but if internet sites are used to organise a football game, a community meet up, or a conversation, they can be a healthy way to maintain and build social ties. For those with long-term illness, technology can offer a vital solution to isolation by overcoming barriers to social connection.

For children and adolescents who are unable to physically engage with their peers, be it at school or during extracurricular activities, technology can help to advance both their social and educational development by allowing them to maintain a presence even when absent. We started working within this market before we had any idea exactly what product we were going to create. The hospitals, schools, parents, and children told us first-hand that this was the main challenge they faced, and we thought of a way of solving this problem.

The technology to tackle social isolation, and enable educational and social development, has always been there - someone simply needed to utilise it. Personally, I couldn’t understand why something like No Isolation’s AV1, a telepresence robot to help children with long-term illness, wasn’t on the market already. Sadly, there are a lot of engineers who don’t want to make something useful, they want to make something cool, but the tech that really helps people is the most practical, and is therefore without doubt the most essential.

Why Technology Could Be The Answer To Solving Dyslexia

Sunday, September 3, 2017


Do you know somebody who suffers from dyslexia? Is this something you have overcome in the past? Are you interested in learning more about the developments (such as the use of technology) in treating this serious learning problem?

Many people are unfamiliar with the fact that there are approximately 40 million American adults with dyslexia. That’s a big number that shows just how serious this problem truly is.

Adding to the above, here are three more statistics that are sure to surprise you (courtesy of the Dyslexia Center of Utah):

70 to 80 percent of people who have poor reading skills are likely to be dyslexic
Dyslexia is the most common language based learning disability
30 percent of children with dyslexia also have at least a mild form of ADHD

Now that you understand just how big of a problem this is – both for adults and children – it’s time to answer an important question: What’s the best way to treat dyslexia?

For many years, the same methods of treatment have been in play. While a traditional approach can generate results, many people are turning their attention to advanced technology. They have come to find that there are many types of technology that can treat dyslexia, as well as a variety of other learning disabilities.

Since no two people are the same, there is no way of knowing what treatment will work best. This is why it’s so important for anyone dealing with this problem to learn more about their options.

Here are a few of the many types of technology that could be the answer to dyslexia:

Technology that teaches people to read and write

Learning to read is easier said than done. Speechify has a variety of tools that make it easier for people to not only learn how to read, but to become proficient in a reasonable period of time.

For example, you gain full control over your readings when using this tool. Here’s what the company has to say about this:

“Pause, skip, or change the speed anytime you want. Have full control over your readings.”

It’s this type of control that makes it easier to learn, as you don’t have to adhere to strict guidelines that may not work for you.

Cliff Weitzman is the mastermind behind Speechify AI technology. As a Forbes 30 Under 30 winner, it’s easy to be confident that his technology is on the right track to treating people who suffer from dyslexia (and other learning disabilities).

Sound literacy

The Sound Literacy App continues to grow in popularity, thanks to its approach to helping students learn how to read.

The nice thing about this app is that it was developed by a teacher. This goes a long way in ensuring that it translates seamlessly into the classroom.

While this app may not be the most advanced technology available, it has a long list of features that can help people with dyslexia learn in a more efficient manner. From learning sounds to processing words, it’s a tool that many parents, students, teachers, and tutors are using to their advantage.

Student learning

There is more to Nessy than a cool name. The technology is defined by the company as follows:

“Nessy programs are designed to help students of all abilities learn to read, write & spell, especially those who learn differently.”

Just because someone is dyslexic doesn’t mean there is something wrong with them. It simply means that they need to learn in a different way.

The Nessy Dyslexia PD training program is designed for teachers and tutors. This goes a long way in helping them better understand dyslexia, including how to pinpoint this problem and the best way to teach students who are struggling with this disability.

Conclusion

In the years to come, technology will remain a big part of conquering the problem of dyslexia.

While there is no cure for this learning disability, it’s possible for anyone with dyslexia to get past this problem as to lead a better life in the future.

What are your thoughts on this technology? Do you believe that advanced technology could be the answer to treating dyslexia in the most efficient and effective manner? Share your personal experiences and thoughts in the comment section below.

The Art Of Using Technology To Build Better Golf Courses

Friday, September 1, 2017


Veteran golf course architect Paul Albanese is walking the grounds at his upcoming Sage Run Golf Club in Hannahville, Mich. It’s a cool, rainy late August morning in the Upper Peninsula, so the 50-ish Ivy Leaguer is decked out in work boots, khakis and a light jacket. Part of the Island Resort & Casino, Sage Run will officially open for play next June and is located four miles from the hotel and its nine-year-old, highly acclaimed Sweetgrass Golf Club that Albanese also designed. “These are two of my babies,” he says. “But they’re entirely different golf experiences. I liken them to a red wine and a white wine.” As he should. Because so much time has passed between the design process of each course, the technology Albanese used for each job has drastically changed. How so?

How does GPS help you get a better design?

PA: Design is all about tweaking an iteration and making changes. In the old days when we had to stake things out with tape measures and wheels, it would take a long time to make a change and see how it looked on paper -- in comparison to what you just staked in the field. With GPS now, I literally can tap my phone and say 'this is where I'm at, this is where I think the 8th tee should be' and I can text it to my associate in the office who makes the change in real time and texts me back an image of what the hole would look like. It's instantaneous feedback using GPS, and the time saved in not only initially staking out the course but being able to make changes and adjustments using GPS versus stakes is an incredible advantage to creating a better golf course. Staking out 18 holes by hand would take two-to-three days, and in some cases longer if it was wooded and we had to get the stakes through woods. By comparison, we were able to stake out the upcoming Sage Run in half a day.

Do you factor in the sun?

Software lets us analyze whether holes will have the sun in your face or not. It maps out from from space where the sun will be at any time of the year and day. My associates and I map the points and say here's where we want the 9th hole, and then map out the sun path that shows us where it will be in relation to that tee shot for every day of the year. So we can tell early spring if golfers might have the sun in their eyes on the final hole, for example. We’re able to analyze exactly what golf architects have been trying to do for years, and we used to do it in a more general way. A general rule of thumb some 20 years ago or even 10 years ago was don't tee off into the east and don't finish into the west.

But using technology, we're now able to tweak that and know what is east exactly. Can it be 20 degrees north of east, if the hole is 23 degrees south of east? There's all this different tweaking we can do, to know if a golfer's gonna be heading into the sun or not, and whether it would actually preclude you from making a good golf hole there. And in fact, that's what we did at Sage Run here. We originally and cautiously had a hole finishing to the west. But after doing sun analysis, we realized that although it was west, it was slightly southwest, and that for the majority of the summer the sun was going to be southeast. So golfers won’t be hitting into the sun like we assumed they would. That actually turns out to be our final hole now, and is a much better hole. Without that technology, we may have not finished and designed this course the way we did, which I think is a superior way to do it.

Is There Value in Tech Funds? Yes and No

Saturday, August 19, 2017


This time is different—the four most sinister words on Wall Street, often uttered at a bubble’s peak. But if you talk with tech fund managers today, that’s exactly what they’ll tell you, despite record-breaking levels in the tech-laden Nasdaq index. The surprising thing is they may be right— at least partially.

Rahul Narang has every reason to be skeptical. He was a short seller betting against technology stocks in the 1990s dot-com bubble before he became manager of the Columbia Global Technology Growth fund in 2012. But he sees distinct differences between now and then. “The forward price/earnings ratio for the average tech stock is 19 today versus the S&P 500’s 17.7,” he says. “This compares to a 53.5 average P/E for tech in March 2000. So valuations are significantly cheaper versus the bubble.”

While tech is trading at a premium to other sectors, historically it always has, and right now the valuation spread is among the narrowest in the past 30 years, Narang says. At the end of June, the P/E spread between the average tech stock in the Standard & Poor’s 500 and the rest of the key index was 1.03 times; in 2000, it exceeded two times.

Of course, Apple (ticker: AAPL), which accounts for 15% of the S&P 500’s tech weighting, has a disproportionate influence on the valuation. And “Apple, by far, is one of the cheapest stocks out there,” Narang says. “Our analysts have a base case target valuation of 15 times [fiscal 2018’s] earnings, which gets you to $184 a share. That’s just the base case, and it’s still trading at a discount to that [at a recent price of $161] and the overall market. Then you add in the about $50 per share of cash on its balance sheet, and that it’s paying a dividend, and it squarely fits in the value camp.”

THE PROBLEM WITH APPLE is the law of large numbers. It’s an $825 billion behemoth. “A lot of large-cap tech companies have seen their valuation multiples compress because their growth is stagnating,” says Ken Allen, manager of the T. Rowe Price Science and Technology fund. “Apple is so massive now, it’s hard to grow very much. So it’s valuation multiple has come down. IBM’s [IBM] multiple has stagnated, as have [those of] Hewlett Packard Enterprise [HPE] and HP Inc. [HPQ]. There tend to be reasons for many of these stocks seeing multiple compression, and many of these companies are fairly large.”

That compression among the old-school technology giants, Allen argues, is masking the fact that other tech companies have become expensive. “As I look across the various tech stocks, many of them have much higher valuation multiples, versus where they were a year ago,” he says.

Yet Amazon.com (AMZN), which has a 246 trailing P/E, according to Morningstar, is Allen’s largest holding. Allen and Narang, who also owns Amazon, make the case that it’s investing heavily in growing its business, so its earnings are artificially depressed.

“If you start using traditional valuation metrics, you’ll miss the growth opportunity,” Narang maintains. “So what we try to do is spend a lot of time thinking about total addressable market, or TAM. If you think about Amazon, seven years ago it was valued as a traditional retailer. But they caught the cloud-computing opportunity, and they had a seven-year lead in that space, which is unheard of in the technology industry. For the cloud business, the TAM is very big—hundreds of billions of dollars.” Morgan Stanley recently pegged the TAM for cloud computing at $340 billion by 2020.

In addition, the model for how technology is purchased and consumed has changed, perhaps justifying higher valuations for players such as Amazon, Netflix (NFLX, 207 trailing P/E) and Salesforce.com (CRM, 486 P/E). “The big drivers of tech back in the 1990s were more hardware companies like Intel [INTC] and Dell,” says Michael Lippert, manager of the Baron Opportunity fund, which has 58% of its portfolio in tech. “Most of the revenues for hardware were one-time revenues. The company that sold you that product never really saw or heard from you again. They didn’t have a continuing relationship with you.”

TODAY, MANY TECH PRODUCTS are subscription-based, and companies have interactive relationships with consumers. Netflix, for example, knows what you like to watch and gives you recommendations, as does Amazon Prime. Both keep you on the hook indefinitely. “Because of that dynamic, you have much more visibility on the revenue and earnings stream, and you have much stickier businesses,” Lippert observes. This merits higher valuations, he argues.

Traditional value managers don’t buy this argument, yet they’re still investing in tech. “Who’s to say Amazon’s unbeatable?” asks Stephen Yacktman, co-manager of the AMG Yacktman Focused fund, which has a surprising 25% tech weighting for a value fund. “You would have said that about Wal-Mart Stores [WMT] 20 years ago. Technology changes so rapidly it’s hard to stay on top.” Instead, Yacktman owns old-school names, such as Cisco Systems (CSCO), Oracle (ORCL), and Samsung Electronics (005930.Korea). “We own the companies that were popular in 1999,” he says. “But if you talked to us then, we’d have said we’d never own tech.”

UWC Scientist Takes Science and Technology to The Township

Thursday, August 10, 2017


Cape Town - After completing her science degree, Dr Fanelwa Ngece-Ajayi is using her expertise to highlight the importance of science and technology in Khayelitsha - her home suburb.
Ngece-Ajayi supported her domestic worker mother financially by braiding hair on weekends, so she could make it through school.

Now the physical chemistry senior lecturer at UWC has established a non-profit organisation, AmaQawe ngeMfundo, in the hope of changing negative stereotypes about townships - starting in schools and instilling confidence in pupils to study maths and science.

“We visit schools with our makeshift mobile laboratory and give learners access to interactive demonstrations and experiments to help make learning more practical," Ngece-Ajayi said.

"Then there are times we take them on outings - to the Science Centre, for instance. One of the learners inspired by that trip would like to become a forensic biologist.”

Ngece-Ajayi said her organisation was currently limited to Khayelitsha, due to a lack of funding and resources.

“In future, I’m excited about seeing these youngsters interested in solving the current water crisis, as well as finding solutions to the health issues in South Africa.

"I want them to see that it is possible to be part of this country’s teams leading projects of this magnitude.

"Lecturing at UWC showed me that students from the townships and rural-based schools struggle financially, and sometimes quit their studies due to a lack of a proper foundation in science and a lack of exposure in the field, and I’d like to change that.”

Ngece-Ajayi said she was able to stop work and focus on her studies after getting a government bursary.

“The most disheartening thing is to see bright kids from my area pass matric and sit at home aimlessly.

"It makes a difference, going out to communities which don’t have wifi access, and teaching them how to go about doing an online application. When you’re there in the community, it makes it easier for learners to run back home quickly to get the necessary documents, instead of travelling.

"I’m doing what I would have liked done for me.”

Meanwhile pupils from around Khayelitsha have been treated to a “science feast” at the National Science Week, being held at the Oliver Tambo Community Hall.

The annual event will come to an end Saturday.

Dr Rejoyce Molefe-Gavhi, the Project Leader of the AIMS South Africa, that was part of the event said it is important to inspire pupils to take part in the fields of Maths, Science, Technology and Engineering.

“With pupils from areas like Khayelitsha you find that they have no role models in the community and there is also a lack of resources and you find that they don’t take it further. It is important to have resources they can have more interest. We want them to have the experience of doing the experiments.”

Anthrax’s cousin wreaks havoc in the rainforest

Thursday, August 3, 2017


In 2001, while studying chimpanzees in the Taï National Park in Ivory Coast as a Ph.D. student, Fabian Leendertz watched an alpha male named Leo vomit, climb up on a low branch, then topple over and die. That death and five others in the following months were the first inklings that an unexpected killer was afoot in the rainforest.

Five years later, Leendertz and his team at the Robert Koch Institute in Berlin showed that what killed the chimps was an unusual form of anthrax. Now, in a Nature paper, they present evidence that the microbe causing it, Bacillus cereus, plays a huge role in the ecology of the rainforest, apparently causing a large proportion of all mammalian deaths. It threatens to wipe out the chimpanzees in Taï, the authors warn.

“This needs to be taken seriously,” says Chris Whittier, a veterinary scientist at Tufts University Cummings School of Veterinary Medicine in Grafton, Massachusetts, who was not involved in the work. “I hope this opens up a lot of people’s eyes.” Hunting and deforestation have already brought chimpanzees to the brink of extinction, but “diseases such as anthrax, Ebola, or introduced human respiratory viruses may serve as the final nail in their coffin,” says disease ecologist Tom Gillespie of Emory University in Atlanta.

Back in 2001, Leendertz and his colleagues thought the chimps had died of the familiar form of anthrax, caused by B. anthracis. But that is known to kill many wild animals in arid regions, not rainforests, and in 2010 the researchers linked the deaths to the closely related B. cereus, a common and usually benign soil microbe. (Some strains do cause diarrhea and vomiting in humans.) They also discovered that the Taï strain has acquired two plasmids, or circles of DNA, possibly from B. anthracis, encoding most of the genes that make anthrax a formidable killer.

Leendertz and his team examined samples from bones and carcasses from at least 20 different species, collected in the forest over almost 26 years. They detected the pathogen in 81 of 204 carcasses and 26 of 75 bones. In addition to chimps, six monkey species, duikers, mongooses, and a porcupine died of the disease; overall, it appeared to be responsible for about 40% of observed wildlife deaths. The killer strain is not limited to the Taï forest; Leendertz and others have linked wildlife deaths to B. cereus in Cameroon, the Central African Republic, and the Democratic Republic of the Congo.

Still, Leendertz’s team could only thoroughly examine 15 of the infected carcasses. All showed signs typical of a lethal anthrax infection, such as bleeding and swollen lymph nodes, but in other cases, the only evidence is genetic, meaning that the animals may have carried B. cereus but died of something else, Gillespie notes.

Computer simulations by the team showed that anthrax could wipe out the Taï forest’s population of roughly 400 chimps within the next 150 years. Why it hasn’t already done so is a puzzle, because the wide genetic variation found in bacterial samples from the forest suggests that B. cereus has long been present there. But Leendertz says chimps migrating in from other areas may have made up for past die-offs. With populations dwindling elsewhere, that may not happen in the future.

Protecting the chimpanzees will be difficult. The standard anthrax vaccine also protects against B. cereus; the team vaccinated about 100 animals in 2012 and 2013 and is now monitoring them. But researchers can only reach the few animals that have been habituated to humans. And protection may only last a year, so the chimps would require regular shots. “Vaccinating them too often is a problem since they get shy,” Leendertz says.

A better understanding of how B. cereus spreads might help efforts to fight it, Leendertz says. Animals contract B. anthracis when they inhale or swallow hardy spores released into the soil by cadavers. But B. cereus in Taï “may have a very different ecology and epidemiology,” Gillespie says.

“We are currently investigating in depth the source of infection by testing everything the chimps are eating,” Leendertz says. “We’re also looking at other possible sources, such as arthropods.” One candidate is carrion flies. Leendertz’s team found traces of B. cereus DNA in 17 flies; if they help spread the disease, that might explain how some monkey species that only live in trees become infected. The team found the pathogen’s DNA in 12 out of 103 flies living in the canopy.

There are other questions. Are humans somehow protected from infection? And how far has this pathogen spread? Whatever the answers turn out to be, the new study provides a lesson, says William Karesh of the EcoHealth Alliance in New York City. Most wildlife research has been done in grasslands, where it’s much easier to work, but “there is a vast amount of information still to be learned from rainforests,” Karesh says. “Here, we’re starting to get a peek at that.”

How Earthquake Scientists Eavesdrop on North Korea’s Nuclear Blasts

Tuesday, July 25, 2017


On September 9 of last year, in the middle of the morning, seismometers began lighting up around East Asia. From South Korea to Russia to Japan, geophysical instruments recorded squiggles as seismic waves passed through and shook the ground. It looked as if an earthquake with a magnitude of 5.2 had just happened. But the ground shaking had originated at North Korea’s nuclear weapons test site.

It was the fifth confirmed nuclear test in North Korea, and it opened the latest chapter in a long-running geologic detective story. Like a police examiner scrutinizing skid marks to figure out who was at fault in a car crash, researchers analyze seismic waves to determine if they come from a natural earthquake or an artificial explosion. If the latter, then scientists can also tease out details such as whether the blast was nuclear and how big it was. Test after test, seismologists are improving their understanding of North Korea’s nuclear weapons program.

The work feeds into international efforts to monitor the Comprehensive Nuclear-Test-Ban Treaty, which since 1996 has banned nuclear weapons testing. More than 180 countries have signed the treaty. But 44 countries that hold nuclear technology must both sign and ratify the treaty for it to have the force of law. Eight, including the United States and North Korea, have not.

To track potential violations, the treaty calls for a four-pronged international monitoring system, which is currently about 90 percent complete. Hydroacoustic stations can detect sound waves from underwater explosions. Infrasound stations listen for low-frequency sound waves rumbling through the atmosphere. Radio­nuclide stations sniff the air for the radioactive by-products of an atmospheric test. And seismic stations pick up the ground shaking, which is usually the fastest and most reliable method for confirming an underground explosion.

Seismic waves offer extra information about an explosion, new studies show. One research group is exploring how local topography, like the rugged mountain where the North Korean government conducts its tests, puts its imprint on the seismic signals. Knowing that, scientists can better pinpoint where the explosions are happening within the mountain — thus improving understanding of how deep and powerful the blasts are. A deep explosion is more likely to mask the power of the bomb.

Separately, physicists have conducted an unprecedented set of six explosions at the U.S. nuclear test site in Nevada. The aim was to mimic the physics of a nuclear explosion by detonating chemical explosives and watching how the seismic waves radiate outward. It’s like a miniature, nonnuclear version of a nuclear weapons test. Already, the scientists have made some key discoveries, such as understanding how a deeply buried blast shows up in the seismic detectors.

The more researchers can learn about the seismic calling card of each blast, the more they can understand international developments. That’s particularly true for North Korea, where leaders have been ramping up the pace of military testing since the first nuclear detonation in 2006. On July 4, the country launched its first confirmed ballistic missile — with no nuclear payload — that could reach as far as Alaska.

“There’s this building of knowledge that helps you understand the capabilities of a country like North Korea,” says Delaine Reiter, a geophysicist with Weston Geophysical Corp. in Lexington, Mass. “They’re not shy about broadcasting their testing, but they claim things Western scientists aren’t sure about. Was it as big as they claimed? We’re really interested in understanding that.”

Natural or not

Seismometers detect ground shaking from all sorts of events. In a typical year, anywhere from 1,200 to 2,200 earthquakes of magnitude 5 and greater set off the machines worldwide. On top of that is the unnatural shaking: from quarry blasts, mine collapses and other causes. The art of using seismic waves to tell one type of event from the others is known as forensic seismology.

Forensic seismologists work to distinguish a natural earthquake from what could be a clandestine nuclear test. In March 2003, for instance, seismometers detected a disturbance coming from near Lop Nor, a dried-up lake in western China that the Chinese government, which signed but hasn’t ratified the test ban treaty, has used for nuclear tests. Seismologists needed to figure out immediately what had happened.


One test for telling the difference between an earthquake and an explosion is how deep it is. Anything deeper than about 10 kilometers is almost certain to be natural. In the case of Lop Nor, the source of the waves seemed to be located about six kilometers down — difficult to tunnel to, but not impossible. Researchers also used a second test, which compares the amplitudes of two different kinds of seismic waves.

Earthquakes and explosions generate several types of seismic waves, starting with P, or primary, waves. These waves are the first to arrive at a distant station. Next come S, or secondary, waves, which travel through the ground in a shearing motion, taking longer to arrive. Finally come waves that ripple across the surface, including those called Rayleigh waves.

In an explosion as compared with an earthquake, the amplitudes of Rayleigh waves are smaller than those of the P waves. By looking at those two types of waves, scientists determined the Lop Nor incident was a natural earthquake, not a secretive explosion. (Seismology cannot reveal the entire picture. Had the Lop Nor event actually been an explosion, researchers would have needed data from the radionuclide monitoring network to confirm the blast came from nuclear and not chemical explosives.)

For North Korea, the question is not so much whether the government is setting off nuclear tests, but how powerful and destructive those blasts might be. In 2003, the country withdrew from the Treaty on the Nonproliferation of Nuclear Weapons, an international agreement distinct from the testing ban that aims to prevent the spread of nuclear weapons and related technology. Three years later, North Korea announced it had conducted an underground nuclear test in Mount Mantap at a site called Punggye-ri, in the northeastern part of the country. It was the first nuclear weapons test since India and Pakistan each set one off in 1998.

By analyzing seismic wave data from monitoring stations around the region, seismologists concluded the North Korean blast had come from shallow depths, no more than a few kilometers within the mountain. That supported the North Korean government’s claim of an intentional test. Two weeks later, a radionuclide monitoring station in Yellowknife, Canada, detected increases in radioactive xenon, which presumably had leaked out of the underground test site and drifted eastward. The blast was nuclear.

But the 2006 test raised fresh questions for seismologists. The ratio of amplitudes of the Rayleigh and P waves was not as distinctive as it usually is for an explosion. And other aspects of the seismic signature were also not as clear-cut as scientists had expected.

Researchers got some answers as North Korea’s testing continued. In 2009, 2013 and twice in 2016, the government set off more underground nuclear explosions at Punggye-ri. Each time, researchers outside the country compared the seismic data with the record of past nuclear blasts. Automated computer programs “compare the wiggles you see on the screen ripple for ripple,” says Steven Gibbons, a seismologist with the NORSAR monitoring organization in Kjeller, Norway. When the patterns match, scientists know it is another test. “A seismic signal generated by an explosion is like a fingerprint for that particular region,” he says.

With each test, researchers learned more about North Korea’s capabilities. By analyzing the magnitude of the ground shaking, experts could roughly calculate the power of each test. The 2006 explosion was relatively small, releasing energy equivalent to about 1,000 tons of TNT — a fraction of the 15-kiloton bomb dropped by the United States on Hiroshima, Japan, in 1945. But the yield of North Korea’s nuclear tests crept up each time, and the most recent test, in September 2016, may have exceeded the size of the Hiroshima bomb.

Digging deep
For an event of a particular seismic magnitude, the deeper the explosion, the more energetic the blast. A shallow, less energetic test can look a lot like a deeply buried, powerful blast. Scientists need to figure out precisely where each explosion occurred.

Mount Mantap is a rugged granite mountain with geology that complicates the physics of how seismic waves spread. Western experts do not know exactly how the nuclear bombs are placed inside the mountain before being detonated. But satellite imagery shows activity that looks like tunnels being dug into the mountainside. The tunnels could be dug two ways: straight into the granite or spiraled around in a fishhook pattern to collapse and seal the site after a test, Frank Pabian, a nonproliferation expert at Los Alamos National Laboratory in New Mexico, said in April in Denver at a meeting of the Seismological Society of America.

Researchers have been trying to figure out the relative locations of each of the five tests. By comparing the amplitudes of the P, S and Rayleigh waves, and calculating how long each would have taken to travel through the ground, researchers can plot the likely sites of the five blasts. That allows them to better tie the explosions to the infrastructure on the surface, like the tunnels spotted in satellite imagery.

One big puzzle arose after the 2009 test. Analyzing the times that seismic waves arrived at various measuring stations, one group calculated that the test occurred 2.2 kilometers west of the first blast. Another scientist found it only 1.8 kilometers away. The difference may not sound like a lot, Gibbons says, but it “is huge if you’re trying to place these relative locations within the terrain.” Move a couple of hundred meters to the east or west, and the explosion could have happened beneath a valley as opposed to a ridge — radically changing the depth estimates, along with estimates of the blast’s power.

Gibbons and colleagues think they may be able to reconcile these different location estimates. The answer lies in which station the seismic data come from. Studies that rely on data from stations within about 1,500 kilometers of Punggye-ri — as in eastern China — tend to estimate bigger distances between the locations of the five tests when compared with studies that use data from more distant seismic stations in Europe and elsewhere. Seismic waves must be leaving the test site in a more complicated way than scientists had thought, or else all the measurements would agree.

When Gibbons’ team corrected for the varying distances of the seismic data, the scientists came up with a distance of 1.9 kilometers between the 2006 and 2009 blasts. The team also pinpointed the other explosions as well. The September 2016 test turned out to be almost directly beneath the 2,205-meter summit of Mount Mantap, the group reported in January in Geophysical Journal International. That means the blast was, indeed, deeply buried and hence probably at least as powerful as the Hiroshima bomb for it to register as a magnitude 5.2 earthquake.

Other seismologists have been squeezing information out of the seismic data in a different way — not in how far the signals are from the test blast, but what they traveled through before being detected. Reiter and Seung-Hoon Yoo, also of Weston Geophysical, recently analyzed data from two seismic stations, one 370 kilometers to the north in China and the other 306 kilometers to the south in South Korea.

The scientists scrutinized the moments when the seismic waves arrived at the stations, in the first second of the initial P waves, and found slight differences between the wiggles recorded in China and South Korea, Reiter reported at the Denver conference. Those in the north showed a more energetic pulse rising from the wiggles in the first second; the southern seismic records did not. Reiter and Yoo think this pattern represents an imprint of the topography at Mount Mantap.

“One side of the mountain is much steeper,” Reiter explains. “The station in China was sampling the signal coming through the steep side of the mountain, while the southern station was seeing the more shallowly dipping face.” This difference may also help explain why data from seismic stations spanning the breadth of Japan show a slight difference from north to south. Those differences may reflect the changing topography as the seismic waves exited Mount Mantap during the test.