Showing posts with label future. Show all posts
Showing posts with label future. Show all posts

Friday, November 25, 2016

2013 Google PhD Fellowships 5 Years of Supporting the Future of Computer Science

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We are extremely excited to announce the 2013 Global Google PhD Fellows. From all around the globe, these 39 PhD students represent the fifth class in the program’s history, a select group recognized by Google researchers and their institutions as some of the most promising young academics in the world. As we welcome the newest class of PhD Fellows, we take a look back at the program’s roots and hear from two past recipients.

In 2009, Google launched its PhD Fellowship Program, created to recognize and support outstanding graduate students pursuing work in computer science, related disciplines or promising research areas. In its inaugural year, 13 United States PhD students were awarded fellowships, drawn from an extremely competitive pool of applicants. The global program now covers Europe, China, India and Australia and continues to draw some of the best young researchers, reflecting Google’s commitment to building strong relations with the academic community.

Among those first recipients of the fellowship award are 2009 PhD Fellow Roxana Geambasu, Visiting Professor in the Computer Science Department at Columbia University, and 2010 European Doctoral Fellow Roland Angst, Visiting Assistant Professor at Stanford University and affiliated with the Max Planck Center for Visual Computing and Communication. As early recipients of the award, Roxana and Roland reflect on the impact that the Google Fellowship program had on their careers.

For Roxana, the fellowship provided the tools and connections that helped lay the foundation for her academic career. She believes industrial fellowship programs are very important, as they give students an opportunity to interact more closely with industry.

“Beyond the financial support, I think that the fellowship impacted my career in many important ways. First, the Google fellowships are regarded as highly competitive, so receiving the award was probably a big plus on my resume when I was interviewing for faculty positions.”

“Second, the award yielded a mentor within Google, Brad Chen, with whom Ive kept in touch ever since, as well as opportunities to visit the campus, deliver talks and meet Google engineers. Brad and I continue to meet at conferences and discuss my work, his work and (of late) the work of my students; it’s through that relationship I’m exposed to new people from Google and gain valuable advice about faculty award opportunities.”

Roland Angst credits the award with the ability to lighten his teaching load and instead focus on his research, which ultimately prepared him for his future academic career. Like Roxanna, Roland states that the fellowship also gave him the opportunity to establish connections with people working in related topics in industry.

“In my view, programs such as the Google Fellowship Awards represent an important and integral link between industry and universities. Firstly, such programs increase the awareness in the academic world for relevant problems in industry. Secondly, these programs allow the IT industry to express their gratitude to the educational services provided by the universities on which the IT industry heavily relies on."

We welcome the latest recipients of the Global Google PhD Fellowships for 2013 with great excitement and high expectations. Recognized for their incredible innovation, creativity and leadership, we are very happy to support these excellent PhD students and offer our sincere congratulations.

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Tuesday, November 1, 2016

Facebook Introduces ‘Hack ’ the programming language of the future

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Facebook engineers Bryan OSullivan, Julien Verlaguet, and Alok Menghrajani have spent the last few years building a programming language unlike any other that Facebook uses to create its web-based system. The language is called Hack and the languages website says "Hack is a programming language for HHVM that interoperates seamlessly with PHP. Hack reconciles the fast development cycle of PHP with the discipline provided by static typing, while adding many features commonly found in other modern programming languages. Hack provides instantaneous type checking via a local server that watches the filesystem. It typically runs in less than 200 milliseconds, making it easy to integrate into your development workflow without introducing a noticeable delay." Hack is open source and available for you to use now. You can find out more on the hack.org website or in this post by Hacker News.




from The Universal Machine http://universal-machine.blogspot.com/

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Monday, October 17, 2016

2014 Google PhD Fellowships Supporting the Future of Computer Science

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Nurturing and maintaining strong relations with the academic community is a top priority at Google. Today, we’re announcing the 2014 Google PhD Fellowship recipients. These students, recognized for their incredible creativity, knowledge and skills, represent some of the most outstanding graduate researchers in computer science across the globe. We’re excited to support them, and we extend our warmest congratulations.

The Google PhD Fellowship program supports PhD students in computer science or closely related fields and reflects our commitment to building strong relations with the global academic community. Now in its sixth year, the program covers North America, Europe, China, India and Australia. To date we’ve awarded 193 Fellowships in 72 universities across 17 countries.

As we welcome the 2014 PhD Fellows, we hear from two past recipients, Cynthia Liem and Ian Goodfellow. Cynthia studies at the Delft University of Technology, and was awarded a Fellowship in Multimedia. Ian is about to complete his PhD at the Université de Montréal in Québec, and was awarded a Fellowship in Deep Learning. Recently interviewed on the Google Student blog, they expressed their views on how the Fellowship affected their careers.

Cynthia has combined her dual passions of music and computing to pursue a PhD in music information retrieval. She speaks about the fellowship and her links with Google:

“Through the Google European Doctoral Fellowship, I was assigned a Google mentor who works on topics related to my PhD interests. In my case, this was Dr. Douglas Eck in Mountain View, who is part of Google Research and leads a team focusing on music recommendation. Doug has been encouraging me in several of my academic activities, most notably the initiation of the ACM MIRUM Workshop, which managed to successfully bring music retrieval into the spotlight of the prestigious ACM Multimedia conference.”

Ian is about to start as a research scientist on Jeff Dean’s deep learning infrastructure team. He was also an intern at Google, and contributed to the development of a neural network capable of transcribing the address numbers on houses from Google Street View photos. He describes the connection between this intern project and his PhD study supported by the Fellowship:

“The project I worked on during my internship was the basis for a publication at the International Conference on Learning Representations …. my advisor let me include this paper in my PhD thesis since there was a close connection to the subject area.… I can show that some of the work developed early in the thesis has had a real impact.“

We’re proud to have supported Cynthia, Ian, and all the other recipients of the Google PhD Fellowship. We continue to look forward to working with, and learning from, the academic community with great excitement and high expectations.
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Wednesday, September 7, 2016

The Computer Science Pipeline and Diversity Part 2 Some positive signs and looking towards the future

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(Cross-posted on the Google for Education Blog)

The disparity between the growing demand for computing professionals and the number of graduates in Computer Science (CS) and Information Technology (IT) has been highlighted in many recent publications. The tiny pipeline of diverse students (women and underrepresented minorities (URMs)) is even more troubling. Some of the factors causing these issues are:
  • The historical lack of STEM (Science, Technology, Engineering and Mathematics) capabilities in our younger students; lack of proficiency has had a substantial impact on the overall number of students pursuing technical careers. (PCAST Stem Ed report, 2010)
  • On the lack of girls in computing, boys often come into computing knowing more than girls because they have been doing it longer. This can cause girls to lose confidence with the perception that computing is a man’s world. Lack of role models, encouragement and relevant curriculum are additional factors that discourage girls’ participation. (Margolis 2003)
  • On the lack of URMs in computing, the best and most enthusiastic minority students are effectively discouraged from pursuing technical careers because of systemic and structural issues in our high schools and communities, and because of unconscious bias of teachers and administrators. (Margolis, 2010)
Over the last 3-4 years, however, we have seen some significant positive signals in STEM education in general, and in CS/IT in particular.
  • Math1 and Science2 results as measured by the National Assessment of Educational Progress (NAEP) have improved slightly since 2009, both in general and for female and minority students.
  • Over the last 10 years, there has been an increase in the number of students earning STEM degrees, but the news on women graduates is not as positive.
“Overall, 40 percent of bachelors degrees earned by men and 29 percent earned by women are now in STEM fields. At the doctoral level, more than half of the degrees earned by men (58 percent) and one-third earned by women (33 percent) are in STEM fields. At the bachelors degree level, though, women are losing ground. Between 2004 and 2014, the share of STEM-related bachelors degrees earned by women decreased in all seven discipline areas: engineering; computer science; earth, atmospheric and ocean sciences; physical sciences; mathematics; biological and agricultural sciences; and social sciences and psychology. The biggest decrease was in computer science, where women now earn 18 percent of bachelors degrees (18 percent). In 2004, women earned nearly a quarter of computer science bachelors degrees, at 23 percent.” - (U.S. News, 2015)
  • There has been a steady growth in investment in education companies, particularly those focused on innovative uses of technology.
  • The number of publications in Google Scholar on STEM education that focus on gender issues or minority students has steadily increased over the last several years.
Results from Google Scholar, using “STEM education minority” and “STEM education gender” as search terms
  • Successful marketing campaigns such as Hour of Code and Made with Code have helped raise awareness on the accessibility and importance of coding, and the diverse career opportunities in CS.
  • There has been growth in developer bootcamps over the last few years, as well as online “learn to code” programs (code.org, CS First, Khan Academy, Codecademy, Blockly Games, PencilCode, etc.), and an increase in opportunities for K12 students to learn coding in their schools. We have also seen non-profits emerge focused specifically on girls and URMs (Technovation, Girls who Code, Black Girls Code, #YesWeCode, etc.)
  • One of the most positive signals has been the growth of graduates in CS over the past few years.
Source: 2013 Taulbee Survey, Computing Research Association
So we are seeing small improvements in K-12 STEM proficiency and undergraduate STEM and CS degrees earned, a significant growth in investment in education innovation, more and more research on the issues of gender and ethnicity in STEM fields and increased opportunities for all students to learn coding skills online, through non-profit programs, through developer boot camps or in their schools.

However, an interesting, and potentially threatening development resulting from this positive momentum is the lack of capacity and faculty in CS departments to handle the increased number of enrollments and majors in CS. Colleges and universities, as a whole, aren’t adequately prepared to handle the surge in CS education demand - Currently there just aren’t enough instructors to teach all the students who want to learn.

This has happened in the past. In the 80’s, with the introduction of the PC, and again during the dot-com boom, interest in CS surged. CS departments managed the load by increasing class sizes as much as they possibly could, and/or they put enrollment caps in place and made CS classes harder. The effect of the former was some faculty left for industry while the effect of the latter was a decrease in the diversity pipeline.

These kinds of caps have two effects which limit access by women and under-represented minorities:
  • First, the students who succeed the most in intro CS are the ones with prior experience.
  • Second, creating these kinds of caps creates a perception of CS as a highly competitive field, which is a deterrent to many students. Those students may not even try to get into CS.”
-(Guzdial, 2014)

If we allow the past to repeat itself, we may again find CS faculty leaving for industry and less diversity students going into the field. In addition, unlike the dot-com boom where interest in CS plummeted with the bust, it’s unlikely we will see a decrease in enrollments, particularly in the introductory CS courses. “CS+X”, which represents the application of CS in other fields, is illustrated by the following sample list of interdisciplinary majors in various universities:
  • Yale: "Computer Science and Psychology is an interdepartmental major..."
  • USC: "B.S in Physics/Computer Science for students with dual interests..."
  • Stanford: "Mathematical and Computational Sciences for students interested in..."
  • Northeastern: "Computer Science/Music Technology dual major for students who want to explore connections between..."
  • Lehigh: "BS in Computer Science and Business integrates..."
  • Dartmouth: "The M.D.-Ph.D. Program in Computational Biology..."
The number of non-major students taking CS courses, particularly the introductory ones, is growing, which makes the capacity issues worse.

At Google, we recently funded a number of universities via our 3X3 award program (3 times the number of students in 3 years), which aims to facilitate innovative, inclusive, and sustainable approaches to address these scaling issues in university CS programs. Our hope is to disseminate and scale the most successful approaches that our university partners develop. A positive development, which was not present when this happened in the past, is the recent innovation in online education and technology. The increase in bandwidth, high-quality content and interactive learning opportunities may help us get ahead of this challenging capacity issue.


1Average mathematics scores for fourth- and eighth-graders in 2013 were 1 point higher than in 2011, and 28 and 22 points higher respectively in comparison to the first assessment year in 1990. Hispanic students made gains in mathematics from 2011 to 2013 at both grades 4 and 8. Fourth- and eighth-grade female students scored higher in mathematics in 2013 than in 2011, but the scores for fourth- and eighth-grade male students did not change significantly over the same period. (Nation’s Report Card)

2The average eighth-grade science score increased two points, from 150 in 2009 to 152 in 2011. Scores also rose among public school students in 16 of 47 states that participated in both 2009 and 2011, and no state showed a decline in science scores from 2009 to 2011. A five-point gain from 2009 to 2011 by Hispanic students was larger than the one-point gain for White students, an improvement that narrowed the score gap between those two groups. Black students scored three points higher in 2011 than in 2009, narrowing the achievement gap with White students. (Nation’s Report Card)
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Friday, August 19, 2016

The Future of Life Institute

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"Technology has given life the opportunity to flourish like never before... or to self-destruct." So warns the Future of Life Institute a "volunteer-run research and outreach organization working to mitigate existential risks facing humanity." Stephen Hawking and Elon Musk have both recently warned that AI could cause the end of humanity. The FLI is therefore focusing on potential risks from the development of human-level artificial intelligence. If you are working in AI or related disciplines you are encouraged to sign an open letter "arguing that rapid progress in AI is making it timely to research not only how to make AI more capable, but also how to make it robust and beneficial."

from The Universal Machine http://universal-machine.blogspot.com/

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Friday, July 15, 2016

What happens if your Government unfriends you

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Sounds crazy right? Perhaps not if youre Chinese. China is launching a system that gives a score to every citizen. This is partially similar to the credit scoring systems that Western nations have used for years, but it also includes a component that measures the political trustworthiness of citizens. If you are a political critic of the Government your score will go down. But, whats really sinister is that if your friends have low ratings, your rating will be reduced. This social network may encourage people to "unfriend" any friends that show dissent. We in the west are perhaps used to, and certainly aware of the fact, that our spy masters have access to our social media accounts. China is taking this a step further by building a social network into the states functioning. Read this article from the American Civil Liberties Union for more on this story. Thanks to my colleague Mark Wilson for this story.

from The Universal Machine http://universal-machine.blogspot.com/

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Friday, May 27, 2016

IBM spends 3 billion to push the far future of computer chips

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IBM has announced that it is investing $3 billion over the next five years to develop processors with much smaller, more tightly packed electronics than todays chips, and to sustain computing progress even after todays manufacturing technology runs out of steam. The problem is we are just physically finding it impossible to miniaturise silicon chips any more (no pun intended). Read this Cnet article to learn more.

from The Universal Machine http://universal-machine.blogspot.com/

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Friday, April 22, 2016

Does Call of Duty Black Ops 3 predict the future

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A recent article in the Guardian by Keith Stuart titled "Does Call of Duty: Black Ops 3 predict the terrifying future of warfare?" is well worth a read. It doesnt matter if youre not a player of combat games, because this isnt about games but about how the future of warfare is looksingincreasingly like scenes from The Terminator. The article even points to a Japanese company called Cyberdyne, that has created a "Robot Suit HAL® for the benefits of humankind in the field of medicine, caregiving, welfare, labor, heavy works, entertainment and so on." However, the military are developing similar systems to support troops. Youve been warned!

from The Universal Machine http://universal-machine.blogspot.com/

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