Saturday, 17 August 2019

Anglia Ruskin University’s Faculty of Science and Engineering sponsors Technology Company of the Year

University reporter,ARU,Cambridge(wp+CI):::
ARU’s Faculty of Science and Engineering is helping to provide the skills required to succeed in these sectors.
Prof Laurie Butler, who joined as dean of the faculty earlier this year, said: “I firmly believe that working with business, as well as public and third sector organisations is a win-win for all.
“Through working in partnership, we can continue to transform lives and communities for the better.”
The faculty is home to around 6,000 students from around the world, studying a broad range of courses. Among its key aims are:
  • To become a champion for supporting more women and other under represented groups to pursue STEM-related careers;
  • To produce industry ready graduates with the skills and experience that employers need; and
  • To identify and realise the potential of every student regardless of background.
The faculty offers courses for undergraduates, postgraduates and researchers.
Prof Butler said: “We offer a variety of innovative undergraduate courses delivered via one of our four academic schools - Computing and Information Science, Engineering and the Built Environment, Life Sciences, and Psychology & Sport Science.
“We teach disciplines as diverse as optometry, computing and artificial intelligence, biomedical science and mechanical engineering.
“We pride ourselves on the quality of our teaching, with over 150 of our staff currently recognised for their professionalism in teaching and learning by holding fellowships with the Higher Education Academy.
“Many of our courses are co-designed with employers and we are always looking for opportunities to work with new organisations. We are especially excited to be leading the way with degree apprenticeship programmes including new flagship courses in data science and bioinformatics.”
Its postgraduate courses also range across the STEM areas.
“We have invested in a new state-of-the-art £45m Science Building situated in the heart of our Cambridge campus that houses various biomedical, forensic, electronics, neuroscience and molecular laboratory facilities.
“The research interests of our staff address basic and translational research questions concerned with addressing societal issues such as climate change, smart cities and health behaviours.
“We are able to provide our students with an interdisciplinary perspective and, via our internationally renowned Global Sustainability Institute, with the skills and knowledge to build a more responsible future where people and the planet can prosper.
“Our students come from a variety of backgrounds but all share our values of ambition, courage and an appreciation of the importance of community.”
Prof Butler describes the faculty as “inclusive, innovative and entrepreneurial” in line with the university’s strategy of being welcoming to all and “measuring our success by their success”.
“I’ve been here at Anglia Ruskin for three months now and I can honestly say I see staff doing this every single day – we place our students at the heart of everything we do,” said Prof Butler.
Teaching styles range from traditional lectures to small group work, practical workshops, online and distance learning approaches.
“My personal favourite has been watching our forensic science students collecting ‘evidence’ from a simulated crime scene in our Science Building and then presenting their findings in a mock-up of a courtroom complete with a presiding judge,” said Prof Butler.
Links to employers are particularly important to ARU.
External advisory boards offer advice on curricula, while many employers provide placements and internships, or help the university develop new courses, such as apprenticeships.
This is just one of a number of trends Laurie is witnessing.
“Degree apprenticeships will only continue to grow in popularity and we are at the forefront in delivering these,” he said.
“Advances in AI and shifts in consumer trends are appearing so quickly though that we need to equip young people with the critical thinking and skill sets needed to cope with job roles that don’t yet exist.
“Online and lifelong training are very much the focus of our current thinking too. Above all else, I see a growing demand for education that places lifelong wellbeing and global sustainability at the core.“
This forward-thinking approach means the faculty is well-placed to help companies meet the challenges ahead.
“Our experts, combined with our cutting-edge research facilities, can help your business to innovate, optimise and grow,” added Prof Butler, who said that the faculty’s location in the heart of the thriving Cambridge science and tech cluster was a key reason why he joined.
He is particularly looking forward to seeing entrants in the Technology Company of the Year category taking an interdisciplinary approach to solving problems.
“It would be great if the winning entry could show just what is possible when you have a workforce that is comprised of people from a wide variety of cultures, viewpoints and backgrounds,” he said.
There are 15 categories to enter by filling in the entry form online. Winners will be announced at a ceremony on October 30 at the Bradfield Centre.

Cambridgeshire under-12s scoop success at the Minor Counties Cricket Festival

Cambridgeshire under-12s cricket team. Picture: Martin Heginbotham (14799626)

Pushpita,Children Editor(wp):::
Cambridgeshire under-12s had a memorable time at the Minor Counties Cricket Festival by winning their age group in the 20th anniversary year.
The competition is hosted by former Essex bowler and Zimbabwe coach Don Topley at the Royal Hospital School in Holbrooke, and Cambs were up against Oxfordshire, Lincolnshire, Cleveland, Cumbria and the Netherlands.
In their first match, they faced Oxfordshire, who they bowled out for 76, with Harry Winn and Charlie Walters taking three wickets apiece and Parth Kaul and Aditya Datta getting two each.
Toby Weston’s 36 not out and Ed Staveley’s 15 saw them to victory with 77 for 2.
The bowlers got to work in Cambs’ second match, dismissing Lincolnshire for 137 as Adam Gardiner, Sebastian Harrison, Walters and Zander Wynne-Jones got two wickets apiece.
Ralph Hayward hit 59 and captain Alex James got 29 as Cambs won with 139 for 4.
Their third match was against Cleveland, who won the toss and asked Cambs to bat first.
Staveley (15) and Hayward (16) made a steady start, but it was a 118-run partnership between James (58) and Barnaby Turner (68) that saw them reach 212 for 5 declared.
Walters and Datta took two wickets apiece, Gardiner got one and Charlie Michell got the final wicket as Cleveland were dismissed for 135.
The Netherlands’ national under-12s team were next and, like Cambs, were yet to lose a game.
Tight bowling saw Kaul return five for 16 and Gardiner four for 14 as the Netherlands were all out for 99.
Walters hit an unbeaten 36 as Cambs claimed victory.
Heading into the final game, Suffolk and Cambs had four wins out of four, while Norfolk were also in contention for overall victory after three wins and a draw.
The last match pitted Cambs against Cumbria, who won the toss and elected to field.
A second wicket partnership of 130 between Weston (84) and James (70 not out) helped Cambs declare on 221 for 2.
After a tight opening period, Walters changed the game as his pace bowling led to figures of five for 6 off five overs. Datta’s spin claimed two for 14 off 7.5 as Cumbria were bowled out for 74.
It meant Cambs topped the 10-team table with 150 points after five wins out of five, with Norfolk finishing second with 143.
“Sam Rippington (the support coach) and I were very impressed with the standard of cricket played by all of the sides,” said Cambs under-12s head coach Martin Heginbotham.
“The Cambridgeshire side batted well under pressure. The bowlers who have performed well all season continued to produce fantastic performances and the team’s commitment in the field was exceptional.
“It was a fantastic competition and demonstrated the supportive teamwork within the squad.”

Friday, 16 August 2019

FAMILY SUBJECT SHOULD ALSO OPEN IN ALL UNIVERSITIES IN ENGLAND

ALL UNIVERSITIES IN ENGLAND SHOULD OPEN ANOTHER VERY IMPORTANT'' FAMILY'' SUBJECT WHICH CAN BUILD BETTER SOCIETY AS WELL VERY BEST COUNTRY AND IDOL FOR COUNTRIES FUTURE GENERATION AND THATS FUTURE GENERATION CAN BIULD NEXT VERY BEST SELF FAMILY,SOCIETY,COUNTRY AND OTHER HUMAN BEING FOR CREATOR CREATIONAL SUCESSOR...WHIH CAN REDUCE VASTLY CRIME REDUCE COAST FOR CRIMONOLOGY CONTROL AND ITS STUFFS AND MAKE PEACEFUL GENERATION+

New subject introduce IN ENGLAND All University Gradute&Resrech(Phd,Post Doctoral),LOVE&HATE,BEHAVIOR, may require to add

All ENGLAND universities should open new subjects which is actually 0.1% matter but almost people make  its matter as 99.99% sometimes 100% .for love lots of people want to die some people leave their own country for different country man or women...sometimes leave loving father,mother,brother,sister,husband or wife,children as well...but why this very minor things feel in mind in man and women its should be analyse and all doctoral and post doctoral reserach should add this subject across the ENGLAND FROM 2020...beside this behaviour subject also open as graduate,doctoral,post doctoral level for gentel generatyion build....

Higher Educational authourity should funding under BANK OF ENGLAND(HIGHER EDUCATIONAL RESRECH &UNIVERSITY DEVELOPMENT PROJECT) need to apply as soon as possible....

so called hepocrate Ex.England Royal family Member Prince Edward(sony her daughter take as phd student LOVE&HATE LEAVE COUNTRY FOR FAKE LOVE) combindly westmisnter university&cambridge university jointly organise this degree upto post doctoral and fellowship)&KING philip(suzana de cruze Phd Student for LOVE) are 1st reaserch subject....2021(£50000000000 SCHOLARSHIP PER MONTH GIVEN TO PHD STUDENT AS WELL SUPERVISER OF THIS PROJECT)

AFTER THAT ALL UNIVERSITIES COUNTRYWIDE OPEN,RUN&FUNDING THIS VERY IMPORTANT PROJECT TO PROTECT FAMILY,SOCIETY&COUNTRY FOR BEST FUTURE GENERATION....

BESIDES COMMONLY ALL HIGHER EDUCATIONAL SUBJECT(UNDERGRADUATE TO POST DOCTORAL&FELLOWSHIP RUN BEHAVIOR SUBJECT WITH HIGH FUNDING......


EDITORIAL:::HIGHER EDUCATIDON(UNIVERSITY EDUCATION) FUNDING&REFORM POLICY+2019

All Higher Educational institutions(Universities) Should Highest level of funding for All Teaching staffs,Admin officials,Staffs,Employees Should Paid minimum £5000000000000 per month for better educational quality and related people concern regarding this in Topest Across the Earth,

Specially Computing,Robotics,Criminology(Religion crime,Health Crime,National Adminstrative Crime and related)Children Educational Research and so on....


Politics,Economics&all unnecessery courses and funding should stop and most dynamic which require country development and professional carrer market may dvelop and funding in highest level under Bank Of England Educational Infustructure Reform Policy Which should effect from 2019....

Restrcited for England Students Specially in Westminster University(England Royal University+only resreve for Screnned and comitted Royal Family of England)+Cambridge University(Only for England Students)+Middelsex University+King Philip Engineering university(Countrywide all county Proposed structured and open within 2022)+and all other universities may apply same facilities....space research should ban........future update comming soon.....(under Lords Higher Education Development and highest funding Reform Act+2019)

machine learning to develop soft robotics as part of a new collaborative project Robotics reporter,CamUni(wp)::: The goal of the €3 million Self-healing soft robot (SHERO) project, funded by the European Commission, is to create a next-generation robot made from self-healing materials (flexible plastics) that can detect damage, take the necessary steps to temporarily heal itself and then resume its work – all without the need for human interaction. Led by the University of Brussels (VUB), the research consortium includes the Department of Engineering (University of Cambridge), École Supérieure de Physique et de Chimie Industrielles de la ville de Paris (ESPCI), Swiss Federal Laboratories for Materials Science and Technology (Empa), and the Dutch Polymer manufacturer SupraPolix. As part of the SHERO project, the Cambridge team, led by Dr Fumiya Iida from the Department of Engineering are looking at integrating self-healing materials into soft robotic arms. Dr Thomas George Thuruthel, also from the Department of Engineering, said self-healing materials could have future applications in modular robotics, educational robotics and evolutionary robotics where a single robot can be 'recycled' to generate a fresh prototype. “We will be using machine learning to work on the modelling and integration of these self-healing materials, to include self-healing actuators and sensors, damage detection, localisation and controlled healing,” he said. “The adaptation of models after the loss of sensory data and during the healing process is another area we are looking to address. The end goal is to integrate the self-healing sensors and actuators into demonstration platforms in order to perform specific tasks.” Professor Bram Vanderborght, from VUB, who is leading the project with scientists from the robotics research centre Brubotics and the polymer research lab FYSC, said: “We are obviously very pleased to be working on the next generation of robots. Over the past few years, we have already taken the first steps in creating self-healing materials for robots. With this research we want to continue and, above all, ensure that robots that are used in our working environment are safer, but also more sustainable. Due to the self-repair mechanism of this new kind of robot, complex, costly repairs may be a thing of the past.”

machine learning to develop soft robotics as part of a new collaborative project

Robotics reporter,CamUni(wp):::
The goal of the £500000000000000000 Trillion Self-healing soft robot  project, funded by the University Funding Authority under BANK OF ENGLAND National Higher educational Project funded by the European Commission, is to create a next-generation robot made from self-healing materials (flexible plastics) that can detect damage, take the necessary steps to temporarily heal itself and then resume its work – all without the need for human interaction.
Led by the  Department of Engineering (University of Cambridge), École Supérieure de Physique et de Chimie Industrielles de la ville de Paris (ESPCI), Swiss Federal Laboratories for Materials Science and Technology (Empa), and the Dutch Polymer manufacturer SupraPolix.
As part of the SHERO project, the Cambridge team, led by Dr Fumiya Iida from the Department of Engineering are looking at integrating self-healing materials into soft robotic arms.
Dr Thomas George Thuruthel, also from the Department of Engineering, said self-healing materials could have future applications in modular robotics, educational robotics and evolutionary robotics where a single robot can be 'recycled' to generate a fresh prototype.
“We will be using machine learning to work on the modelling and integration of these self-healing materials, to include self-healing actuators and sensors, damage detection, localisation and controlled healing,” he said. “The adaptation of models after the loss of sensory data and during the healing process is another area we are looking to address. The end goal is to integrate the self-healing sensors and actuators into demonstration platforms in order to perform specific tasks.”
Professor Bram Vanderborght, from VUB, who is leading the project with scientists from the robotics research centre Brubotics and the polymer research lab FYSC, said: “We are obviously very pleased to be working on the next generation of robots. Over the past few years, we have already taken the first steps in creating self-healing materials for robots. With this research we want to continue and, above all, ensure that robots that are used in our working environment are safer, but also more sustainable. Due to the self-repair mechanism of this new kind of robot, complex, costly repairs may be a thing of the past.”

machine learning to develop soft robotics as part of a new collaborative project

Robotics reporter,CamUni(wp):::
The goal of the €3 million Self-healing soft robot (SHERO) project, funded by the European Commission, is to create a next-generation robot made from self-healing materials (flexible plastics) that can detect damage, take the necessary steps to temporarily heal itself and then resume its work – all without the need for human interaction.
Led by the University of Brussels (VUB), the research consortium includes the Department of Engineering (University of Cambridge), École Supérieure de Physique et de Chimie Industrielles de la ville de Paris (ESPCI), Swiss Federal Laboratories for Materials Science and Technology (Empa), and the Dutch Polymer manufacturer SupraPolix.
As part of the SHERO project, the Cambridge team, led by Dr Fumiya Iida from the Department of Engineering are looking at integrating self-healing materials into soft robotic arms.
Dr Thomas George Thuruthel, also from the Department of Engineering, said self-healing materials could have future applications in modular robotics, educational robotics and evolutionary robotics where a single robot can be 'recycled' to generate a fresh prototype.
“We will be using machine learning to work on the modelling and integration of these self-healing materials, to include self-healing actuators and sensors, damage detection, localisation and controlled healing,” he said. “The adaptation of models after the loss of sensory data and during the healing process is another area we are looking to address. The end goal is to integrate the self-healing sensors and actuators into demonstration platforms in order to perform specific tasks.”
Professor Bram Vanderborght, from VUB, who is leading the project with scientists from the robotics research centre Brubotics and the polymer research lab FYSC, said: “We are obviously very pleased to be working on the next generation of robots. Over the past few years, we have already taken the first steps in creating self-healing materials for robots. With this research we want to continue and, above all, ensure that robots that are used in our working environment are safer, but also more sustainable. Due to the self-repair mechanism of this new kind of robot, complex, costly repairs may be a thing of the past.”