Thursday, 27 August 2009

The Nature of Technology: What it is and How it Evolves.


In biology new species evolve by slow changes over a long time. Humans, for example have emerged from Apes through a long process of adaptation and variation over a long period.

But new, and radically new technology does not emerge out of slow adaptations and variations alone, but through the combination of older, existing technologies.

Brain Arthur's new book 'The Nature of Technology' examines and explains this process in some detail. In fact, it is being offered up as an equivalent explanation for technological evolution, as Darwin's explanation is to biological evolution: technological Darwinism!

By interconnecting (combining in Brian's words) existing technologies in multidimensional ways can and does create novel technologies to again interconnect to create even more new technology, ad'infinitum.

Click on above title to review Brian's book. A must read for all technologists (which every human is).

Wednesday, 26 August 2009


Wizz..... A real automative innovation.

Aptera Motors is an IdeaLab company building lightweight, low cost, composite, electric hybrid vehicles that are safe and reliable.

By combining patent pending low cost composite manufacturing methods and cutting edge computational fluid dynamics, the company's first car, the Aptera typ-1 will be available for under $30,000 (c.£18,000).

At Aptera conservation and efficiency is central to the design approach to ensuring sustainability.

By entering into every issue with the question of 'how to be more efficient' they maximize the value of every component combined, be they tangible or intangible.

For example, the seats and carpet were born of old plastic bottles and cups, and the fabrics throughout the vehicle use natural dyes.

And the 100 miles per plug-in (as in fill her up) you get costs a mere $0.50. Now that's something!

Tuesday, 25 August 2009


IBM research is looking to the building blocks of life -- DNA -- to become the structure of next-generation of microchips.

As chipmakers compete to develop ever-smaller chips at cheaper prices, designers are struggling to cut costs. Artificial DNA nanostructures, or "DNA origami" may provide a cheap framework on which to build tiny microchips, according to a paper published on Sunday in the journal Nature Nanotechnology.

"This is the first demonstration of using biological molecules to help with processing in the semiconductor industry," says IBM research manager Spike Narayan.. "Basically, this is telling us that biological structures like DNA actually offer some very reproducible, repetitive kinds of patterns that we can actually leverage in semiconductor processes."

The research was a joint undertaking by IBM's Almaden Research Center and the California Institute of Technology. Right now, the tinier the chip, the more expensive the equipment. Narayan said that if the DNA origami process scales to production-level, manufacturers could trade hundreds of millions of dollars in complex tools for less than a million dollars of polymers, DNA solutions, and heating implements.

"The savings across many fronts could add up significantly," he said. But the new processes are at least 10 years out. Narayan said that while the DNA origami could allow chipmakers to build frameworks that are far smaller than possible with conventional tools, the technique still needs years of experimentation and testing.

Sunday, 23 August 2009


Jobs that don’t yet exist.

Future Jobs R Us.

What kinds of jobs will be created in 10-20 years time through advances in science and technology? On initial research I've identified and defined 10 new job roles that could become reality within a decade or 2.

1. Personal Entertainment Programmers: Designers of in-person or electronic activities that meet the needs of individualised services.

2. Genomics Baby Designer: With the unravelling of the human genome, new roles emerge to design personalised enhancements and select the genetic make-up of unborn children.

3. Resource Use Consultant: As environmental awareness rises, roles emerge for advisors who help citizens grade the impact of every action / purchase / item and manage down the ecological footprint of our lifestyles and purchases.

4. Personal Enhancement Advisors: Advances in hypermaterials, productive nanotechnologies, cognitive science, natural therapies and pharmaceuticals will offer an increasingly broad range of legal (and illegal) personal enhancements. These could be used to give sports people a competitive edge, enhance our memory capacity when studying for exams or increase the strength and endurance of soldiers in the field. Roles emerge professionals who take a holistic approach advising across a full range of possible enhancements.

5. Psycho-Customiser: Future generations of mobile phones could offer a range of applications to help monitor and manage stress levels and counsel us on key decisions. Tomorrow's retail assistant could perform behavioural assessments to help customise our devises to match our personality type.

6. Nano-Medic: Advances in nanotechnology offer the potential for a range of sub-atomic 'nanoscale' device inserts and procedures that could transform personal healthcare. A new range of nano medicine specialists will be required to administer these treatments.

7. Vertical Farmers: There is growing interest in the concept of city based vertical farms, with hydroponically-fed food being grown in multi-storey buildings. These offer the potential to dramatically increase farm yield and reduce environmental degradation. The managers of such entities will require expertise in a range of wide scientific disciplines, engineering and commerce.

8. Spaceline Pilots: With Virgin Galactic and others pioneering space tourism the need for space trained pilots will arise.

9. Climate Change Reversal Specialist: As the threats and impacts of climate change increase, a new breed of engineer-scientists will be required to help reduce or reverse the effects of climate change on particular locations. They will need to apply multi-disciplinary solutions ranging from filling the oceans with iron filings to erecting giant umbrellas that deflect the sun's rays.

10. Hydrogen Fuel Station Manager: Hydrogen will be cost-competitive with gasoline if refuelling stations were mass-produced. The hydrogen would be produced on-site, so managers would need an entirely different set of skills than those required in today's gas stations.

In addition to the jobs described above, I've also identified a further 20 possibilities:

1. Professional VR Citizen
2. Second Life Lawyer
3. Nano Design Engineer
4. Machine Linguist
5. Complexity Manager / Gaiantologist
6. Robot Mechanic
7. Chief Health Officer
8. Telemedicine Technician
9. Pharmer of Genetically Engineered Crops and Livestock
10. Spaceport Designer
11. Space Tour Guide
12. Terraformer of the Moon and Other Planets
13. In-Company Gene Screener
14. Drowned City Specialist
15. Quarantine Enforcer
16. Biorefinery Operative
17. Holographer
18. Virtual Reality Actor
19. Narrowcaster
20. Dirigible Pilot

Robot playing a Violin!



I said that the Robots are coming. Well, click on and watch the above 1 min video.

Skycar update.



Paul Moller is getting closer. His Skycar concept, along with the beginings of Skyway infrastructure, will be here within a decade!

Click on the above title and watch his 12 min video.

Wednesday, 12 August 2009



Space for all coming soon (Part I)?

5 years ago, on 29 September, the space industry was turned on its head by a tinny spacecraft made in a workshop in California's Mojave desert.

SpaceShipOne (SS1) successful flight flew in a new era. One in which space flight would one day be affordable, frequent and accessible to you and me.

SS1 was the first crewed spacecraft to be developed privately. Designed, built and flown on a budget of roughly $25 million, it was towards 10,000x cheaper than the Space Shuttle life costs to date.

SS1 broke the altitude record for winged vehicles set more than 40 years earlier by NASA's X-15 rocket plane. Clearly, a fully reusable space-plane is an essential milestone on the road to a real space-flight future. And yet years on it's easy to regard SS1 as anoma than a pertenant future trend. After making 2 sub-orbital flights in 2 weeks, it never flew again.

However, 'Spaceship Company' - a partnership between SS1's creator Burt Rutan and Richard Branson - have yet too unveil the larger passenger-ready SS2, although the company has revealed the Carrier Aircraft designed to launch it.

Whatever its limitations, SS1 has galvanised attempts to break the 'Space Access' problem. There are now many many more spacecraft development efforts under way than at any point in the history of space flight.

So which idea, or set of ideas, will produce the breakthrough vehicle?

To achieve a true revolution in cost and reliability we have to make a truly reusable system. And that's an enoumous technical challenge. Yet this challenge is gradually yielding to human ingenuity and innovation.

A company called 'SpaceX' has successfully flown its Falcon rocket, after several aborted attempts; and other companies are doing evermore advanced tests with new engines, systems and designs. And one long-awaited test flight later this year may herald a major technological breakthrough in air-breathing engines that could power a winged vehicle from runway to orbit.

Both of these efforts will bring low cost and reliable space access much closers. However, there's much more afoot than meets the eye (see part II below)

Space for all coming soon (Part II)?

So what's the issue?

Well encombant space vehicles can be broadly divided into two categories: (1) those inspired by winged aircraft and (2) those inspired by ballistic rockets (the difference between wizz and the bang).

In the early days of the space race both winged and ballistic craft were considered viable options for reaching orbit. Yet they represent vastly different ideas about space travel in terms of both the engineering challenges and economic viability.

Ballistic spacecraft basically pile in the fuel and use brute force to push their way into space, shedding engines and fuel tanks on their way up to lighten the load.

Winged spacecraft are the more elegant option. Launching from the ground or from the back or belly of another aircraft, they use the Earth's atmosphere for lift as long as possible. On the way back, they glide down to Earth to be used again and again. Their potential reusability has led to the tantalising idea that winged spacecraft could, in time, be much cheaper to operate than ballistic throwaways. They might even use the same facilities as commercial airliners, opening up space travel to commerce and tourism.

In plain reality, winged spacecraft like SS1 and NASA's X-15 - which reached an altitude of 107 kilometres - have never really made it past the lower reaches of space. Their on-board rocket engines lacked the oomph to propel them the extra 60 kilometres (to 167k) needed to reach orbit.

The conspicuous exception to this rule is the space shuttle, a vehicle that was part winged spacecraft and part ballistic vehicle. The shuttle isn't completely reusable, however, on each flight the expensive external fuel tanks are dumped in the ocean. Yet it showcases the most important technologies for low-cost, reliable access to space. The key is Reusability, combined with Flying Often. Where the shuttle falls down is the 'Flying Often' part.

Originally designed to fly hundreds of times a year and reduce costs of each flight, the shuttle fleet has never managed more than 9 flights in a year.

However, NASA's so-called 'Constellation Programme' - a mega-project set to replace the current shuttle - has a amjor goal of sending people to the moon on a regular basis. But while some elements of Constellation's spacecraft are designed to be reusable, the design - I think - is a step back towards the Apollo era. It can probably be made reliable enough, but it will never be low-cost because it will never be flown enough.

And so? The true space era - based on these encumbant technologies - seems, well, some way-away.

But that's not the end of the story. There are alturnative space access technologies now being experimented with that are so radical, so revolutionary, and so compelling that, I think, may shock even the most hardend Hyperinnovator (see part III below).

Click here to see the big picture!

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Space for all coming soon (Part III)?
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Recall the much loved story 'Charley and the Great Glass Elevator?' It may be a metaphor for the shape of space-flight to come!

Not to worry, I'm not going to try to convince you that we are all about to attach large silicon boxes to space anchored sky-hooks.

But from serious fact to fascinating fiction Space Elevators have been called space bridges, space ladders, beanstalks, skyhooks, and the great glass elevator.

So, now down to earth (and maybe up again).... What is actually happening?

Believe it or not the original idea goes back to 1895 to Konstantin Tsioikovsky. Back then he proposed a free standing Tower stretching to a level where obits can take place. That's where earth's atmosphere and its gravitational pull relinquishes to a point where masses can hover or can circle the earth. And that happens at about 170 kilometers up.

Most space Elevators ideas hang on tether and sheet like cables, where the structure is in tension on earth and counter weighted in space like a guitar string held taut. Problems is, a tether material made, for example, of Carbide Steel (CS) with a diameter of a mere 1mm would snap under its own weight. In fact the total mass of CS needed to construct such a structure would be so great that the cable would break in less than 2000 meters down.

News is that the much much famed CarbonNanoTube (CNT) is around 20 times the strength of CS in its natural from. Even better news is the kinds of molecular bonds obtainable from CNTs. They give an extraordinary number of creative interconnections, resulting in ultra-strength multidimensional geometric weaves. This Hypermaterial offers not just linear strength (20x steel), but 1000x the strength of steel, with at least 1000x less the weight.

But how strong does a Space Elevator tether have to be?

Many numbers are bandied about, and usually with a designation of GPa (Giga-Pascals) as their unit of measure. However, a GPa figure is meaningless without a density figure to go with it. The metric at question is GPa/(g/cc), or specific strength - strength-per-density.

The textile industry, which often deals with specific strength of materials, uses the unit of N/Tex. If you work out the units, a N/Tex turns out to be exactly equivalent to a GPa/(g/cc). In the metric system, we define 1 Yuri = 1 Pa/(kg/m3), and so a GPa/(g/cc) or a N/tex are equal to 1 MYuri (Mega Yuri).

Think about it this way: if you pull on a garden hose and it breaks at 100 lb, and if the diameter of the hose is such that its area is 2 square inches, can you say that the rubber failed at 50 PSI? Of course not - the hose is mostly air, only the wall of the hose is holding the force. you should use the area of the wall, not the hose.

In exactly the same way, if 12 inches of the garden hose weighs a pound, can you say that the density of the rubber is 1/24 [lbs/in3]? Of course not - only the wall of the hose has weight.

BUT!!! You can safely say that the *specific strength* of the rubber is 50/(1/24)=1200 PSI/(lb/in3) and you don’t have to even measure the diameter of the hose - just divide the breaking force (100) by the linear mass density (1/12), and you get the same exact number (1200). The cross-sectional area canceled out, and the only two things we need to measure is the breaking *force* (in lbs) and the weigh-per-linear-inch. Hence N/Tex.

So back to the Space Elevator: computer simulations of CNTs cap the specific strength of individual tubes at between 40 and 50 MYuri. Practical measurements seem to converge on that number as well. The density of Carbon Nanotubes is 2.2 g/cc, so using this density the proper strength figure is 88-110 GPa.

Remember though, it’s the 40-50 MYuri figure that’s the deal maker. We can build a Space Elevator using a 40 MYuri material. Even 30. It’s just that the lower the specific strength, the heavier the ribbon, and the more powerful our motors have to be.

So when will this all happen?

I'll come to that in later blog postings. But for now I would urge you to spend sometime watching the above video. Click on the above title and see.

Tuesday, 11 August 2009

Watch Touchable Holography

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Touchable holographic displays?

Researchers from The University of Tokyo Shinoda lab have figured out a way to add touch to holograms.

It's surprising stuff.

Click on title to watch vid!

Hyperphones with nanoscale engineering capabilities are in the R&D labs NOW.


Click on title to a product concept video presenation from Nokia Nanotech.

Mind blowing stuff. Capable of things we now do not only have, but have not even have thought of before.

Monday, 10 August 2009

Click here to see latest move toward Nanomanufacturing.

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The above picture is of IBM's prototype 3D-Nanochip, which gives massively powerful parallel computing capability in ultra-tiny space.

In essence, within 5 years ultra-computing (100 teraflops) will be in your handheld device for around 500 hundred dollars.

That's 100 million times improvement in terms of price-performance since the time when mobile handheld computers came to market.

The functionality will take Hyperinnovation to new heights.

Microlasers will enable 3D laser holographic projectors to be embedded in such handheld devicea.

That means small devices that emit light-based functional interface technologies, such as keypads that is laser projection. Bang goes the hardware, here comes lightware!

Monday, 3 August 2009

Please view this short picture flash.

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Architecture is taking off. Much of this is now coming off the drawing board. See if you can recognise any buildings being constructed now.

Watch please.





Remarkable.

Please click on title and see video about the big significance of Blogging.

Sunday, 2 August 2009



MIT’s Technology Review magazine featured 10 technoloical trends I'll be addresssing over the coming weeks.

They're interesting in as much as their title, as their content and context.

Peering into Video's Future. The Internet is about to drown in digital video. Hui Zhang thinks peer-to-peer networks could come to the rescue.

Nanocharging Solar. Arthur Nozik believes quantum-dot solar power could boost output in cheap photovoltaics.

Invisible Revolution. Artificially structured metamaterials could transform telecommunications, data storage, and even solar energy, says David R. Smith.

Personalized Medical Monitors. John Guttag says using computers to automate some diagnostics could make medicine more personal.

Single-Cell Analysis. Norman Dovichi believes that detecting minute differences between individual cells could improve medical tests and treatments.

A New Focus for Light. Kenneth Crozier and Federico Capasso have created light-focusing optical antennas that could lead to DVDs that hold hundreds of movies.

Neuron Control. Karl Deisseroth's genetically engineered "light switch," which lets scientists turn selected parts of the brain on and off, may help improve treatments for depression and other disorders.

Nanohealing. Tiny fibers will save lives by stopping bleeding and aiding recovery from brain injury, says Rutledge Ellis-Behnke.

Digital Imaging. Reimagined Richard Baraniuk and Kevin Kelly believe compressive sensing could help devices such as cameras and medical scanners capture images more efficiently.

Augmented Reality. Markus Kähäri wants to superimpose digital information on the real world.

Augmented Reality



Click title for video.

Augmented Reality is a specialization of computer vision that attempts to extract the 3D structure of a scene from video and then insert with high precision virtual or 3D objects into the scene. AR can be useful in many applications including entertainment, heads-up displays, tourism and surgical visualization.

Consider for example visiting a foreign country and not having a map. If you want directions to your hotel from any location in the city then you can just take a photo with your cell phone camera and using the phone’s build-in AR software determine your location; the AR software would then retrieve directions wirelessly from a large database and present them to you by annotating the original photo. Another application would be retrieving information about a historical monument that you are looking at. An example of AR is shown in the following video from related research at the University of British Columbia.

Saturday, 1 August 2009

More on Hyperinnovation.



Click on title to review a paper on Hyperinnovation's impact on the speed, cost and prototyping of global products.

Tuesday, 28 July 2009

I ALSO HAVE A DREAM



MIT continue to impress.

I'm both heart and hard felt that hardly any breakthroughs in theripies for serious psychiatric illness have emerged in the past half century.
My mentor and friend Edward Scolnick lays blame for this dismal situation on barriers to understanding the genetic basis behind such illnesses.

However, the research drought may be over, as the current revolution in human genetics opens wide a door into the molecular biology and brain physiology behind diseases like Schizophrenia and Bipolar disorder.

These common, chronic and disabling mental illnesses are complex, involving abnormal behaviors that vary in expression. They have also lacked the kind of quantitative tests that enable precise diagnosis.

While science has demonstrated that the single biggest risk factor for both schizophrenia and bipolar disorder is genetic, it has not been able to design tools for exploring how the genetics relates to the evolution/development of the disease in people. But the instant in the last two years, with the sequencing of the human genome and maps of human genetic variation, ignorance has given way to major findings.

In bipolar disease, researchers have discovered that gene deletions and duplications (called copy number variants) cause significant brain circuit mischief. They’ve also learned there are gene variants common to both diseases, as well as clusters of genes that malfunction. Scolnick describes diverse research at MIT, proceeding at a “breakneck pace,” that uses this genetic information “to delve into the malfunctioning of brain circuits.”

Scientists have applied functional magnetic resonance imaging to compare the brains of ordinary people and schizophrenia patients, and discovered that the schizophrenic’s brain in a resting state is hyperactive. Other researchers found that schizophrenics generate the gamma brainwaves involved with higher mental activities in a different manner than control subjects.

Another MIT lab has begun to manipulate specific brain circuits using optical technology -- shining different wavelengths of light at special interneurons that regulate the firing of other neurons, and which are postulated to have a critical role in the malfunctioning of schizophrenics’ brains.

Two other MIT labs are examining the biochemical disruptions due to altered genes, and developing “safe, specific chemical inhibitors” that might yield potential treatments for schizophrenia and bipolar illnesses. In Japan, researchers are growing stem cells into brain cells, which may lead to precise experiments that relate genetic problems to malfunctions in brain wiring. Indeed, adding up this research, a central biochemical pathway central to the pathogenesis of psychogenic illness seems to be emerging, knowledge that “can be exploited to understand illness and to find drug treatments.”

Click on title to view lecture.

Sunday, 26 July 2009

Making Power Light Work.

How much energy does it take to turn on a lightbulb?

Way too much! Where 22% of all electricity gets channeled into illuminating homes, businesses and thoroughfares. My old friend Vladimir Bulovic wants to end the exorbitant use of power for lighting, and simultaneously brighten our lives more pleasantly, with the application of nanostructure materials called quantum dots.

Click on UKW?

MIT's Up Date on Nano Fabrication.

In a lecture that dips into both the anatomy and history of the semiconductor, Grant Willson offers some provocative thoughts on whether industry can continue improving on this most useful of inventions.

Click on above title to see vid. He's missed a big point though. See if you can spot it?
Some body just asked me where I live.

Well.

Base-one (B-1) London.

(B-2) Brighton.

(B-3) NY NY.

(B-4) Perth.

(B-5) Most hub Airports.

I don't understand why I was asked the question, as the person who asked has only left B-2 a few dozen times in her life.

Live - these days - means where does one eat, sleep, work, etc.

However my 'Home' will always be with the ones I love.

And that's Saltdean.


Looks as though I'm gonna be spending a lot more time in NY! Was a bit perturbed. As journy time from my B-2 home is realy frustrating.

HOWEVER:

Word on the street is that New York City may be getting a new addition: The Manhattan Airport. And what better place to develop it than on the largest piece of undeveloped land in New York City -- Central Park?

New York City is THE cultural and financial capital of the world. Not London. Not Tokyo. Not Rio.

Yet surprisingly, New York City has no viable airport.

JFK, La Guardia and Newark work for people who live in certain outer boroughs. But they are not an acceptable option for people like me and New Yorkers, requiring travel through some of the most congested traffic arteries in the nation.

A journey which by train takes nearly two hours and by automobile can take up to three sweating hours. For a place which purports itself to be the greatest city in the world, this is not a workable model.

What I’m drawn to is the Central Park turned-airport concept.


Quote of the Week:

An economist is someone who, on being shown something that works in practice, wonders if it would work in theory.

Erm! Well. Where'd I get this from?

3000 of the leading economists gathered last week. Spent a collective 30,000 hours talking/thinking about how to get the economy going.

Not one of them spoke of new ideas for product or service that people desperately want now or in the future. Fucking egg-heads haven't a clue about what you and I face everyday in our business and personal lives.

Here's 3 ideas from me (a bloke that spent 20 years in the Design Lab):

1.For consumers, anything practical and useful will go down well in more austere times, while anything that speaks their language (and thus ultimately shows that a brand cares about its customers' interests) will be reciprocated with appreciation and goodwill. Which in today's harsh business climate is like, well, gold dust.

2.For businesses, adhoc-attributes can often be imagined and introduced at very low costs (which doesn’t hurt when budgets are tight); the only resources needed are creativity and a good feel for the consumer trends that matter most over the next 12 months.

3.Most important of all: ultimately this is not about gimmicky fingerless gloves: it’s about integrating the 'now' into your activities this year, achieving relevance for and goodwill from your customers, in an environment that has never been more about the 'now' than, well, now

Friday, 24 July 2009

Hubble, Bubbles, Toil and Trouble in Space!


IT LOOKS like a soap bubble in space, but the image at right is a newly discovered planetary nebula.



Planetary nebulae, which got their name after being misidentified by early astronomers, are formed when an ageing star weighing up to eight times the mass of the sun ejects its outer layers as clouds of luminous gas.



Most are elliptical, double-lobed or cigar-shaped, evolving after stars eject gas from each pole.
US Marine Cpl. Mike Jernigan blinded in Iraq, Begins to See VR.




BUT... And YOU Know Me By NOW... 5 years on he been given a llipop kind-a-device, where he uses his tongue to stimulate his visual cortex and send sensory information to his brain??????

Called the intra-oral device, or IOD, the lollipop is an inch-square grid with 625 small round metal pieces. It is connected by a wire to a small camera mounted on a pair of sunglasses and to a hand-held controller about the size of a BlackBerry. The camera sends an image to the lollipop, which transmits a low-voltage pulse to Jernigan's tongue.


With training, Cpl Jernigan has learned to translate that pulse into pictures. He can now identify the shapes of what is in front of him, even though both of his eyes have been removed.

Tuesday, 30 June 2009


See Ray Kurzviel's Videos by Clicking on the either of the 2 titles below.

Ray's Story: Transcendent Man Film Trailer

Singularity Vid!


Monday, 29 June 2009




In the span of 3 years, some 40,000 teams from around the world took up Netflix's challenge of improving movie recommendations by 10% over the company's Cinematch engine. And just a day ago, one of these teams has claimed the top prize and the $1,000,000 that go with it. This team consists of the 2007 and 2008 progress prize winning team BellKor from the USA, Austria's Big Chaos team, and Canada's Pragmatic Theory team.
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Until recently, the teams were competing against each other unable to reach the 10% improvement threshold but they put an end to the competition when they joined forces.Other teams now have 30 days to submit their solutions and outdo the top team for a chance to claim the top prize for themselves; keep an eye on the official leaderboard.
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Can others do it? Well, you never know so it will be an interesting 30 days.I have to admit that a couple of years ago I really didn't think that this day would come. I was certain that the 10% improvement had been selected by Netflix to prevent people from ever claiming the million dollar prize. I guess, I was wrong after all.That said, I am currently reading Don Tapscott and Anthony D. Williams' best seller Wikinomics: How Mass Collaboration Changes Everything and I think the Netflix competition would make for a great story for this book.
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It is yet another example of how computers and the Internet allow thousands of people across the globe to collaborate effectively and efficiently to solve problems at a fraction of the cost of a single corporation doing the work in house. I don't know how much money in Research and Development Netflix will save from this competition but I suspect they stand to make a lot of money from the 10% improvement in recommendation accuracy.
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They will certainly make back the prize money in no time (if they haven't already considering that improvements over 7% have been achieved by many teams over the course of the last 2 years). Kudos to the teams for their achievement and kudos to Netflix for taking a chance most corporations would never dare take.

Knowledge Management book review by Wilma Garvin
Title: Hyperinnovation.
Author: Chris Harris.
Publisher: Palgrave.
Macmillan ISBN: 0-333-99438-8.

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Chris Harris' thesis in Hyperinnovation is that the business world is interconnecting in every conceivable dimension from ideas to technology to markets and even entire industries. As a result, the boundaries between once disparate business concepts are increasingly multi-dimensional.
This demands a complete rethink in terms of strategies, cultures, organisations and methodologies to bring about innovation. He goes on to discuss how uncertainty is not just an occasional deviation from predictability. It has become a common feature of the business environment.

Complexity is an underlying theme of the book and the definition of complexity science is given as the understanding of how a collective of large numbers of interrelated agents behave as a whole.

In Hyperinnovation, he has put forward three principles of hyperinnovation. The first principle is that the potential for hyperinnovation is proportional to the number of the meaningful interconnections between agents. He explains this with an equation that says that the number of possible (meaningful or otherwise) interconnections is half of the square of the sum of agents in a network so that 10 agents in a network would have 45 possible interconnections. Chris Harris describes the payoff as being the increase in the number of innovation possibilities.

Thursday, 25 June 2009

Watch Video



Brain Wave of The Future.

What If You Could Move Objects With Your Mind? Well, That Time Has Come.


You slip the wireless headset on. It looks like something a telemarketer would wear, except the earpieces are actually sensors, and what looks like a microphone is a brain wave detector. You place its tip against your forehead, above your left eyebrow.

A few feet away is a ping-pong ball in a clear tube called the Force Trainer. The idea is to use your thoughts alone, as recognized by the wand on your forehead, to lift the ball. Your brain's electrical activity is translated into a signal understood by a little computer that controls a fan that blows the ball up the tube. Levitates it. As if by magic. It's mind over matter.

All you have to do is concentrate. On anything, it doesn't matter. The harder you concentrate, the higher the ball goes. A musician says he played a song in his head and focused on a particular chord change. A former high school tennis star focused on his 120-mph serve. One woman brought the image of a candle flame to mind. The ball rose.
Concentrate. Concentrate.

A sound erupts -- first a groan, then a woooo, WOOOO -- like a Halloween ghost.
The ball spins, slowly at first, then faster.

Concentrate, concentrate.

And then the ball rises inside the tube. Up it lifts, two inches, four inches -- a foot!
You giggle and your concentration is broken; the ghostly sound fades and the ball drops back into its nest with a gurgle.

You have just controlled a physical object with your mind.

Competing mind-over-matter toys from Mattel and Uncle Milton Industries are coming this fall to a store near you. They are the first "brain-computer interfaces" to enter the consumer mainstream.

Toys, but so much more. They embody a dream of the ages: controlling the world with your thoughts. Telekinesis. The stuff of the gods.

Monday, 22 June 2009

TEDxBrighton.



I’m thinking about organising a TEDx event in the near future. I’m talking to TED people about getting an official licence to hold a day of live Speakers, Entertainers and TED archive videos.

Perhaps a small get-together in October 2009, and maybe a larger event in May 2010?

It's branded: 'TEDxBrighton.'

The theme most probably – at this stage - will be around ‘Treat the world as you would like to be treated.’

For one example talk, large scale dance events (raves) are often not given a licence because of noise pollution.

There is a growing number of Wi-Fi technologies that enable so-called silent discos. 2000+ ravers don Wi-Fi headsets with multi-channel connection direct to a number (2, 3, 4, etc) of DJs playing at the same time. Simply select the DJ you want to hear.

Most people don’t talk when they dance either. So noise pollution is drastically lowered.

I'm talking to a company that hires out such equipment, with view for them to do a 10 minute talk on the future of this new silent disco trend.

As above: ‘Treat the world as you would like to be treated.’


Thursday, 18 June 2009

Future Files: Innovation Timeline

Click on title to view Innovation Timeline.


Predicting the future is a dangerous game — the future is never a straight, linear extrapolation from the present.
Unexpected innovations and events will conspire to trip up the best-laid plans — but it’s still better than not thinking about the future at all.

Future Files is a new book filled with provocative forecasts about how the world might change in the next half century.
It examines emerging trends and developments in society, technology, economy, and business, and makes educated speculations as to where they might take us.

Future Files will prove indispensable to business planners and strategists, and anyone else that is curious about the future or needs to stay ahead of the game.
Mind Over Wheelchair Matters.

A research team of the University of Zaragoza has developed a prototype of a brain-actuated wheelchair.

During May 2008, five subjects, only using their thoughts, successfully carried navigation and manoeuvrability tasks with the wheelchair in the University.

The non-invasive method to record the human neural activity was normal EEG signals and a robotised wheelchair equipped with laser sensors.

Sunday, 14 June 2009

Artificial Telepathy Technology.

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Click on above title and watch this video. You'll be amazed!

Cheap, reliable and fast artificial telepathy. Just put on the neck band, and think in your inner-voice.

Called 'Audeo' technology, it's being developed to create a human-computer interface for communication.

When a person intends to speak their brain sends muscle instructions in the form of electrical signals through the nervous system. These electrical signals stimulate the muscles to, under normal circumstances, produce the desired speech.

In many cases however, disease or disability can prevent the muscles from responding to this stimulation. The Audeo gets around this by directly utilizing the electrical activity itself, which even in severe cases can still be present.

This is not just ground braking technology. It is a meta-transformation technology.

Friday, 29 August 2008



'Space Cube' could be world's smallest PC.

Measuring just 2 by 2 inches the ‘Space Cube’ is a tiny PC developed by the Shimafuji Corporation in Japan.

It’s designed for space communication with NASA, ESA, and JAXA space agencies. Its tasked to control various electronics and manage an interstellar computer network.

The Space Cube´s titanium chassis is rock solid to withstand cosmic encounters. It has very low power requirements, just 5 watts running a 300 MHz CPU, 16 MB of on-board flash memory, Linux OS from a 1GB Compact Flash card, a 64MB SDRAM hard drive card, and quipped with a LAN, USB and Ethernet port, with a VGA monitor connector.

Although the Space Cube isn´t currently available outside Japan, a company called Star Dundee plans to start selling the device after making some improvements. When it goes for sale, the Space Cube will be priced at around £1,500.

Sunday, 24 August 2008



In the future, everyone will have 15 nanoseconds of privacy.

‘In the future, everyone will be famous for 15 minutes.’ Is the well-known expression coined by the American artist Andy Warhol.

It referred to the fleeting condition of celebrity that grabs onto an object of media attention, then passes to some new object as soon as people's attention spans are exhausted.

Warhol's comment grew out of his interest in fame and celebrity. His view of the media was that it could enable any person to become famous. The age of reality television, internet blogging, mobile multimedia technology and the general obsession with fame has seen this vision true.

Ultimately however, a reverse affect will emerge as we move deeper into the 21st century.

In the future everyone will have 15 nanosecond of privacy!

It’s inevitable as security concerned move up the political agenda, and as personal information become evermore a premium commodity.

There are well over 2 million CCT cameras spying on the public in the UK (2008). Biometric ID cards will be in place by 2012. Personal data collection, collation, mining and dissemination technology is becoming evermore ubiquitous.

Ergo: In the future, everyone will have 15 nanoseconds of privacy.

Saturday, 23 August 2008

Star Trek XI Priview.

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'The Future Begins.....May 2009'

(Click on title)


Rapid Emergence of Holographic Technology and Applications.

I know people that still say it'll never happen. Only....

From product design to architecture to entertainment to communications to education holographic kit is about to rear its head and smash more technological paradigms per unit time than any other.

Along time in the pipeline, 'High Definition Holographic Projectiors' (HDHP) that are at a marketable price point, practical weight and size, and acceptable reliability are now hitting the market.

There are well over 100 R&D programmes, with dozens of companies launching commercial, and soon consumer HDHP systems. Not to mansion the multiple service providers ranging from marketing communications to entertainment to design.


Holograms in your pocket!

One exciting example is the research going on at the Photonics and Sensors Group at the University of Cambridge. Developing breakthrough holographic technologies, which will power a new generation of pocket-sized holographic projectors.

Holographic projections are in fact surprisingly simple, requiring only a few components, which means they can be made very small. In the near future, holo-projectors will be integrated into laptops, PDAs, even mobile phones.

So why has this not been done before?

(1) Holograms are extremely complex objects mathematically, and calculating them fast enough for video applications is very difficult; even the most powerful computers of - in real-time - the past would take minutes to calculate, generate and project even very a simple holographic video frame.

(2) The projected images produced by early holographic technology tended to be speckled and of very low definition quality.

(3) The lasers that are required to illuminate the holograms have, until very recently, been very expensive and limited in availability.

But this is now history.

Several major breakthroughs have been made, together making possible the generation and display of high quality holograms at video frame rates, using just a single custom chip.

So how does it work?

A hologram pattern, which to the naked eye looks like a collection of random dots, is displayed on a small liquid-crystal-on-silicon (LCOS) microdisplay - a tiny, very fast liquid crystal display built on top of a chip.

The hologram patterns are calculated by a custom ‘holo-chip’ so that when the microdisplay is illuminated by laser light, the light interferes with itself in a complex manner through the physical process of diffraction, which when carefully controlled, results in the formation of a large, high quality projected image on, for example, a screen or a wall.

Musionmedia Real Time Hologrphic Telepresence Demo

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Telstra - the Ozzy Multimedia Corp - used the Musion Eyeliner System to beam a live holographic image of senior staff member, between Melbourne and Adelaide, in what has been billed as world first.

Telstra’s chief technology officer Dr Hugh Bradlow, based in Melbourne, appeared at a business function in Adelaide as a real-time holographic effect and interacted with members of the audience for around 15 minutes.

The real time hologram of Dr Bradlow was made possible by the company's high-speed networks and the Musion Eyeliner holographic projection system.

We've all seen this sort of thing in sci-fi movies, but the reality is here, now and demonstrated.

(Click on title for Holo Vid).

Friday, 22 August 2008

Kate Moss as OB1-Wan Kenobi: is she our only hope?

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Click on title to see Holographic of KM.

Thursday, 21 August 2008



Roll-Up, Roll-Up: Get Your Flexible LCD Display Screens Here!

I like large displays on mobile devices for reading e-mails, e-books, and viewing detailed pictures. But I also like to tuck those devices into my pocket. Only the bigger the gadget’s screen the more it outgrows my pocket size.

Now a hallmark feature of these screens — their rigidity — is changing. New technologies are developing that make displays flexible, foldable or even as rollable as newspaper, so that large screens can be unfurled from small containers.

One new mobile device, the ‘Readius,’ is designed mainly for reading books, magazines, newspapers and mail, is the size of a standard cellphone. Flip it open and a screen tucked within the housing opens to a 5-inch diagonal display.

The screen looks just like a liquid crystal display, but can bend so flexibly that it can wrap around a finger.

The market for flexible displays is likely to grow rapidly. Flexible displays are the crucial enabling technology for a new generation of portable devices. Flexible displays offer the advantages of easy, relatively inexpensive and safe shipping and handling, compared with conventional rigid screens.
'The future isn't what to used to be.'


World’s First E-Book

Amazon's Kindle is an e-book reader, an embedded system for reading electronic books (e-books) launched in the United States by prominent online booksell Amazon.

It uses an electronic paper display, also called e-paper, is a display technology designed to mimic the appearance of ordinary ink on paper.

Unlike a conventional flat panel display, which uses a backlight to illuminate its pixels, electronic paper reflects light like ordinary paper and is capable of holding text and images indefinitely without drawing electricity, while allowing the image to be changed later.

E-paper is considered more comfortable to read than conventional displays. This is due to the stable image, which does not need to be refreshed constantly, the wider viewing angle, and the fact that it uses reflected ambient light.

Kindle downloads content over Amazon, and can be used stand alone without a computer.

On the release day, the Kindle had more than 88,000 digital titles available for download, but that number has steadily increased.

Amazon's first offering of the Kindle sold out in five and a half hours and the device remained out of stock until late April 2008.

At launch, the device retailed for $399; Amazon subsequently lowered the price to $359.


It’s Health Span Stupid.

Some very nice mice were subject to studies in health and longevity.

A mouse gym was built, which held a miniature exercise machine that tested the rodents’ ability to balance on a rotating bar.

Near nearby a water maze, were the nice mice recalled visual cues to swim to safety on a hidden platform. A test of their powers of nice mice memory.

There reason of the nice mice Olympic stadium?

A company called ‘Sirtris’ has two drugs in clinical trials.

One is being tested against Type 2 diabetes, one of the many diseases of aging that the company’s scientists hope the drugs will avert. With success against just one such disease, the impact on health “could be possibly transformational.

The new drugs are called ‘Sirtuin Activators,’ meaning that they activate an enzyme called Sirtuin. The basic theory is that all or most species have an ancient strategy for riding out famines: switch resources from reproduction to tissue maintenance.

A healthy diet but with 30 percent fewer calories than usual triggers this reaction in mice and is the one intervention that reliably increases their life span. The mice seem to live longer because they are somehow protected from the usual diseases that kill them.

But most people cannot keep to a diet with a 30 percent cut in calories, so a drug that could activate the famine reflex might be highly desirable.

The Sirtris drug being tested in diabetic patients is a special formulation of resveratrol that delivers a bloodstream dose five times as high as the chemical alone. This drug, called SRT501, has passed safety tests and, at least in small-scale trials, has reduced the patients’ glucose levels.

The other drug is a small synthetic chemical that is a thousand times as potent as resveratrol in activating sirtuin and can be given at a much smaller dose. Safety tests in people have just started, with no adverse effects so far.

The hope is that activating sirtuins in people would, like a calorically restricted diet in mice, avert degenerative diseases of aging like diabetes, heart disease, cancer and Alzheimer’s.

There is no Food and Drug Administration category for longevity drugs, so if the company is to submit a drug for approval, it needs to be for a specific disease.
Nonetheless, longevity is what has motivated the researchers and what makes the drugs potentially so appealing.


Dr. Christoph Westphal, the chief executive of Sirtris, said of the potential of the drugs, “I think that if we are right, this could extend life span by 5 or 10 percent.” He added that his goal was to develop drugs against specific diseases, with the extension of life being “almost a side effect of our medicine.”

In initial tests in mice, resveratrol has doubled muscular endurance, lowered the bad form of cholesterol, protected against various bad effects of a high-fat diet and suppressed colon cancer. New reports are confirming some of these benefits, but others are ambiguous or puzzling.

The frontiers of science are often turbulent, and it can take years for clarity to emerge from confusion. Dr. Westphal said the decision to ignore the academic debate about exactly how resveratrol may work was one of two principal reasons for Sirtris’s quick success. The other was to focus the company’s limited resources on developing just two drugs.

There’s a much greater chance of a drug that can treat disease than of extending life span. The goal is not the extension of human life span; rather, the prolongation of health is the aim.

Wednesday, 20 August 2008



First Solar Pannels Meet Price-Performance Parity with National Grid.

It’s easy to make a small pile of money off photovoltaic cells but very hard to make a big one. The reason is one of the most fundamental in free-market economics: the larger the market you aim for, the more competitors you’ll have to face.

If you just want to power a billion-dollar space probe, almost any price per watt is acceptable. If you are selling to lonely farmhouses, you just have to charge less than the cost of running a power line to the national grid.

In some parts of the world, competing with grid electricity itself may be an easy game during peak consumption hours. But if you want the off-peak market, you’ll have to price your cells at about US $1 per watt (a 1000 watt solar array would obviously cost $1,000)

That price is called grid parity, and it’s the holy grail of the photovoltaic industry. At least 80 firms around the world, from Austin to Hayward’s Heath, are in the chase.

Surprisingly, at the moment no company is closer to that grail than a little start-up called First Solar, which until very recently had been known only to specialists.

It’s located in Tempe, Arizona USA., and analysts agree that it will very likely meet typical grid-parity prices in ­developed countries in just two to four years.

It’s got a multibillion-dollar order book, it’s selling all the cells it can make, it’s adding production capacity as fast as it can, and its stock price has rocketed from $25 to more than $250 in just 18 months.

The product has three massive cost benefits:

(1) Its active element is just a hundredth the thickness of the old standby, silicon.

(2) It is built on a glass substrate, which enables the production of large panels.

(3) Manufacturing takes just two and a half hour, about a tenth the time it takes for silicon equivalents.

Of course, it’s not enough that First Solar match the costs of fossil-fuel generation on the grid; it must also maintain its economic edge over other photo­voltaics.

There are additional nascent technologies, including cells based on copper indium gallium silicon (CIGS) on glass; and the combination of germanium, gallium arsenide, and gallium indium phosphide.

Even conventional silicon technology, which has dominated the market since its commercial launch in the 1950s, seems to have a lot of kick left in it.

Currently, though, it’s suffering from its own success, as an insatiable demand for silicon cells has led to a scarcity of raw material.

However, if the silicon shortage disappears by the end of the decade, as expected, the sale price should drop substantially from recent levels, which have fluctuated between $3 and $4 per watt.

Friday, 23 May 2008



Now You See It. Now You Don't.

My first view of an 'Invisibility Cloak' was @ the NextFest 2004, in San Francisco.

However, things are thundering ahead.

Researchers at Toyama University announced that they have formulated a ‘Perfect invisible cloak.’

The invisible cloak generates no reflection or phase delay at all even when an electromagnetic wave passes through it. It was developed with the use of an artificial dielectric material called ‘left-handed metamaterial, which has a negative refractive index.

It is predicted that the use of left-handed metamaterials makes electromagnetic control devices available. Some examples of such devices are a lens that reflects no light and a lens that can provide a perfect focal point.

They are believed to be difficult to produce with the existing materials. The latest development relates to one of these control devices.

Here, an invisible cloak refers to a block object with a void in the core or centre, which is designed such that a plane electromagnetic wave with a certain frequency irradiated at this object goes around the void and reaches behind the object.

In particular, the object may be called ‘the perfect visible cloak’ when the electromagnetic wavefront becomes planar again after passing through the object and the amplitude and the phase of the resultant plane wave completely coincide with those of the wavefront obtained when there is no object.


The Coming Clash.

Will the law of unintended consequences rear it’s head in the coming age of marvel cure medical technologies?

Recall the heartening breakthrough treatment for server spinal injury in the blog post below?

Well, it suddenly occurred to me (not in this kind of detail of below course):

‘What if soon one day people with once horrific spinal injuries start to breath, move, walk, and even run normally down to the local once again. But had been comprehensively and quite heavily covered by life and accident insurance before the disaster?’

Then I thought:

‘What if they had been given a truly substantial payout. Say £3 million plus, for instance.’

Then I thought:

‘What if they’d bought a substantial and specially designed property to live in. With 100s of 1000s of pounds of living space adaptations and special needs equipment (a swimming pool, a physiotherapy gym, a special layout kitchen, a specially adapted car, and so on)?


The question remains - and I’m no lawyer - what will be legal position be for both assuror and claimant?

Of course the big assurance houses will be in litigation terra incognito. They’ve paid out £billions world wide in insurance claims to severely debilitated paraplegic people (and rightly so).

But, will the claimant have to pay back all or a major share of the monies?

And with the myriad of revolutionary medical breakthroughs going on; it makes one wonder what other conclict of interest awaits over the legal-technological horizon?

Q.E.D: The Coming Clash!

Tuesday, 8 April 2008



Significant breakthrough in the treatment of spinal injuries.

A University of Cambridge team is close to a breakthrough treatment which could potentially allow damaged nerve fibers to regenerate within the spinal cord.

It may also encourage the remaining undamaged nerve fibers to work more effectively.

Spinal injuries are difficult to treat because the body cannot repair damage to the brain or spinal cord.

Although it is possible for nerves to regenerate, they are blocked by the scar tissue that forms at the site of the spinal injury.

The Cambridge team has identified a bacteria enzyme called chondroitinase which is capable of digesting molecules within scar tissue to allow some nerve fibers to regrow.

The enzyme also promotes nerve plasticity, which potentially means that remaining undamaged nerve fibers have an increased likelihood of making new connections that could bypass the area of damage.

In preliminary tests, the researchers have shown that combining chondroitinase with rehabilitation produces better results than using either technique alone.

Lead researcher Professor James Fawcett said:

'It is rare to find that a spinal cord is completely severed, generally there are still some nerve fibers that are undamaged.

Chondroitinase offers us hope in two ways; firstly it allows some nerve fibers to regenerate and secondly it enables other nerves to take on the role of those fibers that cannot be repaired.

Along with rehabilitation we are very hopeful that at last we may be able to offer paralyzed patients a treatment to improve their condition.


Dr Yolande Harley, of the charity Action Medical Research which funded the work, said:

'This is incredibly exciting, ground-breaking work, which will give new hope to people with recent spinal injuries.'

In the UK there are more than 40,000 people suffering from injuries to their spine, which can take the form of anything from loss of sensation to full paralysis.


How to Effectively Target Your Most Profitable Customers.

If you have that great and highly differentiated idea, then targeting your customers should your next step.

This exercise will also reveal if there is actually a market for your brainchild, whether a radically new gadget, originally themed book, or extraordinarily novel service.

However - and this is important to note - this is where many inventors/authors/marketers fail!

To be sure, attempting to be ‘all things to all people’ by marketing your product to all-and-sundry will lead to a diffused, and an often confused marketing campaign.

Instead, go out and discover the specific Demographic and Psychographic factors of your biggest market. Then market to that audience more than any other and as often as possible.

Demographics are the basic attributes and quantitative characteristics of your market: including the customer sector’s age, gender, profession, culture, employment, industry, income level, marital status, location, and so on.

Psychographics are made up of the emotional and behavioural qualities of your market: including the customer sector’s emotions, reasoning, history, psychology, and thought processes behind their decision to buy your product.

A demographic example might be the number of Workman between age 25 and 55 working in the City area runs to a population of 2,500. A survey shows that 40% of this group might buy a new pair of Work Boots every 9 months.

A psychographic example might be a young girl about town, choosing a new pair of shoes not because she necessarily needs them, but because she wants to look fashionable or sexy or/and in the crowd.

To gather the demographic numbers and psychographic priorities, conduct a survey, which is split into 2 sets of demographic and psychographic questions.

Demographic questions:

Who are your customers?
How many customers are there?
How many customer groups by gender, spending, profession, etc?
Where are each group?
What is the total value of each group?
What is the total volume of each group?
What is the largest customer group by value and volume?
How often do they purchase?
Where do they purchase your product?
Why would (or otherwise) your customers chose to buy yours over the competition?
Why would they buy from you at that specific point in time?

Psychographic questions:

What are your customers motives to buy?
Why do they need or want your product?
In fact, do they need or want your product at all?
What characteristics would they need or want in the product?
What, thus, characteristics need to designed into your product?
Why would your customers buy right away (on impulse) or take their time?
If they shopped around, why would they?
Where would they go and what can you learn?
What do they like the most and the least about the product?
Would they refer your product to others?
If not, why not?

My book Hyperinnovation (see near top side bar) goes into all this much further in part 5 of the book, with a systematic end-to-end methodology.