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Latest gadgets In Technology

Sunday, 15 September 2013

Ghost keyboard Typing

Hey guys , Today I am going to share with you a Short but Cool notepad trick. You can show it to your friends and surprise them. Basically it is a prank that you can do with anyone just for fun.
This Process is Also known as “ Ghost Keyboard Typing ”
ghost keyboard typing.

Just follow the simple steps to Learn the Prank


Step 1: Right click on your desktop and select create new text document or simply Open Notepad.
Step 2: Exactly Copy the code given below and Paste it in notepad document that you have just created.


set wshshell = wscript.CreateObject(“wScript.Shell”)
wshshell.run “Notepad”
wscript.sleep 400
wshshell.sendkeys “S”
wscript.sleep 100
wshshell.sendkeys “M”
wscript.sleep 120
wshshell.sendkeys “A”
wscript.sleep 200
wshshell.sendkeys “R”
wscript.sleep 100
wshshell.sendkeys “T”
wscript.sleep 140
wshshell.sendkeys “T”
wscript.sleep 100
wshshell.sendkeys “R”
wscript.sleep 50
wshshell.sendkeys “I”
wscript.sleep 120
wshshell.sendkeys “C”
wscript.sleep 170
wshshell.sendkeys “K”
wscript.sleep 100
wshshell.sendkeys “S”
wscript.sleep 50
wshshell.sendkeys “.”
wscript.sleep 120
wshshell.sendkeys “N”
wscript.sleep 160
wshshell.sendkeys “E”
wscript.sleep 200
wshshell.sendkeys “T”
wscript.sleep 100

Step 3: Save the above code in Notepad file As ” smarttricks.vbs ” (Without Quotes ) but make sure  While saving this file select Save as type  ”All files” and extension must be .vbs
Step 4: Now double click on The saved File, You will see “SMARTTRICKS.NET ” will be typed  Automatically. Moreover  you can edit the Words In the above given Code with any desired words you want Notepad to type for you. e.g. : MY FRIEND READING THIS IS FOOL.
IMPORTANT !!! 
While Double Clickin on the saved file if you see an error box like ” line 1 ” and “Char 37” Then dont worry, Right click on smarttricks.net and click on edit,
Now delete all Double quotations ie : ”  and Type them all manually from your keyboard, save it and now you will have no errors.
Enjoy the prank !!

How to Increase battery life of your laptop

Every laptop or Netbook user these days have the same headache of limited backup time of batteries. As far as your system is new , you will have a good backup time but when it becomes a few months old you will definitely face problem of limited battery life.
So here I am giving you a solution to Increase battery life of your laptop upto a sufficient extent.
increase battery life of your laptop
There is an inbuilt command in your computer for improving battery life as well as the performance of the system but not all users are aware of it. Some laptops directly provide an interface with option termed as “ POWER SAVING MODE ” but  if your laptop is old or don’t have this feature by default , you need not to worry because you can do the same task manually.
If you have a laptop with Windows 7 installed, you can use the ‘powercfg‘ command . It will display useful information about your laptop’s energy consumption and usage. If  you can understand and maintain  it correctly then you can extend your Battery life and performance by great amount.

Steps to execute this command :


Step 1: Click on the Start Menu and type “ CMD ” in the Start Search bar.

Step 2: The search will start and it will then display an icon of “ CMD ” . simply right click on it and select Run as administrator.

Step 3: It will open command line, now simply run the command “powercfg -energy” without quotes. (For windows 7 users.)
                                 -OR-
Simply run the command “powercfg /energy” without quotes. (For windows 8 users.)

Step 4: Now Press “Enter”.

Once you successfully execute this command , Windows  will run a complete scan of  your system and it will find some ways to improve performance and power efficiency.
The results of this process will be saved to an HTML file, which is commonly  present  in the “System32” folder of most of the systems.
To access this file, simply follow the path which will be displayed in command prompt window after completion of the command. Read This file to understand that what program in your system is consuming more power and degrading the performance.

Thursday, 12 September 2013

ARTIFICAL CANDLE LIGHT DINNER AT HOME

ARTIFICAL CANDLE LIGHT DINNER AT HOME

  Philips-led-rechargeable-tea-light  


Image_Lifestyle.jpgFor a candle light dinner natural looking artificial led  tea cup lights
in diifernt colors and styles that creates romantic atmosphere around you and your loved ones grab this concept candles soon. Philips provides you these candles at different ranges.


Set of 6 rechargeable tea lights for gentle ambiance around the home; LED “flames” flicker and glow in perfect replication of real candlelight
Up to 20 hours of candlelight on a full charge; water-resistant, cool-touch design;safe for indoor/outdoor use; wireless induction charger and 6 clear-glass votive cups included;Measures approximately 5 inches wide by 7 inches deep by 2-2/5 inches high; 2-year limited warranty




 Candle_Set_blanc.jpgLED_AquaLight_2.jpgImageo.jpgTealight_Lifestyle_3.jpg

Saturday, 6 April 2013

Thermoelectric Fan Powered by a Candle

                      


videoThermoelectric Fan Powered by a Candle
A Thermoelectric generator powered by a tealight. It started as an experiment of how much power I could get from one candle. But I liked the idea and it worked really well so I built this electric-mechanical ornament. I did not use a high temperature TEG-module, but instead a cheap TEC-module. That can still handle 200 degrees Celsius which is good enough.

Concept:
It is also called a peltier element and when you use it as a generator it's called seebeck effect. You have one hot side and one cold. The module generates power to drive a motor and the motor fan/air flow will cool the upper heat sink. Higher temperature difference => increased output power  => increased motor RPM => increased air flow => increased temperature difference and so on. The airflow will spread the heat into your room, which is the purpose of this construction.
http://en.wikipedia.org/wiki/Thermoelectric_effect

If you unmounts the basement you could also use it as a stove-fan or move air from other heat sources. The motor start to turn at about 15 degrees difference, which to my surprise worked when I just went outdoors with it and the upper heat sink got cooler than the basement. You can place it in hot water, on an ice cube, a pizza and it works just as fine.

Total cost was about 50€ (incl. shipping costs). I used some spare parts but I bought most of it.

Components used:
• CPU-cooler (cold side): Zalman CNPS5X (Base plate: 33x33mm)
• CPU-cooler (hot side): From an old PC (WxLxH=78x63x67mm)
• TEC-module: TEC1-07110T200 (30x30x3.3mm)
• DC Motor: 1,5-3V
• USB-fan (metal, only needed the fan)
• Thermal paste: Arctic MX-4
• A piece of wood
• Two pull springs
• Four M4 bolts and two M3 bolts
• Aluminum tubes (optional)

TEC specification (at ΔT=68C):
Vmax: 8.5
Imax: 10
Qmax: 52.7
Tmax: 200 degrees Celsius
Source: http://www.termo-gen.se/sidor/modules.html

Construction:
First of all, it does not need to be exactly those components. Other heat sinks, TEC/TEG, motor, fan, thermal paste, bolts and base plate can be used. Main concept rules are:
  • A TEC or TEG module (smaller dimension than upper heat sink base plate). Specifications are not that important but make sure it can handle high temperature. Many modules are only 100 degrees C and then you need to modify the construction as it gets warmer than that.
  • One hot side that is not hotter than TEC max-temp (My candle flame never touches the surface)
  • One cold side, an efficient heat sink (heat pipes) are a good choice
  • Good thermal paste to maximize temperature difference
  • Low voltage motor, around 1V. I prefer it to be quite (low dB)
  • Fan with high air flow at low RPM
  • Base plate that adds stability, holder for light, isolate heat
  •  
The lower heat sink (hot side) was cut and polished to get it nice looking. I kept 5mm of the fins to absorb the heat well when the light flame burns and increases distance to the surface. New dimensions are 78x63x15mm. 4 holes are drilled through the heat sink and threaded as M4. 4 bolts will hold the lower heat sink on top of a wooden platform. Bolts go through the platform from below, covered with aluminum pipes for a better looking design and are screwed into the heat sink. The distance between wood and heat sink is 35mm but I would make it 40-45mm as the flame almost touches the surface. You don´t want that because it creates black soot. The lower heat sink gets really warm but at the same time it works as a cooler to not get TOO warm, that would melt the TEG-module.

Two springs attached to M3 bolts fixate the upper heat sink on the lower, with TEC-module and thermal paste in between. Both surfaces of the TEC are covered with a thin smooth layer of thermal paste. The springs adds pressure as well as isolate the heat to travel to the cold side. The upper heat sink could also be screwed into the lower heat sink but then you need isolated screws.

The TEC is directly attached/soldered to the motor and the motor is attached to the upper heat sink by another small piece of metal and a cable tie. The fan is attached to the motor with a small belt wheel and glue.

Result:
I think the hot aluminum part get to about 100-150 Celsius, I measured the temp with a grill thermometer covered in thermal paste but can´t tell how accurate it was. I measured 0.4V and 0.25A with one candle and 0.67V and 0.54A with two. That results in 0.1W resp. 0.36W output power. The efficiency to produce electricity this way is not that impressive though. A candle produce about 25 Watts, that means 0.7% efficiency.. But who cares, everything this machine does will eventually end up in heat any way =) That is a bit interesting, you increase the room-heating speed (I think) but looses nothing..

It is a bit noisy to have running all the time. To find the optimal motor/fan => airflow/noise level will require some more experimenting.

Mod Proposals:
  • Skip the base platform and bolts and use it as a stove-fan.
  • Use two/four TECs side-by-side to multiply output power. Add a 5-10mm thick copper plate that covers all modules and then place the CPU-cooler on top of that.
  • Use a brushless DC motor and a suitable fan to make it noiseless.
  • Build in a slow motor beneath the platform to make the whole thing spin 360 degrees.
  • Put wheels on the platform.

Monday, 31 December 2012

India's Top 12 Tech Stories Of 2012


Here are the top 12 Tech Stories Of India in 2012


#12 Microsoft debuts the Surface


Microsoft’s Windows 8 operating system was trending this year but what attracted Indians more is the debut of Microsoft’s first real hardware, the Surface. Eventhough the Windows operated tablet is not yet available in the country, the netizens literally clicked any news ‘surfaced’ on this, maybe it’s the love for a hardware from Microsoft, a company which defined the term ‘computer’ for India.    


#11 Facebook Blows Past A Billion Users


Facebook scored the 11th position in Indian tech stories for the year. No wonder, according to the recant statistics, India has the second largest Facebook population in the world after United States. The country also tops the list of future growth opportunities for the social network. So how can it be possible for the world’s largest social network to touch the ‘1 billion’ milestone without an Indian thrust.


#10 Cloud computing


Cloud computing, the new face of IT made it to the top 10 tech stories in India. According to a recent study conducted by Vmware and Forrester Consulting, the cloud computing is witnessing a strong growth in the country with 25 percent over last year. Many Indian companies, who were hesitant to adopt cloud, are now planning to deploy it in the coming 18 months. Adding to it, people are also showing more interest on cloud based storage services instead of the traditional data storage systems. 
#9 Apple wins copyright infringement


Apple was always a hot grab for netizens.Eventhough the company had not yet shown much interest in India with its products, it has an amazing fan base in the country. So the Indians were keen to know about what’s happening with the Cupertino tech giant. Thus the historic patent victory of Apple on Samsung became one of the most sought out news in 2012.


#8 Pinterest


Pinterest, the third largest social network and the once hyped Facebook rival, is not catching up to the expectations lately. However Indians, who mostly welcome any social networks, haven’t avoided the pin-board site too. The stories related to Pinterest surfaced to the 8th spot liked by people.




#7 Google driverless car


Google, the world’s most popular search engine is mesmerizing the world lately with its amazing inventions. The waves of its inventions reach every corner of the world from Silicon Valley. Among those,the driverless car, which was granted a license to run on the streets of Nevadainterested Indians a lot. Google had lobbied to pass the law for the car which according to Google "knew what they were doing” and the first ever license was issued to a Toyota Prius modified with Google's experimental driverless technology.


#6 SOPA Blackout

The SOPA blackout, which led the initiative to kill the Stop Online Privacy Act bill, received a warm reception in India. The tech news became one among the top 10 in India as the internet joined its hands together, including all the major websites like Wikipedia to protest against the law which contradictory to the proponents’ arguments, will limit free speech, invade privacy, and limit creativity.


#5 Crowdfunding comes of age


Crowdfunding- a platform where entrepreneurs raise money from public to fulfill their project, was not a popular term in India a couple of years back. But it gained traction this year and got placed in the top 5 tech stories for the year. Crowdfunding will perfectly fit a country like India As it progress in terms of tech innovations and more and more entrepreneurs being born every day.



#4 Facebook buys Instagram


One of the biggest technology acquisitions of the year, Facebook’s Instagram buyout, interestingly was under the watchful eyes of tech fans in India.   The social network had spent a whopping $1 billion to acquire the company, a process which got applause and criticism at the same time. With the changes in its privacy policies, Instagram recently is in topics with users threatening to abandon the product.


#3 Facebook IPO


Facebook’s historical IPO fiasco suppressed the hunger of tech followers in India for a long time, as it was one of the best tech stories that trended in the country according to Yahoo, for the first phase of 2012. The social network, which set out on a dream journey, had crumbled on its IPO day, inviting criticism from all around the globe and even getting sued by investors.


#2 Google glass


Google Glass, which can be called as the gadget innovation of the year, stole the heart of Indians, along with the rest of world. The news on this wearable computer from the tech giant, which can do un-imaginary things, was a big sensation among the gadget freaks.  According to recent reports, the gadget, which was expected to be delivered in December, will be hitting shelves on first half of next year.


#1 iPhone 5 and the iPad mini


Indians caught on with the world’s trend as Apple’s devices, especially the latest releasediPhone 5 and iPad invoked huge thirst among tech followers in the country. The tech stories related to these topics was the top one for the year 2012. To make things better,  Apple finally has taken initiatives to make its devices available in the country without huge delay.


Tuesday, 31 July 2012

Modern robots are driven by brushless AC servo motors


Almost all modern Robots are driven by brushless AC servo motors but many of the robots existing in industry use other drives.


Pneumatics 
Many of the simple pick and place arms are driven by pneumatics. This makes them cheap but has the disadvantage of being difficult to control. Pneumatics are still used with a number of modern robots to drive end effectors.
Hydraulics 
Hydraulic drives were used on a large number of the early robots as it was more rigid and controllable than pneumatics and it could provide more power than the electric drives then available. The problems with hydraulics are that it tends to be fairly slow in operation and that due to the high pressures involved leaks can be very messy.
Electric 
There are three major types of electric drive that have been used for robots. Stepper Motors These are used mainly for simple pick and place mechanisms where cheapness is more important than power or controllability.
  • DC Servos 
    For the early electric robots the DC servo drive was used extensively. It gave good power output with a high degree of control of both speed and position.
  • AC Servos 
    In recent years the AC servo has taken over from the DC servo as the standard drive. These modern motors give higher power output and are almost silent in operation. As they have no brushes they are very reliable and require almost no maintenance in operation.

Thursday, 19 July 2012

HydroBOB Puts the Scooter Underwater !



For those with no diving experience, or who don’t know how to swim, Andrew Sneath has created an underwater vehicle just for you. Offering a controlled environment, and the ability to breathe regularly thanks to a bubble around the rider’s head, the HydroBOB underwater scooter is perhaps not the most graceful device to ever descend beneath the waves, but it does look like a somewhat safe method to experience the joys of being underwater.
The HydroBOB is consisted of three parts: the scooter, a viewing bubble that has a 180 degree view, and an oxygen tank. The rider sits on the seat and holds onto the handlebars, where triggers can be used to control the thrust. As we said above, the ride doesn’t seem to be all that smooth, but we imagine that it could probably be a lot worse. The ride is slow, but for those who can’t swim, that may be a good thing.

The underwater scooter is connected to a support structure above the surface of the water. Considering the large tether that connects the scooter and the support structure above, the HydroBOB probably can’t go very far. The BOB in HydroBOB stands for Breathing Observation Bubble. If you’re interested in taking a ride on the scooter, you’ll have to head to Ft. Lauderdale, Florida, where you can rent your very own for $25 per hour. Or you can rent one for a private event. Check out the HydroBOB in action below.



Monday, 16 July 2012

Dubai to Build Underwater Hotel



Dubai’s thirst for crass civic projects and buildings cannot, it seems, be quenched. In the last decade, the emirate has cultivated an utterly strange landscape of isolated icons, each one more “spectacular”,”daring”, and “different” than the last.  From the vacuous iconicity of the Burj Khalifa to the ludicrous ambition of ”the World“, Dubai’s tolerance for an asinine and radically depoliticized architecture has yet to be exceeded. See the latest conceptual project, Deep Ocean Technology’s proposed Water Discus Underwater Hotel, another “diamond in the rough (waters)” scheme that envisions a partially submerged object of vage sci-fi origins. And, by vague, we mean Star Trek.


According to the sleek initial renderings, the hotel is to be stranded in a reef, with lodging above and below the waterline. The structure consists of a system of modular programmatic discs, anchored to the seafloor by steel legs capable of withstanding tsunami-scale conditions. The discs can be moved, replaced, and multiplied to alter the hotel’s composition and respond to the vagaries of sea life.


The skyward discs suspended above the waterline will be programmed with a helipad, spa, gardens, and terraces that reveal vast panoramas of the shore beyond, while the underwater accommodations will extend twenty-one stories down into the water to open up intimate views of the diverse marine habitat. The project presents an advancement for housing and tourism in coastal off-shore areas, according to the hotel’s investors, who also claim that the hotel’s modular structure can double as a “laboratory tool” with which to further oceanographic research in the region and work towards creating “new underwater ecosystems and activities on underwater world protection.”


Laptop Kitchen: Portable Notebook Computer Cooks Food !


Desktop (or would that be counter-top?) kitchens are so 2000s. Drawing design inspiration from that most familiar of everyday portable devices, this conceptual kitchen-to-go contains a four-tier induction cooking element, built-in cutting board, ingredient grater and, of course, a touchscreen interface and wireless connectivity. 


A few button touches bring up favorite recipes or new cooking ideas and nutritional information on ingredients or menus. Bluetooth, wifi and camera included, of course (what device doesn’t come with those these days?).


It may yet be a bit of a daydream, though, to suppose that such a thing would really work – there are issues such as safety (including separation of the heating element), power requirements and, maybe most of all, cleaning that need to be contended with before this work by Dragan Trenchevski could become a reality. And, alas, food means weight and space, as do pots and pans, so the portability needs some additional thought as well.

Will we ever create intelligent robots?


Walking, talking androids have been a sci-fi staple for decades, but as John Pavlus reports building one in reality is still a matter of getting the right parts and smarts.


-We made you ‘cause we could.

- Can you imagine how disappointing it would be for you to hear the same thing from your creator?

In Prometheus, Ridley Scott’s film about a space expedition searching for the origins of human life, the elegant, Lawrence-of-Arabia loving android David discovers from a crew member the possible motives behind his own creation – and understandably finds this less than inspiring.

But the idea of creating intelligent robots has fired human imagination for decades. These robots have taken many forms in speculative fiction, from the seductive charms of Futura in Fritz Lang’s masterpiece Metropolis to the urbane, existential angst of David in Prometheus. In reality, though, how far have we progressed towards being able to create an intelligent robot just “’cause we could”?


To understand where we are now, we have to go back about twenty years, to a time when artificial intelligence research was in crisis. Rodney Brooks, then a professor of Electrical Engineering and Computer Science at the Massachusetts Institute of Technology, wrote a landmark paper in 1990 stating: "Artificial Intelligence research has foundered in a sea of incrementalism… small AI companies are folding, and attendance is well down at national and international Artificial Intelligence conferences... What has gone wrong?"

The problem, as Brooks saw it, was that the type of research inspired by Alan Turing’s famous artificial intelligence test had hit a dead end. The Turing test directed decades of AI efforts towards devising computer systems that “thought” by solving logic problems –focusing on the "sea of symbols", as Brooks put it, that were believed to undergird intelligence. These systems could shuffle and sort information with dizzying speed, giving them the appearance of intelligence when performing certain abstract tasks (like playing chess). But when it came to “common sense” intelligence – the kind we rely on when selecting a book from a bookshelf, distinguishing a cat from a dog or a rock, or holding a glass of water without dropping or crushing it – this symbolic, Turing-style AI couldn’t cope.

Get smart

A better alternative for AI was to take a “situated” route, as Brooks called it. The first order of business: forget about building brains that can solve logical problems. Instead, focus on building bodies that can deal with and respond to the physical world. In other words: build robots.

There's something about an embodied agent that seems more "intelligent", in a general sense, than any algorithm. IBM's Watson system may be able to beat humans at Jeopardy! with its deep reservoir of facts – an impressive simulation of "book smarts". But Boston Dynamics' Big Dog robot, manoeuvering itself sure-footedly up hills and around unfamiliar obstacles, and even maintaining its balance when shoved by its human companion, actually seems to be smart – at least, in the same way a dog or horse is.

"One kind of smart has to do with knowing a lot of facts and being able to reason and solve problems; another kind of smart has to do with understanding how our bodies work and being able to control them," says Marc Raibert, CEO of Boston Dynamics. "That kind of smart helps people and animals move with remarkable mobility, agility, dexterity, and speed."
 

When Brooks wrote about this new kind of artificial intelligence in his 1990 paper, he introduced half a dozen robots who look like Big Dog's evolutionary ancestors. One of them was Genghis, a six-legged insect-like robot that could autonomously negotiate unfamiliar terrain in an eerily lifelike way, without any high-order processing or centralized control system. All it had were lots of simple sensors "tightly coupled" to motor controllers in each leg, loosely connected in a “nerve-like” network to pass sensory information between the motors, "without any attempt at integration".

This primitive-seeming architecture, wrote Brooks, was the key to someday building artificially intelligent robots: Parts before smarts.

Brooks's insight paved the way for Boston Dynamics' lifelike robots, as well as Brooks's own iRobotcorporation (which manufactures Roombas and bomb-defusing robots for the military). And yet a truly intelligent robot – with parts and smarts equivalent even to that of a domestic dog – has yet to be built. Why? Not because situated AI turned out to be yet another dead end, but because it addressed a newer, harder problem, known as Moravec's Paradox. "It is comparatively easy to make computers exhibit adult level performance on intelligence tests or playing checkers, and difficult or impossible to give them the skills of a one-year-old [human] when it comes to perception and mobility," roboticist Hans Moravec wrote in 1988.

Acting human

So how can we solve Moravec's Paradox? One approach is to take the assumptions of situated AI to their logical endpoint: If we want to build a robot with human-like intelligence, first build a robot with humanlike anatomy. A team of European researchers has done just that: their ECCERobot (Embodied Cognition in a Compliantly Engineered Robot) has a thermoplastic skeleton complete with vertebrae, phalanges, and a ribcage. Instead of rigid motors, it has muscle-like actuators and rubber tendons. It has as many degrees of movement as a human torso; it flops into a heap when its power is turned off, just like an unconscious human would. And most importantly, all of these parts are studded with sensors.

"The patterns of sensory stimulation that we generate from moving our bodies in space and interacting with our environment are the basic building blocks of cognition," says Rolf Pfeifer, a lead researcher on ECCERobot. "When I grasp a cup, I am inducing sensory stimulation in the hand; in my eyes, from seeing how the scene changes; and proprioceptively [in my muscles], since I can feel its weight.”

These sensory patterns are the raw material for the brain to learn something about the environment and how to make distinctions in the real world, says Pfeifer, and these patterns depend strongly on the particular actions we perform with our particular body parts. “So if we want the robot to acquire the same concepts that we do,” he says, “it would have to start by generating the same sensory patterns that we do, which implies that it would need to have the same body plan as we do."

For now, ECCERobot's humanoid physiology is so difficult to control that it can barely pick up an object, much less exhibit intelligent behaviour. But Pfeifer and his team aren't the only ones exploring this "anthropomimetic" strategy: Boston Dynamics, the same firm that created Big Dog, is working with DARPA, the US military's research wing, to develop a humanoid robot called ATLAS which will "use the arms in conjunction with the legs to get higher levels of rough-terrain locomotion," says Raibert.

In any case, says Pfeifer, building an intelligent humanoid robot – one that "can smoothly interact with humans and human environments in a natural way" – will require breakthroughs in computing and battery efficiency, not to mention a quantum leap in sensory equipment. "A really crucial development will be skin," he says. "Skin is extremely important in the development of intelligence because it provides such rich sensory patterns: touch, temperature, pain, all at once."

A robot with skin and human-like internal anatomy starts to sound less like a robot at all, and more like a synthetic organism – much like David in Prometheus. Which takes us back to the question he asks in the film. Or as Pfeifer more pragmatically puts it: "Why build a robot which is a very fragile and expensive copy of a human being?"

It is a very useful goal, Pfeifer argues. “Even if we still mostly want robots to do specialized tasks, there will be tons of spinoffs from an understanding of humanoid, intelligent behaviour. Yes, we'll draw inspiration from biology. But that doesn't imply that we won't go beyond it."

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