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So her grandfather actually, he studied carbon, in the sense that he was a diamond dealer.nanotubes, that the conductivity would be different.
nanotubes, that the conductivity would be different.
Nanotechnology, again, studying atoms, molecules.
Nanotechnology that will extend our control down to the molecular level, and we'll go off into space at the same time.
Nanotechnology patterning matter, programmable matter.
Nanotronics and also the work that you do there yourself.
Nanotronics wants to re-envision the way that things are made. You know, really
Nanotronics, but the world has been able to see things and manipulate things at the nano scale for many years, but it's
Nanotronics seems to practice what it preaches because you have just or or really in the midst of a
Nanotronics? You know, what what frame for the audience sort of what
Nanotronics. One being kind of startups who are really trying to do something really hard. The other being established
nanotechnology, patterning matter, programmable matter. The whole world becomes computable. Life itself, programmable, upgradable. What does this
nanotechnology Revolution where we can have billions of Nanobots keeping us healthy at the level of every cell in our
nanotechnology this idea of you know kind of manufacturing materials at the molecular level. Well, then we could do pretty much anything. I mean, then, you
nanotechnology arena for instance people say one of the greatest challenges they
Molecular nanotechnology. Not the kind of thing that makes car tires today, but some kind of more advanced future version of that, like Eric Drexler
of nanotechnology networks -- biologicals, radiologicals, pressure, temperature etc.
What Nanotronics does, we work with a lab that regenerates the esophagus.
about nanotechnology and it's a complicated area because
the carbon nanotubes get pulled in and then the plates touch, causing a short circuit that renders the muscle useless.
of other industries-- nanotechnology, AI, this combination of things drives the system such out of equilibrium
After we invent nanotubes.
knew nothing about nanotechnology, or computers.
So with nanotechnology, we will have actually an incredible world where there will be no waste, no waste.
And with nanotechnology, we will reprocess all materials.
These aren't even nanotubes.
cancer cells using nanotechnology. And the next big thing is when your toilet becomes intelligent.
using the resources of Nanotronics and the philosophy, you know, of sort of rapid innovation
sense that if Nanotronics enables other people to manufacture things, why don't we set up uh a mechanism in order to
How do you think Nanotronics fits into that and where do you see, you know, a positive outcome and and and through
startups in nanotechnology startups in life sciences you don't see the same type of energy that you're seeing in Cambridge Mass or that you're seeing in
and eventually nanotechnology can do what only nation states could have done before we saw this in the first X prise that we put together the anari X prise
so-called nanotechnology it is the merging of those three things that creates the amazing and interesting
we're making enormous inroads with carbon nanot tubes and graphine ever since the 1800s we knew that a space elevator was physically possible if we
Or if you really use nanotechnology and fusion reactors, you could have something like 10 to the 16 people living in a worldwide super building.
It can build this marvelous nanotechnology pieces and transform the Earth system, as you can see from the geological record.
We've done work with carbon nanotubes.
So you would try and think about nanotechnology, scientific biology, all the new technology that we have nowadays, and you would like to think about how that might change our everyday
Which I like to describe as living nanotechnology-- nanotechnology, but alive.
And then we reach molecular nanotechnology, and we are lucky.
What he points out is that nanotubes are essentially excellent wires, and are very, very, very small.
One of our SIM guys made a nanotube radio.
time to tell you about the Revolutionary nanotechnology that is already infu influencing manufacturer and will continue to do so promising higher and
technology uh when we have fullscale nanotechnology we'll be able to email uh a wide range of objects it can then be
He and his team at Nanotronics are building New York's first high-tech manufacturing hub in the Brooklyn Navy
So what what we do at Nanotronics is try to you know, look at the the things that
phase of innovation that has taken Nanotronics outside of its initial
Um it's surprising that Nanotronics is doing this. It feels like something that many companies should be doing, but uh
factor into the kind of the Nanotronics vision of the future?
learning complex adaptive systems and nanotechnologies he was a co-founder of
Let's take a look at nanotechnology today.
Listen to native speakers pronounce “nanot” in real conversational contexts with synchronized timestamps and subtitles.
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