The rotors stopped turning when the remaining engine was shut down, and the helo rolled on his side and began to sink.
and rotoscoping is an animation technique where you draw directly on top of video material, frame by frame. In my case, the work is completely hand done. And the second thing I wanna say
Si yo la roto 180 grados, la misma imagen, se ve mucho más rara así, ¿no?
And there they use roto vaps and all sorts of crazy contraptions when it comes o making the tagliatelle.
There were three rotors originally to scramble the German messages.
They add a fourth rotor.
Then the sound of rotor blades rose above the din and the US military Blackhawk helicopter touched down in a plume of dust.
field in the rotor.
This is the Enigma rotor.
The innovation is these rotors that messes up the alphabet.
It advances the rotors mechanically, not electrically.
The left rotor isn't going to move anything.
So the rotor order is going to be 3, 1, 2 in my example.
Here's Rotor 1-- I mean 3.
And so the third rotor actually never moves in the entire message.
all the rotos and also all the stew and um the way in which they need you cook
hero abstract expression is is Mark Roto not Jackson po ah interesting okay so but what I was going to say also though is that the problem going back to
Now they also have six rotors instead of two, which means Chopper can hold a lot, even carrying a scientific payload of its own.
degrees C uh I mean the the rotors literally glow um and uh I don't know there's a picture there that the car is
So every time this piece of the rotor gets up there, it has to have a north pole so it's repelled by the stator.
you change the magnetic field is the rotor.
But only the right two rotors matter.
And then it goes through the three rotors, where it's changed.
Then they had to place the rotors in a particular configuration.
You can eliminate a lot of rotor positions, because you can't have one letter coming back to the same letter.
The other is that the rotors had a regular odometer motion to them.
And it had five other rotors to change the motion of those 10 rotors.
And 250 wouldn't allow that third rotor to move.
There’s rotary devices or multi-rotor.
cows walk around a a rotor and and charge up a car battery but that was the
can prepare next one yeah here we have a beautiful Roto
was the Jefferson Airplane the Grateful Dead Jeth rotol we ended up with a concert for Pink Floyd in Canterbury in
preparation, a rotovaps and sous vide and all sorts of stuff, changing the way that food is prepared, at least in the hands of some chefs.
And this rectangle that you see in the middle is the rotor.
We're going to induce a magnetic field in the rotor, and we're going to have a rotating magnetic field in the stator.
So an A may be connected to a G in this rotor, but the A may be connected to a B in one of the others.
And here what we found out was that the rotor-based cipher machine was not invented by these four gentleman that I showed you earlier.
Then it goes through each of the three rotors.
So the way they used it with just five rotors, the way they used the plug board and so forth, what they saw
The next thing I have to do is put these rotors on a particular setting.
They're all intact. It's the rotors.
machines more complicated. It adds a rotor.
Why? Because innovations are to add more rotors, to change the carrying capacity, make it bigger, make it smaller.
And it turns out that the Enigma machine wasn't the only rotor-based cipher machine.
OK. And here is a picture of the rotors.
OK. And so this is the rotors.
So that gives you a sense for the key strength of just the rotors.
And what that does is it takes the signal from the leftmost rotor and it swaps it for another letter.
So what they had them do was they had them send a new rotor setting.
And the difference between the SIGABA and this is that it had 10 rotors to change the letters.