Examples of using The robot in English and their translations into Marathi
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Ecclesiastic
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Computer
It's not about the robots.
The robot suddenly stops working.
If you spin these rotors at the same speed, the robot hovers.
The robots even think they themselves are humans.
No matter how you throw it, the robot recovers and comes back to him.
The robot is designed to move quickly and.
And it's not just because, you know, we are the one building the robots.
The robots and 3D printing will take them too.
So these are circular trajectories, where the robot pulls about two G's.
Although no, the robot is able to trade much better!
That would be like a science fiction movie where the robots come to life, wouldn't it be?
We insist that the robots be agnostic to who their neighbors are.
If you increase the speed of each of these rotors, then the robot flies up, it accelerates up.
It also tells the robot where these obstacles are.
So one of the advantages of this designis when you scale things down, the robot naturally becomes agile.
And the robots that play in the video are completely autonomous.
So this robot isactually being commanded remotely by Frank, but the robot can also figure out where to go on its own.
Of course, if the robot were tilted, inclined to the horizontal, then it would accelerate in this direction.
Not my proudest moment, but I can still listen to it-my pathetic wheedling- because the robot recorded, saved and uploaded it to the cloud.
So his algorithm tells the robot what part to pick up, when, and where to place it.
And then finally, if you spin opposite pairs of rotors faster than the other pair,then the robot yaws about the vertical axis.
So here, you see the robot combining a motion that builds up momentum, and then changes its orientation and then recovers.
So these minimum-snap trajectories in this flat space arethen transformed back into this complicated 12-dimensional space, which the robot must do for control and then execution.
And in the first video, you will see the robot going from point A to point B, through an intermediate point.
Thus, it was initially an unprofitable project, because it couldn't even cover all costs for electricity, powerful servers andcomputers carrying out calculations for the project Especially, one should remember that the robot earnings are not always high, but the money for maintenance is to be paid steadily.
(Applause) So another thing the robot can do is it remembers pieces of trajectory that it learns or is pre-programmed.
So here, the robot is not only solving the problem of how to go from point A to point B in this map, but it's figuring out what the best point B is at every time.
Since, he does not know fatigue, fear, inattention, inaccuracy and greed. The robot precisely fulfills the conditions of the trading strategy prescribed in it and makes a profit!
But the thing was that the robot made this money from the initial capital in 1 thousand, while the monthly support for the entire technical infrastructure required to sustain the project cost around a 10 thousand.
So one fundamental problem that the robots have to solve if they are to be autonomous, is essentially figuring out how to get from point A to point B.