US /tɔrk/
・UK /tɔ:k/
They have a lot of torque in their hands and arms and legs.
They have a lot of torque in their hands and arms and legs.
However, for the back wheels, we need more torque.
So for this, we developed a new generation of motors that has approximately twice the amount of torque.
Now, you can utilise this better centre of balance in two ways: to create faster torque in your punches, which will generate more power.
Since he likes to fight off from a wider stance, this allows him to create even more torque and generate even more powerful punches.
Being able to maintain this external rotation torque.
So start first with just body weight, being able to maintain this external rotation torque.
Now, from here, we're creating external rotation torque.
Now, from here, we're creating external rotation torque.
so it's all-wheel drive one motor in the front turn two on the rear will do torque steering I
10,000 Newton meters of torque you know what that means, it's stupid
Isn't the sound of 503 horsepower and 479 lb-ft of torque lovely?
503 horsepower and 479 pound-feet of torque
All else being equal, the more blades a windmill has, the more torque it can generate, but also the more drag it has, because each additional blade has to cut through the wind, and drag grows quickly the faster the windmill is spinning.
On the other hand, a windmill with fewer blades generates less torque, but also experiences less drag, so fewer bladed windmills tend to work better at higher rotational speeds.
This gives it some really impressive real-time computing and torque control capabilities.
This gives it some really impressive real-time computing and torque control capabilities.
Cut it down to a 1.5 horsepower motor that goes through a 25:1 reduction transmission, a 71:1 torque hub that drives the two 16-inch in diameter wheels.
It goes through a 25 to 1 reduction transmission, a 71 to 1 torque hub that drives the 216 inch in diameter wheels.