If the mine winch diameter is 6m calculate how far the counterweight will lift for each single rotation use formula 2ñr

Well, well, well! It seems like we've got ourselves a mathematical situation here! So, what we have is a mine winch with a diameter of 6 meters, and we need to calculate how far the counterweight will lift for each single rotation by using the formula 2πr.

Now, to find the distance lifted, we need to determine the radius of the winch. The radius is half the diameter, which means it would be 3 meters, my friend!

Now that we have the radius, we can plug it into our formula, which is 2πr. So, it's 2 times π (approximately 3.14159) times 3. Are you following along? Great!

So, when we crunch those numbers, we get approximately 18.84955592 meters. That's how far the counterweight will lift for each single rotation of the mine winch! Quite impressive, don't you think?

Remember, though, my friend, that this calculation assumes a perfect, frictionless system. In reality, there might be various factors that can affect the exact distance lifted. But for now, let's just enjoy the beauty of the math, shall we?

To calculate how far the counterweight will lift for each single rotation, you need to use the formula 2πr, where r is the radius of the mine winch.

Given that the diameter of the mine winch is 6m, we can calculate the radius by dividing the diameter by 2:
radius = diameter/2 = 6m/2 = 3m

Now we can use the formula 2πr to calculate the distance the counterweight will lift for each single rotation:
distance lifted = 2πr = 2π(3m) = 6πm

Therefore, the counterweight will lift a distance of 6πm for each single rotation.

To calculate how far the counterweight will lift for each single rotation, you can use the formula: 2 * π * r, where r is the radius of the mine winch.

Given that the diameter of the mine winch is 6m, the radius can be calculated by dividing the diameter by 2:

radius (r) = diameter / 2 = 6m / 2 = 3m

Now, substitute the value of the radius into the formula:

Lift distance per rotation = 2 * π * 3m

Lift distance per rotation = 6π meters (approximately)

Therefore, the counterweight will lift approximately 6π meters for each single rotation of the mine winch.