The work required to move the 5.00-kg block 7.25 m can be calculated using the formula: work = force x distance. However, since the force applied is not given, the work cannot be determined with the information provided.
500kg is equivalent to approximately 1102.31 pounds.
500 kilograms is equal to 1102.31 pounds.
The work done to lift the 500kg mass to a height of 10 meters is given by the formula: work = force x distance. In this case, the force required to lift the mass against gravity is equal to its weight, which is given by: force = mass x gravity. Therefore, the work done would be: work = 500kg x 9.8m/s^2 x 10m = 49,000 Joules.
The work done by the machine would be the force required to lift the object multiplied by the distance it was lifted, which is 500kg * 9.81 m/s^2 * 20m = 98100 J. The power output would then be work done divided by time taken, which is 98100 J / 60 s = 1635 W or 1.64 kW.
500kg = 1,102lb 4.98oz
500kg is equivalent to approximately 1102.31 pounds.
500kg
about 100 pouns
500 kilograms is equal to 1102.31 pounds.
500 kg = 17,637 ounces (approx).
The work done to lift the 500kg mass to a height of 10 meters is given by the formula: work = force x distance. In this case, the force required to lift the mass against gravity is equal to its weight, which is given by: force = mass x gravity. Therefore, the work done would be: work = 500kg x 9.8m/s^2 x 10m = 49,000 Joules.
No simple answer - it depends on the item's surface area and its aerodynamic coefficient. Easy move - a ten square metre sail will move a small boat in a light breeze. Hard move, a square block of uranium on a checkerplate floor. More info will help.
The work done by the machine would be the force required to lift the object multiplied by the distance it was lifted, which is 500kg * 9.81 m/s^2 * 20m = 98100 J. The power output would then be work done divided by time taken, which is 98100 J / 60 s = 1635 W or 1.64 kW.
48.6
500kgx9.81=Ax20=x
500kg = 1,102lb 4.98oz
2.5