Work is calculated by multiplying the force applied to the displacement achieved. In this case, the amount of work done in joules (J) is 60 multiplied by the combined weight of the ride's passengers measured in Newtons (N).
The height of a tree would best be measured in metres.
One tonne at full forward reach. Two tonnes at full vertical height. Maximum of 2.6 tonnes, hence model number being 526
1.10 meters = 3.60892388 feet.
5000 meters = 3.11 miles
1 millimeter=0.001 meters
Gravity does not lift. The force is doing the work by lifting the riders. When the riders come down from the 60 meter height, then gravity will be at work.
Work is calculated by multiplying the force applied to the displacement achieved. In this case, the amount of work done in joules (J) is 60 multiplied by the combined weight of the ride's passengers measured in Newtons (N).
C.50 j
The weight of the riders does not affect the amount the ride can lift since the system is designed to lift and carry the combined weight of the riders and cars. Air resistance is a factor that the ride must overcome to lift riders into the air.
200 newton-meters per second = 200 watts.
10 METERS
The work done to lift the object is equal to the force applied multiplied by the distance moved in the direction of the force. In this case, the work done would be 500 newtons x 8 meters = 4000 joules.
1.82 meters
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.
Power = (energy) / (time) =(200 newtons x 4 meters) / (4 seconds) =200 newton-meters per second = 200 watts
my height is 5.11 inches how much in metter
The height is irrelevant. The energy required depends on the height; the force does not. The weight of an object, and therefore the force required to lift it, is mass x gravity - about 500 Newtons.The height is irrelevant. The energy required depends on the height; the force does not. The weight of an object, and therefore the force required to lift it, is mass x gravity - about 500 Newtons.The height is irrelevant. The energy required depends on the height; the force does not. The weight of an object, and therefore the force required to lift it, is mass x gravity - about 500 Newtons.The height is irrelevant. The energy required depends on the height; the force does not. The weight of an object, and therefore the force required to lift it, is mass x gravity - about 500 Newtons.