To calculate the work done in 2 minutes, we first need to find the total weight of the cement blocks being carried in 2 minutes. In 2 minutes, the man carries 4 cement blocks (2 blocks per minute x 2 minutes). The total weight of these blocks is 800 newtons (200 newtons per block x 4 blocks). The work done is equal to the force applied multiplied by the distance moved in the direction of the force. In this case, it would be 800 newtons x 7 meters = 5600 joules.
The total work done in 10 minutes is ( 200 , \text{N} \times 2, \text{blocks per minute} \times 10, \text{minutes} = 4000 , \text{N} \times \text{blocks} = 4000 \text{ J}).
28,000 J
The minimum upthrust force needed to make an object float is equal to the weight of the object. In this case, the minimum upthrust force needed to make an object weighing 1600 newtons float is also 1600 newtons.
Kinetic energy measures the amount of energy a person has as they are in motion. In this instance, the person who weighs 600 Newtons has more energy.
The difference between 200 newtons and 20 newtons is 180 newtons.
The total work done in 10 minutes is ( 200 , \text{N} \times 2, \text{blocks per minute} \times 10, \text{minutes} = 4000 , \text{N} \times \text{blocks} = 4000 \text{ J}).
28,000 J
4
Well, honey, if you're weighing in at 600 Newtons and that raft is carrying 1000 Newtons, then the total weight of you and the raft combined is 1600 Newtons. Simple math, no need for a life jacket when you've got those numbers on lock.
A person weighing 150 pounds would be equal to 667.2 newtons.
You need to know the capacity of the pulleys. The pulleys need a total power of over 1000 newtons, if they do then you should be fine.
The minimum upthrust force needed to make an object float is equal to the weight of the object. In this case, the minimum upthrust force needed to make an object weighing 1600 newtons float is also 1600 newtons.
Potential Energy The object is not in movement.
The mass of an object weighing 63 N on Earth would be 6.43 kg. This is calculated by dividing the weight (in Newtons) by the acceleration due to gravity (9.81 m/s^2).
Kinetic energy measures the amount of energy a person has as they are in motion. In this instance, the person who weighs 600 Newtons has more energy.
it would be 96 because you times 48 and 2.0 and that's your answer!
21 joues per minute