Work is a force applied over a distance.
So W=F*d
Thus in this case, W=200N*8m
Work=1600 N*m
3,000 J
Work is calculated by multiplying the force applied by the distance moved in the direction of the force. In this case, the work done is 250 newtons * 50 meters = 12,500 joules.
The person's push creates a force that accelerates the crate. As long as the force overcomes friction, the crate will move across the floor.
The force that slows you down as you slide across the floor is primarily kinetic friction. This force arises due to the interactions between the surfaces of the sliding object and the floor, leading to resistance that opposes the motion.
The work done is calculated as force multiplied by distance, which in this case is 200N x 0.5m = 100 Joules.
The force of friction when a crate slides across the floor is dependent on the coefficient of friction between the crate and the floor, as well as the normal force acting on the crate. The frictional force resists the motion of the crate and can be calculated using the equation: frictional force = coefficient of friction * normal force.
Work is calculated by multiplying the force applied by the distance moved in the direction of the force. In this case, the work done is 250 newtons * 50 meters = 12,500 joules.
The person's push creates a force that accelerates the crate. As long as the force overcomes friction, the crate will move across the floor.
The force that slows you down as you slide across the floor is primarily kinetic friction. This force arises due to the interactions between the surfaces of the sliding object and the floor, leading to resistance that opposes the motion.
The work done is calculated as force multiplied by distance, which in this case is 200N x 0.5m = 100 Joules.
The force of friction when a crate slides across the floor is dependent on the coefficient of friction between the crate and the floor, as well as the normal force acting on the crate. The frictional force resists the motion of the crate and can be calculated using the equation: frictional force = coefficient of friction * normal force.
To calculate the force of the box being slid across the floor, the person needs to know the mass of the box and the acceleration of the box. Using the equation F = ma (force equals mass times acceleration), the person can determine the force required to slide the box across the floor.
The force of friction acting on a crate sliding across the floor is equal in magnitude but opposite in direction to the force applied to move the crate. It depends on the coefficient of friction between the crate and the floor, as well as the weight of the crate.
The work done can be calculated using the formula: work = force * distance. In this case, work = 200 N * 8 m = 1600 Joules. So, you have done 1600 Joules of work.
you can push is across
The horizontal force resisting your push when you push a box across a floor is the force of friction between the box and the floor. This force acts in the opposite direction to the direction in which you are pushing the box.
When you push a box across the floor, it experiences a frictional force that opposes its motion. This frictional force arises from the interactions between the box and the floor. Additionally, the box may also experience air resistance, depending on the surrounding environment.
The force of friction between the box and the floor. This force opposes the motion of the box and must be overcome by the pushing force to make the box slide.