To calculate the force needed, you'll need to know the acceleration due to gravity (9.8 m/s^2) and the distance the box is being pushed. The force required can be determined using the equation: force = mass x acceleration. In this case, the force required to push a 10 kg box 5 meters on a horizontal surface would be the force needed to overcome friction, which depends on the coefficient of friction and any other external forces acting on the box.
The work done to push an object is calculated by multiplying the force applied by the distance over which it is applied. In this case, 100N of force is applied over a distance of 5 meters, resulting in 500 Joules of work done to push the object.
Use the following equation. F = m * a = 1000 * 60 = 60,000 N
The force required to push something can be measured using a force gauge. This device can be attached to the object being pushed, and the force applied can be read from the gauge. The force needed will depend on factors such as the weight of the object, the surface it's being pushed on, and the presence of friction.
The force applied by the bulldozer is calculated using the work formula: work = force x distance. Rearranging the formula, force = work / distance. Plugging in the values given, the force applied by the bulldozer to push the boulder is 1500 newtons.
The force required to push someone will depend on factors such as their weight, inertia, and the surface friction. In general, the force needed will be greater if the person is heavier or if they are standing still.
The work done to push an object is calculated by multiplying the force applied by the distance over which it is applied. In this case, 100N of force is applied over a distance of 5 meters, resulting in 500 Joules of work done to push the object.
Paul
Force = mass * acceleration Force = (3000 kg)*(2 m/s^2) = 6000 Newtons ---------------------- ( that is 6000 times the force needed to push in a doorbell, on average )
That really depends on the toaster. Try it out, with your own toaster.
5000 joules
An unbalanced force can push or pull the object. (or act on it)
Use the following equation. F = m * a = 1000 * 60 = 60,000 N
That question cannot be answered without knowing the force of friction. If you ignore friction the answer is none, you only need force to accelerate an object, if an object is already moving at 13m/s it will continue to until a force acts on it because of inertia, which is newton's first law of motion.
The force required to push something can be measured using a force gauge. This device can be attached to the object being pushed, and the force applied can be read from the gauge. The force needed will depend on factors such as the weight of the object, the surface it's being pushed on, and the presence of friction.
The force applied by the bulldozer is calculated using the work formula: work = force x distance. Rearranging the formula, force = work / distance. Plugging in the values given, the force applied by the bulldozer to push the boulder is 1500 newtons.
this piece of **** doesn't work worth ####. I could wipe my ### with my questions and it would give me a better answer.
The force required to push someone will depend on factors such as their weight, inertia, and the surface friction. In general, the force needed will be greater if the person is heavier or if they are standing still.