Since Work is net force times distance moved (Fd), and Power is Work/Time, the answer is (Fd)/t, or
(950N x 5.75m)/3.0s
You can do the calculations. The answer will be in Watts.
The work done by the machine is calculated as force times distance, which is 100 N * 5.00 m = 500 J. Power is then calculated as work divided by time, yielding 500 J / 4.00 s = 125 watts. Therefore, the power output of the machine is 125 watts.
A force that a machine exerts is typically referred to as mechanical force. This force is generated by the machine to perform work, such as lifting or moving objects. It is essential for the machine to operate efficiently and effectively.
torque
The force that the machine exerts is the out put force. This is the science definition.
A machine exerts force or power to perform a specific task or function, such as moving objects, lifting weights, or generating electricity. The type and amount of exertion depend on the design and purpose of the machine.
the grvitational pull of an object depents on its mass and density for power.
The gravitational force between two objects decreases with distance. If the Moon were moved to half its current distance from the Earth, the gravitational force it exerts on the Earth would increase by a factor of four (2^2), since force is inversely proportional to the square of the distance.
Gravity exerts an acceleration a= GM/r2 = v2/r.
Electric charges are surrounded by an electric field, which exerts a force on other charges. This force can either attract or repel depending on the charges involved and their distance from each other.
Gravity exerts a force on objects; forces change the motion of objects.
False,since it's an air resistance and it's a contact force.
The handle (wheel) moves a greater distance than the sharpening mechanism (axle). The handle exerts greater force as it must overcome the resistance of the pencil being shaved and the friction in the sharpener.