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  1. The distance moved by the force is the same as the. distance. moved by the object. The work done, E w by a force, F moving through a distance, d is given by: \ ( {E_w} = Fd\) Units are joules ...

  2. Power = work done ÷ time taken.. So the more powerful a device is, the more energy it will transfer each second. So the more powerful a device is, the more energy it will transfer each second ...

  3. Work is application of force, f f, to move an object over a distance, d, in the direction that the force is applied. Work, W, is described by the equation. W = f d. W = f d. Some things that we typically consider to be work are not work in the scientific sense of the term. Let’s consider a few examples.

  4. Work, Energy and Power are fundamental concepts of Physics. Work is said to be done when a force (push or pull) applied to an object causes a displacement of the object. We define the capacity to do the work as energy. Power is the work done per unit of time. This article discusses work, energy and power in detail.

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  5. Power. Power is the rate at which energy is used or work is done. This means that energy equals power ×. time. Term that describes the order and duration of events. For example, the Physics ...

  6. Forced Oscillations. In order to sustain oscillations in a simple harmonic system, a periodic force must be applied to replace the energy lost in damping. This periodic force does work on the resistive force decreasing the oscillations. It is sometimes known as an external driving force. These are known as forced oscillations (or vibrations ...

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  8. Power in mechanical systems is the combination of forces and movement. In particular, power is the product of a force on an object and the object's velocity, or the product of a torque on a shaft and the shaft's angular velocity. Mechanical power is also described as the time derivative of work.

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