When work is done, energy is transferred or converted from one form to another. In physics, work is defined as the product of the force applied to an object and the distance over which it is applied. The result of work being done can be seen as a change in the object's position, shape, or state.
When work is done on an object, it gains energy in the form of kinetic energy or potential energy depending on the type of work done. The object's speed, height, or deformation may change as a result of the work done on it.
When mechanical work is done, the internal energy of a system can change. If work is done on the system, the internal energy increases. Conversely, if work is done by the system, the internal energy decreases. This change in internal energy is governed by the first law of thermodynamics.
If force increases and distance remains the same, the amount of work done would increase. This is because work done is directly proportional to the force applied. The formula for work is Work = Force x Distance, so as force increases, work done would also increase.
When work is done on a system by pushing it, the internal energy of the system increases, leading to an increase in temperature. The work done increases the kinetic energy of the particles in the system, causing them to move faster and leading to an increase in temperature.
When work is done on an object, it causes a change in the object's energy, motion, or position. The object either gains or loses energy depending on the direction of the force applied.
When work is done on an object, it gains energy in the form of kinetic energy or potential energy depending on the type of work done. The object's speed, height, or deformation may change as a result of the work done on it.
You get no work done.
Negative work increases potential energy.
Unearned revenue converted to earned revenue after it is done and delivered to customer.
It happens after someone asks for it to be done for some reason.
a big bad boy
When mechanical work is done, the internal energy of a system can change. If work is done on the system, the internal energy increases. Conversely, if work is done by the system, the internal energy decreases. This change in internal energy is governed by the first law of thermodynamics.
If force increases and distance remains the same, the amount of work done would increase. This is because work done is directly proportional to the force applied. The formula for work is Work = Force x Distance, so as force increases, work done would also increase.
Work
When work is done on a system by pushing it, the internal energy of the system increases, leading to an increase in temperature. The work done increases the kinetic energy of the particles in the system, causing them to move faster and leading to an increase in temperature.
When work is done on an object, it causes a change in the object's energy, motion, or position. The object either gains or loses energy depending on the direction of the force applied.
After midnight? Joking. Your question needs some work done... what happens if someone feeds you? Understand why I'm not following?