Yes, work done can be negative in a physical system when the force applied is in the opposite direction of the displacement.
In thermodynamics, work done by the system is considered positive. Work done on the system is considered negative.
The work done on a system is positive when energy is added to the system, and negative when energy is removed from the system.
The work done by the system is positive if the system does work on its surroundings, and negative if work is done on the system by the surroundings.
In the given scenario, if the force applied to the system is opposite to the direction of the displacement, then the work done on the system is negative.
The consequences of negative work done on a system can include a decrease in the system's energy, a decrease in the system's temperature, and a change in the system's state or properties. Negative work typically represents work done by the system on its surroundings, resulting in a loss of energy within the system. This can lead to a decrease in the system's overall performance or efficiency.
In thermodynamics, work done by the system is considered positive. Work done on the system is considered negative.
If work is done on the system then it has a negative sign. If work is done by the system then it has a positive sign.
The work done on a system is positive when energy is added to the system, and negative when energy is removed from the system.
The work done by the system is positive if the system does work on its surroundings, and negative if work is done on the system by the surroundings.
In the given scenario, if the force applied to the system is opposite to the direction of the displacement, then the work done on the system is negative.
The consequences of negative work done on a system can include a decrease in the system's energy, a decrease in the system's temperature, and a change in the system's state or properties. Negative work typically represents work done by the system on its surroundings, resulting in a loss of energy within the system. This can lead to a decrease in the system's overall performance or efficiency.
Positive work is done in a physical system when the force applied to an object is in the same direction as the displacement of the object.
Yes, negative work can occur in a physical system when the force applied is in the opposite direction of the displacement of the object. This results in a decrease in the object's energy.
Yes, negative work can occur in a physical system when the force applied to an object is in the opposite direction of its displacement. This results in the object losing energy.
Yes, it is possible to do negative work in a physical system. Negative work occurs when the force applied to an object is in the opposite direction of its displacement. This results in the object losing energy rather than gaining it.
Work done is considered positive when the force applied and the displacement of the object are in the same direction, causing movement in that direction. On the other hand, work done is considered negative when the force applied and the displacement are in opposite directions, resulting in work being done against the direction of the force.
The significance of the work done on the system in relation to the sign convention is that it helps determine whether work is being done on the system (positive work) or by the system (negative work). This understanding is crucial in analyzing the energy transfer within the system and its surroundings.