A conservative force is not path dependent. A conservative force is a force with the property that the work done in moving a particle between two points is independent of the taken path.
Work is related to mechanical energy because when work is done on an object, it can change the object's mechanical energy. Mechanical energy is the sum of an object's kinetic energy (energy of motion) and potential energy (stored energy). When work is done on an object, it can increase or decrease the object's kinetic or potential energy, thus affecting its overall mechanical energy.
Nonconservative work is work done on a system that does not conserve mechanical energy. The overall energy change in a system is the sum of the work done on the system and the heat added to or removed from the system. In a nonconservative system, the nonconservative work contributes to the overall energy change by either increasing or decreasing the system's total energy.
It will still be heat energy, but it can be converted to mechanical energy
Non-conservative forces are path-dependent and can change an object's total mechanical energy. These forces include friction, air resistance, and tension in a rope. When these forces do work on an object, they contribute to the overall change in energy of the system.
Mechanical energy can change into heat energy through friction. When two objects rub against each other, the mechanical energy of their motion is converted into heat energy due to the resistance between their surfaces. This process results in the generation of heat and an increase in the overall temperature of the system.
mechanical energy !
Mechanical energy can change into chemical energy through processes like photosynthesis in plants. In this process, light energy is converted into chemical energy stored in the bonds of molecules like glucose.
...is to change electrical energy into mechanical energy.
Most electric motors change electrical energy into rotational mechanical energy. A few electric motors change electrical energy into linear mechanical energy.
Mechanical energy can change to non-mechanical forms through processes like friction or air resistance, which convert kinetic energy into heat energy. Additionally, mechanical energy can be transformed into other forms of energy such as sound or light through various interactions.
A force is path-independent if it depends only on the initial and final positions, and not on the path taken between them. A force that is not path-dependent conserves mechanical energy of an object, meaning that the total mechanical energy (kinetic + potential energy) remains constant.
mechanical energy !