Increase.
When work is done on a system, its internal energy increases. This is because the work done transfers energy to the system, raising the energy of its particles and increasing their kinetic and potential energies.
When mechanical energy decreases and temperature increases, it is likely due to the conversion of mechanical energy into thermal energy. This happens through processes like friction or resistance, where the mechanical energy is transformed into heat, causing the increase in temperature.
When work is done on a substance, its internal energy increases. This can manifest as an increase in temperature, changes in phase, or changes in chemical composition. The work done on the substance can be in the form of mechanical work, electrical work, or other forms of energy input.
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.
The work done by an expanding gas is directly related to the change in its internal energy. When a gas expands, it does work on its surroundings, which can lead to a change in its internal energy. This change in internal energy is a result of the work done by the gas during the expansion process.
When mechanical work is done on a system, there is an increase in the system's internal energy. This increase in internal energy is due to the transfer of energy from the mechanical work applied to the system.
When work is done on a system, its internal energy increases. This is because the work done transfers energy to the system, raising the energy of its particles and increasing their kinetic and potential energies.
When mechanical energy decreases and temperature increases, it is likely due to the conversion of mechanical energy into thermal energy. This happens through processes like friction or resistance, where the mechanical energy is transformed into heat, causing the increase in temperature.
When work is done on a substance, its internal energy increases. This can manifest as an increase in temperature, changes in phase, or changes in chemical composition. The work done on the substance can be in the form of mechanical work, electrical work, or other forms of energy input.
It is an energy that is done through machines.
It is an energy that is done through machines.
energy acquird by the objects upon which work is done is known as mechanical energy Mechanical energy is found by adding kinetic energy and potential energy.
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.
The work done by an expanding gas is directly related to the change in its internal energy. When a gas expands, it does work on its surroundings, which can lead to a change in its internal energy. This change in internal energy is a result of the work done by the gas during the expansion process.
As the object overcomes friction and begins to move, its internal energy will increase due to the work done by the force. This increase in internal energy is due to the object's particles moving and interacting to produce kinetic energy.
The energy used to turn a bolt with a screwdriver is mechanical energy. This mechanical energy is converted from the work done to rotate the bolt, transferring energy from the screwdriver to the bolt.
The internal energy of a system can be calculated by adding the system's kinetic energy and potential energy together. This can be done using the formula: Internal Energy Kinetic Energy Potential Energy.