Well, when there is a change in state, mass doesn't increase or decrease (mass cannot be created nor destroyed). When there is a change in state, energy doesn't increase or decrease (energy cannot be created nor destroyed) although some of the energy may be lost as heat during the process.
When working on an object, the concept of energy conservation applies by ensuring that the total amount of energy remains constant. This means that the energy put into the object through work is equal to the energy output or changes in the object's energy state. In simpler terms, the energy you use to work on an object is not created or destroyed, but rather transformed or transferred within the system.
the of conservation of energy states that energy neither is created or destroyed it changes states the of conservation of mass states that mass neither is created or destroyed it only changes state
Michael A. Kocis has written: 'An assessment of state emergency energy conservation planning' -- subject(s): Energy conservation, Emergency transportation, Transportation 'Issues for developing state emergency conservation plans' -- subject(s): Energy conservation, Emergency transportation, Transportation, Petroleum conservation
The concept that energy cannot be created or destroyed is a fundamental principle known as the Law of Conservation of Energy. It is a universal law of physics that applies in all states and is not specific to any particular state's energy laws.
The laws of conservation of mass and conservation of energy are similar in that both state that the total amount of mass or energy in a closed system remains constant over time. However, the conservation of mass applies specifically to mass, while the conservation of energy applies to energy in its various forms (kinetic, potential, etc.).
Changes of state that require energy: melting (solid to liquid) and vaporization (liquid to gas). Changes of state that release energy: freezing (liquid to solid) and condensation (gas to liquid).
through changes of energy
In a closed system, energy can neither be created nor destroyed.
It states that energy can change but mass can not change Chuma.C
In a closed system, energy can neither be created nor destroyed.
Well, when there is a change in state, mass doesn't increase or decrease (mass cannot be created nor destroyed). When there is a change in state, energy doesn't increase or decrease (energy cannot be created nor destroyed) although some of the energy may be lost as heat during the process.
When there is a change in state, mass doesn't increase or decrease (mass cannot be created nor destroyed). When there is a change in state, energy doesn't increase or decrease (energy cannot be created nor destroyed), although some of the energy may be lost as heat during the process.