Their isn't an example that doesn't involve the law of conservation of energy. But if there was one I would like to know too.
Our THOUGHTS. DISCOVERED AGES BEFORE; but needing rediscovery by modern science.
Concepts. For example, the concept of existence itself.
Consciousness. Science is yet to do serious experiments with this. Whereas, religions have come out with finished products.
JUST come out of that E=mc2 cocoon..
The list goes on. Like dreams (not the energy needed to dream), meanings, emotions, behaviours, and on.
When water is used to produce electricity.In this process, firstly,water is allowed to fall from great heights,so potential energy is converted to kinetic energy(K.E.). Then this energy is used to rotate the turbine of a generator which produces electricity. Thus potential energy of water in a dam is converted into kinetic energy which is then converted to electric energy.
Energy transfer does not involve mass transfer, as in the case of a pendulum swinging where the mass of the pendulum does not change. Energy transfer also does not involve generation or destruction of energy, only its conversion from one form to another. Additionally, energy transfer does not involve a change in the total amount of energy in a closed system, in accordance with the law of conservation of energy.
The law of conservation of energy states that all energy in the universe is conserved. It can not be created nor destroyed, but it can be interchanged between mechanical and non-mechanical energy.
The law of conservation of mechanical energy states that the total mechanical energy (potential energy + kinetic energy) of a system remains constant if only conservative forces are acting on it. This means that the sum of the potential energy (PE) and kinetic energy (KE) in a system remains constant over time as long as no non-conservative external forces are present.
Mechanical energy (e.g. kinetic energy of moving objects), thermal energy (e.g. heat), and radiant energy (e.g. light) are all non-examples of electrical energy.
"Conversation of energy" is a good non example of 'conservation of energy'
When water is used to produce electricity.In this process, firstly,water is allowed to fall from great heights,so potential energy is converted to kinetic energy(K.E.). Then this energy is used to rotate the turbine of a generator which produces electricity. Thus potential energy of water in a dam is converted into kinetic energy which is then converted to electric energy.
Energy transfer does not involve mass transfer, as in the case of a pendulum swinging where the mass of the pendulum does not change. Energy transfer also does not involve generation or destruction of energy, only its conversion from one form to another. Additionally, energy transfer does not involve a change in the total amount of energy in a closed system, in accordance with the law of conservation of energy.
The law of conservation of energy states that all energy in the universe is conserved. It can not be created nor destroyed, but it can be interchanged between mechanical and non-mechanical energy.
The law of conservation of mechanical energy states that the total mechanical energy (potential energy + kinetic energy) of a system remains constant if only conservative forces are acting on it. This means that the sum of the potential energy (PE) and kinetic energy (KE) in a system remains constant over time as long as no non-conservative external forces are present.
The known non-conservative forces are force, like friction, where energy gets wasted. This means that useful energy gets converted to unusable energy. You can invent a Universe with non-conservative forces, where you can actually get energy out of nothing, but this is not likely to happen in the real world.
Nuclear energy
Sound energy, gravitational potential energy, and mechanical energy are non-examples of chemical energy. Chemical energy is specifically related to the potential energy stored in chemical bonds.
Mechanical energy (e.g. kinetic energy of moving objects), thermal energy (e.g. heat), and radiant energy (e.g. light) are all non-examples of electrical energy.
Living systems follow the law of conservation of mass and energy by taking in nutrients and energy from their environment to sustain their growth, reproduction, and metabolism. Waste products like carbon dioxide and heat are released in the process to maintain the balance of mass and energy in the system. This ensures that the total mass and energy within the system remains constant over time.
it is a example of a law that can't be proven by science
there is actually no non examples of geothermal