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In physics, energy is a quantity that can be assigned to every particle, object, and system of objects as a consequence of the state of that particle, object or system of objects. Different forms of energy includekinetic, potential, thermal, gravitational, sound, elastic, light, andelectromagnetic energy. The forms of energy are often named after a related force. German physicist Hermann von Helmholtz established that all forms of energy are equivalent - energy in one form can disappear but the same amount of energy will appear in another form. Energy is subject to aconservation law. Energy is a scalar physical quantity. In the International System of Units (SI), energy is measured in joules, but in some fields other units such as kilowatt-hours and kilocalories are also used.

Any form of energy can be transformed into another form. When energy is in a form other than heat, it may be transformed with good or even perfect efficiency, to any other type of energy. With thermal energy, however, there are often limits to the efficiency of the conversion to other forms of energy, due to the second law of thermodynamics. As an example, when oil is reacted with oxygen, potential energy is released, since new chemical bondsare formed in the products which are more powerful than those in the oil and oxygen. The released energy resulting from this process may be converted directly to electricity (as in a fuel cell) with good efficiency. Alternately it may be converted into thermal energy, if the oil is simply burned in order to heat the combustion gases to a certain temperature. In the latter case, however, some of the thermal energy can no longer be used to perform work at that temperature, and is said to be "degraded." As such, it exists in a form unavailable for further transformation. The remainder of the heat may be used to produce any other type of energy, such as electricity.
In all such energy transformation processes, the total energy remains the same. Energy may not be created nor destroyed. This principle, theconservation of energy, was first postulated in the early 19th century, and applies to any isolated system. According to Noether's theorem, the conservation of energy is a consequence of the fact that the laws of physics do not change over time.

Although the total energy of a system does not change with time, its value may depend on the frame of reference. For example, a seated passenger in a moving airplane has zero kinetic energy relative to the airplane, but non-zero kinetic energy (and higher total energy) relative to the Earth.

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Comment by Desirée Mölgaard on September 10, 2010 at 5:18am
It makes my heart sing when I noticed that more and more people understand,
and are using, that you declare here.
It has been accelerating ever faster now :-)
Thank you for this wonderful video <3<3<3
Love & Light
Comment by susie ian on August 14, 2010 at 1:06pm
Positive thinking brings peace and ripples in universe like a drop of clear and clean water into the ocean.
I am so grateful to be here.
Thank you so much for your unconditional love and light
Comment by Kandra Kerwin on August 13, 2010 at 5:52am
GIANT HUGS!!!! I felt you very strongly today.....You are an amazing inspiration =) I feel so blessed to have the GIC resources available. I often share them in our online class lounge. The choice is always tricky of which class to share in though.....lol....At SWIHA even the Holistic Nutrition classes involve energetics so this post applies to all classes =) I think my fellow life coaches would benefit most though...transformation isn't easy.....We have all had our struggles with it and I think this brings them greater understanding of the principles that are new to some of my classmates=) Thank you Sir...for making my day!!!
Comment by Christian Ojeda on August 12, 2010 at 9:01pm
Amazing video :)
Thanks so much!

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