Difference between revisions of "Quantum entanglement"
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Revision as of 04:39, January 4, 2007
Quantum entanglement is when two (or more) quantum states relate to each other, as in taking spins opposite to each other. When they are separated they retain the same opposite spins, and the observation of the spin of one of the states predicts an opposite spin for the other state, even though the quantum states or particles may be separated by miles from each other.
The implications of this phenomenon are enormous, and form the basis for the new field of quantum computing. For example, there seems to be an instantaneous communication between the participles at the moment of observation of one of them. Some physicists resist that notion and claim that no information is communicated.