Examples of using Entangled particles in English and their translations into German
{-}
-
Colloquial
-
Official
-
Ecclesiastic
-
Medicine
-
Financial
-
Ecclesiastic
-
Political
-
Computer
-
Programming
-
Official/political
-
Political
The properties of entangled particles subtly depend on each other.
A scientific example is the communication between two entangled particles, it is instant.
With the help of entangled particles, successful teleportation can be achieved roughly as follows.
Thought transference and communication between entangled particles is instantaneous.
An auxiliary pair of entangled particles is created, the one being transmitted to"Alice" and the other to"Bob.
So the movement of light might actually be the same as that of entangled particles or of telepathy.
The properties of two entangled particles influence each other without any time delay- and this takes place even over large distances.
There is no lightspeed or slower influence that can pass between the entangled particles.
Screens should be cleaned separately, otherwise entangled particles of the other parts can remain in the fine screen.
So most probably the real maximum speed is instant transference,as we know it from interaction between entangled particles.
Now this second"speed" is also the"speed" in which entangled particles seem to exchange information.
It would all be just one: the way we perceive telepathy andalso the way scientists tell us what happens between entangled particles.
Their idea was that the way a pair of entangled particles evolve is a kind of clock that can be used to measure change.
The first subject is Bell's Inequality and if it isreally the end for local-realistic attempts to explain results of experiments with entangled particles.
Recent experiments have measured entangled particles within less than one hundredth of a percent of the travel time of light between them.
They believe that the speed of light is the maximal speed,and at the same time they also believe however that entangled particles can exchange information over an endless long distance in zero time.
One important aspect of angels is that they are spiritual beings and are therefore not restricted to time and space and are therefore able to move across huge distances in no time andthis is therefore the same that is known in science as the interaction between entangled particles.
Among other things, Plenio andhis colleagues have developed a new method for the efficient production of entangled particles that are far removed from each other- a step of paramount importance in quantum cryptography.
Then the speed of light was defended by almost all physicists as the maximum possible speed andtherefore they completely dismissed that the exchange of information between entangled particles happens immediately independent of distance.
Experiments have been performed involving measuring the polarization or spin of entangled particles in different directions, which- by producing violations of Bell's inequality- demonstrate statistically that the local realist view cannot be correct.
However, this behavior gives rise to paradoxical effects: any measurement of a property of a particle can be seen as acting on that particle(e.g., by collapsing a number of superposed states) and will change the original quantum property by some unknown amount;and in the case of entangled particles, such a measurement will be on the entangled system as a whole.
Note, the Bellovskogo measurement of particle 1 lost identity,as it starts to become tangled or entangled particle 2.
Particles thus entangled will behave identically.
When particles are entangled, the actions of one will always influence the other in the same or the opposite direction, no matter how far they are separated.
