Examples of using Interference pattern in English and their translations into Bulgarian
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An interference pattern.
How could pieces of matter create an interference pattern like a wave?
This first experiment was modestly designed in accordance with the consciousness collapse hypothesis(perturbations in the double slit interference pattern).
Hence, the interference pattern disappears.
Because I said that if I didn't turn on the light I should get this interference pattern.
So now there is an interference pattern on the back wall.
If you measure“which slit” the electron goes through,you destroy the quantum interference pattern shown here.
Instead, there's an interference pattern that shows peaks and valleys.
Bob, who wants to receive the signal over here, can look andsee whether he has an interference pattern at the same time.
It adds together the interference pattern from two raindrops that land near each other.
When they observed the electron it went back to behaving like a particle and produced two bands, not an interference pattern of many.
And with waves, we get an interference pattern… of many bands.
When they observed, the electron went back to behaving like a little marble. It produced a pattern of two bands… not an interference pattern of many.
Light has to interact with an interference pattern in order to create a hologram- a three-dimensional image.
The study found that factors associated with consciousness significantly correlated in predicted ways with deviations in the double slit interference pattern.
A star, for instance, andthe- the waves form an interference pattern… as they add together, or cancel out, add together, cancel out.
Clearly we cannot query the apple to inquireabout its experience but none-the-less the interaction will create a phase shift in the apple's QH(interference pattern) which should be detectable.
If I have a circumstance in which I get that interference pattern, then it is impossible to analyze it, in terms of saying it goes through here or here.
If in the meantime the heart ejects more blood, and a new pressure pulse is traveling down, these two pressure points will eventually collide somewhere along the aorta and produce an interference pattern.".
This means that the two beams are no longer“in step” and what we call an interference pattern is produced- hence the name interferometer.
They can give you a wider explanation, in the sense that they can do more examples to show how it's impossible to tell which hole it goes andat the same time not destroy the interference pattern.
The method was called"Finite Aperture Approximation," basically, a method of squeezing acoustic or longitudinal waves through a very small hole, and observing the waveform interference pattern that emerged on the other side, and calculating the velocity,not of the wave, but of the interference pattern itself.
They can give you a wider explanation, in the sense that they can do more examples to show how it is impossible to tell which hole the electron goes through andnot at the same time destroy the interference pattern.
In quantum holography the object is to treat the entire group of re-emitted quanta as a whole, and as in laser holography,to examine the information carried in the interference pattern and phase relationships.
And therefore it's impossible to have any information ahead of time as to which hole it's going to go through when the light is out-- or when the light is on or out,in a circumstance when the experiment is set up that it can produce this interference pattern.
It is when the contribution of the looped trajectories becomes non-negligible that it becomes apparent thatthe total interference is not simply the superposition of individual wavefunctions of photons with straight trajectories, and so the interference pattern is not correctly described by the usual form of the superposition principle.
The very act of observing an object creates a reference beam, which then meets with the object beam coming from the reflected light of the object we're observing,their collision creates an interference pattern and we see an image.
In the classic double-slit experiment, atoms are fired at a wall with two breaks in it, and they pass through to the other side, where they hit a detector,creating the kind of interference pattern expected from a wave.