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The object arm contained a sample stage and a microscope objective lens (MO1) that projected a magnified image of the object onto a CCD camera.
The final image would then ideally be an image of the object intensity distribution.
The diffraction pattern was decoded to produce an image of the object.
A sudden disappearance causes what neuroscientists call an after-discharge: a ghostly image of the object lingers for a moment.
The object of interest is then brought toward the eye until a clear image of the object is seen.
As the eye views an image of the object, the mirror superimposes a second image from a second viewpoint.
The light waves from the two sources interfere with each other, and the image of the object is recorded in this interference pattern.
The interwoven pixels allow the o-retina's software to detect patterns between cells without processing a complete image of the object before it.
Thus an image of the object can be reconstructed in light.Since holography was invented in 1948, there have been two major developments in the field.
The microscope objective collects these diffracted waves and directs them to an image plane, where interference between the diffracted waves produces an image of the object.
Refraction of the rays of light reflected from or emitted by an object causes the rays to form a visual image of the object.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com