BREAKFAST CLUB ANON (2 Viewers)

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If Yolks and D.O were drowning and shit and you could only save on hoe who would you save BITCH?? (You can't save yourself, that's cheating which I KNOW YOU LIKE TO DO ESPECIALLY TO ME BUT YOU CAN'T CHEAT ON THIS QUESTION.)
Commit suicide so we all see each other in the afterlife
checkmate, atheists
:pandawatch::pandawatch:
 
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Ok but I know exactly where you got those gifs for your sig because I'm a hoe that can't stop browsing kpop gifs on tumblr :tencry:

LOOOOOOOOOOOL we both have no lives :pepesad:
:pepecry1:
 
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If Yolks and D.O were drowning and shit and you could only save on hoe who would you save BITCH?? (You can't save yourself, that's cheating which I KNOW YOU LIKE TO DO ESPECIALLY TO ME BUT YOU CAN'T CHEAT ON THIS QUESTION.)
Commit suicide so we all see each other in the afterlife
checkmate, atheists
:pandawatch::pandawatch:
I was VERY clear when I said no cheating and you cheated literally right after. Smdh :seokeyes:
 

Yolks

✦ Hwang Hyunjin ✦
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Chromatic aberration can be corrected in two different ways in the eyeglass. The first and least common method is to use a doublet. A doublet is the use of a strong positive lens made from a low dispersion glass like crown glass coupled with a weaker high dispersion glass like flint glass. This will allow the focal point of the two wavelengths (red and blue) to become the same and allow for a clearer image.
Yea so I've run out of things to send and that was a paragraph from my 24k word assignment on eyes and glasses in year 12 for physics :yolk:


There are two types of chromatic aberration: axial (longitudinal), and transverse (lateral). Axial aberration occurs when different wavelengths of light are focused at different distances from the lens, i.e., different points on the optical axis (focus shift). Longitudinal aberration is typical at long focal lengths. Transverse aberration occurs when different wavelengths are focused at different positions in the focal plane (because the magnification and/or distortion of the lens also varies with wavelength; indicated in graphs as (change in) focus length). Lateral aberration is typical at short focal lengths. The acronym LCA is used, but ambiguous, and may refer to either longitudinal or lateral CA; for clarity, this article uses "axial" (shift in the direction of the optical axis) and "transverse" (shift perpendicular to the optical axis, in the plane of the sensor or film).[2]

These two types have different characteristics, and may occur together. Axial CA occurs throughout the image and is specified by optical engineers, optometrists, and vision scientists in the unit of focus known widely as diopters,[4] and is reduced by stopping down. (This increases depth of field, so though the different wavelengths focus at different distances, they are still in acceptable focus.) Transverse CA does not occur in the center, and increases towards the edge, but is not affected by stopping down.

In digital sensors, axial CA results in the red and blue planes being defocused (assuming that the green plane is in focus), which is relatively difficult to remedy in post-processing, while transverse CA results in the red, green, and blue planes being at different magnifications (magnification changing along radii, as in geometric distortion), and can be corrected by radially scaling the planes appropriately so they line up.
 

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