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The Julian calendar, introduced by Julius Caesar in the 1st century bc, was then in use, and any year whose number was exactly divisible by four was designated a leap year.
In the Gregorian calendar, introduced in 1582 and now in general use, the centurial years are common years unless their numbers are exactly divisible by 400; thus, 1600 was a leap year, but 1700 was not.
If the number of pixels required per clock cycle by the accelerator (the numerator in the above equation) is exactly divisible by 4, then each FSL channel will be set to the maximum width of 4-bytes (32-bit words).
It's got to be easily divisible.
Since motion is continuous, space must be infinitely divisible.
This observation suggests that PCV might be genetically divisible into polypoidal CNV and typical PCV.
This number will be divisible by 11 if each term is divisible by 11.
Both terms in ax + by are divisible by g; therefore, c must also be divisible by g, or the equation has no solutions.
So leap years happen during years that are divisible by 4…unless they are divisible by 100, in which case they also need to be divisible by 400.
The possible objection he imagines is that since Extension is divisible by its very nature then, if Extension were an attribute of God, God would be divisible.
The sum of their ages will be divisible by 11.
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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