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Every year that is exactly divisible by four is a leap year, except for years that are exactly divisible by 100, but these centurial years are leap years if they are exactly divisible by 400. For example, the years 1700, 1800, and 1900 are not leap years, but the years 1600 and 2000 are.
According to Air and Space, we skip a leap year when the year it would normally fall on is divisible by 100 but not divisible by 400. The last time leap year was skipped was in the year 2000 and ...
February 29 – A rare century leap year date occurs. Usually, century years are common years due to not being exactly divisible by 400. 2000 is the first such year to have a February 29 since the year 1600, making it only the second such occasion since the Gregorian Calendar was introduced in 1582. The next such leap year will occur in 2400.
If the math isn’t adding up for you, here’s what happened in 2000. The year 2000 was a leap year, but it broke one of the rules: 2000/4 = 500 ...That completes the 1st rule. 2000/100 = 20 ...
This eliminates 3 of the 4 end-of-century years in a 400-year period. For example, the years 1600, 2000, 2400, and 2800 are century leap years since those numbers are evenly divisible by 400, while 1700, 1800, 1900, 2100, 2200, 2300, 2500, 2600, 2700, 2900, and 3000 are common years despite being evenly divisible by 4. This scheme brings the ...
Leap years come along every four years, but why exactly do they happen and what does that mean if you're legally born on February 29? ... 2000: You'd be 24 years old or 6. 2004: You'd be 20 years ...
This method works fine for the year 2000 (because it is a leap year), and will not become a problem until 2100, when older legacy programs will likely have long since been replaced. Other programs contained incorrect leap year logic, assuming for instance that no year divisible by 100 could be a leap year.
That resulted in the years 1700, 1800, and 1900 losing their leap day, but 2000 adding one. Every other fourth year in all of these centuries would get it's Feb. 29. And with that the calendrical ...