Instant · Precise · Universal
28 units available
6 categories total
To convert sidereal years to days: multiply by 365.25636. To tropical years: multiply by 365.25636/365.24219.
1 sidereal year ≈ 365.25636 days ≈ 365 d 6 h 9 min 10 s. About 20 min 24 s longer than the tropical year.
For example, 1 Year (Sidereal) (yr (Sid)) = 1.000702364 Year (365 days) (yr).
| Year (Sidereal) (yr (Sid)) | Year (365 days) (yr) |
|---|---|
| 0.1 | 0.1000702364 |
| 0.5 | 0.5003511822 |
| 1 | 1.000702364 |
| 2 | 2.001404729 |
| 5 | 5.003511822 |
| 10 | 10.00702364 |
| 25 | 25.01755911 |
| 50 | 50.03511822 |
| 100 | 100.0702364 |
| 500 | 500.3511822 |
| 1000 | 1000.702364 |
The sidereal year is the time for Earth to complete one orbit relative to the fixed stars — approximately 365.25636 days (31,558,149.7632 seconds).
1 sidereal year ≈ 365.25636 days ≈ 365 d 6 h 9 min 10 s. About 20 min 24 s longer than the tropical year.
To convert sidereal years to days: multiply by 365.25636. To tropical years: multiply by 365.25636/365.24219.
Tracking stellar positions, calculating satellite orbital decay, and determining long-term star catalog corrections.
The ~20-minute difference between sidereal and tropical years is caused by axial precession — Earth's axis traces a full circle every ~25,772 years.
Using sidereal year when tropical year is intended (or vice versa) in calendar calculations.
Think of it this way: the sidereal year measures Earth's orbit relative to stars. The tropical year measures relative to seasons. Precession makes them differ.
The common year is a unit of time equal to 365 days, or 31,536,000 seconds.
1 yr = 365 d = 8,760 h = 525,600 min = 31,536,000 s. A leap year has 366 days (31,622,400 s).
To convert years to days: multiply by 365 (or 365.25 for average including leap years). To seconds: multiply by 31,536,000.
Age calculation, financial year reporting, contract durations, academic years, and historical timeline reference.
The year 2000 was a leap year (divisible by 400), but 1900 was not (divisible by 100 but not 400). The Gregorian rule fixes the calendar's drift to 1 day per 3,236 years.
Assuming every 4th year is a leap year — century years must be divisible by 400 (so 1900 wasn't a leap year).
Leap year rule: divisible by 4 = leap, UNLESS divisible by 100, UNLESS also divisible by 400. So 2000 was, 1900 wasn't.



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