Instant · Precise · Universal
28 units available
6 categories total
To convert minutes to seconds: multiply by 60. To convert minutes to hours: divide by 60.
1 min = 60 s = 1/60 h = 60,000 ms. There are 1,440 minutes in a day and 525,960 in a year.
For example, 1 Minute (min) = 60.16427253 Second (Sidereal) (s (Sid)).
| Minute (min) | Second (Sidereal) (s (Sid)) |
|---|---|
| 0.1 | 6.016427253 |
| 0.5 | 30.08213626 |
| 1 | 60.16427253 |
| 2 | 120.3285451 |
| 5 | 300.8213626 |
| 10 | 601.6427253 |
| 25 | 1504.106813 |
| 50 | 3008.213626 |
| 100 | 6016.427253 |
| 500 | 30082.13626 |
| 1000 | 60164.27253 |
The minute is a unit of time equal to 60 seconds, or 1/60 of an hour.
1 min = 60 s = 1/60 h = 60,000 ms. There are 1,440 minutes in a day and 525,960 in a year.
To convert minutes to seconds: multiply by 60. To convert minutes to hours: divide by 60.
Meeting schedules, cooking times, exercise intervals, transit timetables, and phone call durations.
The minute hand on a clock rotates 360° per hour (6° per minute). There are exactly 525,600 minutes in a non-leap year.
Using decimal hours incorrectly: 1.5 hours = 90 minutes, not 1 hour 50 minutes. The base-60 system catches people off guard.
The Babylonians gave us base-60 time. That's why we have 60 seconds per minute and 60 minutes per hour — it's not decimal!
The sidereal second is 1/60 of a sidereal minute — approximately 0.99727 solar seconds.
1 sidereal second ≈ 0.99727 solar seconds. 86,400 sidereal seconds = 1 sidereal day.
To convert sidereal seconds to solar seconds: multiply by 0.99727. One solar second ≈ 1.00274 sidereal seconds.
Telescope tracking motors rotate at sidereal rate (1 revolution per sidereal day) to follow stars across the sky.
The difference between sidereal and solar seconds (2.73 ms) seems tiny, but over a day it adds up to the full ~236 s difference.
Assuming sidereal seconds equal solar seconds. The ~0.27% difference is critical in precision astronomy.
Multiply any sidereal time interval by 0.99727 to get the solar equivalent. This ratio stays constant at all time scales.



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