Qibla Direction in Rome, Italy — Today's Prayer Times
Rome, Italy
The Qibla from Rome is 123.3° clockwise from true north, toward the SE.
Qibla Direction
- True Qibla bearing
- 123.3°
- Magnetic compass bearing
- 119.2°
- Magnetic declination
- 4.1° E
- Distance to the Kaaba
- 3,419 km away
- Timezone
- Europe/Rome
Use the magnetic bearing if you are using a traditional magnetic compass.
Today's Prayer Times — Rome
Saturday, September 12, 2026
- Fajr05:11
- Sunrise06:47
- Dhuhr13:07
- Asr16:39
- Maghrib19:25
- Isha20:55
Prayer times can vary slightly by calculation method and local mosque convention.
How to face the Qibla in Rome
The Qibla from Rome is 123.3° clockwise from true north, toward the SE.
With a traditional magnetic compass, use approximately 119.2°, based on the World Magnetic Model 2025 for today's date.
Keep your compass away from metal objects, speakers, magnets and large electronics, which can affect the reading.
The Qibla from Rome, Italy faces approximately 123° from true north, with the Holy Kaaba in Mecca about 3,419 km away. Qibla.now calculates the great-circle bearing from your coordinates so you can face the right direction wherever you pray. The prayer times below are computed using standard astronomical formulas; you can pick a different calculation method or madhab inside the app.
Why are there two Qibla bearings?
The Qibla bearing is calculated from true north. A magnetic compass points toward magnetic north, which differs by location and changes gradually over time. Qibla.now uses the World Magnetic Model 2025 to estimate that local difference.
Compass accuracy
The calculated Qibla bearing is geographic. Actual compass readings can be affected by your device sensors, nearby metal, magnets and electrical equipment.
Methodology and sources
- Qibla bearing: great-circle direction to the Kaaba. (great-circle distance)
- Magnetic declination: World Magnetic Model 2025 (WMM2025), NOAA NCEI / British Geological Survey.
- Kaaba coordinates: 21.4225° N, 39.8262° E.
- Magnetic values are computed at sea level for the city centre.
- World Magnetic Model 2025 (WMM2025)