Sunrise & Sunset in Shabran, Azerbaijan 🇦🇿 Today

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10:54:14 +04
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Shabran is a district in Azerbaijan. This page combines its current local time and time zone information using Divichibazar as a representative location, plus today's sunrise, sunset, twilight, and daylight duration. Browse 1 listed city in Shabran below for location-specific solar times.

Today in Shabran, Azerbaijan, the sun rises around 06:33 and sets around 18:38, for about 12h 04m of daylight (based on Divichibazar).

Sun data for this district follows Divichibazar, keeping +04:00 time — Pick a city below to see exact sun times, golden hour and how daylight changes through the year.

Country: Azerbaijan 🇦🇿

Population: 58,400

Time Zone: GMT+4

Representative IANA Timezone: Asia/Baku

UTC Offset: UTC+04:00

The time for Shabran shown above is based on the time in its most populous city, Divichibazar . Times for other cities within the region may vary.

Cities in Shabran District

CityCurrent Time
Divichibazar Thu 10:54

IANA Timezones in Shabran District

  • Asia/Baku Thu 10:54
TimezoneCurrent Time
Asia/Baku Thu 10:54

Frequently Asked Questions about Shabran

What time does the sun rise and set in Shabran today?

Today in Shabran, Azerbaijan the sun rises around 06:33 and sets around 18:38, giving about 12h 04m of daylight (based on Divichibazar).

How many hours of daylight does Shabran get today?

Shabran, Azerbaijan gets about 12h 04m of daylight today. Open a city below for its exact figure and how it changes month to month.

What time zone is Shabran in?

Shabran, Azerbaijan uses UTC offset +04:00 and the Asia/Baku time zone. All sun and clock times on this page use that local time, with daylight saving applied automatically.

Which cities in Shabran can I get sun times for?

We list 1 city across this district, including Divichibazar. Select any of them below for daily sunrise, sunset, twilight and day-length times.

How accurate are these sunrise and sunset times?

They are computed from each place's exact latitude, longitude and time zone using standard astronomical algorithms, accurate to about a minute.