✨ Caelus • Lunar Eclipse on March 13, 1960
September 09, 2026 17:08:58 UTC+02:00 [48.85° N, 2.35° E]
‹ All eclipses in 1960Total Lunar Eclipse
🕐 Contacts
Times in Europe/Paris, with UTC underneath.
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First penumbral contact (P1)The Moon touches Earth's penumbra and starts to dim.06:3505:35 UTCPA 101.0°4.6° alt · 269° az
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First umbral contact (U1)The Moon reaches the umbra and the partial eclipse begins.07:3806:38 UTCPA 97.3°-5.5° alt · 280° az
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Second umbral contact (U2)The Moon is entirely inside the umbra and totality begins.08:4007:40 UTCPA 264.6°-15.2° alt · 292° az
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Greatest eclipseThe Moon's centre is least distant from the axis of Earth's shadow.09:2708:27 UTCPA 197.6°-22.0° alt · 301° az
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Third umbral contact (U3)The Moon starts leaving the umbra and totality ends.10:1409:14 UTCPA 130.6°-28.1° alt · 312° az
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Fourth umbral contact (U4)The Moon leaves the umbra and the partial eclipse ends.11:1710:17 UTCPA 297.9°-34.6° alt · 328° az
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Last penumbral contact (P4)The Moon leaves Earth's penumbra and the eclipse ends.12:2011:20 UTCPA 294.2°-38.7° alt · 346° az
The position angle is measured on the Moon's limb from celestial north through east, the convention IMCCE and NASA publish, so these values can be compared with a published table directly.
👁 Visibility
From your location.
- Penumbral phase
- Partly visible
- Partial phase
- Not visible
- Totality
- Not visible
- Moon sets
- 07:08 06:08 UTC
- Moon above the horizon
- 06:35 – 07:08
A lunar eclipse happens at the same moment everywhere. All that changes from place to place is whether the Moon is above the horizon.
⏳ Durations
🌍 About This Eclipse
A total lunar eclipse occurs when the Earth passes directly between the Sun and the Moon, causing the Earth's shadow to completely cover the Moon. During a total lunar eclipse, the Moon can take on a reddish color due to the scattering of sunlight through the Earth's atmosphere, often referred to as a "Blood Moon."
A lunar eclipse is a geocentric event. The contacts and magnitudes on this page are the same for every observer who can see the Moon at that moment.