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  2. Lunisolar calendar - Wikipedia

    en.wikipedia.org/wiki/Lunisolar_calendar

    The Babylonians applied the 19-year cycle in the late sixth century BCE. [5] Intercalation of leap months is frequently controlled by the "epact", which is the difference between the lunar and solar years (approximately 11 days). The classic Metonic cycle can be reproduced by assigning an initial epact value of 1 to the last year of the cycle ...

  3. Lunar calendar - Wikipedia

    en.wikipedia.org/wiki/Lunar_calendar

    Since the period of 12 such lunations, a lunar year, is 354 days, 8 hours, 48 minutes, 34 seconds (354.36707 days), [1] purely lunar calendars are 11 to 12 days shorter than the solar year. In purely lunar calendars, which do not make use of intercalation, the lunar months cycle through all the seasons of a solar year over the course of a 33 ...

  4. Yajnavalkya 95 Years Cycle - Wikipedia

    en.wikipedia.org/wiki/Yajnavalkya_95_Years_Cycle

    This means that the lunar calendar is about 11 days shorter than the solar calendar, which is based on the Earth's orbit around the Sun. [citation needed] The Yajnavalkya 95-year cycle corrects this difference by adding an extra month (Adhik Maasa) to the lunar calendar every 32.5 years.

  5. Chinese calendar - Wikipedia

    en.wikipedia.org/wiki/Chinese_calendar

    For example, one solar year of the 1st century BCE TàichÅ« calendar is 365 + 385 ⁄ 1539 (365.25016) days. A solar year of the 13th-century Shòushí calendar is 365 + 97 ⁄ 400 (365.2425) days, identical to the Gregorian calendar. The additional .00766 day from the TàichÅ« calendar leads to a one-day shift every 130.5 years. Pairs of solar ...

  6. 360-day calendar - Wikipedia

    en.wikipedia.org/wiki/360-day_calendar

    The 360-day calendar is a method of measuring durations used in financial markets, in computer models, in ancient literature, and in prophetic literary genres.. It is based on merging the three major calendar systems into one complex clock [citation needed], with the 360-day year derived from the average year of the lunar and the solar: (365.2425 (solar) + 354.3829 (lunar))/2 = 719.6254/2 ...

  7. Rumi calendar - Wikipedia

    en.wikipedia.org/wiki/Rumi_calendar

    The months and days of the Julian calendar were used, the year starting in March. [3] However, in 1256 AH the difference between the Hijri and the Gregorian calendars amounted to 584 years. With the change from lunar calendar to solar calendar, the difference between the Rumi calendar and the Julian or Gregorian calendar remained a constant 584 ...

  8. Solar calendar - Wikipedia

    en.wikipedia.org/wiki/Solar_calendar

    The Islamic calendar is a purely lunar calendar and has a year, whose start drifts through the seasons and so is not a solar calendar. The Maya Tzolkin calendar, which follows a 260-day cycle, has no year, therefore it is not a solar calendar. Also, any calendar synchronized only to the synodic period of Venus would not be solar.

  9. Chinese calendar correspondence table - Wikipedia

    en.wikipedia.org/wiki/Chinese_calendar...

    Relationship between the current Sexagenary cycle and Gregorian calendar. This Chinese calendar correspondence table shows the stem/branch year names, correspondences to the Western calendar, and other related information for the current, 79th Sexagenary cycle of the Chinese calendar based on the 2697 BC epoch or the 78th cycle if using the 2637 BC epoch.