The traditional China calendar, or Former Calendar, Traditional Calendar or Lunar Calendar, is a lunisolar calendar which reckons years and days according to astronomical phenomena. It is defined by GB/T 33661-2017, "Calculation and promulgation of the Chinese calendar", issued by the Standardisation Administration of China on 12 May 2017. Although modern day China uses the Gregorian calendar, the traditional Chinese calendar governs holidays in China and in overseas Chinese communities, it lists the dates of traditional Chinese holidays and guides people in selecting auspicious days for weddings, moving, or starting a business. Like Chinese characters, variants of this calendar are used in different parts of the Chinese cultural sphere. Korea and the Ryukyu Islands adopted the calendar, it evolved into Korean and Ryukyuan calendars; the main difference from the traditional Chinese calendar is the use of different meridians, which leads to some astronomical events—and calendar events based on them—falling on different dates.
The traditional Japanese calendar derived from the Chinese calendar, but its official use in Japan was abolished in 1873 as part of reforms after the Meiji Restoration. Calendars in Mongolia and Tibet have absorbed elements of the traditional Chinese calendar, but are not direct descendants of it. Days begin and end at midnight, months begin on the day of the new moon. Years begin on the second new moon after the winter solstice. Solar terms govern the end of each month. Written versions in ancient China included stems and branches of the year and the names of each month, including leap months as needed. Characters indicated whether a month was short; the traditional Chinese calendar was developed between 771 and 476 BC, during the Spring and Autumn period of the Eastern Zhou dynasty. Before the Zhou dynasty, solar calendars were used. One version of the solar calendar is the five-elements calendar. A 365-day year was divided into five phases of 73 days, with each phase corresponding to a Day 1 Wu Xing element.
A phase began followed by six 12-day weeks. Each phase consisted of two three-week months. Years began followed by a bǐngzǐ day and a 72-day fire phase. Other days were tracked using the Yellow River Map. Another version is a four-quarters calendar. Weeks were ten days long, with one month consisting of three weeks. A year had 12 months, with a ten-day week intercalated in summer as needed to keep up with the tropical year; the 10 Heavenly Stems and 12 Earthly Branches were used to mark days. A third version is the balanced calendar. A year was 365.25 days, a month was 29.5 days. After every 16th month, a half-month was intercalated. According to oracle bone records, the Shang dynasty calendar was a balanced calendar with 12 to 14 months in a year; the first lunisolar calendar was the Zhou calendar, introduced under the Zhou dynasty. This calendar set the beginning of the year at the day of the new moon before the winter solstice, it set the shàngyuán as the winter solstice of a dīngsì year, making the year it was introduced around 2,758,130.
Several competing lunisolar calendars were introduced by states fighting Zhou control during the Warring States period. The state of Lu issued its own Lu calendar. Jin issued the Xia calendar in AD 102, with a year beginning on the day of the new moon nearest the March equinox. Qin issued the Zhuanxu calendar, with a year beginning on the day of the new moon nearest the winter solstice. Song's Yin calendar began its year on the day of the new moon after the winter solstice; these calendars are known as the six ancient calendars, or quarter-remainder calendars, since all calculate a year as 365 1⁄4 days long. Months begin on the day of the new moon, a year has 12 or 13 months. Intercalary months are added to the end of the year; the Qiang and Dai calendars are modern versions of the Zhuanxu calendar, used by mountain peoples. After Qin Shi Huang unified China under the Qin dynasty in 221 BC, the Qin calendar was introduced, it followed most of the rules governing the Zhuanxu calendar, but the month order was that of the Xia calendar.
The intercalary month, known as the second Jiǔyuè, was placed at the end of the year. The Qin calendar was used into the Han dynasty. Emperor Wu of Han r. 141 – 87 BC introduced reforms halfway through his reign. His Taichu Calendar defined a solar year as 365 385⁄1539 days, the lunar month was 29 43⁄81 days; this calendar introduced the 24 solar terms. Solar terms were paired, with the 12 combined periods known as climate terms; the first solar term of the period was known as a pre-climate, the second was a mid-climate. Months were named for the mid-climat
Balinese saka calendar
The Balinese saka calendar is one of two calendars used on the Indonesian island of Bali. Unlike the 210-day pawukon calendar, it is based on the phases of the Moon, is the same length as the Gregorian year. Based on a lunar calendar, the saka year comprises sasih, of 30 days each. However, because the lunar cycle is shorter than 30 days, the lunar year has a length of 354 or 355 days, the calendar is adjusted to prevent it losing synchronization with the lunar or solar cycles; the months are adjusted by allocating two lunar days to one solar day every 9 weeks. This day is called ngunalatri, Sanskrit for "minus one night". To stop the Saka from lagging behind the Gregorian calendar – as happens with the Islamic calendar, an extra month, known as an intercalary month, is added after the 11th month, or after the 12th month; the length of these months is calculated according to the normal 63-day cycle. An intercalary month is added whenever necessary to prevent the final day of the 7th month, known as Tilem Kapitu, from falling in the Gregorian month of December.
The names the twelve months are taken from a mixture of Old Balinese and Sanskrit words for 1 to 12, are as follows: Kasa Karo Katiga Kapat Kalima Kanem Kapitu Kawalu Kasanga Kadasa Jyestha SadhaEach month begins the day after a new moon and has 15 days of waxing moon until the full moon 15 days of waning, ending on the new moon. Both sets of days are numbered 1 to 15; the first day of the year is the day after the first new moon in March. Note, that Nyepi falls on the first day of Kadasa, that the years of the Saka era are counted from that date; the calendar is 78 years behind the Gregorian calendar, is calculated from the beginning of the Saka Era in India. It is used alongside the 210-day Balinese pawukon calendar, Balinese festivals can be calculated according to either year; the Indian saka calendar was used for royal decrees as early as the ninth century CE. The same calendar was used in Java until Sultan Agung replaced it with the Javanese calendar in 1633; the Balinese Hindu festival of Nyepi, the day of silence, marks the start of the Saka year.
Tilem Kepitu, the last day of the 7th month, is known as Siva Ratri, is a night dedicated to the god Shiva. Devotees stay up all meditate. There are another 24 ceremonial days in the Saka year celebrated at Purnama. Eiseman, Fred B. Jr, Bali: Sekalia and Niskala Volume I: Essays on Religion and Art pp 182–185, Periplus Editions, 1989 ISBN 0-945971-03-6 Haer, Debbie Guthrie. ISBN 981 3018 496 Hobart, Angela. ISBN 0 631 17687 X Ricklefs, M. C.
The Hebrew or Jewish calendar is a lunisolar calendar used today predominantly for Jewish religious observances. It determines the dates for Jewish holidays and the appropriate public reading of Torah portions and daily Psalm readings, among many ceremonial uses. In Israel, it is used for religious purposes, provides a time frame for agriculture and is an official calendar for civil purposes, although the latter usage has been declining in favor of the Gregorian calendar; the present Hebrew calendar is the product including a Babylonian influence. Until the Tannaitic period, the calendar employed a new crescent moon, with an additional month added every two or three years to correct for the difference between twelve lunar months and the solar year; the year in which it was added was based on observation of natural agriculture-related events in ancient Israel. Through the Amoraic period and into the Geonic period, this system was displaced by the mathematical rules used today; the principles and rules were codified by Maimonides in the Mishneh Torah in the 12th century.
Maimonides' work replaced counting "years since the destruction of the Temple" with the modern creation-era Anno Mundi. The Hebrew lunar year is about eleven days shorter than the solar year and uses the 19-year Metonic cycle to bring it into line with the solar year, with the addition of an intercalary month every two or three years, for a total of seven times per 19 years. With this intercalation, the average Hebrew calendar year is longer by about 6 minutes and 40 seconds than the current mean tropical year, so that every 217 years the Hebrew calendar will fall a day behind the current mean tropical year; the era used. As with Anno Domini, the words or abbreviation for Anno Mundi for the era should properly precede the date rather than follow it. AM 5779 began at sunset on 9 September 2018 and will end at sunset on 29 September 2019; the Jewish day is of no fixed length. The Jewish day is modeled on the reference to "...there was evening and there was morning..." in the creation account in the first chapter of Genesis.
Based on the classic rabbinic interpretation of this text, a day in the rabbinic Hebrew calendar runs from sunset to the next sunset. Halachically, a day ends and a new one starts when three stars are visible in the sky; the time between true sunset and the time when the three stars are visible is known as'bein hashmashot', there are differences of opinion as to which day it falls into for some uses. This may be relevant, for example, in determining the date of birth of a child born during that gap. There is no clock in the Jewish scheme. Though the civil clock, including the one in use in Israel, incorporates local adoptions of various conventions such as time zones, standard times and daylight saving, these have no place in the Jewish scheme; the civil clock is used only as a reference point – in expressions such as: "Shabbat starts at...". The steady progression of sunset around the world and seasonal changes results in gradual civil time changes from one day to the next based on observable astronomical phenomena and not on man-made laws and conventions.
In Judaism, an hour is defined as 1/12 of the time from sunrise to sunset, so, during the winter, an hour can be much less than 60 minutes, during the summer, it can be much more than 60 minutes. This proportional hour is known as a sha'ah z'manit. A Jewish hour is divided into parts. A part is 1/18 minute; the ultimate ancestor of the helek was a small Babylonian time period called a barleycorn, itself equal to 1/72 of a Babylonian time degree. These measures are not used for everyday purposes. Instead of the international date line convention, there are varying opinions as to where the day changes. One opinion uses the antimeridian of Jerusalem. Other opinions exist as well; the weekdays proceed to Saturday, Shabbat. Since some calculations use division, a remainder of 0 signifies Saturday. While calculations of days and years are based on fixed hours equal to 1/24 of a day, the beginning of each halachic day is based on the local time of sunset; the end of the Shabbat and other Jewish holidays is based on nightfall which occurs some amount of time 42 to 72 minutes, after sunset.
According to Maimonides, nightfall occurs. By the 17th century, this had become three-second-magnitude stars; the modern definition is when the center of the sun is 7° below the geometric horizon, somewhat than civil twilight at 6°. The beginning of the daytime portion of each day is determined both by sunrise. Most halachic times are based on some combination of these four times and vary from day to day throughout the year and vary depending on location; the daytime hours are divided into Sha'oth Zemaniyoth or "Halachic hours" by taking the time between sunrise and sunset or between dawn and nightfall and dividing it into 12 equal hours. The nighttime hours are s
The Pig is the twelfth of the 12-year cycle of animals which appear in Chinese zodiac, in relation to the Chinese calendar and system of horology, paralleling the system of ten Heavenly Stems and twelve Earthly Branches. Although the term "zodiac" is used in the phrase "Chinese zodiac", there is a major difference between the Chinese usage and Western astrology: the zodiacal animals do not relate to the zodiac as the area of the sky that extends 8° north or south of the ecliptic, the apparent path of the Sun, the Moon, visible planets across the celestial sphere's constellations, over the course of the year. In Chinese astrology, "zodiacal" animals refer to fixed cycles of twelve animals; the same cycle of twelve is used for cycles of cycles of hours. In the case of years, the cycle of twelve corresponds to the twelve-year cycle of Jupiter. In the case of the hours, the twelve hours represent twelve double-hours for each period of night and day. In the continuous sexagenary cycle of sixty years, every twelfth year corresponds to hai, 亥.
There are five types of Pigs, named after the Chinese elements. In order, they are: Metal, Wood and Earth; these correspond to the Heavenly Stems. Thus, there are five pig years in every sexegenary cycle. For example, in the year 2019, the Earthly Branch is the twelfth, hài, the Heavenly Stem is the sixth, jǐ 己; the Chinese New Year in 2019 is February fifth: this corresponds with the beginning of both the sexegenary year of jǐ hài and the zodiac year of the Earth Pig. In the Japanese zodiac and the Tibetan zodiac, the Pig is replaced by the boar. In the Dai zodiac, the Pig is replaced by the elephant. In the Gurung zodiac, the Pig is replaced by the deer. According to the myths, the Pig was the last to arrive when the Jade Emperor called for the great meeting. Other sources said; the Pig came in last. Legend has it that just as the emperor was about to call it a day, an oink and squeal was heard from a little Pig; the term "lazy Pig" is due here as the Pig got hungry during the race, promptly stopped for a feast fell asleep.
After the nap, the Pig continued the race and was named the 12th and last animal of the zodiac cycle. Other sources say that given his stout form, he was just too slow a swimmer, thus he could not do anything against the other animals; the natural element of the Pig is Water. Thus, it is associated with emotions and intuitions. Yet, given that along with the elements, the animal zodiac follows a cycle, each of the elements affect the characteristic of the same Earthly stem. However, the Pig is yin, thus only the negative aspects of the elements can be attached to them, thus only 5 kinds of Pigs are found in the zodiac, they are the following: 乙亥 – The Wood Pig 丁亥 – The Fire Pig 己亥 – The Earth Pig 辛亥 – The Metal Pig 癸亥 – The Water Pig People born within these date ranges can be said to have been born in the "Year of the Pig", while bearing the following elemental sign:Since the Chinese zodiac follows the Lunar calendar, it does not coincide with the Gregorian calendar years or months. Thus, for example, people born on 9 February 1899 belong to the Dog.
To the usage of the traditional Japanese clock, each hour of a day-night period was divided into 12 double-hours, each of which corresponding with one of the twelve signs of the Chinese zodiac, with similar symbolic motif and astrological significance. The first of the twelve double hours encompasses midnight, at the middle of the double hour, corresponding with 11:00 p.m. to 1:00 p.m. with midnight being the midpoint of the first double-hour. The animals in the same order as in the yearly sequence; the Pig is the last in the sequence, corresponding to the double-hour 9:00 p.m. to 11:00 p.m. known as the hour hai. Given that the day is composed of 24 hours, each sign is given to the different signs of the zodiac; the Pig is assigned to govern the time between 21:00 hrs to 22:59 hrs. According to tradition, this is the time. In terms of astrology, the hours in which people were born are the second most important facet of their astrology. Thus, this alters the characteristics. If people were born in any year governed by another animal will display strong characteristics of the Pig.
Thus, they may be fierce and strong like the Dragon, but at the same time emotional and intuitive like the Pig. The Pig belongs to the fourth Trine of the Chinese zodiac, it is most compatible with the Rabbit. The gentle and sensitive Goat is most compatible with the Pig. Two Pigs can get along well with each other, it is said that the relationship between these three archetypes work best as they strive for aestheticism, a more philosophical, intellectual approach in life. Their calm nature gives them great leadership abilities, they are artistic, intuitive and well-mannered. These souls love the preliminaries in love, are fine artists in their lovemaking; the Rabbit and Pig have been bestowed with calmer natures than the other nine signs. These three are co
Twenty-sixth Dynasty of Egypt
The Twenty-sixth Dynasty of Egypt was the last native dynasty to rule Egypt before the Persian conquest in 525 BC. The dynasty's reign is called the Saite Period after the city of Sais, where its pharaohs had their capital, marks the beginning of the Late Period of ancient Egypt; this dynasty traced its origins to the Twenty-fourth Dynasty. Psamtik I was a descendant of Bakenranef, following the Neo-Assyrian Empire's invasions during the reigns of Taharqa and Tantamani, he was recognized as sole king over all of Egypt. While the Neo-Assyrian Empire was preoccupied with revolts and civil war over control of the throne, Psamtik threw off his ties to the Assyrians circa 655 BC, formed alliances with King Gyges of Lydia, recruited mercenaries from Caria and ancient Greece to resist Assyrian attacks. With the sack of Nineveh in 612 BC and the fall of the Assyrian Empire, both Psamtik and his successors attempted to reassert Egyptian power in the Near East, but were driven back by the Neo-Babylonian Empire under Nebuchadnezzar II.
With the help of Greek mercenaries, Apries was able to hold back Babylonian attempts to conquer Egypt, only for the Persians to do so. Their king, Cambyses II, captured and executed Psamtik III; the 26th Dynasty may be related to the 24th Dynasty. Manetho begins the dynasty with: Ammeris the Nubian, 12 years Stephinates, 7 years Nechepsos, 6 years Necho, 8 years; when the Nubian King Shabaka defeated Bakenranef, son of Tefnakht, he installed a Nubian commander as governor at Sais. This may be the man named Ammeris. Stephinates may be a descendant of Bakenrenef, he is sometimes referred to as Tefnakht II in the literature. Nechepsos has been identified with a local king named Nekauba. Manetho's Necho is King Necho I. Necho was killed during a conflict with the Nubian king Tantamani. Psamtik I fled to Nineveh – capital of the Neo-Assyrian Empire – and returned to Egypt when Ashurbanipal defeated Tantamani and drove him back south. Scholars now start the 26th Dynasty with the reign of Psamtik I. Sextus Julius Africanus states in his accurate version of Manetho's Epitome that the dynasty numbered 9 pharaohs, beginning with a "Stephinates" and ending with Psamtik III.
Africanus notes that Psamtik I and Necho I ruled for 54 and 8 years respectively. History of ancient Egypt Twenty-sixth Dynasty of Egypt family tree Late Period of ancient Egypt Saite Oracle Papyrus Aidan Dodson, Dyan Hilton; the Complete Royal Families of Ancient Egypt. The American University in Cairo Press, London, 2004. Kenneth Kitchen, The Third Intermediate Period in Egypt, 1100–650 B. C. Aris & Phillips. 1986 ISBN 978-0-85668-298-8. Karl Jansen-Winkeln, Bild und Charakter der ägyptischen 26. Dynastie, Altorientalische Forschungen, 28, 165–182
Wahibre Psamtik I, known by the Greeks as Psammeticus or Psammetichus, who ruled 664–610 BC, was the first of three kings of that name of the Saite, or Twenty-sixth Dynasty of Egypt. Historical references for what the Greeks referred to as the Dodecarchy, a loose confederation of twelve Egyptian territories, based on the traditional nomes, the rise of Psamtik I in power, establishing the Saitic Dynasty, are recorded in Herodotus's Histories, Book II: 151–157. From cuneiform texts, it was discovered that twenty local princelings were appointed by Esarhaddon and confirmed by Ashurbanipal to govern Egypt. Necho I, the father of Psamtik by his queen Istemabet, was the chief of these kinglets, but they seem to have been quite unable to lead the Egyptians under the hated Assyrians against the more sympathetic Nubians; the labyrinth built by Amenemhat III of the Twelfth Dynasty of Egypt is ascribed by Herodotus to the Dodecarchy, which must represent this combination of rulers. Necho I died in 664 BC when the Kushite king Tantamani tried unsuccessfully to seize control of lower Egypt from the Assyrian Empire.
After his father's death, Psamtik both united all of Egypt and freed it from Assyrian control within the first ten years of his reign. Psamtik reunified Egypt in his ninth regnal year when he dispatched a powerful naval fleet in March 656 BC to Thebes and compelled the existing God's Wife of Amun at Thebes, Shepenupet II, to adopt his daughter Nitocris I as her heiress in the so-called Adoption Stela. Psamtik's victory destroyed the last vestiges of the Nubian Twenty-fifth Dynasty's control over Upper Egypt under Tantamani since Thebes now accepted his authority. Nitocris would hold her office for 70 years from 656 BC until her death in 585 BC. Thereafter, Psamtik campaigned vigorously against those local princes who opposed his reunification of Egypt. One of his victories over certain Libyan marauders is mentioned in a Year 10 and Year 11 stela from the Dakhla Oasis. Psamtik won Egypt's independence from the Assyrian Empire and restored Egypt's prosperity during his 54-year reign; the pharaoh proceeded to establish close relations with archaic Greece and encouraged many Greek settlers to establish colonies in Egypt and serve in the Egyptian army.
In particular, he settled some Greeks at Tahpanhes. The Greek historian Herodotus conveyed an anecdote about Psamtik in the second volume of his Histories. During his travel to Egypt, Herodotus heard that Psammetichus sought to discover the origin of language by conducting an experiment with two children, he gave two newborn babies to a shepherd, with the instructions that no one should speak to them, but that the shepherd should feed and care for them while listening to determine their first words. The hypothesis was; when one of the children cried "βεκός" with outstretched arms, the shepherd concluded that the word was Phrygian because, the sound of the Phrygian word for "bread". Thus, they concluded that the Phrygians were an older people than the Egyptians, that Phrygian was the original language of men. There are no other extant sources to verify this story. Psamtik's chief wife was Mehytenweskhet, the daughter of Harsiese, the vizier of the North and High Priest of Atum at Heliopolis. Psamtik and Mehytenweskhet were the parents of Necho II, the Divine Adoratrice Nitocris I.
Psamtik's father-in-law—the aforementioned Harsiese—was married three times: to Sheta, with whom he had a daughter named Naneferheres, to Tanini and to an unknown woman, by whom he had both Djedkare, the vizier of the South and Mehytenweskhet. Harsiese was the son of vizier Harkhebi, was related to two other Harsieses, both viziers, who were a part of the family of the famous Mayor of Thebes Montuemhat. On 9 March 2017, Egyptian and German archaeologists discovered a colossal statue about 7.9 metres in height at the Heliopolis site in Cairo. Made of quartzite, the statue was found in a fragmentary state, with the bust, the lower part of the head and the crown submerged in groundwater, it has now been confirmed to be of Psamtik I due to engravings found that mentioned one of the pharaoh's names on the base of the statue. A spokesperson at the time commented that "If it does belong to this king it is the largest statue of the Late Period, discovered in Egypt." The head and torso are expected to be moved to the Grand Egyptian Museum.
The statue/colossus was sculpted in the ancient classical style of 2000 BC, establishing a resurgence to the greatness and prosperity of the classical period of old. However, from the many gathered fragments of quartzite collected, it has been established that the colossus was at some time deliberately destroyed. Certain discoloured & cracked rock fragments show evidence of having been heated to high temperatures shattered, a typical way of destroying ancient colossi; this article incorporates text from a publication now in the public domain: Chisholm, Hugh, ed.. "Psammetichus". Encyclopædia Britannica. Cambridge University Press. Dodson, Aidan. Afterglow of Empire: Egypt from the Fall of the New Kingdom to the Saite Renaissance. Oxford University Press. ISBN 9774165314. Breasted, James Henry. Ancient Records of Egypt: Historical Documents from the Earliest Times to the Persian Conquest. Ancient Records, Second Series. IV. Chicago: University of Chicago Press. LCCN 06005480. Morkot, Robert. Historical Dictionary of Ancient Egyptian Warfare.
Scarecrow Press. Pp. 173–174. ISBN 0810848627. Spalinger, Anthony. Psammetichus, King of Egypt: I. New York: Journal of the American Research Center in Egypt
The Ethiopian calendar or Eritrean calendar is the principal calendar used in Ethiopia and serves as the liturgical year for Christians in Eritrea and Ethiopia belonging to the Eritrean Orthodox Tewahedo Church, Ethiopian Orthodox Tewahedo Church, Eastern Catholic Churches, the Coptic Orthodox Church of Alexandria, Ethiopian-Eritrean Evangelicalism. It is a solar calendar which in turn derives from the Egyptian calendar, but like the Julian calendar, it adds a leap day every four years without exception, begins the year on August 29 or August 30 in the Julian calendar. A gap of 7–8 years between the Ethiopian and Gregorian calendars results from an alternative calculation in determining the date of the Annunciation. Like the Coptic calendar, the Ethiopic calendar has 12 months of 30 days plus 5 or 6 epagomenal days, which comprise a thirteenth month; the Ethiopian months begin on the same days as those of the Coptic calendar, but their names are in Ge'ez. A 6th epagomenal day is added every 4 years, without exception, on August 29 of the Julian calendar, 6 months before the corresponding Julian leap day.
Thus the first day of the Ethiopian year, 1 Mäskäräm, for years between 1900 and 2099, is September 11. However, it falls on September 12 in years before the Gregorian leap year. Enkutatash is the word for the Ethiopian New Year in Amharic, the official language of Ethiopia, while it is called Ri'se Awde Amet in Ge'ez, the term preferred by the Ethiopian & Eritrean Orthodox Tewahedo Churchs, it occurs on September 11th in the Gregorian Calendar. The Ethiopian Calendar Year 1998 Amätä Məhrät began on the Gregorian Calendar Year on September 11th, 2005. However, the Ethiopian Years 1992 and 1996 began on the Gregorian Dates of'September 12th 1999' and'2003' respectively; this date correspondence applies for the Gregorian years 1900 to 2099. The Ethiopian leap year is every four without exception, while Gregorian centurial years are only leap years when divisible by 400; as the Gregorian year 2000 is a leap year, the current correspondence lasts two centuries instead. The start of the Ethiopian year falls on August 30th.
This date corresponds to the Old-Style Julian Calendar. This deviation between the Julian and the Gregorian Calendar will increase with the passing of the time. You can observe the real start date in the future centuries in a Gregorian to Ethiopian Date Converter. To indicate the year and followers of the Eritrean churches today use the Incarnation Era, which dates from the Annunciation or Incarnation of Jesus on March 25, AD 9, as calculated by Annianus of Alexandria c. 400. Meanwhile, Europeans adopted the calculations made by Dionysius Exiguus in AD 525 instead, which placed the Annunciation 8 years earlier than had Annianus; this causes the Ethiopian year number to be 8 years less than the Gregorian year number from January 1 until September 10 or 11 7 years less for the remainder of the Gregorian year. In the past, a number of other eras for numbering years were widely used in Ethiopia and the Kingdom of Aksum; the most important era – once used by the Eastern Christianity, still used by the Coptic Orthodox Church of Alexandria – was the Era of Martyrs known as the Diocletian Era, or the era of Diocletian and the Martyrs, whose first year began on August 29, 284.
Respective to the Gregorian and Julian New Year's Days, 31⁄2 to 4 months the difference between the Era of Martyrs and the Anni Domini is 285 years. This is because in AD 525, Dionysius Exiguus decided to add 15 Metonic cycles to the existing 13 Metonic cycles of the Diocletian Era to obtain an entire 532 year medieval Easter cycle, whose first cycle ended with the year Era of Martyrs 247 equal to year DXXXI, it is because 532 is the product of the Metonic cycle of 19 years and the solar cycle of 28 years. Around AD 400, an Alexandrine monk called Panodoros fixed the Alexandrian Era, the date of creation, on 29 August 5493 BC. After the 6th century AD, the era was used by Ethiopian chronologists; the twelfth 532 year-cycle of this era began on 29 August AD 360, so 4×19 years after the Era of Martyrs. Bishop Anianos preferred the Annunciation style as 25 March, thus he shifted the Panodoros era by about six months, to begin on 25 March 5492 BC. In the Ethiopian calendar this was equivalent to 15 Magabit 5501 B.
C.. The Anno Mundi era remained in usage until the late 19th century; the 4 year leap-year cycle is associated with the four Evangelists: the first year after an Ethiopian leap year is named the John-year, followed by the Matthew-year, the Mark-year. The year with the 6th epagomenal day is traditionally designated as the Luke-year. There are no exceptions to the 4 year leap-year cycle, like the Julian calendar but unlike the Gregorian calendar; these dates are valid only from March 1900 to February 2100. This is because 1900 and 2100 are not leap years in the Gregorian calendar, while they are still leap year