Radiocarbon dated in the context of Half-life


Radiocarbon dated in the context of Half-life

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⭐ Core Definition: Radiocarbon dated

Radiocarbon dating (also referred to as carbon dating or carbon-14 dating) is a method for determining the age of an object containing organic material by using the properties of radiocarbon, a radioactive isotope of carbon.

The method was developed in the late 1940s at the University of Chicago by Willard Libby. It is based on the fact that radiocarbon (
C
) is constantly being created in the Earth's atmosphere by the interaction of cosmic rays with atmospheric nitrogen. The resulting
C
combines with atmospheric oxygen to form radioactive carbon dioxide, which is incorporated into plants by photosynthesis; animals then acquire
C
by eating the plants. When the animal or plant dies, it stops exchanging carbon with its environment, and thereafter the amount of
C
it contains begins to decrease as the
C
undergoes radioactive decay. Measuring the amount of
C
in a sample from a dead plant or animal, such as a piece of wood or a fragment of bone, provides information that can be used to calculate when the animal or plant died. The older a sample is, the less
C
there is to be detected. The half-life of
C
(the period of time after which half of a given sample will have decayed) is about 5,730 years, so the oldest dates that can be reliably measured by this process date to approximately 50,000 years ago, although special preparation methods occasionally make an accurate analysis of older samples possible. Libby received the Nobel Prize in Chemistry for his work in 1960.

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Radiocarbon dated in the context of Maryam (surah)

Maryam (Arabic: مريم, Maryam; Arabic cognate of 'Mary') is the 19th chapter (sūrah) of the Qur'an with 98 verses (āyāt). The 114 chapters in the Quran are roughly ordered by size. The Quranic chapter is named after Mary, mother of Jesus (ʿIsa, عیسی), and the Virgin Mary in Christian belief. It recounts the events leading up to the birth of Jesus. The text of the surah refers to many known prophetic figures, including Isaac, Jacob, Moses, Aaron, Ishmael, Idris, Adam, Zechariah and Noah.

The Birmingham Quran manuscript preserves the final eight verses (Q19:91–98), on parchment radiocarbon dated to between 568 and 645 CE (56 BH – 25 AH). The Sanaa manuscript, dated between 578 and 669 CE (44 BH – 49 AH), includes verses 2–28.

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Radiocarbon dated in the context of At-Tawbah

At-Tawbah (Arabic: ٱلتوبة, lit.'the Repentance') is the ninth chapter (sura) of the Quran. It contains 129 verses (ayat) and is one of the last Medinan surahs. This Surah is also known as Al-Bara'ah (Arabic: البراءة, lit.'the Release'). It is called At-Tawbah in light of the fact that it articulates tawbah (repentance) and informs about the conditions of its acceptance (verse 9:102, 9:118). The name Bara'at (release) is taken from the opening word of the Surah.

It is believed by Muslims to have been revealed at the time of the Expedition of Tabuk in Medina in the 9th year of the Hijrah. The Sanaa manuscript preserves some verses, on parchment radiocarbon dated to between 578 CE (44 BH) and 669 CE (49 AH).

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Radiocarbon dated in the context of Irish elk

The Irish elk (Megaloceros giganteus), also called the giant deer or Irish deer, is an extinct species of deer in the genus Megaloceros and is one of the largest deer that ever lived. Its range extended across northern Eurasia during the Pleistocene, from Ireland (where it is known from abundant remains found in bogs) to Lake Baikal in Siberia. The most recent remains of the species have been radiocarbon dated to about 7,700 years ago in western Russia. Its antlers, which can span 3.5 metres (11.5 ft) across, are the largest known of any deer. It is not closely related to either living species called the elk, with it being widely agreed that its closest living relatives are fallow deer (Dama).

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