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6 1 2 1 1 −1 4 5 9. and would be written in modern notation as 6 1 / 4 , 1 1 / 5 , and 2 − 1 / 9 (i.e., 1 8 / 9 ). The horizontal fraction bar is first attested in the work of Al-Hassār (fl. 1200), [35] a Muslim mathematician from Fez, Morocco, who specialized in Islamic inheritance jurisprudence.
One half is the rational number that lies midway between 0 and 1 on the number line. Multiplication by one half is equivalent to division by two, or "halving"; conversely, division by one half is equivalent to multiplication by two, or "doubling". A square of side length one, here dissected into rectangles whose areas are successive powers of ...
In mathematics, the infinite series 1 / 2 + 1 / 4 + 1 / 8 + 1 / 16 + ··· is an elementary example of a geometric series that converges absolutely. The sum of the series is 1. In summation notation, this may be expressed as
1/4 sister / brother: 1/4 grandmother / grandfather / granddaughter / grandson: 1/8 aunt / uncle / niece / nephew: 1/8 first cousin: 1/16 half-sister / half-brother: 1/8 half-first cousin: 1/32 double-first cousin: 1/8 Several of the most common family relationships and their corresponding kinship coefficient.
When speaking the numbers in fractions, the spatial/chronological numbering system is used for denominators larger than 2 (2 as the denominator of a fraction is "half" rather than "second"), with a denominator of 4 sometimes spoken as "quarter" rather than "fourth".
1/4 or 1 ⁄ 4 or ¼ may refer to: The calendar date January 4, in month-day format; The calendar date 1 April in day-month format; 1st Battalion, 4th Marines, an infantry battalion in the United States Marine Corps; A fraction of one fourth, one quarter, 25% or 0.25; 1/4 (single album), a single album by South Korean band Onewe
Sour Cream or Yogurt. For baking, sour cream or yogurt are easy 1:1 substitutes for half-and-half, though both are tangier. When cooking, however, yogurt and sour cream may separate over direct ...
It is unknown whether these constants are transcendental in general, but Γ( 1 / 3 ) and Γ( 1 / 4 ) were shown to be transcendental by G. V. Chudnovsky. Γ( 1 / 4 ) / 4 √ π has also long been known to be transcendental, and Yuri Nesterenko proved in 1996 that Γ( 1 / 4 ), π, and e π are algebraically independent.