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  2. Chinese restaurant process - Wikipedia

    en.wikipedia.org/wiki/Chinese_restaurant_process

    An equivalent, but subtly different way to define the Chinese restaurant process, is to let new customers choose companions rather than tables. [4] Customer + chooses to sit at the same table as any one of the seated customers with probability +, or chooses to sit at a new, unoccupied table with probability +.

  3. Chisanbop - Wikipedia

    en.wikipedia.org/wiki/Chisanbop

    The three fingers on the left hand represent 10+10+10 = 30; the thumb and one finger on the right hand represent 5+1=6. Counting from 1 to 20 in Chisanbop. Each finger has a value of one, while the thumb has a value of five. Therefore each hand can represent the digits 0-9, rather than the usual 0-5.

  4. Chinese Restaurant (TV series) - Wikipedia

    en.wikipedia.org/wiki/Chinese_Restaurant_(TV_series)

    Chinese Restaurant (simplified Chinese: 中餐厅; traditional Chinese: 中餐廳; pinyin: Zhōngcāntīng) is a Chinese celebrity reality show broadcast by Hunan Television. The show features five celebrities as they run a chinese restaurant abroad in 20 days with the aim to promote Chinese Food culture.

  5. Microsoft Math Solver - Wikipedia

    en.wikipedia.org/wiki/Microsoft_Math_Solver

    It was then available as a standalone paid version starting with version 3.0. For version 4.0, it was released as a free downloadable product [4] and was called Microsoft Mathematics 4.0. It is no longer in active development and has been removed from the Microsoft website. [5]

  6. List of common misconceptions about arts and culture

    en.wikipedia.org/wiki/List_of_common...

    Fortune cookies are not found in Chinese cuisine, despite their presence in Chinese restaurants in the United States and other Western countries. They originated in Japan and were introduced to the US by the Japanese. [70] In China, they are considered American, and are rare. [71] Julius Caesar did not invent Caesar salad.

  7. Hundred Fowls Problem - Wikipedia

    en.wikipedia.org/wiki/Hundred_Fowls_Problem

    z = 75 + (3/4)x. Since x, y and z all must be integers, the expression for y suggests that x must be a multiple of 4. Hence the general solution of the system of equations can be expressed using an integer parameter t as follows: [5] x = 4t y = 25 − 7t z = 75 + 3t. Since y should be a non-negative integer, the only possible values of t are 0 ...

  8. Lattice multiplication - Wikipedia

    en.wikipedia.org/wiki/Lattice_multiplication

    A grid is drawn up, and each cell is split diagonally. The two multiplicands of the product to be calculated are written along the top and right side of the lattice, respectively, with one digit per column across the top for the first multiplicand (the number written left to right), and one digit per row down the right side for the second multiplicand (the number written top-down).

  9. Chinese remainder theorem - Wikipedia

    en.wikipedia.org/wiki/Chinese_remainder_theorem

    In mathematics, the Chinese remainder theorem states that if one knows the remainders of the Euclidean division of an integer n by several integers, then one can determine uniquely the remainder of the division of n by the product of these integers, under the condition that the divisors are pairwise coprime (no two divisors share a common factor other than 1).