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  2. Multiple (mathematics) - Wikipedia

    en.wikipedia.org/wiki/Multiple_(mathematics)

    In mathematics, a multiple is the product of any quantity and an integer. [1] In other words, for the quantities a and b , it can be said that b is a multiple of a if b = na for some integer n , which is called the multiplier .

  3. Divisor - Wikipedia

    en.wikipedia.org/wiki/Divisor

    7 is a divisor of 42 because =, so we can say It can also be said that 42 is divisible by 7, 42 is a multiple of 7, 7 divides 42, or 7 is a factor of 42. The non-trivial divisors of 6 are 2, −2, 3, −3.

  4. 42 (dominoes) - Wikipedia

    en.wikipedia.org/wiki/42_(dominoes)

    The 42 points consist of one point for each of the seven tricks, plus 35 points from the five "count" dominoes whose total pips are a multiple of 5 (the and for 10 points each, as well as the , , and for 5 points each). The reward for attaining the bid is typically a tally mark, or in numerical scoring, the reward is the point total the player ...

  5. Divisibility rule - Wikipedia

    en.wikipedia.org/wiki/Divisibility_rule

    Repeat the procedure until you have a recognizable multiple of 7, or to make sure, a number between 0 and 6. So, starting from 21 (which is a recognizable multiple of 7), take the first digit (2) and convert it into the following in the sequence above: 2 becomes 6. Then add this to the second digit: 6 + 1 = 7.

  6. 42 (number) - Wikipedia

    en.wikipedia.org/wiki/42_(number)

    42 is a pronic number, [1] an abundant number [2] as well as a highly abundant number, [3] a practical number, [4] an admirable number, [5] and a Catalan number. [6]The 42-sided tetracontadigon is the largest such regular polygon that can only tile a vertex alongside other regular polygons, without tiling the plane.

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  8. Primitive abundant number - Wikipedia

    en.wikipedia.org/wiki/Primitive_abundant_number

    Every multiple of a primitive abundant number is an abundant number. Every abundant number is a multiple of a primitive abundant number or a multiple of a perfect number. Every primitive abundant number is either a primitive semiperfect number or a weird number. There are an infinite number of primitive abundant numbers.

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