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  2. 5040 (number) - Wikipedia

    en.wikipedia.org/wiki/5040_(number)

    Plato also took notice of the fact that 5040 can be divided by 12 twice over. ... 5040 is the least common multiple of the first 10 multiples of 2 (2, 4, 6, 8, 10, 12 ...

  3. Least common multiple - Wikipedia

    en.wikipedia.org/wiki/Least_common_multiple

    A multiple of a number is the product of that number and an integer. For example, 10 is a multiple of 5 because 5 × 2 = 10, so 10 is divisible by 5 and 2. Because 10 is the smallest positive integer that is divisible by both 5 and 2, it is the least common multiple of 5 and 2.

  4. Lowest common denominator - Wikipedia

    en.wikipedia.org/wiki/Lowest_common_denominator

    Here, 36 is the least common multiple of 12 and 18. Their product, 216, is also a common denominator, but calculating with that denominator involves larger numbers:

  5. Orders of magnitude (numbers) - Wikipedia

    en.wikipedia.org/wiki/Orders_of_magnitude_(numbers)

    Biology: An estimate says there were 3.04 × 10 12 trees on Earth in 2015. [38] ... (≈6.97 × 10 40) is the least common multiple of every integer from 1 to 100.

  6. LCM - Wikipedia

    en.wikipedia.org/wiki/Lcm

    Least common multiple, a function of two integers; Living Computer Museum; Life cycle management, management of software applications in virtual machines or in containers; Logical Computing Machine, another name for a Turing machine

  7. Portal:Arithmetic - Wikipedia

    en.wikipedia.org/wiki/Portal:Arithmetic

    In arithmetic and number theory, the least common multiple, lowest common multiple, ... For example, the GCD of 8 and 12 is 4, that is, gcd(8, 12) = 4.

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  9. Table of prime factors - Wikipedia

    en.wikipedia.org/wiki/Table_of_prime_factors

    m and n are coprime (also called relatively prime) if gcd(m, n) = 1 (meaning they have no common prime factor). lcm(m, n) (least common multiple of m and n) is the product of all prime factors of m or n (with the largest multiplicity for m or n). gcd(m, n) × lcm(m, n) = m × n. Finding the prime factors is often harder than computing gcd and ...

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