54 = 2 × 33 210 = 2 × 3 × 5 × 7
54 2* 27 3* 9 3* 3* the prime factorization numbers of 54 are 2 and 33
54 Is actually composite because composite means it has to have more factors than 2. Its factors are 1,2,3,6,9,18,27,54Composite. Its divisible by 2 and cannot be prime.
To find the greatest common factor (GCF) of 18, 54, and 90, we first need to find the prime factorization of each number. The prime factorization of 18 is 2 * 3^2, the prime factorization of 54 is 2 * 3^3, and the prime factorization of 90 is 2 * 3^2 * 5. To find the GCF, we identify the common prime factors among the numbers, which are 2 and 3^2. Therefore, the GCF of 18, 54, and 90 is 2 * 3^2, which equals 18.
Oh, dude, so the greatest common factor (GCF) is like the BFF of numbers, right? And the least common multiple (LCM) is like the party they both get invited to. So, if the GCF is 9, it's like saying, "Hey, I can fit into both of your circles," and the LCM is 54, which is like the big party where they all hang out together. So, the two numbers would be 27 and 54.
The LCM is 1890.
The LCM of 54 and 210 is 26....Using the ladder method
The Least Common Multiple (LCM) of 54 and 210 is 1890.
Least Common Multiple (LCM) for 54 210 is 1,890.
1890
Least Common Multiple (LCM) for 54 210 is 1,890
The LCM is 1890 The GCF is 6
Oh, dude, prime factorization? You're really taking me back to math class. So, like, the prime factorization of 210 is 2 * 3 * 5 * 7, and the prime factorization of 54 is 2 * 3^3. To find the LCM, you just take the highest power of each prime factor that appears in either number, so it's 2 * 3^3 * 5 * 7, which equals 1,890. Math, man, it's wild.
54 = 2 × 33 210 = 2 × 3 × 5 × 7
2 x 3 x 3 x 3 = 54 2 x 3 x 5 x 7 = 210 2 x 3 x 3 x 3 x 5 x 7 = 1890, the LCM
The LCM of 48 and 54 is 432. Prime factors of 48 are: 2^4 and 3 Prime factors of 54 are: 2 and 3^3 Multiplying the highest prime factors: 2^4 times 3^3 = 432 which is the LCM
The LCM is: 54