The prime factors of 144 are 2(4) and 3(2)That is, 144 = 2 x 2 (4 times) x 3 x 3, and those numbers are primes.
They are: 2*2*2*2*3*3 = 144
144 = 2 x 2 x 2 x 2 x 3 x 3. So, 2 and 3 are the two prime numbers.
Just go to a table of prime numbers, find the prime numbers, and add them.Just go to a table of prime numbers, find the prime numbers, and add them.Just go to a table of prime numbers, find the prime numbers, and add them.Just go to a table of prime numbers, find the prime numbers, and add them.
Find the prime factors of 144. # Factor 144 # 144 = 12 x 12 # 12 can be written as 4 x 3 # Therefore, 144 = 4x3 x 4x3# 4 can be written as 2 x 2 # Therefore 144 = 2x2 x 3 x 2x2 x 2# Hence, putting them in numerical order, 144 is 2 x 2 x 2 x 2 x 3 x 3The Prime Factors of 144 are 2, 3The way to find the prime factors of a number is to identify any obvious numbers that it divides by. In this case, we have 144 which should be known as 122. Thus we can say the prime factors are just twice whatever the prime factors of 12 are. 12 is 2x2x3. Thus we can say the prime factors of 144 are 2, 2, 2, 2, 3 and 3.you mean prime numbers that go (can be divided evenly) into144?
There are several prime numbers that add up to 144 and of it is 71+73 =144
2x2x2x2x3x3=144
No a prime number can only be divided by 1 and itself. 144 is an even number, all even number can be divided by 2 (144/2=72) so no even numbers can be prime numbers.
The prime factors of 144 are 2(4) and 3(2)That is, 144 = 2 x 2 (4 times) x 3 x 3, and those numbers are primes.
As a product of its prime factors: 2*2*2*2*3*3 = 144
2 and 3
As a product of its prime factors in exponents: 2^4 times 3^2 = 144
They are: 2*2*2*2*3*3 = 144
No, two even numbers cannot be relatively prime.
They are not prime numbers because they have other factors aside from 1 and themselves.
11 x 11 + 23 = 144
To find the greatest common factor (GCF) of 96, 144, and 224, we need to first find the prime factorization of each number. The prime factorization of 96 is 2^5 * 3, the prime factorization of 144 is 2^4 * 3^2, and the prime factorization of 224 is 2^5 * 7. To find the GCF, we look for the highest power of common prime factors in all three numbers, which in this case is 2^4 = 16. Therefore, the greatest common factor of 96, 144, and 224 is 16.