The numbers that are divisible by 67 are infinite. Four of them are: 67, 134, 201, 268.
To be divisible by 3 and 4 the number must be divisible by 12. 201/12 = 16.75 so the smallest number in the range, divisible by 12, is 17*12 = 204 301/12 = 25.08 so the largest number in the range, divisible by 12, is 25*12 = 300 The number of multiples of 12 is 25 - 16 = 9
201
The sum of the numbers between 51 and 150 is equal to 10050 - or 50 x 201 - as there are 50 lots of 201 in the sum.
To get an average, add the numbers together and divide by how many numbers there are.... 33 + 34 + 78 + 56 = 201. 201 / 4 = 50.25
There are 25 numbers between 101 and 201 that are divisible by four.
Any multiple of 12 is also a multiple of 3 and 4.
There are sixteen prime numbers between 201 and 300.
There are sixteen prime numbers between 201 and 300.
My answer is 201
The numbers that are divisible by 67 are infinite. Four of them are: 67, 134, 201, 268.
To be divisible by 3 and 4 the number must be divisible by 12. 201/12 = 16.75 so the smallest number in the range, divisible by 12, is 17*12 = 204 301/12 = 25.08 so the largest number in the range, divisible by 12, is 25*12 = 300 The number of multiples of 12 is 25 - 16 = 9
There are no prime numbers between 201 and 300.
Sixteen primes.
201 is one such.
201
201