No, because 7 and 8s is not a value out of 3 and 5 in the first place!
if you mean 7/8 and 3/5 then the greatest value is 7/8
384s2 - 150 = 6*(64s2 - 25) The term inside the brackets is a difference of two squares, so 6*(8s - 5)*(8s + 5)
14s 2d 7 - 6s 4d 5 + 8s 2d 3/2s 2d = 14s 7 - 3s 2s 5 + 4s 3
The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500
The greatest remainder when dividing by 5 is 4. This is because when a number is divided by 5, the possible remainders are 0, 1, 2, 3, and 4. Since 4 is the highest value in this set, it is the greatest remainder one can obtain when using 5 as the divisor.
The 1st digit which has a value of 500
1
384s2 - 150 = 6*(64s2 - 25) The term inside the brackets is a difference of two squares, so 6*(8s - 5)*(8s + 5)
14s 2d 7 - 6s 4d 5 + 8s 2d 3/2s 2d = 14s 7 - 3s 2s 5 + 4s 3
3. It is in the hundreds place.
The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500The face value of 3 is 3: the value of 3 is 3000The face value of 5 is 5: the value of 5 is 500
5 (5 thousand)
5
5
5
The greatest remainder when dividing by 5 is 4. This is because when a number is divided by 5, the possible remainders are 0, 1, 2, 3, and 4. Since 4 is the highest value in this set, it is the greatest remainder one can obtain when using 5 as the divisor.
It will be either 1, 3, 5 or 15, depending on the value of B.
Greatest Common Divisor (GCD) for 5 3 is 1.