The GCF is 6.
You do a long division - using whichever method you have been taught. Don't stop with a remainder but carry on until you see a repeating pattern emerging (after 6 decimal places).
It is: 2*2*2*2*2*2*3 = 192 or in exponents 2^6 times 3 = 192
192 = 2 * 2 * 2 * 2 * 2 * 2 * 3 = 2^6 * 3192=2x2x2x2x2x2x32^6 x 3
6% of 3200 = 3200*6/100 = 32*6 = 192
6 divide 274 in long div = 0.021897810218978103
To determine how many times 6 can be taken from 192, you would divide 192 by 6. The result is 32, indicating that 6 can be taken from 192 a total of 32 times without any remainder. This is because 6 multiplied by 32 equals 192, showing a perfect division.
To find out how many times 32 goes into 192, you would divide 192 by 32. The result of this division is 6, which means that 32 goes into 192 exactly 6 times. This is because 32 multiplied by 6 equals 192.
160 192 Divide by 2 80 96 Divide by 4 20 24 Divide by 4 5 6 Since 5 is a prime number, 5/6 is the simplification of 160/192.
6 into 120 is 20, 6 into 6 is 1 126 divided by 6 = 21
(1/6)(192) = 32 Just divide 192 by 6
0.0012
0
32
1, 2, 3, 4, 6, 8, 12, 16, 24, 32, 48, 64, 96, 192.
A dividend is the number that you divide in a division problem. 6/3 = 2 Dividend : 6
To find the highest common factor (HCF) of two numbers using the division method, follow these steps: For 1020 and 11594: Step 1: Divide the larger number by the smaller number. Divide 11594 by 1020: 11594 Γ· 1020 = 11 remainder 414 Step 2: Now, divide the divisor from the previous step (1020) by the remainder obtained (414). 1020 Γ· 414 = 2 remainder 192 Step 3: Repeat the division process with the previous divisor (414) and the new remainder (192). 414 Γ· 192 = 2 remainder 30 Step 4: Continue the process until you obtain a remainder of 0. 192 Γ· 30 = 6 remainder 12 30 Γ· 12 = 2 remainder 6 12 Γ· 6 = 2 remainder 0 Step 5: The last divisor with a remainder of 0 is the HCF of the two numbers. Therefore, the HCF of 1020 and 11594 is 6.