Created By : Jatin Gogia
Reviewed By : Rajasekhar Valipishetty
Last Updated : Apr 06, 2023
HCF Calculator using the Euclid Division Algorithm helps you to find the Highest common factor (HCF) easily for 68, 884, 816 i.e. 68 the largest integer that leaves a remainder zero for all numbers.
HCF of 68, 884, 816 is 68 the largest number which exactly divides all the numbers i.e. where the remainder is zero. Let us get into the working of this example.
Consider we have numbers 68, 884, 816 and we need to find the HCF of these numbers. To do so, we need to choose the largest integer first and then as per Euclid's Division Lemma a = bq + r where 0 ≤ r ≤ b
Highest common factor (HCF) of 68, 884, 816 is 68.
HCF(68, 884, 816) = 68
Highest common factor or Highest common divisor (hcd) can be calculated by Euclid's algotithm.
Highest common factor (HCF) of 68, 884, 816 is 68.
Step 1: Since 884 > 68, we apply the division lemma to 884 and 68, to get
884 = 68 x 13 + 0
The remainder has now become zero, so our procedure stops. Since the divisor at this stage is 68, the HCF of 68 and 884 is 68
Notice that 68 = HCF(884,68) .
We can take hcf of as 1st numbers and next number as another number to apply in Euclidean lemma
Step 1: Since 816 > 68, we apply the division lemma to 816 and 68, to get
816 = 68 x 12 + 0
The remainder has now become zero, so our procedure stops. Since the divisor at this stage is 68, the HCF of 68 and 816 is 68
Notice that 68 = HCF(816,68) .
Here are some samples of HCF using Euclid's Algorithm calculations.
1. What is the Euclid division algorithm?
Answer: Euclid's Division Algorithm is a technique to compute the Highest Common Factor (HCF) of given positive integers.
2. what is the HCF of 68, 884, 816?
Answer: HCF of 68, 884, 816 is 68 the largest number that divides all the numbers leaving a remainder zero.
3. How to find HCF of 68, 884, 816 using Euclid's Algorithm?
Answer: For arbitrary numbers 68, 884, 816 apply Euclid’s Division Lemma in succession until you obtain a remainder zero. HCF is the remainder in the last but one step.