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2026-01-01
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<p>Last updated on<strong>December 12, 2025</strong></p>
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<p>Last updated on<strong>December 12, 2025</strong></p>
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<p>Factors are the numbers that divide any given number evenly without a remainder. In daily life, we use factors for tasks like sharing items equally and arranging things. In this topic, we will learn about the factors of 949, how they are used in real life, and tips to learn them quickly.</p>
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<p>Factors are the numbers that divide any given number evenly without a remainder. In daily life, we use factors for tasks like sharing items equally and arranging things. In this topic, we will learn about the factors of 949, how they are used in real life, and tips to learn them quickly.</p>
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<h2>What are the Factors of 949?</h2>
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<h2>What are the Factors of 949?</h2>
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<p>The<a>numbers</a>that divide 949 evenly are known as<a>factors</a><a>of</a>949.</p>
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<p>The<a>numbers</a>that divide 949 evenly are known as<a>factors</a><a>of</a>949.</p>
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<p>A factor of 949 is a number that divides the number without a<a>remainder</a>.</p>
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<p>A factor of 949 is a number that divides the number without a<a>remainder</a>.</p>
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<p>The factors of 949 are 1, 13, 73, and 949.</p>
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<p>The factors of 949 are 1, 13, 73, and 949.</p>
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<p>Negative factors of 949: -1, -13, -73, and -949.</p>
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<p>Negative factors of 949: -1, -13, -73, and -949.</p>
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<p>Prime factors of 949: 13 and 73.</p>
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<p>Prime factors of 949: 13 and 73.</p>
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<p>Prime factorization of 949: 13 × 73.</p>
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<p>Prime factorization of 949: 13 × 73.</p>
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<p>The<a>sum</a>of factors of 949: 1 + 13 + 73 + 949 = 1036</p>
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<p>The<a>sum</a>of factors of 949: 1 + 13 + 73 + 949 = 1036</p>
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<h2>How to Find Factors of 949?</h2>
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<h2>How to Find Factors of 949?</h2>
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<p>Factors can be found using different methods. Mentioned below are some commonly used methods:</p>
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<p>Factors can be found using different methods. Mentioned below are some commonly used methods:</p>
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<ul><li>Finding factors using<a>multiplication</a></li>
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<ul><li>Finding factors using<a>multiplication</a></li>
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<li>Finding factors using<a>division</a>method</li>
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<li>Finding factors using<a>division</a>method</li>
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<li>Prime factors and Prime factorization</li>
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<li>Prime factors and Prime factorization</li>
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</ul><h3>Finding Factors Using Multiplication</h3>
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</ul><h3>Finding Factors Using Multiplication</h3>
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<p>To find factors using multiplication, we need to identify the pairs of numbers that are multiplied to give 949. Identifying the numbers which are multiplied to get the number 949 is the multiplication method.</p>
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<p>To find factors using multiplication, we need to identify the pairs of numbers that are multiplied to give 949. Identifying the numbers which are multiplied to get the number 949 is the multiplication method.</p>
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<p>Step 1: Multiply 949 by 1, 949 × 1 = 949.</p>
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<p>Step 1: Multiply 949 by 1, 949 × 1 = 949.</p>
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<p>Step 2: Check for other numbers that give 949 after multiplying</p>
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<p>Step 2: Check for other numbers that give 949 after multiplying</p>
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<p>13 × 73 = 949</p>
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<p>13 × 73 = 949</p>
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<p><strong>Therefore, the positive factor pairs of 949 are:</strong>(1, 949) and (13, 73).</p>
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<p><strong>Therefore, the positive factor pairs of 949 are:</strong>(1, 949) and (13, 73).</p>
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<p>All these factor pairs result in 949.</p>
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<p>All these factor pairs result in 949.</p>
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<p>For every positive factor, there is a negative factor.</p>
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<p>For every positive factor, there is a negative factor.</p>
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<h3>Finding Factors Using Division Method</h3>
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<h3>Finding Factors Using Division Method</h3>
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<p>Dividing the given numbers with the<a>whole numbers</a>until the remainder becomes zero and listing out the numbers which result as whole numbers as factors. Factors can be calculated by following the simple division method -</p>
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<p>Dividing the given numbers with the<a>whole numbers</a>until the remainder becomes zero and listing out the numbers which result as whole numbers as factors. Factors can be calculated by following the simple division method -</p>
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<p><strong>Step 1:</strong>Divide 949 by 1, 949 ÷ 1 = 949.</p>
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<p><strong>Step 1:</strong>Divide 949 by 1, 949 ÷ 1 = 949.</p>
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<p><strong>Step 2:</strong>Continue dividing 949 by the numbers until the remainder becomes 0.</p>
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<p><strong>Step 2:</strong>Continue dividing 949 by the numbers until the remainder becomes 0.</p>
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<p>949 ÷ 1 = 949</p>
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<p>949 ÷ 1 = 949</p>
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<p>949 ÷ 13 = 73</p>
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<p>949 ÷ 13 = 73</p>
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<p>949 ÷ 73 = 13</p>
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<p>949 ÷ 73 = 13</p>
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<p><strong>Therefore, the factors of 949 are:</strong>1, 13, 73, 949.</p>
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<p><strong>Therefore, the factors of 949 are:</strong>1, 13, 73, 949.</p>
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<h3>Prime Factors and Prime Factorization</h3>
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<h3>Prime Factors and Prime Factorization</h3>
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<p>The factors can be found by dividing it with<a>prime numbers</a>. We can find the<a>prime factors</a>using the following methods:</p>
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<p>The factors can be found by dividing it with<a>prime numbers</a>. We can find the<a>prime factors</a>using the following methods:</p>
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<ul><li>Using prime factorization </li>
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<ul><li>Using prime factorization </li>
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<li>Using<a>factor tree</a> </li>
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<li>Using<a>factor tree</a> </li>
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</ul><p>Using Prime Factorization: In this process, prime factors of 949 divide the number to break it down in the multiplication form of prime factors till the remainder becomes 1.</p>
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</ul><p>Using Prime Factorization: In this process, prime factors of 949 divide the number to break it down in the multiplication form of prime factors till the remainder becomes 1.</p>
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<p>949 ÷ 13 = 73</p>
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<p>949 ÷ 13 = 73</p>
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<p>73 ÷ 73 = 1</p>
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<p>73 ÷ 73 = 1</p>
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<p>The prime factors of 949 are 13 and 73.</p>
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<p>The prime factors of 949 are 13 and 73.</p>
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<p>The prime factorization of 949 is: 13 × 73.</p>
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<p>The prime factorization of 949 is: 13 × 73.</p>
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<h3>Factor Tree</h3>
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<h3>Factor Tree</h3>
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<p>The factor tree is the graphical representation of breaking down any number into prime factors. The following step shows -</p>
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<p>The factor tree is the graphical representation of breaking down any number into prime factors. The following step shows -</p>
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<p><strong>Step 1:</strong>Firstly, 949 is divided by 13 to get 73.</p>
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<p><strong>Step 1:</strong>Firstly, 949 is divided by 13 to get 73.</p>
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<p><strong>Step 2:</strong>73 is a prime number and cannot be divided further.</p>
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<p><strong>Step 2:</strong>73 is a prime number and cannot be divided further.</p>
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<p>So, the prime factorization of 949 is: 13 × 73.</p>
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<p>So, the prime factorization of 949 is: 13 × 73.</p>
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<p>Factor Pairs Two numbers that are multiplied to give a specific number are called factor pairs.</p>
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<p>Factor Pairs Two numbers that are multiplied to give a specific number are called factor pairs.</p>
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<p>Both positive and negative factors constitute factor pairs.</p>
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<p>Both positive and negative factors constitute factor pairs.</p>
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<p>Positive factor pairs of 949: (1, 949) and (13, 73).</p>
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<p>Positive factor pairs of 949: (1, 949) and (13, 73).</p>
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<p>Negative factor pairs of 949: (-1, -949) and (-13, -73).</p>
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<p>Negative factor pairs of 949: (-1, -949) and (-13, -73).</p>
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<h2>Common Mistakes and How to Avoid Them in Factors of 949</h2>
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<h2>Common Mistakes and How to Avoid Them in Factors of 949</h2>
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<p>Mistakes are common while finding factors. We can identify and correct those mistakes using the following common mistakes and the ways to avoid them.</p>
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<p>Mistakes are common while finding factors. We can identify and correct those mistakes using the following common mistakes and the ways to avoid them.</p>
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<h2>Download Worksheets</h2>
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<h3>Problem 1</h3>
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<h3>Problem 1</h3>
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<p>There are 13 friends and 949 marbles. How will they divide them equally?</p>
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<p>There are 13 friends and 949 marbles. How will they divide them equally?</p>
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<p>Okay, lets begin</p>
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<p>Okay, lets begin</p>
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<p>They will get 73 marbles each.</p>
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<p>They will get 73 marbles each.</p>
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<h3>Explanation</h3>
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<h3>Explanation</h3>
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<p>To divide the marbles equally, we need to divide the total marbles by the number of friends.</p>
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<p>To divide the marbles equally, we need to divide the total marbles by the number of friends.</p>
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<p>949/13 = 73</p>
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<p>949/13 = 73</p>
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<p>Well explained 👍</p>
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<p>Well explained 👍</p>
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<h3>Problem 2</h3>
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<h3>Problem 2</h3>
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<p>A rectangular garden has a length of 13 meters and a total area of 949 square meters. Find the width?</p>
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<p>A rectangular garden has a length of 13 meters and a total area of 949 square meters. Find the width?</p>
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<p>Okay, lets begin</p>
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<p>Okay, lets begin</p>
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<p>73 meters.</p>
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<p>73 meters.</p>
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<h3>Explanation</h3>
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<h3>Explanation</h3>
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<p>To find the width of the garden, we use the formula,</p>
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<p>To find the width of the garden, we use the formula,</p>
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<p>Area = length × width</p>
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<p>Area = length × width</p>
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<p>949 = 13 × width</p>
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<p>949 = 13 × width</p>
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<p>To find the value of width, we need to shift 13 to the left side.</p>
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<p>To find the value of width, we need to shift 13 to the left side.</p>
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<p>949/13 = width</p>
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<p>949/13 = width</p>
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<p>Width = 73.</p>
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<p>Width = 73.</p>
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<p>Well explained 👍</p>
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<p>Well explained 👍</p>
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<h3>Problem 3</h3>
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<h3>Problem 3</h3>
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<p>There are 73 boxes and 949 candies. How many candies will be in each box?</p>
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<p>There are 73 boxes and 949 candies. How many candies will be in each box?</p>
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<p>Okay, lets begin</p>
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<p>Okay, lets begin</p>
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<p>Each box will have 13 candies.</p>
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<p>Each box will have 13 candies.</p>
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<h3>Explanation</h3>
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<h3>Explanation</h3>
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<p>To find the candies in each box, divide the total candies by the boxes.</p>
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<p>To find the candies in each box, divide the total candies by the boxes.</p>
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<p>949/73 = 13</p>
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<p>949/73 = 13</p>
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<p>Well explained 👍</p>
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<p>Well explained 👍</p>
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<h3>Problem 4</h3>
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<h3>Problem 4</h3>
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<p>In a concert, there are 949 attendees, and 13 sections. How many attendees are there in each section?</p>
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<p>In a concert, there are 949 attendees, and 13 sections. How many attendees are there in each section?</p>
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<p>Okay, lets begin</p>
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<p>Okay, lets begin</p>
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<p>There are 73 attendees in each section.</p>
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<p>There are 73 attendees in each section.</p>
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<h3>Explanation</h3>
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<h3>Explanation</h3>
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<p>Dividing the attendees by the total sections, we will get the number of attendees in each section.</p>
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<p>Dividing the attendees by the total sections, we will get the number of attendees in each section.</p>
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<p>949/13 = 73</p>
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<p>949/13 = 73</p>
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<p>Well explained 👍</p>
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<p>Well explained 👍</p>
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<h3>Problem 5</h3>
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<h3>Problem 5</h3>
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<p>949 apples need to be packed in 73 crates. How many apples will go in each crate?</p>
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<p>949 apples need to be packed in 73 crates. How many apples will go in each crate?</p>
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<p>Okay, lets begin</p>
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<p>Okay, lets begin</p>
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<p>Each crate will have 13 apples.</p>
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<p>Each crate will have 13 apples.</p>
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<h3>Explanation</h3>
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<h3>Explanation</h3>
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<p>Divide the total apples by the crates.</p>
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<p>Divide the total apples by the crates.</p>
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<p>949/73 = 13</p>
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<p>949/73 = 13</p>
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<p>Well explained 👍</p>
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<p>Well explained 👍</p>
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<h2>FAQs on Factors of 949</h2>
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<h2>FAQs on Factors of 949</h2>
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<h3>1.What are the factors of 949?</h3>
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<h3>1.What are the factors of 949?</h3>
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<p>1, 13, 73, and 949 are the factors of 949.</p>
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<p>1, 13, 73, and 949 are the factors of 949.</p>
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<h3>2.Mention the prime factors of 949.</h3>
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<h3>2.Mention the prime factors of 949.</h3>
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<p>The prime factors of 949 are 13 × 73.</p>
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<p>The prime factors of 949 are 13 × 73.</p>
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<h3>3.Is 949 a multiple of 13?</h3>
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<h3>3.Is 949 a multiple of 13?</h3>
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<h3>4.Mention the factor pairs of 949?</h3>
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<h3>4.Mention the factor pairs of 949?</h3>
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<p>(1, 949) and (13, 73) are the factor pairs of 949.</p>
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<p>(1, 949) and (13, 73) are the factor pairs of 949.</p>
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<h3>5.What is the square of 949?</h3>
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<h3>5.What is the square of 949?</h3>
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<h2>Important Glossaries for Factor of 949</h2>
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<h2>Important Glossaries for Factor of 949</h2>
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<ul><li><strong>Factors:</strong>The numbers that divide the given number without leaving a remainder are called factors. For example, the factors of 949 are 1, 13, 73, and 949.</li>
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<ul><li><strong>Factors:</strong>The numbers that divide the given number without leaving a remainder are called factors. For example, the factors of 949 are 1, 13, 73, and 949.</li>
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<li><strong>Prime Factors:</strong>The factors which are prime numbers. For example, 13 and 73 are prime factors of 949.</li>
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<li><strong>Prime Factors:</strong>The factors which are prime numbers. For example, 13 and 73 are prime factors of 949.</li>
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<li><strong>Factor Pairs:</strong>Two numbers in a pair that are multiplied to give the original number are called factor pairs. For example, the factor pairs of 949 are (1, 949) and (13, 73).</li>
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<li><strong>Factor Pairs:</strong>Two numbers in a pair that are multiplied to give the original number are called factor pairs. For example, the factor pairs of 949 are (1, 949) and (13, 73).</li>
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<li><strong>Prime Factorization:</strong>The process of expressing a number as a product of its prime factors. For example, the prime factorization of 949 is 13 × 73.</li>
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<li><strong>Prime Factorization:</strong>The process of expressing a number as a product of its prime factors. For example, the prime factorization of 949 is 13 × 73.</li>
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<li><strong>Negative Factors:</strong>Factors that are negative numbers but still divide the original number without leaving a remainder. For example, the negative factors of 949 are -1, -13, -73, and -949.</li>
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<li><strong>Negative Factors:</strong>Factors that are negative numbers but still divide the original number without leaving a remainder. For example, the negative factors of 949 are -1, -13, -73, and -949.</li>
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</ul><p>What Are Numbers? 🔢 | Fun Explanation with 🎯 Real-Life Examples for Kids | ✨BrightCHAMPS Math</p>
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</ul><p>What Are Numbers? 🔢 | Fun Explanation with 🎯 Real-Life Examples for Kids | ✨BrightCHAMPS Math</p>
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<p>▶</p>
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<p>▶</p>
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<h2>Hiralee Lalitkumar Makwana</h2>
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<h2>Hiralee Lalitkumar Makwana</h2>
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<h3>About the Author</h3>
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<h3>About the Author</h3>
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<p>Hiralee Lalitkumar Makwana has almost two years of teaching experience. She is a number ninja as she loves numbers. Her interest in numbers can be seen in the way she cracks math puzzles and hidden patterns.</p>
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<p>Hiralee Lalitkumar Makwana has almost two years of teaching experience. She is a number ninja as she loves numbers. Her interest in numbers can be seen in the way she cracks math puzzles and hidden patterns.</p>
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<h3>Fun Fact</h3>
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<h3>Fun Fact</h3>
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<p>: She loves to read number jokes and games.</p>
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<p>: She loves to read number jokes and games.</p>