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The multiples of 3 up to 1000 are the numbers that can be expressed as 3 times an integer, starting from 3 7 14 21 28 35 42 49 56 63 70 77 84 91 98 105 112 119 126 133 140 147 154 161 168 175 182 189 196 203 210 217 224 231 238 245 252 259 266 273 280 287 294 301 308 315. This sequence begins with 3, 6, 9, and continues up to 999, which is the largest multiple of 3 within that range
In total, there are 333 multiples of 3 from 1 to 1000, since 1000 divided by 3 equals approximately 333.
The multiples of 7 greater than 48 but less than 91 are 49, 56, 63, 70, 77, 84 To find these multiples, you start by dividing 48 by 7 to get the closest whole number, which is 6. The multiples of 100 is 100,200,300,400,500,600,700,800,900 and so on If your doing multiples from 1 to 100 then the only multiple of 100 is 100
And so on the products of the numbers are called multiples. The multiples of 7 from 1 to 100 are numbers that can be evenly divided by 7 without leaving a remainder They include 7, 14, 21, 28, 35, 42, 49, 56, 63, 70, 77, 84, 91, and 98 These numbers are found by multiplying 7 by integers starting from 1 up to the highest multiple below 100, which is 98.
The common multiples are the infinite set of the multiples of the lcm of 7 and 8
Therefore, the common multiples of 7 and 8 are 56, 112, 168, 224, 280, and so on. The multiples common to all of the numbers 3, 5, 7, 9, and 11 are the numbers that are divisible by each of these numbers without leaving a remainder The least common multiple (lcm) of these numbers is the smallest number that is a multiple of all of them. The multiples of 7 are 7, 14, 21, 28, 35, and so on
By examining the lists, we find that the number 28 is a common multiple for 2, 4, and 7 with a digit sum of 11. Oh, dude, you want common multiples of 3 and 7 up to 100 Well, let me break it down for you The common multiples of 3 and 7 are numbers that both 3 and 7 can divide evenly into
So, the common multiples of 3 and 7 up to 100 are 21, 42, 63, and 84
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