
We define the multiples of 65/42 as the product of any integer multiplied by 65/42. Therefore, to create a list of multiples of 65/42 we start by multiplying 65/42 by one, then we multiply 65/42 by two, then we multiply 65/42 by three, and so on.
To multiply a fraction by an integer, we leave the denominator alone and multiply the numerator by the integer. It is impossible to give you a list of all multiples of 65/42 because the list goes on forever. However, here is the math to calculate the beginning list of multiples of 65/42.
65/42 × 1 = 65/42
65/42 × 2 = 130/42
65/42 × 4 = 195/42
65/42 × 4 = 260/42
65/42 × 5 = 325/42
65/42 × 6 = 390/42
65/42 × 7 = 455/42
65/42 × 8 = 520/42
65/42 × 9 = 585/42
65/42 × 10 = 650/42
65/42 × 11 = 715/42
65/42 × 12 = 780/42
We have simplified the fractions above for you. Below are the multiples of 65/42 in their lowest possible terms:65/42 = 1 23/42
130/42 = 3 2/21
195/42 = 4 9/14
260/42 = 6 4/21
325/42 = 7 31/42
390/42 = 9 2/7
455/42 = 10 5/6
520/42 = 12 8/21
585/42 = 13 13/14
650/42 = 15 10/21
715/42 = 17 1/42
780/42 = 18 4/7
As we stated above, the list of multiples of 65/42 goes on forever because the product of 65/42 multiplied by any whole number (integer) is a multiple of 65/42.
You can also create a list of multiples of 65/42 if you keep adding 65/42 like this:65/42
65/42 + 65/42 = 130/42
65/42 + 65/42 + 65/42 = 195/42
65/42 + 65/42 + 65/42 + 65/42 = 260/42
∞
Again, the list can go on forever, because you can continue adding 65/42 to the list. Therefore, the list of multiples of 65/42 is ∞ (infinite).
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Multiples of 65/43
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