There are 376740 such sets and you must think me crazy if you think I will list them all!
There are many sets of numbers -14 belongs to:set of negative integersset of rational numbersset of real numbersset of complex numbers, which is the biggest known number set
exactly 28 times
182/28 = 6.5 times
7 goes into 28 4 times
3 times with a remainder of 1
-28 belongs to: Integers, which is a subset of rationals, which is a subset of reals, which is a subset of complex numbers.
How many numbers are in 28
the numbers that can go into 28 are 1,2,4,7,14 and 28.
It looks like you are asking how many combinations of 6 numbers are there in the 28 numbers 1 through 28. This is known as the number of combinations of 28 things taken 6 at a time. The answer is 28!/(6!22!) (n! means n factorial, which is the product of all the integers from 1 to n). I get 376,740 if I haven't made an error in arithmetic.
There are many sets of numbers -14 belongs to:set of negative integersset of rational numbersset of real numbersset of complex numbers, which is the biggest known number set
There are an infinite number of possibilities, including fractions, and sets where two of the three numbers are negative. For positive integers, the sets are: 1, 1, 56 1, 2, 28 1, 4, 14 1, 7, 8 2, 2, 14 2, 4, 7
160
child has 28 adult has 32
12 and 28
When you say "4 times as many as 7," you are multiplying 4 by 7, which equals 28. When you say "7 times as many as 4," you are multiplying 7 by 4, which also equals 28. In both cases, you are finding the product of the two numbers, resulting in the same value of 28. This shows that the two statements are equivalent and represent the same quantity.
exactly 28 times
To find numbers with distinct digits whose product is 28, we first determine the factorization of 28, which is (2^2 \times 7). The distinct digits that can be used are 1, 2, 4, 7, and 8, since they can be combined to form products equal to 28. The valid combinations of these digits are 4, 7, and 1 (as (4 \times 7 \times 1 = 28)), and 2, 4, and 7 (as (2 \times 4 \times 7 = 28)). Therefore, the valid numbers are 147, 174, 417, 471, 714, and 741 from the first combination, and 247, 274, 427, 472, 724, and 742 from the second combination, leading to a total of 12 distinct numbers.