There are an infinite number of options. Here are some:
1,2,3 and 194
or
1.1, 2.1, 3.1 and 193.7
1.01, 2.01, 3.01 and 193.97
1.001, 2.001, 3.001 and 193.997
or
1+sqrt(5), 2+sqrt(5), 3-sqrt(5), 194-sqrt(5)
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Four.
If we try to grapple with this puzzle, it falls apart in our hand.We'll need a lot of clarification in order to attempt an answer.-- Just how do the two numbers "make" 33 ? Are they to be added, subtracted, divided ?It makes a difference.-- There is no such thing as a "product" of 200, or of any single number.Does the question mean that the two numbers are "factors" of 200 ???
-200, -20, -10 and 10
The list of whole numbers that are divisible by XXX is infinite. The first four are: 100, 200, 300, 400 . . .
They are: 121, 144, 169 and 196 which makes four of them
Four.
To make 200 using four numbers between 1-9, you can use the following equation: (9 x 9) + (9 x 9) - (9 + 1) = 200. This equation breaks down to (81) + (81) - (10) = 200. By multiplying two nines together twice and subtracting the sum of 9 and 1, you can achieve the target number of 200.
If we try to grapple with this puzzle, it falls apart in our hand.We'll need a lot of clarification in order to attempt an answer.-- Just how do the two numbers "make" 33 ? Are they to be added, subtracted, divided ?It makes a difference.-- There is no such thing as a "product" of 200, or of any single number.Does the question mean that the two numbers are "factors" of 200 ???
98
-200, -20, -10 and 10
Because the four smallest prime numbers are 2, 3, 5, and 7. If you multiply these four together you get 210 (which makes 210 the smallest number divisible by four unique prime numbers).
The list of whole numbers that are divisible by XXX is infinite. The first four are: 100, 200, 300, 400 . . .
200 hundred What? Apples? Well first you need about 200 dollars.
201
To find the least number that should be multiplied to 200 to make it a perfect cube, we need to break down 200 into its prime factors, which are 2^3 * 5^2. To make it a perfect cube, we need to have each prime factor raised to a power that is a multiple of 3. Therefore, we need to multiply 2 * 5 = 10 to 200 to make it a perfect cube, resulting in 2000 (2^3 * 5^3).
100 and 200 have a GCF of 100.
They are: 121, 144, 169 and 196 which makes four of them