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iren2701 [21]
3 years ago
6

Arrange 7/12,5/6,3/4 in descending order​

Mathematics
2 answers:
Katena32 [7]3 years ago
7 0

Answer:

The answer is 5/6, 3/4, 7/12

Step-by-step explanation:

Because each of the fractions has different denominators, we first need to gI've them a common denominator. Let's choose 12, since that would be the only one all of the could become. That would make 7/12, 5/6, and 3/4 become 7/12, 10/12, and 9/12. Once you've done this, just look at the numerator to put them in order.

velikii [3]3 years ago
5 0

Answer:

Step-by-step explanation: Sorting this table by the numerators of the equivalent fractions in order from least to greatest:

7/12   3/4   5/6

7/12 < 9/12 < 10/12

Therefore, the sorted inputs in order from least to greatest is:

7/12 < 3/4 < 5/6

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How do the values in Pascal’s triangle connect to the coefficients?
damaskus [11]

Explanation:

Each row in Pascal's triangle is a listing of the values of nCk = n!/(k!(n-k)!) for some fixed n and k in the range 0 to n. nCk is <em>the number of combinations of n things taken k at a time</em>.

If you consider what happens when you multiply out the product (a +b)^n, you can see where the coefficients nCk come from. For example, consider the cube ...

  (a +b)^3 = (a +b)(a +b)(a +b)

The highest-degree "a" term will be a^3, the result of multiplying together the first terms of each of the binomials.

The term a^b will have a coefficient that reflects the sum of all the ways you can get a^b by multiplying different combinations of the terms. Here they are ...

  • (a +_)(a +_)(_ +b) = a·a·b = a^2b
  • (a +_)(_ +b)(a +_) = a·b·a = a^2b
  • (_ +b)(a +_)(a +_) = b·a·a = a^2b

Adding these three products together gives 3a^2b, the second term of the expansion.

For this cubic, the third term of the expansion is the sum of the ways you can get ab^2. It is essentially what is shown above, but with "a" and "b" swapped. Hence, there are 3 combinations, and the total is 3ab^2.

Of course, there is only one way to get b^3.

So the expansion of the cube (a+b)^3 is ...

  (a +b)^3 = a^3 + 3a^2b +3ab^2 +b^3 . . . . . with coefficients 1, 3, 3, 1 matching the 4th row of Pascal's triangle.

__

In short, the values in Pascal's triangle are the values of the number of combinations of n things taken k at a time. The coefficients of a binomial expansion are also the number of combinations of n things taken k at a time. Each term of the expansion of (a+b)^n is of the form (nCk)·a^(n-k)·b^k for k =0 to n.

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Answer:

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Step-by-step explanation:

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3 years ago
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Answer: The multiplicative inverse is 1/2 the addition inverse is -2

Step-by-step explanation:

Since the inverse of multiplication is division, use a fraction. The inverse of addition is subtraction.

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3 years ago
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Answer:

Step-by-step explanation:

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4 years ago
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3 years ago
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