A factorization of is .
<h3>What are the properties of roots of a polynomial?</h3>
- The maximum number of roots of a polynomial of degree is .
- For a polynomial with real coefficients, the roots can be real or complex.
- The complex roots of a polynomial with real coefficients always exist in a pair of conjugate numbers i.e., if is a root, then is also a root.
If the roots of the polynomial are , then it can be factorized as .
Here, we are to find a factorization of . Also, given that and are roots of the polynomial.
Since is a polynomial with real coefficients, so each complex root exists in a pair of conjugates.
Hence, and are also roots of the given polynomial.
Thus, all the four roots of the polynomial , are: .
So, the polynomial can be factorized as follows:
Therefore, a factorization of is .
To know more about factorization, refer: brainly.com/question/25829061
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Answer:
F(f) = 15t + 35 represents the total amount of savings your friend would make in t weeks.
F(d) = 10t + 90 represents the total amount of saving you, darian, would make in t weeks.
When you graph the equations, plugging in different values for t, you can see that the graphs intersect at (11,200). This means that at 11 weeks, both you and your friend have the same amount of money saved up, $200. They will not have the same amount of money in 10 weeks.
B. 10 square root 5
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Answer:
144 people were originally at the party.
Step-by-step explanation:
18 boys is one fifth of the second boys population, so the second population is 18x9 = 162. The original population would be 162-18, which equals 144.