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slega [8]
4 years ago
9

Factor. 64x^2−25y^2 Thank youuuuuu!

Mathematics
1 answer:
MrRissso [65]4 years ago
5 0

Answer:

(8x-5y) (8x+5y)

Step-by-step explanation:

64x^2−25y^2

This is the difference of squares

a^2 - b^2 = (a-b) (a+b)

Let 64 x^2 = a^2   Then a = 8x

Let 25 y^2 = b^2  then b = 5y

64x^2−25y^2 = (8x-5y) (8x+5y)

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Please hwlp! Ava is driving her car. At the end of 2 hours she has driven 92 miles, and at the end of 5 hours she has driven 245
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A = 4 0 0 1 3 0 −2 3 −1 Find the characteristic polynomial for the matrix A. (Write your answer in terms of λ.) Find the real ei
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Answer:

Step-by-step explanation:

We are given the matrix

A = \left[\begin{matrix}4&0&0 \\ 1&3&0 \\-2&3&-1 \end{matrix}\right]

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b) To find the eigenvalues of A, we find the roots of the characteristic polynomials. In this case they are \lambda=4,3,-1

c) To find the base associated to the eigenvalue lambda, we replace the value of lambda in the expression A-\lambda I and solve the system (A-\lambda I)x =0 by finding a base for its solution space. We will show this process for one value of lambda and give the solution for the other cases.

Consider \lambda = 4. We get the matrix

\left[\begin{matrix}0&0&0 \\ 1&-1&0 \\-2&3&-5 \end{matrix}\right]

The second line gives us the equation x-y =0. Which implies that x=y. The third line gives us the equation -2x+3y-5z=0. Since x=y, it becomes y-5z =0. This implies that y = 5z. So, combining this equations, the solution of the homogeneus system is given by

(x,y,z) = (5z,5z,z) = z(5,5,1)

So, the base for this eigenspace is the vector (5,5,1).

If \lambda = 3 then the base is (0,4,3) and if \lambda = -1 then the base is (0,0,1)

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