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91Ó°ÊÓ

Problem 15

Find the particular solution. \(x_{n+1}=\frac{5}{2} x_{n}-x_{n-1} ; x_{0}=0, x_{1}=-3 / 2\)

Problem 16

Compute the inverse matrix. $$ \left[\begin{array}{rrr} 1 & 2 & 1 \\ -5 & -6 & -7 \\ \frac{9}{2} & \frac{9}{2} & \frac{13}{2} \end{array}\right] $$

Problem 16

Let \(A=\left[\begin{array}{ll}4 & -1 \\ 7 & -9\end{array}\right], B=\left[\begin{array}{rr}3 & 9 \\ 2 & -2\end{array}\right], C=\left[\begin{array}{rr}8 & 3 \\ 0 & -3\end{array}\right]\) \(D=\left[\begin{array}{rrr}5 & -6 & 1 \\ 10 & 3 & -1\end{array}\right], E=\left[\begin{array}{rr}-7 & 4 \\ -3 & 2 \\ 2 & -1\end{array}\right]\) \(F=\left[\begin{array}{rrr}-4 & 2 & 3 \\ 0 & -1 & 2 \\ -7 & -2 & 5\end{array}\right]\), and \(v=\left[\begin{array}{r}2 \\\ -3\end{array}\right]\). Compute BF.

Problem 16

Write the vector \(v\) as a linear combination of the vectors \(\mathbf{w}\) and \(\mathbf{u}\). $$ \mathbf{v}=\left[\begin{array}{r} -16 \\ 27 \end{array}\right], \mathbf{w}=\left[\begin{array}{r} -2 \\ 7 \end{array}\right], \mathbf{u}=\left[\begin{array}{l} 3 \\ 4 \end{array}\right] $$

Problem 16

Find the particular solution. \(x_{n+1}=2 x_{n}+3 x_{n-1} ; x_{0}=7, x_{1}=10\)

Problem 17

Compute the inverse matrix. $$ \left[\begin{array}{rrr} 7 & -1 & -9 \\ 2 & 0 & -4 \\ -4 & 0 & 6 \end{array}\right] $$

Problem 17

Find the particular solution. \(x_{n+1}=2 x_{n}+8 x_{n-1} ; x_{0}=1, x_{1}=-2\)

Problem 17

Write the vector \(v\) as a linear combination of the vectors \(\mathbf{w}\) and \(\mathbf{u}\). $$ \mathbf{v}=\left[\begin{array}{l} 5 \\ 5 \end{array}\right], \mathbf{w}=\left[\begin{array}{l} 4 \\ 1 \end{array}\right], \mathbf{u}=\left[\begin{array}{l} 3 \\ 2 \end{array}\right] $$

Problem 18

Find the particular solution. \(x_{n+1}=4 x_{n}+5 x_{n-1} ; x_{0}=7, x_{1}=17\)

Problem 18

Let \(A=\left[\begin{array}{ll}4 & -1 \\ 7 & -9\end{array}\right], B=\left[\begin{array}{rr}3 & 9 \\ 2 & -2\end{array}\right], C=\left[\begin{array}{rr}8 & 3 \\ 0 & -3\end{array}\right]\) \(D=\left[\begin{array}{rrr}5 & -6 & 1 \\ 10 & 3 & -1\end{array}\right], E=\left[\begin{array}{rr}-7 & 4 \\ -3 & 2 \\ 2 & -1\end{array}\right]\) \(F=\left[\begin{array}{rrr}-4 & 2 & 3 \\ 0 & -1 & 2 \\ -7 & -2 & 5\end{array}\right]\), and \(v=\left[\begin{array}{r}2 \\\ -3\end{array}\right]\). Compute (DE)A and \(\mathrm{D}\) (EA) to verify the associative property for these matrices.

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