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Determine whether B is the inverse of A by computing AB and BA. -2 23 4 6 10 A= 0 -2 2 B = 4
Determine whether B is the inverse of A by computing AB and BA. -2 23 4 6 10 A= 0 -2 2 B = 4 -6 4 28 2 20 8 Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. AB = O B. This matrix operation is not possible. Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. BA= O B. This matrix operation is not possible. Is B the inverse of A? O Yes O No Find the inverse olthe following matrix A, it possible. Check thatA-A1 =| and It:l - A = I. Find the inverse. Select the correct choice below and, if necessary, ll in the answer boxes to complete your choice. O A. The inverse, A1 is . (Simplify your answers.) O B. Finding the inverse is not possible. Solve the following linear system by using an inverse matrix. 4x + 2y + 2z = 2 4x - 2y + 2z = - 14 4x - 2y - 2z= - 10 The solution set is Find the determinant of this 3x3 matrix using expansion by minors about the first column. 3 9 8 A = -2 6 8 - 3 3 1 3 9 8 A= -2 6 8 = -3 3 1Use Cramer's Rule (if applicable) to solve the following system of equations. Select the correct choice below, and fill in the answer box with your choice if necessary. 2x + 4y =22 7x + 6y = 29 O A. The system has a unique solution. The solution set is { } (Type an ordered pair. Type an integer or a simplified fraction.) O B. The system has infinitely many solutions. The solution set is the Set of all ordered pairs { ( ,y) }, where y is any real number. (Type an expression using y as the variable. Simplify your answer.) O C. Cramer's Rule does not apply
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