In Problems 1–6 write the given linear system in matrix form.
9.
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First Course in Differential Equations (Instructor's)
- HELP WITH 18 AND 19 In each of Problems 12–23, find AR and produce a matrix 2r such that QRA = AR. -1 4 2 3 -5 7 1 18. A = 1 -3 4 4 19. A = 0 0 0arrow_forward9. (a) Evaluate the matrix product Ax, where A = 1. and x = 3 Hence show that the system of linear equations 7x + 5y = 3 x + 3y = 2 can be written as Ax b where b = %3D (b) The system of equations 2r + 3y – 2z = 6 x– y + 2z = 3 4x + 2y + 5z = 1 can be expressed in the form Ax = b. Write down the matrices A, x and b.arrow_forwardSolving Systems Use Gauss-Jordan reduction to transform the augmented matrix of each system in Problems 24–36 to RREF. Use it to discuss the solutions of the system (i.e., no solutions, a unique solution, or infinitely many solutions). 74 + 25 - - 2 29. x₁ + 4x₂ = 5x3 = 0 2x1x2 + 8x3 = 9arrow_forward
- 7. Let A be a matrix with a row consisting of all zeroes. If B is a matrix such that AB is defined, which of the following is always true? 8. Given the matrix B = 1 1 11 Which of the following (233) (a) 3 2 3 332 matrices solves X in the matrix equation X+13= 2(X - B)? (211) (d) 1 2 1 112 (322) (b) 2 3 2 2 2 3 (122) (c) 2 1 2 2 2 1arrow_forward4. Solve the following system of linear equations with the inverse of the coefficient matrix (Solving for X from AX = B). x-2y+3z = 4 x+ y+ z = 2 (a) 2x + y+ z = 3 (b) x+3y+2z =1 5y-7z =-11 2x+ y- z = 2 x+2y+3z =1 4x+ y– z = 2 2x - y+4z = 3 3x+ y+ z =17 (b) (d) x+2y- z = 2 -x- 2y+ 2z = 2arrow_forwardF1.6 Question 9 on paperarrow_forward
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