One solution to the input-output equation X = M X + D is given by X = I − M − 1 D Discuss the validity of each step in the following solutions of this equation. (Assume that all necessary inverses exist.) Are both solutions correct? A X = M X + D X − M X = D X I − M = D X = D I − M − 1 B X = M X + D − D = M X − X − D = M − I X X = M − I − 1 − D
One solution to the input-output equation X = M X + D is given by X = I − M − 1 D Discuss the validity of each step in the following solutions of this equation. (Assume that all necessary inverses exist.) Are both solutions correct? A X = M X + D X − M X = D X I − M = D X = D I − M − 1 B X = M X + D − D = M X − X − D = M − I X X = M − I − 1 − D
Solution Summary: The author explains how to determine whether the solution of input-output equation X=MX+D is correct or not.
One solution to the input-output equation
X
=
M
X
+
D
is given by
X
=
I
−
M
−
1
D
Discuss the validity of each step in the following solutions of this equation. (Assume that all necessary inverses exist.) Are both solutions correct?
A
X
=
M
X
+
D
X
−
M
X
=
D
X
I
−
M
=
D
X
=
D
I
−
M
−
1
B
X
=
M
X
+
D
−
D
=
M
X
−
X
−
D
=
M
−
I
X
X
=
M
−
I
−
1
−
D
A Problem Solving Approach To Mathematics For Elementary School Teachers (13th Edition)
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