Problem 1EQ: In Exercises 1-4, solve the equation for X, given that
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Problem 2EQ: In Exercises 1-4, solve the equation for X, given that
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Problem 3EQ: In Exercises 1-4, solve the equation for X, given that
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Problem 4EQ: In Exercises 1-4, solve the equation for X, given that A=[1234]andB=[1011]. 2(AB+X)=3(XA) Problem 5EQ: In Exercises 5-8, write B as a linear combination of the other matrices, if possible.
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Problem 6EQ: In Exercises 5-8, write B as a linear combination of the other matrices, if possible.
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Problem 7EQ: In Exercises 5-8, write B as a linear combination of the other matrices, if possible.... Problem 8EQ: In Exercises 5-8, write B as a linear combination of the other matrices, if possible.... Problem 9EQ: In Exercises 9-12, find the general form of the span of the indicated matrices, as in Example 3.17.... Problem 10EQ: In Exercises 9-12, find the general form of the span of the indicated matrices, as in Example... Problem 11EQ: In Exercises 9-12, find the general form of the span of the indicated matrices, as in Example 3.17.... Problem 12EQ: In Exercises 9-12, find the general form of the span of the indicated matrices, as in Example... Problem 13EQ: In Exercises 13-16, determine whether the given matrices are linearly independent.
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Problem 14EQ: In Exercises 13-16, determine whether the given matrices are linearly independent.
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Problem 15EQ: In Exercises 13-16, determine whether the given matrices are linearly independent.... Problem 16EQ: In Exercises 13-16, determine whether the given matrices are linearly independent.
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Problem 17EQ: 17. Prove Theorem 3.2(a) -(d). Problem 18EQ: Prove Theorem 3.2 (e) (h). Problem 19EQ: Prove Theorem 3.3(c). Problem 20EQ: Prove Theorem 3.3(d). Problem 21EQ: Prove the half of Theorem 3.3 (e) that was not proved in the text. Problem 22EQ: 22. Prove that, for square matrices A and B, AB = BA if and only if .
Problem 23EQ: In Exercises 23-25, if , find conditions on a, b, c, and d such that AB = BA.
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Problem 24EQ: In Exercises 23-25, if B=[abcd], find conditions on a, b, c, and d such that AB = BA. A=[1111] Problem 25EQ: In Exercises 23-25, B=[abcd], find conditions on a, b, c, and d such that AB = BA. A=[1234] Problem 26EQ: 26. Find conditions on a, b, c, and d such that commutes with both .
Problem 27EQ: 27. Find conditions on a, b, c, and d such that commutes with every matrix.
Problem 28EQ: Prove that if AB and BA are both defined, then AB and BA are both square matrices. Problem 29EQ: A square matrix is called upper triangular if all of the entries below the main diagonal are zero.... Problem 30EQ Problem 31EQ Problem 32EQ Problem 33EQ: 33. Using induction, prove that for all
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Problem 34EQ Problem 35EQ Problem 36EQ Problem 37EQ Problem 38EQ Problem 39EQ Problem 40EQ Problem 41EQ Problem 42EQ Problem 43EQ Problem 44EQ Problem 45EQ Problem 46EQ Problem 47EQ format_list_bulleted