Determine whether the statement below is true or false. Justify the answer. The weights c1, . . . , cp in a linear combination c1v1 + • • • + cpvp cannot all be zero. Choose the correct answer below. A. The statement is false. Setting all the weights equal to zero results in the vector 0. B. The statement is true. Setting all the weights equal to zero results in the vector 0. C. The statement is false. Setting all the weights equal to zero does not result in the vector 0. D. The statement is true. Setting all the weights equal to zero does not result in the vector 0.

Determine whether the statement below is true or false. Justify the answer. The weights c1, . . . , cp in a linear combination c1v1 + • • • + cpvp cannot all be zero. Choose the correct answer below. A. The statement is false. Setting all the weights equal to zero results in the vector 0. B. The statement is true. Setting all the weights equal to zero results in the vector 0. C. The statement is false. Setting all the weights equal to zero does not result in the vector 0. D. The statement is true. Setting all the weights equal to zero does not result in the vector 0.

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Determine whether the statement below is true or false. Justify the answer. The weights c1, . . . , cp in a linear combination c1v1 + • • • + cpvp cannot all be zero. Choose the correct answer below. A. The statement is false. Setting all the weights equal to zero results in the vector 0. B. The statement is true. Setting all the weights equal to zero results in the vector 0. C. The statement is false. Setting all the weights equal to zero does not result in the vector 0. D. The statement is true. Setting all the weights equal to zero does not result in the vector 0.

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