For the three given vectors, either show that they are linearly independent or find a nontrivial linear combination of them that is equal to the zero vector: u = (2,0,-3) v = (4, -5, -6) w = (-2, 1, 3)
For the three given vectors, either show that they are linearly independent or find a nontrivial linear combination of them that is equal to the zero vector: u = (2,0,-3) v = (4, -5, -6) w = (-2, 1, 3)
For the three given vectors, either show that they are linearly independent or find a nontrivial linear combination of them that is equal to the zero vector: u = (2,0,-3) v = (4, -5, -6) w = (-2, 1, 3)
For the three given vectors, either show that they are linearly independent or find a nontrivial linear combination of them that is equal to the zero vector:
u = (2,0,-3)
v = (4, -5, -6)
w = (-2, 1, 3)
Quantities that have magnitude and direction but not position. Some examples of vectors are velocity, displacement, acceleration, and force. They are sometimes called Euclidean or spatial vectors.
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