b) u = (3, -1), v = (1, 5) et w = (8, -2) c) i = (1, 0, 0), j = (0, 1, 0) et k = (0, 0, 1) gajte ST191x9 OL pour démo d) u = (-6, 9, 15) et v = (10, -15, -25) Oppegu e) u = (-1, 2, 3), v = (4, -1, 0), w = (2, -1, 4) et 7 = (4, 0, 5) f) = (1, 0, 0, 0), , = (0, 1, 0, 0), DO 10-10 e 100 €3 = (0, 0, 1, 0) et ->> 4 = (0, 0, 0, 1)
b) u = (3, -1), v = (1, 5) et w = (8, -2) c) i = (1, 0, 0), j = (0, 1, 0) et k = (0, 0, 1) gajte ST191x9 OL pour démo d) u = (-6, 9, 15) et v = (10, -15, -25) Oppegu e) u = (-1, 2, 3), v = (4, -1, 0), w = (2, -1, 4) et 7 = (4, 0, 5) f) = (1, 0, 0, 0), , = (0, 1, 0, 0), DO 10-10 e 100 €3 = (0, 0, 1, 0) et ->> 4 = (0, 0, 0, 1)
b) u = (3, -1), v = (1, 5) et w = (8, -2) c) i = (1, 0, 0), j = (0, 1, 0) et k = (0, 0, 1) gajte ST191x9 OL pour démo d) u = (-6, 9, 15) et v = (10, -15, -25) Oppegu e) u = (-1, 2, 3), v = (4, -1, 0), w = (2, -1, 4) et 7 = (4, 0, 5) f) = (1, 0, 0, 0), , = (0, 1, 0, 0), DO 10-10 e 100 €3 = (0, 0, 1, 0) et ->> 4 = (0, 0, 0, 1)
Determine if the following vectors are linearly dependent or linearly independent.
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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