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Find Vectors U and V Whose Initial and Terminal Points u:(6,5),(9,11)v:(3,5),(6,1)\mathbf { u } : ( 6,5 ) , ( 9,11 ) \quad \mathbf { v } : ( 3 , - 5 ) , \quad ( 6,1 )

Question 1

Multiple Choice

Find vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent.
u:(6,5) ,(9,11) v:(3,5) ,(6,1) \mathbf { u } : ( 6,5 ) , ( 9,11 ) \quad \mathbf { v } : ( 3 , - 5 ) , \quad ( 6,1 )


A) u=6i+3j,v=6i+3j\mathbf { u } = 6 \mathbf { i } + 3 \mathbf { j } , \mathbf { v } = 6 \mathbf { i } + 3 \mathbf { j } , which are equivalent
B) u=3i+6j,v=6j+3i\mathbf { u } = 3 \mathbf { i } + 6 \mathbf { j } , \mathbf { v } = 6 \mathbf { j } + 3 \mathbf { i } , which are not equivalent
C) u=3i+6j,v=3i+6j\mathbf { u } = 3 \mathbf { i } + 6 \mathbf { j } , \mathbf { v } = 3 \mathbf { i } + 6 \mathbf { j } , which are equivalent
D) u=3i6j,v=3i6j\mathbf { u } = 3 \mathbf { i } - 6 \mathbf { j } , \mathbf { v } = - 3 \mathbf { i } - 6 \mathbf { j } , which are equivalent
E) u=3i+6j,v=3i+6j\mathbf { u } = - 3 \mathbf { i } + 6 \mathbf { j } , \mathbf { v } = - 3 \mathbf { i } + 6 \mathbf { j } , which are equivalent

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