Question: Using the vectors shown in the figure, write each sum or difference as a single vector. A quadrilateral has vertices A , B , C

Using the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + ABUsing the vectors shown in the figure, write each sum or difference as a single vector.
A quadrilateral has vertices A, B, C, and D. Each point is connected to every other point with a line segment.
(a)
AB + BC
(b)
CD + DB
(c)
DB AB
(d)
DC + CA + AB

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