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Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are...

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Vectors • A vector is a quantity that is characterized by both magnitude and direction. • Vectors are represented by arrows. The length of the arrow represents magnitude. The direction of the arrow represents direction. • That end of the vector with the arrow point is called its head. The other and is called its
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Page 1: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• A vector is a quantity that is characterized by both magnitude and direction.

• Vectors are represented by arrows. The length of the arrow represents magnitude. The direction of the arrow represents direction.

• That end of the vector with the arrow point is called its head. The other and is called its tail.

Page 2: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Vectors do not have position. A vector may be moved anywhere in a coordinate system, and still be the same vector as long as it's magnitude and direction do not change.

• In the next slide all the arrows represent the same vector.

Page 3: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-10 (page 60)Identical Vectors A at Different Locations

Page 4: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Symbols representing vector quantities have arrows drawn above them.

• In print vectors are frequently represented by boldface characters.

B a b v A

Page 5: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors• Vectors are added either graphically or

mathematically.• Graphical addition involves placing the tail of

one of vector at the head of another, and showing the resultant vector by connecting the tail of the first of vector to the head of the second.

• The vector arrows must be drawn very carefully to obtain accurate results.

Page 6: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-11a (page 61)A + B = B + A

Page 7: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-11b A + B = B + A

Page 8: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Multiple vectors may be added into this manner.

Page 9: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-9 (p. 60)Adding Several Vectors

Page 10: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• In order to represent the negative of a vector, we reverse the head and tail positions.

Page 11: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-14a Vector Subtraction

Page 12: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• To add and subtract vectors mathematically, we must define a coordinate system, and apply trigonometric methods.

Page 13: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-3 A Two-Dimensional Coordinate System

Page 14: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Any vector can be resolved into components. When the components are added together, the result is the original vector.

Page 15: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• It is convenient to resolve vectors into components that lie along the axes of the coordinate system.

Page 16: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

Page 17: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Standard angle. A standard angle has its vertex at the origin and is measured from the positive x axis. If measured counterclockwise from the positive x axis, the angle is considered positive. If measured clockwise from the positive x axis the angle is considered negative.

Page 18: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

VectorsStandard angle

Page 19: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• To resolve a vector into perpendicular components, we multiply its magnitude by the appropriate trigonometric function of the angle between the vector and the horizontal axis.

Page 20: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-7a Vector Angle

Page 21: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• If the angle is between the vector and the vertical axis, different trigonometric functions must be used.

Page 22: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-7b Vector Angle

Page 23: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-5 A Vector Whose x and y Components Are Positive

Page 24: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-6ab Examples of Vectors with Components of Different Signs

Page 25: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-6cd Examples of Vectors with Components of Different Signs

Page 26: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors

• Unit vectors.Unit vectors are vectors with a magnitude of 1, that indicate the direction of a vector. The unit vectors that indicate the direction along the axes of a three dimensional cartesian coordinate system, are

ˆ ˆ ˆ, , and x y z

Page 27: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors• Unit vectors.Another frequently used system of notation for unit vectors is

indicates direction along the x axis indicates direction along the y axis

indicates direction along the z axis

i

j

k

ˆˆ ˆ, ,i j k

Page 28: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Figure 3-7a Vector Angle

Page 29: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

Vectors• Unit vectors.To express the above vector using unit vectors we write it as follows.

The above expression is the vector in Cartesian coordinates.

ˆ ˆcos sinA A x A y

A

Page 30: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

VectorsUnit vectors• Adding vectors -to add two or more vectors,

we resolve them using unit vectors as described above, add the terms multiplied by together, and add the terms multiplied by together. The resultant vector is expressed in Cartesian coordinates.

yx

Page 31: Vectors A vector is a quantity that is characterized by both magnitude and direction. Vectors are represented by arrows. The length of the arrow represents.

VectorsUnit vectors• To convert the resultant vector to polar

coordinates (magnitude and angle), we use the Pythagorean theorem to obtain the magnitude, and the

to obtain the angle θ.

1 ˆ term multiplied by ytan

ˆ term multiplied by x


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