Yes, the direction of south can be considered a vector because it has both magnitude (distance) and direction (southward). A vector is any quantity that has both of these characteristics.
A vector is described by magnitude and direction (a scalar has only magnitude).
A vector quantity has both magnitude and direction, while a scalar quantity only has magnitude. Vectors are represented by arrows in diagrams, with the length of the arrow representing the magnitude and the direction indicating the direction of the vector. Scalars do not have a direction associated with them.
The distance of 68 km south is a scalar quantity because it only has magnitude (68 km) and does not have direction. If it had both magnitude and direction, it would be a vector quantity.
A negative vector is a vector that has the opposite direction of the original vector but the same magnitude. It is obtained by multiplying the original vector by -1. In other words, if the original vector points in a certain direction, the negative vector points in the exact opposite direction.
The vector shows the direction and magnitude of motion of an object. The direction is represented by the direction of the vector arrow, and the magnitude is represented by the length of the vector.
A vector is described by magnitude and direction (a scalar has only magnitude).
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A vector quantity has both magnitude and direction, while a scalar quantity only has magnitude. Vectors are represented by arrows in diagrams, with the length of the arrow representing the magnitude and the direction indicating the direction of the vector. Scalars do not have a direction associated with them.
The distance of 68 km south is a scalar quantity because it only has magnitude (68 km) and does not have direction. If it had both magnitude and direction, it would be a vector quantity.
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A negative vector is a vector that has the opposite direction of the original vector but the same magnitude. It is obtained by multiplying the original vector by -1. In other words, if the original vector points in a certain direction, the negative vector points in the exact opposite direction.
Yes. The "direction" of the vector is along the axis of rotation.Yes. The "direction" of the vector is along the axis of rotation.Yes. The "direction" of the vector is along the axis of rotation.Yes. The "direction" of the vector is along the axis of rotation.
The vector shows the direction and magnitude of motion of an object. The direction is represented by the direction of the vector arrow, and the magnitude is represented by the length of the vector.
Yes, a vector can be represented in terms of a unit vector which is in the same direction as the vector. it will be the unit vector in the direction of the vector times the magnitude of the vector.
It has both velocity and direction. A vector has direction and magnitude.
Velocity is an indication of a speed, including a direction. It is a vector because that is how a vector is defined (a magnitude, including a direction).
Speed is not a vector quantity, because it has no direction. When you combine speed with a direction, then you have a vector, called "velocity".