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Distance is the scalar quantity which does not have any direction but the displacement is the both the distance and direction. Hence displacement is the vector quantity. So the answer for the above question is DISPLACEMENT

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Q: The straight line distance and direction between two points are together called?
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The straight-line distance and direction between two points is called?

Displacement.


What the vector quantity that defines the distance and direction between two positions?

The vector quantity that defines the distance and direction between two positions is displacement. Displacement is a vector because it has both magnitude (distance) and direction. It is the shortest path between two points in a straight line.


Does displacement have a direction?

Yes, displacement is a vector quantity that includes both magnitude and direction. It describes the straight-line distance and direction between an object's initial and final position.


Displacement is distance combined with what?

Displacement is distance combined with direction. It gives the straight-line distance and the direction from the starting point to the ending point of an object's motion.


What is the direction distance berween between initial and final position of body?

The direction distance between the initial and final position of a body is the magnitude of the displacement vector, which measures the straight-line distance between the two points. It indicates the shortest distance between the two positions regardless of the path taken.


What is the difference between actual distance traveled and straight line distance?

Actual distance traveled refers to the total distance covered between two points, taking into account any curves, turns, or detours in the route. Straight line distance, on the other hand, is the shortest distance between two points, ignoring any obstacles or changes in direction that may affect the path taken.


What is the distance and direction of an object from the starting point called?

The distance and direction of an object from the starting point is called displacement. Displacement is a vector quantity that represents the straight line distance between the initial and final position of an object, along with the direction from the starting point to the endpoint.


Does displacement have both a magnitude and direction?

Yes, displacement is a vector quantity, meaning it has both magnitude (distance between initial and final positions) and direction (the straight line path between the two positions).


What is the difference between distance an displacement?

A distance is the length of the straight line path between 2 points. This is also known as a scalar value as it has a magnitude but no direction. A displacement is the distance and the direction between one point and another. This is also known as a vector as it has magnitude and direction as well. Note that the distance between two points, say, point A and point B is the same as the distance from point B to point A. It remains the same value regardless of the direction of travel. On the other hand, if a displacement between point A and point B was 1 mile North, it cannot be reversed. The displacement between point B and point A is 1 mile South - the same distance but an opposite direction.


What is the distance and direction between starting and stopping positions?

The distance and direction between starting and stopping positions is displacement.


Is distance and displacement always the same?

No, distance and displacement are not always the same. Distance is the total length traveled regardless of direction, whereas displacement is the shortest path between the initial and final positions, taking into account direction. Thus, they could be different if the path taken is not a straight line.


What is a length and direction that an object has moved from its starting point?

A displacement vector describes the length and direction of movement of an object from its starting point. It represents the straight-line distance and direction between the initial and final positions of the object.