(1) Motion occurs when an object changes its position relative to a (2) reference point. An important part of describing the motion of an object is to describe how far it has moved, which is known as (3) distance. Distance is a (4) scalar quantity that refers to the length that the object travelled. (5) Displacement refers to the shortest distance between the object's point of reference and its point of destination. It is a (6) vector quantity that has a magnitude and (7) direction.
Explanation:
1. & 2. Motion occurs when an object changes its position relative to a reference point. The motion of an object depends on the reference point that is chosen.
3. An important part of describing the motion of an object is to describe how far it has moved, which is distance. DISTANCE. refers to “how far” an object is from its starting point.
4. Distance is a scalar quantity that refers to "how much ground an object has covered" during its motion. Displacement is a vector quantity that refers to "how far out of place an object is"; it is the object's overall change in position. ... Scalar quantities such as distance are ignorant of direction. In determining the overall distance traveled by the physics teachers, the various directions of motion can be ignored.
5. Displacement is how far you are from the starting point, as if you moved in a straight line.
6. & 7. The net displacement is a vector quantity - it has both a magnitude and a direction - and it tells us the final position relative to the initial position. Another example of a vector quantity is velocity. Suppose that a car is initially at some point X, and is moving at a speed of 10 meters / second.
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Answers & Comments
Answer:
1. motion
2. reference point
3. distance
4. scalar
5. displacement
6. vector
7. direction
(1) Motion occurs when an object changes its position relative to a (2) reference point. An important part of describing the motion of an object is to describe how far it has moved, which is known as (3) distance. Distance is a (4) scalar quantity that refers to the length that the object travelled. (5) Displacement refers to the shortest distance between the object's point of reference and its point of destination. It is a (6) vector quantity that has a magnitude and (7) direction.
Explanation:
1. & 2. Motion occurs when an object changes its position relative to a reference point. The motion of an object depends on the reference point that is chosen.
3. An important part of describing the motion of an object is to describe how far it has moved, which is distance. DISTANCE. refers to “how far” an object is from its starting point.
4. Distance is a scalar quantity that refers to "how much ground an object has covered" during its motion. Displacement is a vector quantity that refers to "how far out of place an object is"; it is the object's overall change in position. ... Scalar quantities such as distance are ignorant of direction. In determining the overall distance traveled by the physics teachers, the various directions of motion can be ignored.
5. Displacement is how far you are from the starting point, as if you moved in a straight line.
6. & 7. The net displacement is a vector quantity - it has both a magnitude and a direction - and it tells us the final position relative to the initial position. Another example of a vector quantity is velocity. Suppose that a car is initially at some point X, and is moving at a speed of 10 meters / second.
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