Distance of travel.
Regards.
The amount of displacement of the ball is the change in position from its initial position to its final position. It can be calculated by finding the straight-line distance between the starting point and the ending point of the ball's motion.
To determine displacement from a position-time graph, you can find the area under the curve. The displacement is the change in position from the starting point to the ending point on the graph. This can be calculated by finding the difference between the final position and the initial position.
Displacement in motion refers to the change in position of an object from its initial position to its final position. It is a vector quantity that indicates the straight-line distance and direction between the starting and ending points of an object's motion.
Displacement must always indicate the change in position or location of an object or particle in a specified direction. It is a vector quantity that measures the distance and direction between an object's starting position and its ending position.
The displacement of a satellite when it completes one round along its circular path is zero. This is because the displacement is the shortest distance between the starting and ending points, and in a circular path, the starting and ending points are the same.
The distance and direction between starting and stopping positions is displacement.
The amount of displacement of the ball is the change in position from its initial position to its final position. It can be calculated by finding the straight-line distance between the starting point and the ending point of the ball's motion.
To determine displacement from a position-time graph, you can find the area under the curve. The displacement is the change in position from the starting point to the ending point on the graph. This can be calculated by finding the difference between the final position and the initial position.
Displacement in motion refers to the change in position of an object from its initial position to its final position. It is a vector quantity that indicates the straight-line distance and direction between the starting and ending points of an object's motion.
Displacement must always indicate the change in position or location of an object or particle in a specified direction. It is a vector quantity that measures the distance and direction between an object's starting position and its ending position.
The cam follower position is the same at the starting and ending points due to the periodic nature of the cam profile. As the cam rotates, the follower moves in response to the contour of the cam, but once the cam completes a full revolution, the follower returns to its initial position. This cyclical motion ensures that the starting and ending positions of the follower align, making the system predictable and repeatable in its operation.
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The cam follower position is the same at the starting and ending points because the cam's rotation is periodic, meaning it completes a full cycle and returns to its initial position. This cyclical nature ensures that the follower, which tracks the cam's profile, follows the same path throughout each cycle. Consequently, both the starting and ending positions of the follower correspond to the same point on the cam, maintaining consistency in its motion.
The displacement of a satellite when it completes one round along its circular path is zero. This is because the displacement is the shortest distance between the starting and ending points, and in a circular path, the starting and ending points are the same.
displacement
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