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The principle is that the slope of the line on a position-time graph reveals useful information about the velocity of the object. It is often said, "As the slope goes, so goes the velocity." Whatever characteristics the velocity has, the slope will exhibit the same (and vice versa).
U1 - Motion Maps Tutorial - YouTube YouTube Start of suggested clip End of suggested clip We essentially do a snapshot every. One second or every equal interval of time where the object isMoreWe essentially do a snapshot every. One second or every equal interval of time where the object is located. So starts at any position of zero meters. So I'm gonna put a dot right here and initially.
The position-time graph for a body in a uniform motion is a straight line inclined to the x-axis with a non-zero slope. 5. The position-time graph of a body in a uniformly accelerated motion is in the shape of a parabola.
Describing motion with graphs involves representing how a quantity such as the object's position can change with respect to the time. The key to using position-time graphs is knowing that the slope of a position-time graph reveals information about the object's velocity.
(Slope of a position time graph)=v=t2?t1s2?s1. Find the velocity of the particle over the interval (1,2). We have seen that the slope of the position-time graph gives us the velocity over the time period. Thus, v = s 2 ? s 1 t 2 ? t 1 = 10 ? 7.5 2 ? 1 = 2.5 (m/s) .