There are three motion represents that describe the movements of an aim as a function of time. These graphs are the slip-time, velocity-time, and quickening-time graphs. Three types of graphs smoke be used to determine the motion of an object; a sheer take in graph, even problem graph, and a diagonal bourne graph. Â Â Â Â Â Â Â Â In a displacement-time graph, a savorless curved draw and quarter means that the object has a non- equivalent velocity and a changeless acceleration. A plane line graph indicates that the object is at rest in one position. A diagonal line on a displacement-time graph suggests that the object has a same velocity and no acceleration. A displacement-time graph helps to determine a velocity-time graph by the slant of the tangents. This data sight later on be used to determine an acceleration-time graph. Â Â Â Â Â Â Â Â In a velocity-time graph, a flat line means that the object has no acceleration and a diagonal line indi cates that the object is accelerating uniformly. The points on a velocity-time graph are hardened from a displacement-time graph and can be used to determine an acceleration-time graph by utilize the slope of the line of better(p) fit. Using a velocity-time graph, the displacement can also be found by determine the empyrean under the line of best fit.
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        In an acceleration-time graph, a horizontal line above the x-axis, nought, shows that the object has a verificatory uniform acceleration. If the horizontal line is below the x-axis, the object has a disconfirming uniform acceleration. If the horizontal line is at zero wherefore t! he object has no acceleration, which means that it either has a eternal velocity or the object is at rest. If the line of best fit on an acceleration time graph is not horizontal, then the acceleration is non-uniform. As mentioned earlier, acceleration-time graphs are determined through the slope of the... If you want to get a estimable essay, coiffe it on our website:
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