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Yes it does. Velocity = Displacement / Time. On a graph of displacement vs time, the slope is the velocity. Steeper slope = higher velocity, flatter slope = lower velocity.

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Q: Does a steep slope on a displacement vs time graph indicates a very large velocity?
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Does A steep slope on a displacement vs time graph indicates a large velocity?

Yes.


Does a steep slope on a displacement vs time graph indicate large velocity?

yes


Is A steep slope on a displacement vs. time graph indicates a large velocity.?

Not necessarily. The slope could be steep but negative, and since negative numbers are less than positive numbers, no. But in both cases, the magnitude of the velocity (speed) is great. Also, at each point in the displacement vs. time graph, you can only get instantaneous velocity. A curve on the graph will indicate an acceleration. The next antiderivative of acceleration is jerk. According to the Heisenberg uncertainty principle, the more certain you are of a particle's position OR velocity, the less certain you can be of the other property. On the displacement vs. time graph, either the particle is at a certain displacement and the velocity unknown, or the velocity between two points is known, but the displacement is unknown. That is, the velocity can be known between two points, but the particle resides somewhere between the two points at that time. The exact position is uncertain. Schroedinger had a cat. He put it in a box, and having no way to tell if the cat was alive or dead, it must be assumed to be both, simultaneously. But also because it is either alive or dead, and not both at once, yet also not partially one or the other, it must be assumed to also be neither at once. So Schroedinger's cat was both alive and dead, though it was neither. By corollary, the particle whose trajectory is described by the displacement vs. time graph has no velocity and has velocity at the same time.


Is steep slope on a displacement vs. time graph indicates a large velocity.?

It means a large acceleration, i.e. forward speed rapidly increasing or decreasing, or backward speed rapidly increasing. Note: It's really not possible to present a velocity-vs-time graph in any simple way. What you're looking at is a speed-vs-time graph.


What is an example of an object with a small mass that has a large momentum?

That would depend on what you consider "large".The size of an object's momentum = (its mass) x (its speed).So, more mass and more speed result in more momentum.

Related questions

Does A steep slope on a displacement vs time graph indicates a large velocity?

Yes.


Does a steep slope on a displacement vs time graph indicate large velocity?

yes


Is A steep slope on a displacement vs. time graph indicates a large velocity.?

Not necessarily. The slope could be steep but negative, and since negative numbers are less than positive numbers, no. But in both cases, the magnitude of the velocity (speed) is great. Also, at each point in the displacement vs. time graph, you can only get instantaneous velocity. A curve on the graph will indicate an acceleration. The next antiderivative of acceleration is jerk. According to the Heisenberg uncertainty principle, the more certain you are of a particle's position OR velocity, the less certain you can be of the other property. On the displacement vs. time graph, either the particle is at a certain displacement and the velocity unknown, or the velocity between two points is known, but the displacement is unknown. That is, the velocity can be known between two points, but the particle resides somewhere between the two points at that time. The exact position is uncertain. Schroedinger had a cat. He put it in a box, and having no way to tell if the cat was alive or dead, it must be assumed to be both, simultaneously. But also because it is either alive or dead, and not both at once, yet also not partially one or the other, it must be assumed to also be neither at once. So Schroedinger's cat was both alive and dead, though it was neither. By corollary, the particle whose trajectory is described by the displacement vs. time graph has no velocity and has velocity at the same time.


Is steep slope on a displacement vs. time graph indicates a large velocity.?

It means a large acceleration, i.e. forward speed rapidly increasing or decreasing, or backward speed rapidly increasing. Note: It's really not possible to present a velocity-vs-time graph in any simple way. What you're looking at is a speed-vs-time graph.


You are located within a stationary high pressure area. Your aneroid barameter is falling very slowly. This indicates a?

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What is an example of an object with a small mass that has a large momentum?

That would depend on what you consider "large".The size of an object's momentum = (its mass) x (its speed).So, more mass and more speed result in more momentum.


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