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It is not, if it is a graph of force against acceleration.

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How can one determine the impulse from a force-time graph?

To determine the impulse from a force-time graph, you can find the area under the curve of the graph. Impulse is equal to the change in momentum, which is calculated by multiplying the force applied by the time over which it is applied. The area under the force-time graph represents the impulse exerted on an object.


What is the relationship between the impulse on a force-time graph and the change in momentum of an object?

The impulse on a force-time graph is equal to the change in momentum of an object.


What does the slope of a force versus time graph indicate?

The slope of a force vs. time graph is equal to the change in momentum or the Impulse.


How do you get the take off impulse from a force v time graph?

To obtain the take-off impulse from a force vs. time graph, calculate the area under the curve of the graph. The impulse is represented by this area, which quantifies the total momentum change imparted to the object. If the graph has both positive and negative values, ensure to account for the direction of the forces when calculating the area. This can be done using geometric shapes or integration, depending on the complexity of the graph.


Force time graph?

A Force-time graph shows the variation of force with respect to time. More usefully the area under such a graph gives the quantity Ft or impulse, which is equal to the change in momentum of an object. Ft = Mv-Mu


How do you draw a momentum -time graph for force-time graph?

The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.


How can you find work from a force versus Displacement graph?

The work done is equal to the area under the curve on a force versus displacement graph. To find the work, calculate the area of the shape(s) represented by the graph. This can be done by breaking down the shape into simpler geometrical shapes and calculating their areas.


Can the impulse of force be zero even the force is not zero?

Yes, it is possible for the impulse of force to be zero even if the force is not zero. This can happen if the force is applied for such a short period of time that the area under the force-time graph, which represents impulse, is zero.


Why is the area under graph of force against time is used to find impulse?

Because impulse is the integral of the force over the time during which it was applied. Graphically, this is the area under the curve of force against time.Force is rate of change of momentum. Even if you hit a brick wall you impart momentum to some of the atoms in it. The area under a graph of force against time is mathematically speaking the integral of the force with respect to time, as stated above. So it is the integral of the rate of change of momentum. But the integral of a rate of change of anything, is simply the total change. In this case, the total change of momentum. For a large force applied for a very small time, that is called (defined to be) an impulse, and it results in a change of momentum. Strictly it doesn't have to be a small time for this to be true, but impulses are generally imagined as being short time events.


What shape is a Cooling curve graph?

A Cooling curve graph changes shape.


How much work is done on the gas to compress it?

The work done on a gas to compress it is equal to the force applied multiplied by the distance over which the force is applied. This work is represented by the area under the pressure-volume curve on a graph of the compression process.


What kind of graph is a bell shaped curve?

The bell curve graph is another name for a normal (Gaussian) distribution graph. A Gaussian function is a certain kind of function whose graph results in a bell-shaped curve.