Q: Can work done be calculated by the gradient force-distance graph?

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Neural networks viewed as directed graphs is done by utilizing the Boltzmann machine. With this process the Boltzman machine seeks the shortest path to the directed graph.

An even function is symmetric about the y-axis. The graph to the left of the y-axis can be reflected onto the graph to the right. An odd function is anti-symmetric about the origin. The graph to the left of the y-axis must be reflected in the y-axis as well as in the x-axis (either one can be done first).

Just as you would draw the graph of any other function: -- Select several different numbers for 'x'. -- For each one, calculate the value of "sin1by x", and mark the point on the graph paper. -- After you've done this for enough values of 'x', you'll start to see the shape of the graph, with whatever twists and turns it may have. From there, you can draw most of it free-hand, without any more calculations.

you can turn the equation in y-intercept format i.e y=mx+b this helps to graph any math equation. P.S: if u don't get the answer to ur question plzz tell me the question to show it to u how it's done.

This most likely means that a stat plot is on, and that a list that the stat plot was using is blank. (If you get a DIM MISMATCH error, it probably means that the lists that the stat plot was using don't have the same number of values.) If you are trying to graph the stat plot, go back and look at your data in the lists. If you are not trying to graph a stat plot, then press 2ND STAT PLOT (above Y=) and select Plots Off. Press ENTER until you see "Done". Then try to graph again.

Related questions

Not if the gradient calculation is done correctly.

The gradient of a force against extension graph represents the spring constant (stiffness) of the spring. It indicates how much force is required to produce a certain amount of extension in the spring. A steeper gradient indicates a higher spring constant.

The displacement of an object from a velocity-time graph can be determined by finding the area under the velocity-time graph. For example, the displacement over a certain time interval can be calculated by finding the area of the corresponding region under the velocity-time graph. This can be done by calculating the area of the trapezoid or rectangle formed by the graph.

Rise represents the change in y-values on a graph, e.g. if the rise is equal to 10, the y-value changes by 10. Run represents the change in x-values on a graph, e.g. if the run is equal to 5, the x-value changes by 5. knowing both the rise and the run is necessary to calculate the gradient, or slope of a graph - this is done by dividing the rise by the run, in this case it would be equal to 10/5 = 2

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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.

No studies have been done - you should do this for a science project and get an A!

Yes, highlight the information on the spreadsheet. Go to insert...create....click on Next, then choose a style of graph, and click done.

work = force times distance

Neural networks viewed as directed graphs is done by utilizing the Boltzmann machine. With this process the Boltzman machine seeks the shortest path to the directed graph.

The amount of work done by a force is calculated by multiplying the force applied in the direction of the motion by the distance over which the force is applied. This can be expressed mathematically as W = F * d, where W is the work done, F is the force, and d is the distance.

You simply finish entering information into the worksheet, click on insert on the standard menu bar, click on a graph icon in the chart, a dialogue menu pops up and you can choose what type of graph you want to use,in this case, you click on your choice graph then it is done, a graph plots itself into the worksheet.