Analyzing Ball's Vertical Displacement on a Ramp

In summary, the speaker has been given a set of data collected from rolling a ball on a ramp. The data includes horizontal and vertical displacement values. The speaker is trying to remove anomalies from the data in order to produce an accurate average. They have attempted to visually remove anomalies but have not had success. They are now trying to use formulas to calculate error bars, but their assumption of all potential energy being converted to kinetic energy is causing issues. They ask for help and suggest using a statistical calculator or plotting the means with error bars on semi-log paper.
  • #1
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Homework Statement



Basically i have been given a set of data to analyse. The data was collected by rolling a ball of a ramp. The ramp is set on a table and the edge of the ramp is parralel to the table. The ball then travels through the air until it hits a piece of carbon paper. The vertical displacement is then measured and recorded in relation to the horizontal displacement which is the spacing from the edge of the ramp to the board with the carbon paper on. This is the data that i have been given.
x
0.100 2.0 6.5 10.0 14.0 14.5
0.200 18.5 48.5 53.5 51.0 47.0
0.300 57.0 60.0 64.5 90.5 94.5
0.400 118.5 134.5 160.5 168.0 159.0
0.500 210.5 228.0 228.0 217.0 241.0
0.600 336.0 394.5 356.0 348.5 392.5
0.700 447.0 501.0 514.0 558.0 532.5
0.800 587.5 683.0 714.0 601.0 605.5

the first colum is the horizontal displacement in meters the other 4 colums are the 5 tests carried out with the horizontal displacement at the set value. These are the different vertical displacments in mm from that horizontal displacment.

Basically iIknow that there are a lot of anomolies in the data and I want to remove them so I can produce an accurate average.

Homework Equations



Im not sure if this would help but i produced an equation to work out the vertical displacement at different horizontal displacements. y being the vertical displacement and x being the horizontal displacement. I also assumed that all potential energy is converted into kinetic energy which is obviously not true

y=gx^2/2v^2 g being the the value for the gravitational field strength 3. The Attempt at a Solution [/b

I first tried to remove the anomolies visually from the table removing the ones which didnt seem to fit with the other ones but this gave me a terrible average graph which wasnt smooth at all. At the moment I am trying to use the formulas to work out error bars but as i have mad the assumption that all potential energy is converted into kinetic this doesn't work.

Help would be much appreciated Thanks J
 
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  • #2
have you got a statistical calculator? If not I would try plotting the means along with error bars on semi-log paper. try to get a best fit, and see what the slope is.
 
  • #3
As a scientist, my first step would be to thoroughly examine the data and look for any patterns or trends. I would also look for any potential sources of error in the experimental setup or data collection process.

Next, I would consider using statistical analysis techniques to remove any outliers or anomalies from the data. This could involve calculating the mean and standard deviation of the data and removing any data points that fall outside of a certain range.

Additionally, I would also consider repeating the experiment multiple times and taking the average of the results to improve the accuracy of the data.

In terms of the equation you have proposed, it is important to acknowledge that it is a simplified model and may not accurately represent the real-world situation. It would be beneficial to explore other equations and models that may better fit the data.

Overall, it is important to carefully analyze and interpret the data in order to produce accurate and reliable results. This may involve using various techniques and considering multiple factors.
 

Related to Analyzing Ball's Vertical Displacement on a Ramp

What is the purpose of analyzing ball's vertical displacement on a ramp?

The purpose of this analysis is to understand the relationship between the angle of a ramp and the vertical displacement of a ball rolling down the ramp. This information can be used to make predictions and calculations in various scientific and engineering applications.

How do you measure the vertical displacement of a ball on a ramp?

The vertical displacement of a ball on a ramp can be measured by using a ruler or measuring tape to determine the height of the ball at different points along the ramp. It is important to measure from the same reference point each time to ensure accurate results.

What factors can affect the vertical displacement of a ball on a ramp?

The main factor that affects the vertical displacement of a ball on a ramp is the angle of the ramp. Other factors that may have an impact include the weight and size of the ball, the surface of the ramp, and any external forces acting on the ball (such as friction).

How does the angle of a ramp affect the vertical displacement of a ball?

The angle of a ramp has a direct impact on the vertical displacement of a ball. As the angle of the ramp increases, the ball will travel a greater vertical distance. This is because the steeper the ramp, the greater the gravitational force acting on the ball, causing it to accelerate more quickly.

What are some real-life applications of analyzing ball's vertical displacement on a ramp?

This analysis can be applied in various fields, such as physics, engineering, and sports. For example, understanding the relationship between the angle of a ski slope and the vertical displacement of a skier can help in designing safer and more efficient ski resorts. It can also be used to optimize the design of ramps and roller coasters in amusement parks.

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