initial timing experiment

Phy 121

Your 'initial timing experiment' report has been received. Scroll down through the document to see any comments I might have inserted, and my final comment at the end.

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Initial Timing Experiment


You may enter any message or comment you wish in the box below:

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In this experiment you will use the TIMER program, a hardcover book, a cylinder or some other object that will roll along the book in a relatively straight line, and a ruler or the equivalent (if you don't have one, note the RULERS link on the Assignments page).

Place the book on a flat level tabletop.  You will prop one end of the book up a little bit, so that when it is released the object will roll without your assistance, gradually speeding up, from the propped-up end to the lower end.  However don't prop the end up too much.  It should take at least two seconds for the ball to roll down the length of the book when it is released from rest.

Then reverse the direction of the book on the tabletop, rotating the book and its prop 180 degrees so that the ball will roll in exactly the opposite direction.  Repeat your measurements.

In the box below describe your setup, being as specific as possible about the book used (title, ISBN) and the object being used (e.g., a solid glass marble, a small can of tomato paste (full or empty?), a ball-point pen), and what you used to prop the object up (be as specific as possible).   Also describe how well the object rolled--did it roll smoothly, did it speed up and slow down, did it roll in a straight line or did its direction change somewhat?

Note:  Don't trust this form.  Compose your answer in Notepad or a word processor, saving it every few minutes, then copy and paste it into the box.  Power could surge, your computer could malfunction, in any of a number of ways the work you put into this form could be lost.  Compose it elsewhere and keep a copy.

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`access: 07-02-260

`name: David Michael Shoemaker

`title:

For this lesson I used a steel ball app 1 in diameter and app 8oz in weight.

The book used is Second edition Elementary and Intermediate Algerbra by(BITTINGER-ELLENBOGEN-JOHNSON)

I am also measuring with both inches and centimeters.

The test was recorded on video.

To incline I used a empty pack of Camel Lights.

Due to the incline of the flat drawer there will be differences in rate from one direction to the next.

First test inclined ½ inch incline

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In the box below report your data.  State exactly what was measured, how it was measured, how accurately you believe it was measured and of course what the measurements were.  Try to organize your report so the reader can easily scan your data and see any patterns that might occur.

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First test inclined ½ inch incline

1 2318.984 2318.984

2 2319.25 .265625

3 2319.531 .28125

4 2319.75 .21875

5 2387.641 .28125

6 2387.813 .171875

7 2388.016 .203125

8 2388.188 .171875

9 2393.281 .234375

10 2393.531 .25

11 2393.719 .1875

12 2393.891 .171875

13 2399.609 .28125

14 2399.813 .203125

15 2399.984 .171875

16 2400.188 .203125

180 degrees from first test

1 4289.719 1889.531

2 4290.094 .375

3 4290.266 .171875

4 4290.406 .140625

5 4301.906 .15625

6 4302.078 .171875

7 4302.281 .203125

8 4302.422 .140625

9 4305.906 .140625

10 4306.078 .171875

11 4306.219 .140625

12 4306.344 .125

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Using your data determine how fast the object was moving, on the average, as it rolled down the incline.  Estimate how accurately you believe you were able to determine the object's average speed, and give the best reasons you can for your estimate of the accuracy.

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In the first test;

The times were as close to 10cm as possible.

Judging from an average of the last four intervals a @ .1915

And the first four @ .257

With a difference of .066

I would say that the ball was speeding up.

In the 180 degree test;

The times were as close to 10 cm as possible

Judging from an average of the last four intervals a @ .135

And the first four @ .156

With a difference of .021

I would say that the ball was speeding up.

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Devise and concuct an experiment to determine whether or not the object is speeding up as it rolls down the incline.  If you have set the experiment up as indicated, it should seem pretty obvious that the object is in fact speeding up.  But figure out a way to use actual measurements to support your belief.

Explain how you designed and conducted your experiment, give your data and explain how your data support your conclusions.

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For this lesson I used a steel ball app 1 in diameter and app 8oz in weight.

The book used is Second edition Elementary and Intermediate Algerbra by(BITTINGER-ELLENBOGEN-JOHNSON)

I am also measuring with both inches and centimeters.

The test was recorded on video.

To incline I used a empty pack of Camel Lights.

Due to the incline of the flat drawer there will be differences in rate from one direction to the next.

In the first test;

The times were as close to 10cm as possible.

Judging from an average of the last four intervals a @ .1915

And the first four @ .257

With a difference of .066

I would say that the ball was speeding up.

In the 180 degree test;

The times were as close to 10 cm as possible

Judging from an average of the last four intervals a @ .135

And the first four @ .156

With a difference of .021

I would say that the ball was speeding up.

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Your instructor is trying to gauge the typical time spent by students on these experiments.  Please answer the following question as accurately as you can, understanding that your answer will be used only for the stated purpose and has no bearing on your grades: 

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About 3 hours.

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You may add optional comments and/or questions in the box below.

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Using video helped conducting the experiment.

You did excellent work on this experiment. You actually did quite a bit more than was required, and obtained excellent results.