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3 Lab 3: Conservation of Energy (3/12) -- Stay-at-home Labs for Introductory Physi...

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3 Lab 3: Conservation of Energy

3 Lab 3: Conservation of Energy liyuchon Acknowledgment This project is made possible with funding by the Government of Ontario and through eCampusOntario’s support of the Virtual Learning Strategy. To learn more about the Virtual Learning Strategy visit: https://vls.ecampusontario.ca. PHY136 Stay-At-home Experiment 3 Conservation of Energy What you will do: Put your phone on a swing. Then use the accelerometer that is built into the phone to verify the conservation of energy during the swinging motion. What you will need: - A smart phone installed with the Phyphox app - Another device to remotely access the Phyphox app - A bag that can hold the phone - A long piece of string Demonstration Video: https://youtu.be/Pv5l_CEDNYE Procedures: - In the Phyphox app, open the “acceleration with g” sensor. On your computer, use a browser to remote access the Phyphox app. - Put the phone in a bag (if you purchased the experimental kit, use the velvet drawstring bag). If the bag does not fit the phone perfectly, you can wrap an elastic band on the outside of the bag around the phone. It’s important that your phone doesn’t move around too much in the bag. - Cut a piece of string that is about 1 meter long. Tie one end of the string to the bag. Tie the string at least twice to make sure the knot does not unravel. Pull the string tight. (Important: if you are using a drawstring bag that came with the experimental kit, make sure the drawstring is also tight.) Measure and make five marks on the string that are 20cm, 30 cm, 40 cm, 50 cm, and 60 cm away from the center of the cell phone. Why should measurements be taken from the centre of the phone? - Hold the string at the 60cm mark at the edge of a table that is high enough so that the phone will not hit the ground. Start an acceleration with g measurement using remote access. Keep the string tight and lift the phone to the height of the table, then release the phone so that it swings with the string. Note: you must start the measurement before releasing the phone! - Repeat the swing for a total of 3 times before stopping the measurement. Then export the data as a csv file. - Repeat Steps 4-5 with string lengths of 50cm, 40cm, 30cm, and 20cm. - In each csv file, create a scatter plot of the absolute acceleration vs. time. - On each absolute acceleration vs. time scatter plot, identify the time point that corresponds to when the phone reached the lowest point of the swing for the first time. Explain how you identified the points. - Pick one length of string, and calculate the theoretical acceleration that should be measured by the phone at the lowest point of the swing. Does the experimental value match the theoretical value? Explain if you see any difference. - The absolute acceleration at the lowest point of the swing is the sum of the gravitational acceleration and the centripetal acceleration. Assume that the gravitational acceleration is 9.81 m/s2, calculate the speed of the phone when it reached the lowest p
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