4. Compare the tangential speed of a car to the tangential speed of the middle of a spoke. Explain!
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1 QUALTATE QUESTONS Highland Fling 1. Observe the Highland Fling as it is just starting to spin. How are the rider s bodies oriented relative to the spokes of the ride? 2. Continue to watch the ride as it changes from horizontal to vertical. How are the rider s bodies oriented relative to the spokes of the ride? 3. Why do the cars change their positions? 4. Compare the tangential speed of a car to the tangential speed of the middle of a spoke. Explain! 5. Compare the angular speed of a car to the angular speed of the middle of a spoke. Explain! 6. Consider the diagram to the right. When the ride is spinning vertically, at what point: a. are you going fastest? b. are you going slowest? c. do you feel heaviest? d. do you feel lightest? Physics Day Six Flags St. Louis Highland Fling - 1
2 QUALTATE QUESTONS (continued) 7. When the ride is spinning horizontally, predict whether or not the readings from your Force Factor meter will differ significantly between positions,,, and. 8. When the ride is spinning vertically, predict which of the positions,,, or will have a Force Factor meter reading that is a: a. maximum b. minimum c halfway between the maximum and the minimum 9. Take head to toe Force Factor meter readings at positions,,, and when the ride is vertical and when it is horizontal. Horizontal.... Vertical Are your answers for #7 and #8 consistent with your Force Factor readings? Explain. Highland Fling - 2 Physics Day Six Flags St. Louis
3 MAKE THESE MEASUREMENTS NOW Highland Fling 1. Determine the circumference of the ride. (Find the circumference of the ride by walking around the ride and counting your paces before you get on.) 2. Determine the time for one revolution when the ride is at full speed. Does the time for one revolution change when the ride goes from horizontal to vertical? 3. f you did not do #3 in the qualitative section, do it now. QUANTTATE QUESTONS: WHEN THE RDE S AT REST 1. Draw the free-body diagram for a rider when the ride is at rest. F N F G 2. From your measurements, calculate the radius of the ride. 3. Calculate the centripetal acceleration and normal force experienced by a 60.0 kg rider at points - for the diagram when the ride is at rest. Top view of ride at rest Calculated Acceleration: Normal Force: Point Point Point Point Point Point Point Point Physics Day Six Flags St. Louis Highland Fling - 3
4 QUANTTATE QUESTONS: WHEN THE RDE S AT FULL HORZONTAL SPEED Note: For this set of questions the cars are not entirely horizontal when the ride is at full speed in its horizontal orientation. Nonetheless, to simplify calculations for this ride, assume that the cars are oriented horizontally. 4. Calculate the tangential speed of the ride. 5. Draw the free-body diagram for a rider. 6. Calculate the centripetal acceleration and normal force toward the center of the circle experienced by a 60.0 kg rider at points. 7. Calculate the head to toe Normal Force experienced by a 60.0 kg person from the Force Factor meter readings at points. Normal Force calc. Force Factor meter Normal Force (Force Factor calc.) Point Point Point Point 8. What happens to the Force Factor meter readings from points to to to in this situation? Explain! Highland Fling - 4 Physics Day Six Flags St. Louis
5 QUANTTATE QUESTONS: WHEN THE RDE S AT FULL VERTCAL SPEED 9. Draw a free-body diagram for a rider at each of points,,, and, when the ride is at full speed, but at its maximum vertical orientation Calculate the centripetal acceleration and normal force experienced by a 60.0 kg rider at points. 11. Calculate the Normal Force experienced by a 60.0 kg person from the Force Factor meter readings at points. Normal Force calc. Force Factor meter Normal Force (Force Factor calc.) Point Point Point Point Physics Day Six Flags St. Louis Highland Fling - 5
6 QUANTTATE QUESTONS: WHEN THE RDE S AT FULL VERTCAL SPEED (con t.) 12. What happens to the head to toe Normal Force reading from points to to to in this situation? Explain! 13. Compare the magnitude and direction of the Force Factor at position and when the ride was moving vertically to the magnitude and direction of the Force Factor when the ride was moving horizontally. Explain the relationship! Highland Fling - 6 Physics Day Six Flags St. Louis
5. Compare the tangential speed of a car to the tangential speed of the middle of a spoke. Explain!
Name: QUALTATVE QUESTONS Partner: 1. As riders sit in the stationary Highland Fling, at what angle are the rider s bodies oriented relative to the spokes of the ride? (A diagram might help) Teacher: Highland
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