As part of their lab, Tyler and Maria estimate that the riders travel through a circle with a radius of 5.1 m and make one turn every 5.3 seconds. The speed of the riders on the Whirligig is v = 27r App m/s.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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**Topic: Physics and Amusement Park Rides**

During their physics field trip to the amusement park, Tyler and Maria took a ride on the Whirligig. The Whirligig ride consists of long swings that spin in a circle at relatively high speeds.

*Image Description:* The image shows a colorful amusement park ride with swings attached to a rotating structure. It features a striped canopy and is set against a bright background with graphic elements like hot air balloons and fairground stalls.

As part of their lab, Tyler and Maria estimate that the riders travel through a circle with a radius of 5.1 meters and make one turn every 5.3 seconds.

The speed of the riders on the Whirligig is calculated using the formula:

\[ v = \frac{2\pi r}{T} \]

**Note:** Calculate the value to find the speed in meters per second (m/s).
Transcribed Image Text:**Topic: Physics and Amusement Park Rides** During their physics field trip to the amusement park, Tyler and Maria took a ride on the Whirligig. The Whirligig ride consists of long swings that spin in a circle at relatively high speeds. *Image Description:* The image shows a colorful amusement park ride with swings attached to a rotating structure. It features a striped canopy and is set against a bright background with graphic elements like hot air balloons and fairground stalls. As part of their lab, Tyler and Maria estimate that the riders travel through a circle with a radius of 5.1 meters and make one turn every 5.3 seconds. The speed of the riders on the Whirligig is calculated using the formula: \[ v = \frac{2\pi r}{T} \] **Note:** Calculate the value to find the speed in meters per second (m/s).
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