A biker speeds up to 28.3 m/s from rest in 6.18 seconds. The biker maintains this speed for 6.75 seconds before coasting to a stop in biker's average speed for the trip? Average Speed m/s time (sec) time (sec) Info Attempts: 6/00 Submit

College Physics
11th Edition
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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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**Problem Statement:**

A biker speeds up to 28.3 m/s from rest in 6.18 seconds. The biker maintains this speed for 6.75 seconds before coasting to a stop in 8.5 seconds. What was the biker's average speed for the trip?

**Graphs:**

1. **Position vs. Time Graph:**
   - The graph shows time (in seconds) on the x-axis and position (in meters) on the y-axis.
   - The position increases steadily over time, indicating constant acceleration initially. 
   - Once maximum speed is reached, the position continues to increase at a constant rate, indicating constant motion.
   - The graph illustrates the acceleration phase, the constant speed phase, and the deceleration phase.

2. **Velocity vs. Time Graph:**
   - The graph shows time (in seconds) on the x-axis and velocity (in meters per second) on the y-axis.
   - The velocity increases linearly, showing acceleration to the maximum speed of 28.3 m/s.
   - It then becomes constant for 6.75 seconds, maintaining a speed of 28.3 m/s.
   - Finally, the velocity decreases to zero, illustrating the deceleration as the biker coasts to a stop.

**Interactive Feature:**

- A box labeled "Average Speed" where users can input their answer in m/s.

**Buttons:**

- "Submit" button for users to submit their answer.
- "Info" link presumably providing additional information about solving the problem.
- "Attempts: 6/∞" indicating the number of attempts made and that there are unlimited tries.
Transcribed Image Text:**Problem Statement:** A biker speeds up to 28.3 m/s from rest in 6.18 seconds. The biker maintains this speed for 6.75 seconds before coasting to a stop in 8.5 seconds. What was the biker's average speed for the trip? **Graphs:** 1. **Position vs. Time Graph:** - The graph shows time (in seconds) on the x-axis and position (in meters) on the y-axis. - The position increases steadily over time, indicating constant acceleration initially. - Once maximum speed is reached, the position continues to increase at a constant rate, indicating constant motion. - The graph illustrates the acceleration phase, the constant speed phase, and the deceleration phase. 2. **Velocity vs. Time Graph:** - The graph shows time (in seconds) on the x-axis and velocity (in meters per second) on the y-axis. - The velocity increases linearly, showing acceleration to the maximum speed of 28.3 m/s. - It then becomes constant for 6.75 seconds, maintaining a speed of 28.3 m/s. - Finally, the velocity decreases to zero, illustrating the deceleration as the biker coasts to a stop. **Interactive Feature:** - A box labeled "Average Speed" where users can input their answer in m/s. **Buttons:** - "Submit" button for users to submit their answer. - "Info" link presumably providing additional information about solving the problem. - "Attempts: 6/∞" indicating the number of attempts made and that there are unlimited tries.
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