The following graph shows the displacement of a wave as a function of time at some fixed position. 1.0m -1.0m A ^^^ W 11 12 What is the wavelength of the wave? X ● 3.00 m 6.00 m 3 9.00 m 12.0m Unable to determine based on information in graph 13 t (sec)

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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The image contains a graph depicting the displacement of a wave as a function of time at a fixed position. The vertical axis represents displacement \( y(t) \) in meters, ranging from -1.0 m to 1.0 m. The horizontal axis represents time \( t \) in seconds, spanning from 0 to 14 seconds.

The wave follows a sinusoidal pattern, oscillating between 1.0 m and -1.0 m. Notably, the wave completes a full cycle approximately every 6 seconds (e.g., from 0 to 6 seconds).

Underneath the graph, the question "What is the wavelength of the wave?" is posed, with the following answer options:

- 3.00 m
- 6.00 m
- 9.00 m
- 12.0 m
- Unable to determine based on information in graph

A red box indicates that the answer selected is "3.00 m."
Transcribed Image Text:The image contains a graph depicting the displacement of a wave as a function of time at a fixed position. The vertical axis represents displacement \( y(t) \) in meters, ranging from -1.0 m to 1.0 m. The horizontal axis represents time \( t \) in seconds, spanning from 0 to 14 seconds. The wave follows a sinusoidal pattern, oscillating between 1.0 m and -1.0 m. Notably, the wave completes a full cycle approximately every 6 seconds (e.g., from 0 to 6 seconds). Underneath the graph, the question "What is the wavelength of the wave?" is posed, with the following answer options: - 3.00 m - 6.00 m - 9.00 m - 12.0 m - Unable to determine based on information in graph A red box indicates that the answer selected is "3.00 m."
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