a rope is vibrating at high frequency. the length of the rope is 3.60 meters. a snapshot of the rope at a…

a rope is vibrating at high frequency. the length of the rope is 3.60 meters. a snapshot of the rope at a given moment in time is also shown. use this information to determine the wavelength of the wave. length = 3.60 m enter your answers or tap the number pad icon for a pop - up number pad. wavelength (m): check answer
Answer
Explanation:
Step1: Identify wave - length relation
The length of the rope shown contains 2 full wavelengths. Let the wavelength be $\lambda$ and the length of the rope be $L$. We have $L = 2\lambda$.
Step2: Solve for wavelength
Given $L = 3.60$ m, we can solve for $\lambda$ using the formula $\lambda=\frac{L}{2}$. Substituting $L = 3.60$ m into the formula, we get $\lambda=\frac{3.60}{2}=1.80$ m.
Answer:
1.80