Answer:
Wavelength = 41.94 cm
Step-by-step explanation:
Given:
Number of vibrations (N) = 36.1
Time taken (t) = 33.5 s
Distance traveled by wave (D) = 425 cm
Time taken by the wave to travel the distance (T) = 9.4 s
Now, we know that,
Frequency = Number of vibrations per second
So, frequency of the wave is given as:

Now, speed of the wave is given as the ratio of distance traveled by time taken for the travel. So,
Speed of wave is,

Now, from wavelength equation, we have:
Speed = Frequency × Wavelength.
Rewriting in terms of wavelength, we get:

Therefore, the wavelength of the wave is 41.94 cm.