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Question
- what happens to the wavelength if the frequency increases (and speed stays the same)?
a) wavelength increases
b) wavelength stays the same
c) wavelength decreases
d) amplitude increases
- light waves travel ____________ than sound waves in air.
a) slower
b) faster
c) the same speed
d) not at all
Question 1
The formula relating wave speed ($v$), frequency ($f$), and wavelength ($\lambda$) is $v = f\lambda$. If speed ($v$) is constant and frequency ($f$) increases, rearranging the formula to $\lambda=\frac{v}{f}$ shows that wavelength ($\lambda$) must decrease (since $v$ is fixed, a larger $f$ leads to a smaller $\lambda$). Option d is incorrect as amplitude is unrelated to this relationship.
In air, the speed of light is approximately $3\times10^{8}\, \text{m/s}$, while the speed of sound in air is about $343\, \text{m/s}$. So light waves travel much faster than sound waves in air.
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c) Wavelength decreases