If frequncy f increases the wavelength lambda decreases. c = lambda times f c = speed of sound or speed of light. f is proportional 1 / lambda
When frequency decreases, the wavelength increases. This is because the speed of a wave remains constant in a given medium (like air or water), so as frequency decreases, the wavelength has to increase in order to maintain that constant speed.
When you increase sound, the wavelength of the sound decreases. This is because sound waves with higher frequencies have shorter wavelengths. So, as the sound becomes louder, the frequency increases and the wavelength gets shorter.
False. The frequencies of radiation decrease as the wavelengths increase. This is because frequency and wavelength are inversely proportional in the electromagnetic spectrum.
wavelengths are the distance from where a wave starts and finishes, whereas frequency is the amount of times this happens
If a wavelength is long, it means the frequency is low. In the context of light, long wavelengths correspond to red colors. In the context of sound, long wavelengths correspond to lower pitches.
Gets shorter.
Provided the speed of the wave remains constant, as we increase the frequency of wave then wavelength decreases. Because frequency and wavelength are inversely related.
When you increase the wave period, the distance between two consecutive wave crests (or troughs) increases. This results in longer wavelengths and slower propagation of the wave. The wave frequency decreases while the wave amplitude remains unaffected.
Yes, the frequencies of light increase from red to violet. Red light has lower frequencies and longer wavelengths, while violet light has higher frequencies and shorter wavelengths. This is due to the relationship between frequency and wavelength in the electromagnetic spectrum.
If the frequency remains constant, then the wavelength increases.
Different wavelengths of light differ in their frequency and energy levels. Shorter wavelengths have higher frequency and energy, while longer wavelengths have lower frequency and energy. This difference in energy levels is what makes different wavelengths of light appear as different colors to the human eye.
Remember that wavelength x frequency = speed of the wave.If you increase the wavelength, the frequency will decrease - since the speed of most waves is more or less independent of the frequency or wavelength.