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Wavelength decreases.

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What will be the result when Velocity of a wave increases and the wavelength stays the same?

If the velocity of a wave increases while the wavelength stays the same, the frequency of the wave will also increase. This is because the speed of a wave is determined by the product of its frequency and wavelength. Therefore, if the speed increases and the wavelength remains constant, the frequency must also increase.


What will the result be when the velocity of a wave increases and the wavelength stays the same?

If the velocity of a wave increases while the wavelength stays the same, the frequency of the wave must also increase to maintain the relationship between velocity, frequency, and wavelength (v = f * λ). This means the wave will have more cycles passing through a point in a given time period, resulting in a higher pitch or frequency.


What would the result be if the frequency of a wave increases and the velocity stays the same?

The velocity of the wave is equal to the product of the frequency and the wavelength. Therefore, for constant wavelength, the wavelength will decrease. Furthermore, for an electromagnetic wave, the energy of the wave E = hf, where h is Planck's constant and f is the frequency, the energy of the wave decreases as frequency decreases (and the velocity within a vacuum is always constant and equal to c).


What will the result be when this happens Frequency of a wave increases and the wavelength stays the same.?

velocity increases


What will the result be when this happens Velocity of a wave increases and the wavelength stays the same.?

This is not true practically. Theoretically speaking as velocity increases with wavelength remains constant, then frequency has to increase accordingly. Since the formula for velocity is given as: velocity of the wave v = frequency (nu) * wavelength (lamda). In reality the characteristic, namely, frequency remains constant when the speed of the wave changes as it traverses in different medium.

Related Questions

What will the result be when Velocity of a wave increases and the wavelength stays the same?

the frequency of the wave increases.


What will be the result when Velocity of a wave increases and the wavelength stays the same?

If the velocity of a wave increases while the wavelength stays the same, the frequency of the wave will also increase. This is because the speed of a wave is determined by the product of its frequency and wavelength. Therefore, if the speed increases and the wavelength remains constant, the frequency must also increase.


What will the result be when the velocity of a wave increases and the wavelength stays the same?

If the velocity of a wave increases while the wavelength stays the same, the frequency of the wave must also increase to maintain the relationship between velocity, frequency, and wavelength (v = f * λ). This means the wave will have more cycles passing through a point in a given time period, resulting in a higher pitch or frequency.


What happenes to the wave speed as the wavelength increased?

Velocity = Frequency * Wavelength. If the wavelength increases and the frequency stays the same, then the speed of the wave will increase.


What would the result be if the frequency of a wave increases and the velocity stays the same?

The velocity of the wave is equal to the product of the frequency and the wavelength. Therefore, for constant wavelength, the wavelength will decrease. Furthermore, for an electromagnetic wave, the energy of the wave E = hf, where h is Planck's constant and f is the frequency, the energy of the wave decreases as frequency decreases (and the velocity within a vacuum is always constant and equal to c).


What will the result be when this happens Frequency of a wave increases and the wavelength stays the same.?

velocity increases


What will the result be when this happens Velocity of a wave increases and the wavelength stays the same.?

This is not true practically. Theoretically speaking as velocity increases with wavelength remains constant, then frequency has to increase accordingly. Since the formula for velocity is given as: velocity of the wave v = frequency (nu) * wavelength (lamda). In reality the characteristic, namely, frequency remains constant when the speed of the wave changes as it traverses in different medium.


What will the result be when this happens Velocity of a wave increases and the wavelength stays the same?

This is not true practically. Theoretically speaking as velocity increases with wavelength remains constant, then frequency has to increase accordingly. Since the formula for velocity is given as: velocity of the wave v = frequency (nu) * wavelength (lamda). In reality the characteristic, namely, frequency remains constant when the speed of the wave changes as it traverses in different medium.


How does velocity vary with wavelength if frequency is the same?

Velocity equals frequency times wavelength. If frequency is constant, velocity is proportional to wavelength; one increases at the same rate as the other.


Velocity of a wave increases and the wavelength stays the same. What will the result be when this happens?

Assuming an electromechanical wave not much. The speed of the wave depends on the medium that the wave is passing through. In a vacuum it is the speed of light, through something else a lesser speed. The wavelength stays the same and the frequency stays the same.


If the waves speed stays the same what decreases as the frequency increases?

The wavelength decreases.


What happens to the frequency of a wave when the wavelength goes up?

Frequency drops, assuming the velocity stays the same.