I cannot provide a specific answer without knowing the unit of measurement of the "caual" velocities and "wavelength" mentioned in the question. However, I can provide a general answer to explain the relationship between the velocity, frequency, and wavelength of a wave.
When the velocity of a wave reduces, the wavelength will also reduce proportionally to maintain a constant frequency. This is because the frequency of a wave is determined by the number of waves that pass a point in a given time interval, which is constant for a given source.
The relationship between velocity, frequency, and wavelength can be expressed mathematically using the equation:
v = fλ
where v is the velocity of the wave, f is the frequency, and λ is the wavelength. This equation states that the velocity of a wave is equal to the product of its frequency and wavelength.
If the frequency of a wave is halved while its velocity remains constant, the wavelength will double, since the product of the frequency and wavelength must remain constant according to the equation above. On the other hand, if the velocity of a wave is halved while the frequency remains constant, the wavelength will be halved to maintain a constant velocity.
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Answer:
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I cannot provide a specific answer without knowing the unit of measurement of the "caual" velocities and "wavelength" mentioned in the question. However, I can provide a general answer to explain the relationship between the velocity, frequency, and wavelength of a wave.
When the velocity of a wave reduces, the wavelength will also reduce proportionally to maintain a constant frequency. This is because the frequency of a wave is determined by the number of waves that pass a point in a given time interval, which is constant for a given source.
The relationship between velocity, frequency, and wavelength can be expressed mathematically using the equation:
v = fλ
where v is the velocity of the wave, f is the frequency, and λ is the wavelength. This equation states that the velocity of a wave is equal to the product of its frequency and wavelength.
If the frequency of a wave is halved while its velocity remains constant, the wavelength will double, since the product of the frequency and wavelength must remain constant according to the equation above. On the other hand, if the velocity of a wave is halved while the frequency remains constant, the wavelength will be halved to maintain a constant velocity.
daw may kulang nga words sa question mo