It is the frequency.
The number of wavelengths passing a fixed point each second is equal to the frequency of the wave in hertz. This represents the number of complete oscillations the wave makes in one second.
The number of wavelengths that pass a fixed point each second is the frequency of the wave. Frequency is measured in Hertz (Hz) and represents the number of complete cycles of the wave that pass a point in one second.
This can be done by using a device called a spectrophotometer, which measures the absorption or transmission of light at specific wavelengths. By determining the frequency of the light passing through the fixed point, you can calculate how many wavelengths pass the point in one second.
The number of wavelengths passing through a given point per second is determined by the frequency of the wave passing through that point. It is calculated using the formula: number of wavelengths = frequency of the wave.
The number of wavelengths that pass a point each second is called the frequency of the wave. It is measured in hertz (Hz), where 1 Hz equals 1 cycle per second.
The number of wavelengths passing a fixed point each second is equal to the frequency of the wave in hertz. This represents the number of complete oscillations the wave makes in one second.
The number of wavelengths that pass a fixed point each second is the frequency of the wave. Frequency is measured in Hertz (Hz) and represents the number of complete cycles of the wave that pass a point in one second.
This can be done by using a device called a spectrophotometer, which measures the absorption or transmission of light at specific wavelengths. By determining the frequency of the light passing through the fixed point, you can calculate how many wavelengths pass the point in one second.
The number of wavelengths passing through a given point per second is determined by the frequency of the wave passing through that point. It is calculated using the formula: number of wavelengths = frequency of the wave.
frequency
The number of wavelengths that pass a point each second is called the frequency of the wave. It is measured in hertz (Hz), where 1 Hz equals 1 cycle per second.
The number of wavelengths that pass a point each second is referred to as the frequency of the wave. It is measured in hertz (Hz) and is equal to the reciprocal of the period of the wave.
We call the number of wavelengths that pass a point in one second the frequency of the wave. It is typically measured in hertz (Hz), where one hertz equals one cycle per second.
The answer to the number of wavelengths passing a given point per second is the frequency of the wave, measured in hertz (Hz). Frequency is calculated as the inverse of the wavelength multiplied by the speed of the wave.
7 hertz. Since frequency of the wave motion is defined as the number of waves ie number of wavelengths crossing a particular point in the medium in one second.
The number of waves passing a fixed point per second is known as the frequency of the wave, and it is measured in hertz (Hz).
The number of wavelengths passing a given point per second is called frequency, measured in hertz (Hz).