the energy of the wave brah
The frequency of an electromagnetic wave is determined by the speed of light divided by the wavelength of the wave. This relationship is defined by the equation: frequency = speed of light / wavelength.
Frequency is the number of waves that pass a point per unit of time. Amplittude is the distanc from the crest or trough of the wave to an imaginary line. The amout of energy used determines the amplitude and frequency of a wave.
The frequency of a transverse wave is the number of complete oscillations it makes in a given time period. It is determined by the speed of the wave and the wavelength. The formula to calculate frequency is frequency speed of the wave / wavelength.
When a light wave travels from air into water, its frequency remains unchanged. This is due to the fact that the frequency of a wave is determined by the source that creates it, and does not change when it passes from one medium to another.
The wavelength of light is determined by the distance between two successive peaks or troughs in the light wave. It can be calculated using the formula λ = c / f, where λ is the wavelength, c is the speed of light in a vacuum, and f is the frequency of the light wave. Different colors of light have different wavelengths due to differences in frequency.
The frequency of an electromagnetic wave is determined by the speed of light divided by the wavelength of the wave. This relationship is defined by the equation: frequency = speed of light / wavelength.
Frequency is the number of waves that pass a point per unit of time. Amplittude is the distanc from the crest or trough of the wave to an imaginary line. The amout of energy used determines the amplitude and frequency of a wave.
The frequency of a transverse wave is the number of complete oscillations it makes in a given time period. It is determined by the speed of the wave and the wavelength. The formula to calculate frequency is frequency speed of the wave / wavelength.
When a light wave travels from air into water, its frequency remains unchanged. This is due to the fact that the frequency of a wave is determined by the source that creates it, and does not change when it passes from one medium to another.
The wavelength of light is determined by the distance between two successive peaks or troughs in the light wave. It can be calculated using the formula λ = c / f, where λ is the wavelength, c is the speed of light in a vacuum, and f is the frequency of the light wave. Different colors of light have different wavelengths due to differences in frequency.
The speed of a wave can be determined by the equation: speed = frequency x wavelength. This equation relates the speed of a wave to its frequency and wavelength. Additionally, the wave equation, c = λf, where c is the speed of light, λ is the wavelength, and f is the frequency, can be used to determine the speed of electromagnetic waves in a vacuum.
Wave velocity is determined by the medium through which the wave is traveling and the properties of the wave itself, such as frequency and wavelength. It can be calculated as the product of wavelength and frequency or by dividing the distance the wave travels by the time it takes to travel that distance. Additionally, the type of wave, such as sound or light, can also affect the velocity at which it travels through a medium.
No, velocity and color are independent. Color is determined by frequency, and speed is determined by what material the light is traveling through.
frequency
No, the frequency of a sound wave is determined by its pitch, while the loudness is determined by the amplitude of the wave. Frequency refers to how high or low a sound is perceived, while loudness refers to the intensity or volume of the sound.
The speed of a wave is determined by the frequency and wavelength of the wave. It is calculated by multiplying the frequency of the wave by its wavelength.
The energy of an electromagnetic (EM) wave is determined by its frequency and amplitude. The higher the frequency, the higher the energy of the wave. Additionally, the amplitude of the wave also plays a role in its energy content.