1 sample every 25 x 10-6 s coded into 8 bit : 8/(25 x 10-6) = 320 KBps
The wavelength of a 99.0 MHz signal is about 9.94 feet.
The signal with the longest wavelength is radio waves. They have wavelengths ranging from meters to kilometers.
The wavelength of a 565 Hz signal can be calculated using the formula: wavelength = speed of light / frequency. The speed of light is approximately 3 x 10^8 meters per second. Therefore, the wavelength of a 565 Hz signal is approximately 531,858 meters.
The wavelength of a 300MHz signal in free space can be calculated using the formula: wavelength = speed of light / frequency. Given that the speed of light is approximately 3 x 10^8 meters per second, the wavelength of a 300MHz signal would be approximately 1 meter.
The answer will depend on what type of signal it is: acoustic, electromagnetic and in what medium the signal is propagated.
It is the range of wavelength at which the energy flowing through the system begins to reduce or attenuated. In case of devices, it is the wavelength at which interruption or cessation in power takes place.
Changing the wavelength of the carrier wave to match that of the signal is called modulation. This process allows the signal to be encoded onto the carrier wave for transmission and later decoded at the receiver to extract the original signal.
The wavelength of a 1 kHz (1 kilohertz) signal in air is approximately 343 meters. This wavelength can be calculated using the equation: wavelength = speed of sound / frequency.
150 megahertz = 1.998616387 metres
As the frequency of a signal increases, its wavelength decreases. This is because the speed of propagation of the signal remains constant in a given medium, so as the frequency increases (more cycles per second), each cycle has less distance to cover, resulting in a shorter wavelength.
The wavelength of the detected signal.
The phenomenon of wavelength fade can cause signal attenuation, leading to weaker signal strength and potential loss of information during transmission in communication systems.