The velocity speed of a wave depends on the medium through which it is traveling and the characteristics of the wave itself, such as frequency and wavelength. In general, the velocity speed of a wave is determined by the medium's density, elasticity, and whether the wave is a transverse or longitudinal wave.
The wave velocity can be calculated using the formula: wave velocity = frequency * wavelength. In this case, the wave velocity would be 10 Hz * 25 m = 250 m/s.
The velocity of a wave can be calculated using the formula: velocity = frequency x wavelength. In this case, velocity = 22 Hz x 4 m = 88 m/s. Therefore, the velocity of the wave is 88 m/s.
20m
The velocity of a wave can be calculated using the formula: velocity = frequency x wavelength. Plugging in the values: 120 Hz x 0.03 m = 3.6 m/s. Therefore, the velocity of the wave is 3.6 m/s.
The SI unit for ANY velocity is meters / second.
The average velocity of an earthquake's S-wave (secondary wave) typically ranges from about 3.5 to 7 km/s, depending on the geological materials it travels through. In the first 4 minutes of travel, the S-wave can cover a significant distance, but the exact average velocity would depend on the specific characteristics of the medium. Generally, if we take a midpoint velocity of around 4.5 km/s, the S-wave could travel approximately 1,800 kilometers in that time.
The velocity of a wave is wavelength x frequency. velocity = 3m x 12/s = 36m/s
The wave velocity can be calculated using the formula: wave velocity = frequency * wavelength. In this case, the wave velocity would be 10 Hz * 25 m = 250 m/s.
The velocity of a wave can be calculated using the formula: velocity = frequency x wavelength. In this case, velocity = 22 Hz x 4 m = 88 m/s. Therefore, the velocity of the wave is 88 m/s.
20m
The velocity of a wave can be calculated using the formula: velocity = frequency x wavelength. Plugging in the values: 120 Hz x 0.03 m = 3.6 m/s. Therefore, the velocity of the wave is 3.6 m/s.
The SI unit for ANY velocity is meters / second.
The velocity of a wave can be calculated using the formula: velocity = frequency x wavelength. Given a frequency of 10 Hz and a wavelength of 2 m, the velocity of the wave would be 20 m/s.
The velocity of a wave is calculated using the formula: velocity = frequency × wavelength. Therefore, the velocity of a wave with a frequency of 6 hertz and a wavelength of 2 meters is 12 m/s.
The velocity of ultrasonic waves in kerosene is approximately 1,470 m/s.
The velocity of a wave can be calculated using the formula v = λ/T, where v is the velocity, λ is the wavelength, and T is the period. Substituting the values given: v = 9 m / 0.006 s = 1500 m/s. Therefore, the velocity of the wave is 1500 m/s.
Velocity of a wave measures the speed at which a wave travels through a medium. It is typically measured in meters per second (m/s) and relates to the rate at which energy is transferred through the wave.