Using the equation v=fλ, you can rearrange to get λ=v/f If the speed if low and the frequency is high, you will get a low value for the wavelength.
Simply using the relation wavelength = velocity / frequency So required wavelength = 25/5 = 5 m
The speed of a wave is equal to its wavelength times its frequency. Since you are using SI units, the answer will be in meters/second.
by using the formula we will calculat time period of simple harmonic motion
By using the formula distance equals rate times time or d = r x t
The wavelength of the tuning note A440 can be found using the formula: wavelength = speed of sound / frequency. The period can be calculated using the formula: period = 1 / frequency. For A440 (440 Hz), frequency is 440 Hz, speed of sound is approximately 343 m/s, so the wavelength is around 0.779 meters and the period is approximately 0.00227 seconds.
The speed of a wave can be calculated using the formula: speed = wavelength / period. In this case, the speed of the wave would be 3.0 m / 0.40 s = 7.5 m/s.
The speed of a tsunami can be calculated using the formula: speed = wavelength / period. In this case, the speed would be 225 km / 15 min = 15 km/min.
The speed of the wave can be calculated using the formula: speed = wavelength / period. In this case, the wavelength is 10 meters and the period is 2.0 seconds. Therefore, the speed of the waves is 5 m/s.
The period of a wave can be calculated by dividing the speed of the wave by the wavelength. The equation is: Period = wavelength / wave speed. Given the wavelength and the time, you would first need to calculate the wave speed using the formula speed = wavelength / period, and then solve for the period using the formula period = wavelength / wave speed.
The wavelength of a wave is calculated using the formula: Wavelength = speed of the wave divided by the frequency of the wave. For radio waves and other wireless signals as well as the speed a signal travels along a wire, the speed of the wave is approximately 299,792,458 meters per second (the speed of light).
The period of a sound wave is the time it takes for one complete wave cycle to pass a fixed point. To find the period, we can use the formula: Period = 1 / Frequency. If we know the speed of sound in air is approximately 343 m/s, we can calculate the frequency using the formula: Frequency = Speed / Wavelength. Consequently, the period will be: Period = 1 / Frequency.
The wavelength of a wave can be calculated using the formula: speed = frequency x wavelength. Given the speed is 3 km/s and frequency is 12 Hz, you can rearrange the formula to solve for wavelength: wavelength = speed / frequency. Plugging in the values gives you a wavelength of 0.25 km or 250 m.
The speed of a wave equals the frequency times the wavelength (speed = frequency x wavelength). Therefore, the wavelength would equal the speed divided by the frequency. Also, the speed of a wave in a vacuum is the speed of light, c, which is a constant.
The wavelength for a frequency of 25 MHz is approximately 12 meters. Wavelength can be calculated using the formula: Wavelength = Speed of light / Frequency.
Using the formula speed = wavelength x frequency, we can rearrange it to wavelength = speed / frequency. Plugging in the values gives us a wavelength of 250 meters.
The wavelength of a 20 kHz wave is approximately 15 meters in air. Wavelength can be calculated using the formula: wavelength = speed of sound / frequency.