To get the frequency, divide the number of waves (10) by the time it takes for those waves to pass (20). The answer is in hertz.The period is the reciprocal of the frequency.
There is not enough information to determine the wavelength.
The period of the wave is 4 seconds, as it takes 4 seconds to complete one full cycle (rise and fall). The frequency of the wave is 0.25 Hz, as it completes two cycles (rises and falls) in 4 seconds. Frequency is the reciprocal of period, so 1/4 = 0.25 Hz.
The frequency of a wave with a period of 18 seconds would be 1/18 Hz, which is approximately 0.056 Hz. This means the wave completes one cycle every 18 seconds.
The wavelength period of a wave with a frequency of 1000 Hz is 0.001 seconds. This means that the wave completes one full cycle every 0.001 seconds.
The frequency of the oscillator would be 0.25 Hz (1 divided by 4). This means the oscillator completes one full cycle every 4 seconds.
The period of a 1000 Hz signal is the time it takes to complete one cycle or revolution of the signal. The formula to calculate the period from the frequency is: T=frac1f where T is the period in seconds and f is the frequency in Hertz. Plugging in the given frequency of 1000 Hz, we get: T=frac11000 T=0.001 Therefore, the period of a 1000 Hz signal is 0.001 seconds or 1 millisecond. This means that one cycle of the signal repeats every 1 millisecond. You can also use this online calculator to convert between frequency and period.
The period of the wave is 4 seconds, as it takes 4 seconds to complete one full cycle (rise and fall). The frequency of the wave is 0.25 Hz, as it completes two cycles (rises and falls) in 4 seconds. Frequency is the reciprocal of period, so 1/4 = 0.25 Hz.
The frequency of a wave with a period of 18 seconds would be 1/18 Hz, which is approximately 0.056 Hz. This means the wave completes one cycle every 18 seconds.
The wavelength period of a wave with a frequency of 1000 Hz is 0.001 seconds. This means that the wave completes one full cycle every 0.001 seconds.
The frequency of the oscillator would be 0.25 Hz (1 divided by 4). This means the oscillator completes one full cycle every 4 seconds.
period = reciprocal of frequency = 1/5 = 0.2 seconds
The period of a 1000 Hz signal is the time it takes to complete one cycle or revolution of the signal. The formula to calculate the period from the frequency is: T=frac1f where T is the period in seconds and f is the frequency in Hertz. Plugging in the given frequency of 1000 Hz, we get: T=frac11000 T=0.001 Therefore, the period of a 1000 Hz signal is 0.001 seconds or 1 millisecond. This means that one cycle of the signal repeats every 1 millisecond. You can also use this online calculator to convert between frequency and period.
A period wave with a frequency of 2.6 Hz completes one full cycle (peak to peak or trough to trough) every 0.38 seconds. This means it oscillates 2.6 times in one second.
The period of the wave is 2 seconds. This means that it takes 2 seconds for the wave to complete one full cycle, from a starting point, through all of its peaks and troughs, and back to the starting point.
Time period = 1 / frequency. Frequency = 1 / time period.f = 1/4 = 0.25 Hz.
-- If the ocean waves lap the shore every 15 seconds then their frequency is 1/15 Hz.-- If the waves come every 30 seconds then the frequency is 1/30 Hz.-- If the waves come every minute (60 seconds) then their frequency is 1/60 Hz....etc.In general, the frequency of ocean waves, and any other waves, is1/the number of seconds between consecutive waves
The frequency of the pendulum is 1/3 Hz, as frequency is the number of complete cycles (swings) per second. Since it completes one cycle every 3 seconds, the frequency is the reciprocal of the time period, which is 1/3 Hz.
frequency = 1 / period f = 1/2 = 0.5 Hertz