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The period is the reciprocal of ("one over") the frequency.

1/500,000 = 0.000002 second = 2 microseconds

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Q: Find the period of a wave with frequency 500 kHz?
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How would you find a period of a wave if the wave frequency is 500Hz?

Period = 1/frequency = 1/500 = 0.002 second = 2 milliseconds


What is the period of the wave motion for a wave with a frequency of 0.50 kHz?

The period of a wave is the inverse of its frequency, so for a wave with a frequency of 0.50 kHz, the period is 1 / 0.50 kHz = 2 milliseconds.


What is the period of the wave motion for a wave with a frequency of 0.50khz?

Period = reciprocal of ('1' divided by) frequency = 1/500 = 0.002 seconds = 2 milliseconds


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The period of a wave is the reciprocal of its frequency. Therefore, for a wave with a frequency of 2MHz, the period would be 1/(2x10^6) seconds, which is equal to 0.5 microseconds.


What is the period of a clock waveform whose frequency is 500 kHz?

The period of a waveform is the reciprocal of its frequency. For a clock waveform with a frequency of 500 kHz, the period can be calculated as 1 / 500 kHz = 2 microseconds.


What is the fifth harmonic of a 500 Hz triangular wave?

The fifth harmonic of a 500 Hz triangular wave would be at a frequency of 2500 Hz. This means that the fifth harmonic would have a frequency that is five times the fundamental frequency of the triangular wave.


What is the period of a 500 hertz?

Period = (1) divided by (frequency) = 1/500 = 0.002 second


What is the period of a wavelength with a frequency of 0.50 kHz?

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The speed of sound is approximately 340 meters per second If a sound wave has a wavelength of 0.68 meters the frequency will be approximately?

The frequency of a sound wave can be calculated using the formula: frequency = speed of sound / wavelength. Plugging in the values given, the frequency would be approximately 500 Hz.


What is the frequency of a wave with a wavelength of 500 nanometers?

The frequency of a wave can be calculated using the formula: frequency = speed of light / wavelength. Given that the speed of light is approximately 3 x 10^8 meters per second and the wavelength is 500 nanometers (which is 500 x 10^-9 meters), the frequency would be approximately 6 x 10^14 hertz.


How fast does a 500-Hz wave travel if its wavelength is 0.5 m?

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What is the wavelength of an earthquake wave if it has a speed of 5km s and a frequency of 10 Hz?

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