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PHYSICS WORKSHEET B FREQUENCY, PERIOD AND WAVESPEED NAME: DATE: Key: wavespeed (in m/s) f frequency (in Hz) wavelength (in m) T period (in sec) 1. What is the period of a water wave with a frequency.

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This guide provides comprehensive instructions for successfully completing the Physics Worksheet B Frequency Period And Wavespeed online. Users will navigate through each section of the form with confidence, ensuring all components are accurately filled out.

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  1. Click ‘Get Form’ button to access the worksheet and open it in the editor.
  2. Begin filling in the 'Name' field with your full name. Ensure it is legible as this is necessary for identification purposes later.
  3. Proceed to the first question regarding the period of a water wave. In the section titled 'Data,' record the given frequency of 0.5 Hz, and then use the relevant equation to find the period. Show your calculations in the 'Math' section and provide your final answer in the designated 'Answer' space.
  4. For the second question relating to a sound wave, write down the given speed of 340 m/s and frequency of 3500 Hz in the 'Data' section. Apply the appropriate formula to calculate the wavelength, and document your working process in the 'Math' section, concluding with your answer.
  5. When addressing the third question about the frequency of the George Washington Bridge, make sure to enter 2.05 Hz in the 'Data' section. Calculate its period following the provided equations and clearly outline your work before providing the final answer.
  6. For question four, note the frequency of 0.35 Hz and wavelength of 7 meters under 'Data.' Use these values to ascertain the speed and detail your calculations before concluding with your answer.
  7. Question five requires you to document the speed of 45 m/s and wavelength of 2.5 m in 'Data.' Follow the prescribed equations to find the frequency, record your computations, and provide the final answer.
  8. For the extra credit question, document the period of 2.5 seconds and a wavelength of 2.5 meters in the 'Data' section. Calculate the wavespeed, and ensure all workings are noted before writing down the answer.
  9. After completing all questions, review your entries for accuracy. You can then save any changes made, and choose to download, print, or share the completed worksheet through available options.

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A wave's period measures how long it takes for a wave to pass a given point in its entirety, from crest to crest. Frequency and period are basically measuring the same characteristic of a wave and can be related by the equation period = 1 / frequency.

Frequency is expressed in Hz (Frequency = cycles/seconds). To calculate the time interval of a known frequency, simply divide 1 by the frequency (e.g. a frequency of 100 Hz has a time interval of 1/(100 Hz) = 0.01 seconds; 500 Hz = 1/(500Hz) = 0.002 seconds, etc.)

Frequency is the cycles/second. Period is the seconds/cycle.

Answer: The frequency of a sound wave whose time period is 4 seconds is 0.25 Hz.

This means the period of a wave is the inverse of the frequency, so the formula for wave period is wavelength divided by velocity. The period of a wave is measured in seconds (s), while the frequency is measured in 1/s, also known as Hertz (Hz).

There is a reciprocal relationship between Period and Frequency, and these can be expressed mathematically as: Period = Total time / Cycles. Period of a wave decreases whereas the frequency of waves increases. A particle of medium completes one vibration within the time period of a wave.

As we discussed in section 21-1, in one period, the wave travels one wavelength. Speed is distance over time, so v = λ / T. The frequency, f, is 1/T, so the equation relating wave speed, frequency, and wavelength is v = f λ .

Frequency and period are basically measuring the same characteristic of a wave and can be related by the equation period = 1 / frequency.

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