What is the fundamental frequency and wave speed?

Let’s learn what is the fundamental frequency and wave speed. The most accurate or helpful solution is served by Yahoo! Answers.

There are ten answers to this question.

Best solution

Answer:

V = freq x wavelength V = 12 /s x 3.0 m = 36 m/s

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Other solutions

What is the equation to find the speed of a wave when frequency isn't given?

What would be the equation to finding the speed of a wave when frequency isn't given? The only equation I have is to solve with frequency :) Thanks

Answer:

Frequency is inverted period - so if your period is T = 0.40s (I suppose it's in seconds, you didn't...

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A sound wave moving through a liquid has a frequency of 265 Hz and a wavelength of 5.69 m. What is the speed?

A sound wave moving through a liquid has a frequency of 265 Hz and a wavelength of 5.69 m. What is the speed of sound in this liquid (meters/second)?

Answer:

v=f*lambda v=265*5.69 v=1507.85 m/s

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apfeffer... at Yahoo! Answers Mark as irrelevant Undo

Answer:

If you keep track of the units, this will become self apparent. Hertz is a unit of inverse time, i.e...

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Mark M at Yahoo! Answers Mark as irrelevant Undo

Answer:

The formula would be speed = frequency * wavelength. 262*68=17816. The final answer is 17816 centimeters...

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Anonymous at ChaCha Mark as irrelevant Undo

Answer:

Speed of a wave= Frequency X Wavelength. v = F (Wavelength). In electromagnetism, speed = 3X10^8 meters...

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ChaCha Mark as irrelevant Undo

Answer:

You have just posted a whole series of questions that you are meant to answer by looking at, and THINKING...

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Jess at Yahoo! Answers Mark as irrelevant Undo

Physics help please? (wave speed, frequency etc)?

I know the basic equation for working wave speed, frequency and wavelength but I've encountered questions which want me to work one of these out without providing two figures, can you please explain how to do them? A wave crest passes the boat every...

Answer:

1 wave per four seconds so 1/4 = 0.25 Hz What do you mean by the next wave through?

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A light wave has a frequency.  But a photon, travelling at the speed of light, does not experience the passage of time.  How can it exhibit a frequency then?

As an object approaches the speed of light, time passes slower and slower for that object.  An object travelling at the speed of light would experience no time passing at all.  A photon travels at the speed of light.  However, each photon has a characteristic...

Answer:

Photons don't have frequencies, at least not in the sense implied by the question. The following is...

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