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Assuming that the air is dry and room temperature is 20 degrees celcius then the spped of sound is 343m/s.

The frequency of the sound will be 185.4054Hz

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Is the sun hotter than electricity?

Yes, the sun's surface temperature is much hotter than electrical energy generated by power plants. The sun's core temperature reaches millions of degrees Celsius, while electricity produced by power plants is typically generated at around 100-200 degrees Celsius.


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Radioactive decay of elements within the Earth's core produced heat as a byproduct, contributing to the planet's warming. The accretion of material during Earth's formation generated frictional heat, further increasing the temperature of the early Earth.


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The resonant frequency produced by each pipe depends on the speed of sound c divided by either 2 x the pipe length L (if it is open on both ends) or 4 x the pipe length L (if it is closed on one end).So f = c / (2 x L) orf = c / (4 x L)c is the speed of sound, usually at 20°C = 343 m/s.But in either case, if the speed of sound (c) changes, the frequency (f) will also change.c = λ x fλ = wavelengthHigher temperature = faster speed of sound = higher frequency.lower temperature = slower speed of sound = lower frequency.


Which type of rocks are produced by changing other rocks with high temperature and pressure underground?

Metamorphic rocks are produced when other rocks are subjected to high temperature and pressure underground. This process causes their mineral composition, texture, and structure to change, resulting in the formation of metamorphic rocks like marble, slate, and schist.


What is the relationship of the frequency with the fundamental in the square wave frequency response?

The natural frequency of the spring refers to its frequency when hit or struck. Its lowest frequency is called fundamental frequency. For a spring, the 1st mode of natural frequency is fundamental frequency.

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There should be a note somewhere on the oven stating the frequency of the waves produced. It's normally around 2.5gigahertz. You can use this to workout the wavelength. The speed of the microwaves is the same as the speed of light, 3x10 to power of 8 metres per second. To get the wavelength you divide the speed by the frequency; 300 000 000m/s divided by 2 500 000 000waves/s which gives 0.12metres or 12cm.


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Speed = (frequency) x (wavelength) = (36) x (12) = 432 meters per second.Isn't this a pretty high speed for sound in air . . . ? ? ?


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The wavelength of a wave is calculated using the formula: wavelength = speed of sound / frequency. Substituting the values given: wavelength = 1530 m/s / 7 Hz ≈ 218.57 meters. Therefore, the wavelength of the T Wave is approximately 218.57 meters.