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I don't think a "resonant frequency" makes much sense for the Universe. Even a single vibration would never be able to get back and forth, even if it's only through the OBSERVABLE Universe.

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What is the resonant frequency of a specific volume of oxygen?

Well, isn't that a fascinating question! The resonant frequency of a specific volume of oxygen can vary depending on factors like temperature and pressure. But remember, each element has its own unique resonant frequency that can create harmony in the world around us. Just like how a happy little tree adds beauty to a landscape, oxygen's resonant frequency plays a vital role in the symphony of life.


Does frequency depend on amplitude for harmonic oscillators?

No, the frequency of a harmonic oscillator does not depend on its amplitude. The frequency is determined by the properties of the system, such as mass and spring constant, and remains constant regardless of the amplitude of the oscillation.


What does a resonators do in a electric circuit?

A resonator is a circuit that responds to a narrow range of frequencies. A typical resonator is a tuned circuit containing an inductor and a capacitor in series or parallel. A series connected tuned circuit has zero impedance at the resonant frequency, while a parallel tuned circuit has infinite impedance at the resonant frequency. The resonant frequency in both cases depends on the inductance times the capacitance: F = 1 / (2.pi.sqrt(LC)) If the inductance is in Henrys and the capacitance in Farads, the answer is in Hz.


How could you find the sound frequency to break a glass?

High frequency sound waves can shatter glass if powerful enough. This happens because the glass vibrates at the same frequency as the sound waves on the outer surface of the glass, but at lower frequencies inside the glass. This causes interference in the waveforms moving through the glass, which stress the glass, causing it to break. This is a different effect than when a single sharp sound, such as an explosion, pushes the glass beyond its breaking point.


Why is lead a soundproofing material?

Lots of mass (very low resonant frequency) Low stiffness (very high co-incident frequency) All materials have both a resonant and co-incident frequency, at which sound is transmitted more efficiently. Materials where these frequencies occur outside of the range of hearing (20 - 20,000 Hz) are better for sound proofing. With lead, the resonant frequency is below 20Hz and the co-incident frequency is about 20,000Hz.

Related Questions

Resonant frequencies higher than the lowest resonant frequency of a standing wave are called?

In physics the term harmonics is usually used. Note that the lowest-frequency mode also counts as a harmonic: it is simply the first one.


What happens in a circuit at resonant frequency?

what is resonant frequency


Is the resonant frequency the same as the natural frequency?

Yes, the resonant frequency is the same as the natural frequency.


How are the overtones related to the fundamental frequency of a vibrating string?

The fundamental = 1st harmonic is not an overtone!Fundamental frequency = 1st harmonic.2nd harmonic = 1st overtone.3rd harmonic = 2nd overtone.4th harmonic = 3rd overtone.5th harmonic = 4th overtone.6th harmonic = 5th overtone.Look at the link: "Calculations of Harmonics from FundamentalFrequency".


The lowest tone resonant in a closed pipe length of l is200hz what would not resonate in that pipe?

The lowest resonant frequency of a closed pipe is the fundamental frequency, so the next resonant frequency that would not resonate in that pipe would be the second harmonic (2 times the fundamental frequency), which would be 400 Hz. Any odd harmonics (3rd, 5th, 7th, etc.) would also not resonate in that closed pipe.


How to find the resonant frequency of a room?

To find the resonant frequency of a room, you can use a sound frequency generator and a microphone to measure the frequency at which sound waves resonate the most in the room. This frequency is the room's resonant frequency.


Is the natural frequency the same as the resonant frequency?

No, the natural frequency and resonant frequency are not the same. The natural frequency is the frequency at which an object vibrates when disturbed, while the resonant frequency is the frequency at which an object vibrates most strongly when subjected to external forces.


What do you mean by resonant in power electronics?

Resonant in electronics circuit refer to tuning if the resonant condition arise it means the frequency where does the resonant arise is resonant frequency and the gain is highest on that particular frequency. it is widely used in receiver circuits.


What does it mean by 'above and below resonance?

'Above resonance' means a frequency higher than the resonant frequency of a system, while 'below resonance' means a frequency lower than the resonant frequency. At resonance, a system vibrates with maximum amplitude, making these concepts important in understanding the behavior of vibrating systems like simple harmonic oscillators.


What is the difference between the natural frequency and resonant frequency of a system?

The natural frequency of a system is the frequency at which it naturally vibrates when disturbed. The resonant frequency is the frequency at which the system vibrates with the greatest amplitude when subjected to an external force. The resonant frequency is usually close to the natural frequency, but not always the same.


What is the difference between resonance and resonant frequency?

resonance is the behavior of resonant frequency while resonant frequency is the cause of it. There are basically two types of resonance; Electrical and Magnetic. Resonant frequency is that particular frequency for a system for which the system performs its best. while the system at that particular situation can be called the system at resonance


What does resonant frequency mean?

Resonant frequency is the natural frequency at which an object vibrates most efficiently when disturbed. It is the frequency at which an object naturally oscillates without any external force. For example, pushing a swing at its resonant frequency will cause it to swing higher with minimal effort.