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Theory behind deconvolution of recorded sound to reproduce an input.

There are many characteristics of a room that determine the impulse response of a room. The physical dimensions of the room and the wall surfaces are crucialin predicting how sound reacts. Using basic properties of geometry, we can predict the paths that sound waves will travel on, even as they bounce offwalls. The walls themselves have certain reflection coefficients that describe the power of the reflected signal with respect to the signal in contact withthe wall. So it appears that with the dimensions of the room and the reflection coefficients of the walls in the room it is possible to generate animpulse response for that room. Using a simple tape measure we recorded the height, width, and length of Duncan 1075 and a Will Rice dorm room, and used aMATLAB program called Room Impulse Response to find the approximate impulse response of these two rooms. We decided to take two samples in each room, leaving us with four theoretical impulse responses.

Theoretical impulse in duncan - left

Theoretical impulse in duncan - right

Theoretical impulse in will rice - left

Theoretical impulse in will rice - right

Clearly these will not be incredibly accurate, as they assume a completely rectangular, and empty, room. Neither of these rooms were completelyrectangular, and they were also not empty. However, this gives us a good approximation of the impulse response. The signals decay significantly as time increases, which is expected.When we record the actual response using an approximate impulse, this data will help determine if we have anaccurate measurement.

Once we have the impulse response of each room, we must find an appropriate signal to deconvolve. We chose a piano tune, as a piece of music should have amore simple frequency response than speech. After recording the impulse response and the input, we theoretically have enough data to reconstruct thesignal using deconvolution. The recorded output is the convolution of the input with the system. y t = x t * h t y t x t h t The recorded output has a frequency spectrum defined by Y jw = X jw H jw y t x t h t Using simple algebra, we can solve for the input frequency coefficients: X jw = Y jw / H jw y t x t h t We have H(jw), the impulse response, andY(jw), the FFT of the recorded signal. Thus we can find X(jw), the frequency spectrum of the input signal, and by taking the inverse FFT we are leftwith the input signal x(t).

Questions & Answers

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studies of microbes
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they make spores
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the significance of food webs for disease transmission
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Assimilatory nitrate reduction is a process that occurs in some microorganisms, such as bacteria and archaea, in which nitrate (NO3-) is reduced to nitrite (NO2-), and then further reduced to ammonia (NH3).
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Examples of thermophilic organisms
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Give Examples of thermophilic organisms
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Prevent foreign microbes to the host
Abubakar
they provide healthier benefits to their hosts
ayesha
They are friends to host only when Host immune system is strong and become enemies when the host immune system is weakened . very bad relationship!
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cell is the smallest unit of life
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ok
Innocent
cell is the structural and functional unit of life
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is the fundamental units of Life
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There are nothing like emergency disease but there are some common medical emergency which can occur simultaneously like Bleeding,heart attack,Breathing difficulties,severe pain heart stock.Hope you will get my point .Have a nice day ❣️
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Many sites of the body have it Skin Nasal cavity Oral cavity Gastro intestinal tract
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skin
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part of a tissue or an organ being wounded or bruised.
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Binomial nomenclature
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Source:  OpenStax, Elec 301 projects fall 2005. OpenStax CNX. Sep 25, 2007 Download for free at http://cnx.org/content/col10380/1.3
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