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This module serves as an introduction to working in the frequency domain and thinking of signals in terms of their spectral components. The Fourier transformcan be used to represent any signal in terms of frequency instead of time and facilitates the computation of the transfer function of a system.

In developing ways of analyzing linear circuits, we invented the impedance method because it made solvingcircuits easier. Along the way, we developed the notion of a circuit's frequency response or transfer function. This notion,which also applies to all linear, time-invariant systems, describes how the circuit responds to a sinusoidal input when weexpress it in terms of a complex exponential. We also learned the Superposition Principle for linear systems: The system'soutput to an input consisting of a sum of two signals is the sum of the system's outputs to each individual component.

The study of the frequency domain combines these two notions--a system's sinusoidal response is easy to find anda linear system's output to a sum of inputs is the sum of the individual outputs--to develop the crucial idea of a signal's spectrum . We begin by finding that those signals that can be represented as a sum of sinusoids is very large. Infact, all signals can be expressed as a superposition of sinusoids .

As this story unfolds, we'll see that information systems rely heavily on spectral ideas. For example, radio,television, and cellular telephones transmit over different portions of the spectrum. In fact, spectrum is so important thatcommunications systems are regulated as to which portions of the spectrum they can use by the Federal Communications Commissionin the United States and by International Treaty for the world (see Frequency Allocations ). Calculating the spectrum is easy: The Fourier transform defines how we can find a signal's spectrum.

Questions & Answers

Discuss the differences between taste and flavor, including how other sensory inputs contribute to our  perception of flavor.
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While taste primarily relies on our taste buds, flavor involves a complex interplay between taste and aroma
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to drain extracellular fluid all over the body.
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The lymphatic system plays several crucial roles in the human body, functioning as a key component of the immune system and contributing to the maintenance of fluid balance. Its main functions include: 1. Immune Response: The lymphatic system produces and transports lymphocytes, which are a type of
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Anatomy is the identification and description of the structures of living things
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Anatomy is the study of the structure of the body, while physiology is the study of the function of the body. Anatomy looks at the body's organs and systems, while physiology looks at how those organs and systems work together to keep the body functioning.
AI-Robot
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Enzymes are proteins that help speed up chemical reactions in our bodies. Enzymes are essential for digestion, liver function and much more. Too much or too little of a certain enzyme can cause health problems
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it is because of the enzyme that the stomach produce that help the stomach from the damaging effect of HCL
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function of digestive
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37 degrees selcius
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37°c
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36.5
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37°c
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the normal temperature is 37°c or 98.6 °Fahrenheit is important for maintaining the homeostasis in the body the body regular this temperature through the process called thermoregulation which involves brain skin muscle and other organ working together to maintain stable internal temperature
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anaemia is the decrease in RBC count hemoglobin count and PVC count
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acid
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anatomy of the female external genitalia
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Organ Systems Of The Human Body (Continued) Organ Systems Of The Human Body (Continued)
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Source:  OpenStax, Fundamentals of electrical engineering i. OpenStax CNX. Aug 06, 2008 Download for free at http://legacy.cnx.org/content/col10040/1.9
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