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The electrical engineering HandbookSN09

The electrical engineering HandbookSN09

The electrical engineering HandbookSN09

... notknow the important aspects of the design which require the knowledge of electrical engineering, the architecturemay not be good. Given that the implementation of the architecture has to serve ... which the integrated circuitsare made. One also has to deal with the devices and device physics to make the most efficient transistors ofwhich computing sytems are built. The knowledge of electrical ... system issimilar to building a house — at the very beginning one cannot be bothered with all the details involved in the process, such as plumbing and electrical wiring. Similarly a process of...
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The electrical engineering handbook CH107

The electrical engineering handbook CH107

... coefficients in the same manner as the coefficient of utilization. The room position multiplier is a function of the room cavityratio and of the location in the room of the point where the illumination ... both.b.Reduce the area of high luminance causing the glare condition.c.Increase the angle between the glare source and the line of vision.d.Increase the luminance of the area surrounding the glare ... Ratios .The ability to see details depends on the contrast between the detail andits background. The greater the contrast difference in luminance, the more readily the seeing task is performed.The...
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The electrical engineering handbook CH051

The electrical engineering handbook CH051

... tensile stress in the x-direction, for example, will strain the lattice in the xy-planeand destroy the three-fold symmetry, thereby lifting the degeneracy of the energy minima. However, the four-fold ... LLCAccording to the deformation potential theory, the strain will shift the energy of all the states in a given bandextremum by the same amount, i.e., the valley moves along the energy scale ... perpendicular to the valley. For an applied E field parallel to the stress, the conductivity will increase (i.e., the resistivity decreases) relative to the unstressed state because of the increase in the...
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The electrical engineering handbook CH052

The electrical engineering handbook CH052

... (52.7) can be solved for g ( k ), then expressions can be obtained for both the E H and the magnetoresistance (the electrical resistance in the presence of a magnetic field). Solutions ... characterization of the latter. Some authors choose to discuss the Hall effectin terms of the Hall angle, f , shown in Fig. 52.1, which is the angle between the net electric field and the imposed ... the study of the nature of electrically conducting materials, the Hall effect has a number of direct practical applications. For example, the sensor in some commercialdevices for measuring the...
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The electrical engineering handbook CH053

The electrical engineering handbook CH053

... superconductor. The correlations of the electrons in the superconductor must lower the overall energy of the system or else the material would not be superconducting in the first place. Because the critical ... ␰ from the boundary, the energy of the materialis lowered (because it is superconducting), and more than a distance ␭ from the boundary the energy of the material is raised (to shield the applied ... side of the expression is the power flowing into the region. By taking the time derivative of the energy density and appealing to Faraday’s and Ampère’s laws to find the time derivatives of the field...
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The electrical engineering handbook CH054

The electrical engineering handbook CH054

... G T is the thermal conductance from the element to the environment, t T is the thermal time constant of the element, t E is the electrical time constant of the element, ... element, R G is the electrical resistance across the element, h is the emissivity of the element for the radiation being detected, and A is the sensitive area of the element.It is ... is the dielectric loss tangent of the detectormaterial, C E is the electrical capacitance of the element, and C A is the input capacitance of the detector elementamplifier.The...
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The electrical engineering handbook CH055

The electrical engineering handbook CH055

... assumednot to disturb the trapped charge; the received electrical signal is then correlated with the acoustical wave todetermine the profile of the trapped charge. Errors in the measurement would ... times at stresses in the vicinity of the operating stress should yield the value of the effective service life under the operating stress. The slope of the line determines the exponent n, which ... assumes the form [Watson, 1995](55.14)where n(E) is the trap density and n is the attempt jump frequency of the electrons. The electron currentdisplays the usual t–1 dependence and the plot...
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The electrical engineering handbook CH056

The electrical engineering handbook CH056

... employed. The mercury thermometerwas mentioned in the Introduction as a nonelectrical sensor. The most commonly used electrical temperaturesensors are thermocouples, thermistors, and resistance thermometers. ... temperature.As the electrons in the metal gain thermal energy, they move about more rapidly and undergo more frequentcollisions with each other and the atomic nuclei. These scattering events reduce the ... of the wire to a cantilever beam, with one end of the wire at the attachedbeam end and the other at the free end. The cantilever beam free end moves in response to an applied force,such as the...
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The electrical engineering handbook CH057

The electrical engineering handbook CH057

... data, the same thermal process can be applied while reversing the direction of the bias magnetic field.To read the stored information optically, the Kerr effect is used to detect the presence of these ... another 45 degrees through the Faraday material, and,because its polarization is now 90 degrees from the incident beam, is deflected by the first calcite prism. The four ports of the circulator then ... light waves. The superposition of these two waves produces a linearlypolarized wave. The plane of polarization of the resultant wave rotates as one circular wave overtakes the other. The rate of...
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