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The relation between radians and degrees is 2 nrad = 360'. Fig. 1-2
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The robot s pushing force is a function of the robot s wheel diameters and the output torque on the wheel, and the coefficient of friction between wheels and floor. By definition, torque is equal to the force applied to some object multiplied by the distance between where the force is applied and the center of rotation. In the case of a gear, the torque is equal to the force being applied to the gear teeth multiplied by the radius of the gear. Equation 9 shows this relationship, where T is the torque, F is the applied force, and r is the distance from the center of rotation and
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The network number uniquely identifies a segment in the network and a host number uniquely identifies a device on a segment. The combination of these two numbers must be unique throughout the entire network. TCP/IP uses the same two components for addressing, but it adds a twist by breaking up network numbers into five classes: A, B, C, D, and E. Each of these classes has a predefined network and host boundary:
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Integrals involving the other trigonometric functions can also be handled with suitable trigonometric identities. We illustrate the idea with some examples that are handled with the identity tan x + 1 = generate code 39 barcode
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2This refers to using holographic laser technology to store data, not to three-dimensional holographic video.
Figure 3-5
associated with the main erbium-doped fiber amplifier (EDFA) band. Shortly thereafter a second EDFA band was used, making it possible to derive an additional 80 channels in the 1570- to 1610-nm band, thus doubling the capacity to 160 channels. This band is referred to as the L band, and the use of erbium-doped amplifiers in this band is referred to as L-band EDFA. Although the idea behind L-band EDFA dates to the early 1990s, the fraction of erbium ions that can be excited in the C band, referred to as ion inversion, is between 70 and 80 percent, while its use in the L band provides an inversion of approximately 40 percent. This results in L-band amplification approximately 20 percent that of a C-band EDFA, requiring more amplifiers to be inserted at an additional cost when the L band is used. Not quite content with 160 channels, Lucent Technologies as well as other vendors, according to trade press reports, were on the verge of introducing systems that could support over 1000 distinct wavelengths for transmission over a single fiber when this book was written. However it was not stated what band would be used or the gain that could be , expected through the use of EDFAs. While EDFA was found suitable for amplification of signals up to 10 Gbits/s, as vendors experimented in extending data transmission rates to 40 Gbits/s, it became clear that system noise was a major limitation associated with developing very-high-speed optical networks. At 40 Gbits/s a maximum transmission distance of approximately 40 km was obtainable prior to requiring signal regeneration. Because the existing long-haul infrastructure of most communications carriers includes huts where power supplies and electronics were previously installed to support optical amplification, from an economic perspective it is important to be able to use the existing infrastructure. To accomplish this requires a new method of amplification at a rate of 40 Gbits/s. That method of amplification is referred to as Raman amplification. RAMAN AMPLIFICATION A Raman amplifier is based on a phenomenon referred to as the Raman effect in optical fibers. The Raman effect occurs when a large continuous-wave laser signal is colaunched at a lower wavelength than the signal to be amplified, resulting in a gain whose value is dependent primarily on the strength of the laser pump and the frequency offset between the pump and the signal. When the pump photon gives up its energy to create a new photon,
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int quot; int rem; /* the quotient */ /* the remainder */
1. Calculate the densities for each of the blocks and then the average density for all three
// Use lock to synchronize access to an object. using System; using System.Threading; class SumArray { int sum; object lockOn = new object(); // a private object to lock on public int SumIt(int[] nums) { lock(lockOn) { // lock the entire method sum = 0; // reset sum for(int i=0; i < nums.Length; i++) { sum += nums[i]; Console.WriteLine("Running total for " + Thread.CurrentThread.Name + " is " + sum); Thread.Sleep(10); // allow task-switch } return sum; } } } class MyThread { public Thread Thrd; int[] a; int answer; // Create one SumArray object for all instances of MyThread.
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