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When testing a PDH service, a common practice is to have a loopback at the far end. This can be accomplished by a hard loop connecting transmitting ports to receiving ports, or by sending a loop code in the data stream (see Figure 7.22). This will bring the transmitted pattern back to the tester, where a BERT (Bit Error Rate Test) can be performed. There are two ways to send loop codes in the T1 network, in-band or out-of-band. The in-band loop codes are transmitted over the 1.536 Mbps of customer data and cause the whole pipe to be looped back for BERT testing. SF circuits can use only inband loop codes; ESF circuits can use out-of-band loop codes as well. With out-ofband loop codes it is possible to loop either the data and framing, or loop the data only and recalculate the framing and CRC. This technique can be used to determine if the CSU is causing a framing problem. Although out-of-band loop codes will initiate a loop up/down more quickly, the main advantage is shown in Figure 7.23. By using the out-of-band line loopback, which loops data and overhead, CRC errors on the transmit side will be looped back to the tester. Switching to the payload loopback will cause the CRC to be recalculated,
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Everything is the same as in Prob. 5-4, except now the temperature is 310 K instead of 295 K. The three terms of the partition function are e
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} // Assign coordinates. void three_d::assign(int mx, int my, int mz) { x = mx; y = my; z = mz; } int main() { three_d a, b, c; a.assign(1, 2, 3); b.assign(10, 10, 10);;; c = a+b; // now add a and b together; c = a+b+c; // add a, b and c together; c = b = a;;; // demonstrate multiple assignment
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The Duplicate command creates a precise and orderly series of copies of a selected object (or group of objects) through the use of Offset values. To apply this command to a selected object, choose Edit | Duplicate or press CTRL+D. There are two locations where you can specify the Offset values in CorelDRAW, and one is the simple way: with no objects selected, the Offset fields can be seen toward the right on the Property Bar (labeled in the following illustration). The other place you can set Offset values is in Tools | Options, then Document | General, Duplicate Offset. By default, duplicates are placed 0.25 inch above and to the right of the selected original. Both vertical and horizontal offsets can be set between 600 and 600 inches (in increments of 0.05 inch). Negative values place duplicates below and to the left of your original; positive Offset values put duplicates up and to the right of the original.
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// Open a file using StreamWriter. using System; using System.IO; class KtoD { static void Main() { string str; StreamWriter fstr_out; try { fstr_out = new StreamWriter("test.txt"); } catch(IOException exc) { Console.WriteLine(exc.Message); return ; }
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A new object of type T is created and a reference to it is assigned to obj. This statement is valid only because the new( ) constraint ensures that a constructor will be available. To prove this, try removing the new( ) constraint and then attempt to recompile the program. As you will see, an error will be reported. In Main( ), an object of type Test is instantiated, as shown here:
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Multi-session reading and writing is covered in Orange Book, but the means of execution is not speci ed in detail. Because of this, the original implementations varied depending on each manufacturer s interpretation. Incremental write operations are subject to control by the CD recorder's feature set, by driver software, and by the premastering application. Some applications are more lenient than others in regard to interruptions of a write operation. Most current implementations have turned to packet writing as a technique for recording smaller quantities of data at a time and for being able to bridge interruptions in the data ow without ruining the media. There are still variations from manufacturer to manufacturer as to how this process is carried out, and most companies include a software driver that is used as a bridge between the computer operating system and the packet-written data on disc. For example, Adaptec s DirectCD program is an example of a tool that supports seamless reading and writing of data on rewritable and recordable discs. For packet writing to be supported, the CD recorder must be equipped with hardware that is compatible with this process. A rmware upgrade cannot be accomplished for a CD recorder that lacks the appropriate hardware components to make it capable of packet writing. When using packet writing, data is written to disc in small increments predictably called packets that can be as small as a single le. Unless using conventional multisession write operations that require as much as 23MB of overhead for creating a single session, packet writing makes more ef cient use of the disc storage space, adding minimal information to the disc to support le storage and retrieval. Packet writing opens up recordable-CD applications to many mainstream uses, such as simple le storage and distribution within organizations, or network backups that are performed by administrators. Depending on the package and the implementation, packet writing can be applied to both CD-R and CD-RW applications. Those applications that are designed for CD-RW typically use the UDF standard for the le system. CD-R implementations often employ ISO 9660, for more universal playback. All of the packet writing solutions require that a disc be formatted before use whether you are writing to CD-R or CD-RW media. The formatting
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Digital technology is an integral part of Ericsson s SMR and private radio systems (EDACS), but not as an all-or-nothing requirement. Its systems can migrate to all-digital configurations, as customer needs dictate. Ericsson s enhanced digital access communications system technology package employs standard trunked radio.
The automatic replication process is designed for drivers that frequently change in the environment. Automatic replication requires no user intervention to start the replication process, but it can cause longer IMA service start times as well as increased CPU and network traffic loads.
After this statement executes, the IsFactor delegate can be called to determine if one value is a factor of another. One other point: Notice that Func<int, int, bool> indicates the delegate type. This form of Func specifies two parameters of type int and a return type of bool. This is the form of Func that is compatible with the lambda expression used in the program because that expression requires two parameters. Other lambda expressions may require different forms of Func, based on the number of parameters they require. In general, the specific form of Func must match the requirements of the lambda expression.
#include <iostream> using namespace std; class three_d { int x, y, z; // 3-d coordinates public: three_d(int a, int b, int c) {x=a; y=b; z=c;} friend ostream &operator<<(ostream &stream, three_d obj); friend istream &operator>>(istream &stream, three_d &obj); } ; // Display X, Y, Z coordinates - inserter. ostream &operator<<(ostream &stream, three_d obj) { stream << obj.x << ", "; stream << obj.y << ", "; stream << obj.z << "\n"; return stream; // return the stream } // Get three dimensional values - extractor. istream &operator>>(istream &stream, three_d &obj) { cout << "Enter X Y Z values, separating each with a space: "; stream >> obj.x >> obj.y >> obj.z; return stream; } int main() { three_d a(1, 2, 3); cout << a; cin >> a; cout << a; return 0; }
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Figure 8-21 The Frame Relay label format
H.245 handles media streams through the use of logical channels. A logical channel is a unidirectional media path between two endpoints. Generally, in an IP environment, such a logical channel can be viewed as simply an IP address and port number supporting a particular type of media (such as G.729B-encoded voice). Each logical channel has a number that is specified by the sending entity. Logical channels are unidirectional, from sender to receiver. Therefore, in a two-party conversation, two logical channels exist. This separation allows one terminal to potentially send voice in one format and receive voice in another format. Though logical channels are unidirectional, a perusal of the H.245 recommendation will find mention of a bidirectional channel. Such an entity is still two logical channels, though they are associated with each other. To establish a media stream from one endpoint to another, the endpoint wanting to transmit information opens a logical channel. The endpoint does so by sending a message to the far end, indicating the logical channel num-
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