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|  | | Computer Networks Super Review Taking a conceptual approach, it describes:
Telecommunications (T1 hierarchy and encoding, QAM modems, DSL, ADSL, twisted pair standards, coaxial cable, fiber optic technology and encoding, SONET protocol), network architecture (comparison of OSI model and TCP/IP suite, peer-to-peer communication, Berkeley (BSD), client server model, sockets, system calls, network topology), wide area networks (ATM, Frame Relay, FDDI, ISDN), local area networks (cyclic redundancy check, HDLC, Ethernet, gigabit Ethernet, token ring), and the Internet (TCP/IP, RIP,OSPF, IDRP, PPP, RTP, address masks, interface layer, SNMP, ASN.1).
| |  | | Essentials of Computer Science I Although this books culminates in the fundamentals of how to design a computer, including the central processing unit (CPU), the control unit of the CPU, the RAM, the computer's machine and assembly language, and its operating system, incredibly no knowledge beyond basic arithmetic is required.
It takes the reader from the electron level, through how to use state diagrams to systematically design computer components, and all the way to the design of the core operating system (kernel).
Topics include conversion between binary, octal, decimal, hexadecimal number systems, how transistors and semiconductors work, detailed presentation of Boolean algebra and Karnaugh maps, design of logic circuits: decoders, multiplexers, adders, flip-flops (RS, JK, T, & D), memory cells, memory design, and bus design. Also covered are clock synchronization, computer architecture, and use of s | |  | | Essentials of Computer Science II Although this books culminates in the fundamentals of how to design a computer, including the central processing unit (CPU), the control unit of the CPU, the RAM, the computer's machine and assembly language, and its operating system, incredibly no knowledge beyond basic arithmetic is required.
It takes the reader from the electron level, through to how to use state diagrams to systematically design computer components, all the way to the design of the core operating system (kernel).
Topics include the design of the CPU and its control unit, the design of the CPU's assembly language, data structures (stack, queue, and binary tree), and the kernel. Also, Polish notation, binary search, software engineering, programming techniques, data representation (ASCII), and high level languages are covered. The section comparing three object oriented languages: Visual Basic, C++, and | |  | | Java Super Review This book covers the essentials of Java:
The fundamentals (names, variables, integer and floating point data types, Boolean data types, arrays, operators, control structures).
Object-oriented programming concepts
(classes, interfaces, overloading and overriding of variables and methods, constructors, packages, import statements, static nested classes, local and anonymous inner classes, qualified names).
The fine points of Java
(exception handling, input/output streams, threads).
The Java Class Libraries (java.lang, java.thread, java.awt, java.awt.event, java.io, java.net).
Java applets (HTTP, HTML, animation) and application programs.
And advanced topics (custom components, Java Beans, Java Swing).
Table of Contents1 INTRODUCTION2 FUNDAMENTALS OF THE JAVA LANGUAGE2.1 Java Tokens2.1.1 Identifiers2.1.2 Keywords2.1.3 Operators2.1.4 Separators2.1.5 Literals2.1.6 Comments2.2 Data Types2.2.1 Variable Declarations2.2.2 Scope of a Local Variable Identifier2.2.3 Arrays2.3 Evaluating Expressions2.3.1 Type Conversion2.4 Control Statements2.4.1 Conditional Statements2.4.2 Looping Statements2.5 A Simple Application Program3 OBJECT-ORIENTED PROGRAMMING3.1 Classes3.1.1 Class Declarations3.1.2 Class Variables3.2 Methods3.2.1 Overloading and Overriding of Methods3.2.2 Constuctors3.2.3 Polymorphism3.3 The |
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