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Articles 22801 - 22830 of 25630

Full-Text Articles in Computer Engineering

Cs 241-01: Computer Science Ii, Mateen M. Rizki Jan 2006

Cs 241-01: Computer Science Ii, Mateen M. Rizki

Computer Science & Engineering Syllabi

No abstract provided.


Cs 701-01: Database Systems And Design, Kenneth Melendez Jan 2006

Cs 701-01: Database Systems And Design, Kenneth Melendez

Computer Science & Engineering Syllabi

No abstract provided.


Cs 765-01: Foundations Of Neurocomputation, Mateen M. Rizki Jan 2006

Cs 765-01: Foundations Of Neurocomputation, Mateen M. Rizki

Computer Science & Engineering Syllabi

This course is designed to help you develop a solid understanding of neural network algorithms and architectures. At the end of this course you should be able to read and critically evaluate most neural network papers published in major journals, (e.g. IEEE Transaction on Neural Networks, Neural Networks, and Neural Computation). In addition, you should be able to implement a broad range of network architectures and learning algorithms for a variety of applications.


Cs 317-01: Numerical Methods For Digital Computers - Ii, Ronald F. Taylor Jan 2006

Cs 317-01: Numerical Methods For Digital Computers - Ii, Ronald F. Taylor

Computer Science & Engineering Syllabi

Introduction to numerical methods used in the sciences. Methods for solving matrix eigenvalue problems, initial value and boundary value problem for ordinary differential equations (ODEs). Study of standard types of partial differential equations (PDEs) with applications. Solution techniques for systems of nonlinear equations. Discussion of courses of errors in numerical methods. Special topics and applications presented as schedule permits. 4 credit hours. Prerequisites: CS 316, MTH 233, 253, or 355. Programming course prerequisites: EGR 153 or CEG 220 or CS 241.


Cs 884-01: Advanced Topics In Programming Languages, Krishnaprasad Thirunarayan Jan 2006

Cs 884-01: Advanced Topics In Programming Languages, Krishnaprasad Thirunarayan

Computer Science & Engineering Syllabi

The primary focus of this course is the design and specification of the Object-Oriented language Java.


Cs 208-01: Computer Programming For Business I, Dennis Kellermeier Jan 2006

Cs 208-01: Computer Programming For Business I, Dennis Kellermeier

Computer Science & Engineering Syllabi

CS 208 is the first of a two quarter sequence in programming for business students. It is required for Management Information Science majors. The courses are designed to help students achieve a high degree of facility in intermediate level programming. This course assumes students have never written a program before.


Cs 400/600-01: Data Structures And Software Design, Michael L. Raymer Jan 2006

Cs 400/600-01: Data Structures And Software Design, Michael L. Raymer

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 411/611: Microprocessor-Based System Design, Jack Jean Jan 2006

Ceg 411/611: Microprocessor-Based System Design, Jack Jean

Computer Science & Engineering Syllabi

No abstract provided.


Cs 241-01: Introduction To Computer Science Ii, Praveen Kakumanu Jan 2006

Cs 241-01: Introduction To Computer Science Ii, Praveen Kakumanu

Computer Science & Engineering Syllabi

This course is the second in the three course sequence "Introduction to Computer Science" offered by the Computer Science department, WSU. It focuses on tools for building abstract data types (using structure and class concepts in C++) and Object-Oriented Programming. We also begin the study of data structures in this course.


Ceg 333: Introduction To Unix, Todd Rovito Jan 2006

Ceg 333: Introduction To Unix, Todd Rovito

Computer Science & Engineering Syllabi

Introduction to the use of UNIX and UNIX tools as a problem-solving environment. Emphasis on the shell, files and directories, editing files, user process management, compiling, and debugging. Prerequisite: CS 241.


Ceg 433/633-01: Operating Systems, Prabhaker Mateti Jan 2006

Ceg 433/633-01: Operating Systems, Prabhaker Mateti

Computer Science & Engineering Syllabi

The management of resources in multi-user computer systems. Emphasis is on problems of file-system design, process scheduling, memory allocation, protection, and tools needed for solutions. Course projects use the C/C++ language and include the design of portions of an operating system. 4 credit hours.


Ceg 402/602-01: Introduction To Computer Communication, Bin Wang Jan 2006

Ceg 402/602-01: Introduction To Computer Communication, Bin Wang

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 360/560-01: Digital System Design, Travis E. Doom Jan 2006

Ceg 360/560-01: Digital System Design, Travis E. Doom

Computer Science & Engineering Syllabi

Design of digital systems. Topics include flip-flops, registers, counters, programmable logic devices, memory devices, register-level design, and microcomputer system organization.


Ceg 411/611-01: Microprocessor-Based System Design, Jack Jean Jan 2006

Ceg 411/611-01: Microprocessor-Based System Design, Jack Jean

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 434/634-01: Concurrent Software Design, Natsuhiko Futamura Jan 2006

Ceg 434/634-01: Concurrent Software Design, Natsuhiko Futamura

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 435/635-01: Distributed Computing And Systems, Yong Pei Jan 2006

Ceg 435/635-01: Distributed Computing And Systems, Yong Pei

Computer Science & Engineering Syllabi

Study of process coordination, client-server computing, network and distributed operating systems, network and distributed file systems, concurrency control, recovery of distributed transactions, and fault-tolerant computing.


Ceg 725-01: Computer Vision Ii, Arthur A. Goshtasby Jan 2006

Ceg 725-01: Computer Vision Ii, Arthur A. Goshtasby

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 730-01: Distributed Computing Principles, Prabhaker Mateti Jan 2006

Ceg 730-01: Distributed Computing Principles, Prabhaker Mateti

Computer Science & Engineering Syllabi

Communicating sequential processes, clients and servers, remote procedure calls, stub generation, weak and strong semaphores, split-binary-semaphores, and distributed termination. Example languages: SR, Linda.


Ceg 750-01: Microprocessor, Jack Jean Jan 2006

Ceg 750-01: Microprocessor, Jack Jean

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 860-01: Object-Oriented Programming, Krishnaprasad Thirunarayan Jan 2006

Ceg 860-01: Object-Oriented Programming, Krishnaprasad Thirunarayan

Computer Science & Engineering Syllabi

This course motivates the need for object-oriented programming, and studies, in detail, object-oriented programming techniques, languages, and technology. The lectures will focus on the foundations of OOP, while the student presentations will focus on the applications and extensions of Object Technology.


Ceg 260-01: Digital Computer Hardware/Switching Circuits, Eric Maston Jan 2006

Ceg 260-01: Digital Computer Hardware/Switching Circuits, Eric Maston

Computer Science & Engineering Syllabi

We will discuss and cover basic digital, combinational and sequential logic systems. Labs will be used to gain valuable practical experience in implementing elementary circuits and logic designs.


Ceg 221-01: Advanced C Programming For Engineers, Robert Helt Jan 2006

Ceg 221-01: Advanced C Programming For Engineers, Robert Helt

Computer Science & Engineering Syllabi

This course introduces advanced constructs, algorithms, and data structures in the C programming language. Emphasis is on problem solving and techniques useful to engineers. Topics include functions, array, pointers, structures as well as sorting algorithms, linked lists, complex numbers, stacks, queues, hash tables, and binary trees. 4 credit hours. Prerequisite: CEG220 (Introduction to C Programming for Engineers).


Ceg 433/633-01: Operating Systems, Prabhaker Mateti Jan 2006

Ceg 433/633-01: Operating Systems, Prabhaker Mateti

Computer Science & Engineering Syllabi

The management of resources in multi-user computer systems. Emphasis is on problems of file-system design, process scheduling, memory allocation, protection, and tools needed for solutions. Course projects use the CIC++ language and include the design of portions of an operating system. 4 credit hours.


Ceg 477/677-01: Computer Graphics Ii, Thomas Wischgoll Jan 2006

Ceg 477/677-01: Computer Graphics Ii, Thomas Wischgoll

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 333-01: Introduction To Unix, Thomas Wischgoll Jan 2006

Ceg 333-01: Introduction To Unix, Thomas Wischgoll

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 498-01: Design Experience, Thomas C. Hartrum Jan 2006

Ceg 498-01: Design Experience, Thomas C. Hartrum

Computer Science & Engineering Syllabi

CEG 498 (Design Experience) is a summative computer engineering design project course that builds upon previous engineering, science, mathematics and c01mnunications course work. CEG 498 projects are a minimum of two quarters in length and must be completed in groups of at least three students. Projects are selected under the guidance of the course instructor and are tailored to both student interest and formal classroom preparation. Students are evaluated both on their individual contributions as recorded in a graded engineering journals and on the quality of their collective efforts as reflected in group generated products.


Cs 340-01: Programming Language Workshop In C#, Krishnaprasad Thirunarayan Jan 2006

Cs 340-01: Programming Language Workshop In C#, Krishnaprasad Thirunarayan

Computer Science & Engineering Syllabi

This course is designed as a self-study in C#. You are expected to learn the language and solve a set of programming problems assigned to you using MS Visual Studio.Net. There are no exams. We officially meet only once in the quarter. However, I will be available in the posted office hours for clarifications and discussions about the programming problems.


Ceg 460/660-01: Introduction To Software Computer Engineering, Robert J. Weber Jan 2006

Ceg 460/660-01: Introduction To Software Computer Engineering, Robert J. Weber

Computer Science & Engineering Syllabi

This course is concerned with the techniques of designing and constructing large programs. Some of the required basic concepts necessarily have to be developed using small programs as examples. To this extent, we also study programming-in-the-small. The overall objectives are to present an overview of issues in the development of software, to discuss terminology, to illustrate via example case studies, and to give sufficiently detailed advice on how to develop quality software. Hands-on experience is emphasized through the use of homework and a class project.


Ceg 468/668: Managing The Software Development Process, John A. Reisner Jan 2006

Ceg 468/668: Managing The Software Development Process, John A. Reisner

Computer Science & Engineering Syllabi

No abstract provided.


Ceg 416-01: Matrix Computations, Bin Wang Jan 2006

Ceg 416-01: Matrix Computations, Bin Wang

Computer Science & Engineering Syllabi

This course is a survey of numerical methods in linear algebra for application to problems in engineering and the sciences. Emphasis is on using modern software tools on high performance computing systems. This course covers the mathematics of linear equations, eigenvalue problems, singular value decomposition, and least squares. Material covered will be relevant to applications areas such as structural analysis, heat transfer, neural networks, mechanical vibrations, and image processing in biomedical engineering. A student should familiarize himself/herself with MATLAB. A basic knowledge of matrix algebra is required.