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G.SH Al-Balqa’ Applied University Curriculum for the Bachelor Degree in Communication and Software Engineering The curriculum for the B.S.c. degree in Communication and Software Engineering (160 ) credit hours are distributed as follows:- Credit Hours Requirements No. 21 6 University Requirements Compulsory Elective 1 27 Faculty Requirements 2 88 6 Specialization Requirements Compulsory Elective 3 Supportive Specialization Requirements 4 160 Total

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Al-Balqa’ Applied University

Curriculum for the Bachelor Degree in ��� Communication and Software Engineering

The curriculum for the B.S.c. degree in Communication and Software Engineering (160 ) credit hours are distributed as follows:-

Credit Hours�Requirements�No.�

21

6�

University Requirements

• Compulsory

• Elective�

1�

27�Faculty Requirements 2�

88

6�

Specialization Requirements

• Compulsory

• Elective�

3�

����Supportive Specialization Requirements 4�

160 Total

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Curriculum for the Bachelor Degree in Communication and Software Engineering�

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First : University Requirement (27 Cr .H.)

A: Compulsory Requirements (21 Cr.H.):

Prerequisite�Weekly Hours�Cr.H.�Course Title�Course No.� Lab.�Lecture�--�--�3�3�Arabic (1)�35003101�

35003101�--�3�3�Arabic (2)�35003102�--�--�3�3�English (1)�35004101�

35004101�--�3�3 English (2) 35004102 --�6�--�3 Computer Skills (1) 35005101 ���--�3�3 Military Sciences 35001101

�--�3�3 National Education 35002100

B: Elective University Requirements : (6 Cr.H.) The student is allowed to select (6 Cr.H.) from the university elective courses offered by faculties

other than the faculty of college.

Course No.�� Course Title� Cr.H��

36001101� � Communication skills 3 36002102� Introduction to Psychology� 3�36003103� Jordanian Society� 3�36004104� Sport for All� 3�36005105� Islamic Culture� 3�36006106� � Administration and Economic Concepts� � 3� �36007107� � Agriculture in Jordan� � 3� �36008108� � Environment and Society� � 3� �36012109� The Orthodox Caliphs History� 3�

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Second: Faculty Requirements: (27 Cr .H.)

Course No. Course Title Cr.H. Weekly Hours Prerequisite Lecture Lab. 30202101 Calculus 1 3 3 - - 30202102 Calculus 2 3 3 - 30202101 30201101 Physics 1 3 3 - - 30201111 Physics Lab. 1 1 - 3 30201101* 30201102 Physics 2 3 3 - 30201101 30201112 Physics Lab. 2 1 - 3 30201102* 30206101 General Chemistry 1 3 3 30129101 Engineering Workshops 1 - 3 - 30129203 Engineering Drawing 2 6 35005101 30206111 General Chemistry lab 1 - 3 30206101* 30129201 Static 3 3 - 30202102,

30201101 30801101 Computer Skills 2 3 2 3 35005101

* Prerequisite or Co-requisite�

Third: Specialization Requirements: (94 Cr. H.)��

A- Compulsory Requirements (88 Cr. H.)

Prerequisite Weekly Hours Cr.H. Course Title Course No. Lab. Lecture 30201102 30107251* - 3 3 Electrical Circuits (1) 30163210

30163210 - 3 3 Electrical Circuits (2) 30163211 30163211 3 - 1 Electrical Circuits Lab 30163212 30163210 - 3 3 Electronics (1) 30163220 30163220 3 - 1 Electronics lab (1) 30163221 30163220* - 3 3 Digital Logic Design 30163260 30163260 3 � 1 Digital Logic Design lab. 30163261 30801101 - 3 3 Data structure 30163262 30163350 - 3 3 Probability & Random Variables 30163300 30163220 - 3 3 Electronics (2) 30163320 30163320 3 - 1 Electronics lab (2) 30163321 30107250 30163210 - 3 3 Electromagnetic 30163330

30163350 - 3 3 Automatic control 30163340 30107250 30163210* - 3 3 Signal Analysis & Processing 30163350

30163260 - 3 3 Computer Organization and Microprocessor Systems 30163360

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Prerequisite Weekly Hours Cr.H. Course Title Course No. Lab. Lecture 30163360 3 - 1 Microprocessor Systems Lab. 30163361

30163340* 6 - 2 Programming in Electrical Engineering 30163362

30163320 30163260 - 3 3 Digital Electronics 30163420

30163420 3 - 1 Digital Electronics Lab 30163421 30163420 30163470 - 3 3 Communication Circuits 30163422

30163360 - 3 3 Computer Architecture 30163460 30163262 - 3 3 Operating Systems 30163461 30163262 - 3 3 Software Engineering 30163462 30163460 30163461 - 3 3 Microcontrollers and Embedded

Systems 30163463

30163300 - 3 3 Analogue Communications 30163470 30163470 3 - 1 Analogue Communications lab 30163471 30163470 - 3 3 Digital Communications 30163472 30163472 3 - 1 Digital Communications lab 30163473 30163472* - 3 3 Digital Signal Processing 30163550 30163472* - 3 3 Computer Networks 30163560 30163330 30163470 - 3 3 Communication Transmission

Systems 30163570

100 Cr. H.** - - 6 Practical Training 30163590 120 Cr. H. - - 3 Project 1 30163591 30163591 - - 3 Project 2 30163592

* Synchronous ** Each (3) credit hours is equivalent to (140) training Hours.

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Curriculum for the Bachelor Degree in Communication and Software Engineering�

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B: Elective Specialization requirements: (6 Cr.H.) to be selected from the following list:

Prerequisite Weekly Hours Cr.H. Course Title Course No. Lab. Lecture 30163472, 30163550 - 3 3 Digital Image Processing 30163551

30163330, 30163472 - 3 3 Wave Propagation 30163571

30163472, 30163330 - 3 3 Mobile Communications 30163572

30163472* - 3 3 Optical Communications 30163573 30163330, 30163470 - 3 3 Radar Engineering 30163574

Dpt. Approval - 3 3 Special Topics 30163580 *Synchronous

Fourth: Supportive Specialization Requirements: (12 Cr .H.)

Prerequisite Weekly Hours Cr.H. Course Title Course No. Lab. Lecture 30202102 - 3 3 Linear Algebra 30107250 30202102 - 3 3 Differential Equations 30107251 30202102, 30801101*

- 3 3 Numerical Analysis 30129252 30202102 - 3 3 Intermediary Analysis 30107253

*Synchronous

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Curriculum for the Bachelor Degree in Communication and Software Engineering�

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First Year Second Semester��First Semester

Cr.H Course Title Course No. Cr.H Course Title Course No. 3 Arabic Language(2) 35003102 3 Arabic Language (1) 35003101 3 English Language (2) 35004102 3 English Language (1) 35004101 3 General Physics (2) 30202102 3 General Physics (1) 30201101 3 Computer Skills (2) 30801101 3 Computer Skills (1) 35005101 3 Calculus (2) 30202102 3 Calculus (1) 30202101 1 General Physics Lab. (1) 30201111 3 General Chemistry (1) 30206101 1 General Chemistry Lab (1) 30206111

17 Total 18 Total ��

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Second Year Second Semester First Semester

Cr.H Course Title Course No. Cr.H Course Title Course No. 3 Linear Algebra 30107250 3 Intermediary Analysis 30107253 3 Electrical Circuits (2) 30163211 3 Statics 301292201 3 Electronics (1) 30163220 3 Differential Equations 30107251 3 Digital Logic Design 30163260 3 Electrical Circuits (1) 30163210 3 University Elective 1 3 Data Structure 30163262 2 Engineering Drawing 30129203 1 General Physics Lab. (2) 30201112 17 Total 16 Total

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Third Year Second Semester First Semester

Cr.H Course Title Course No. Cr.H Course Title Course No. 3 Military Sciences 35001101 3 Numerical Analysis 30129252 3 National Upbringing 35002101 1 Electrical Circuits Lab 30163212 3 Probability & Random Variables 30163300 1 Electronics Lab (1) 30163221 1 Electronics Lab (2) 30163321 1 Digital Logic Design Lab 30163261 3 Automatic Control 30163340 3 Electronics (2) 30163320 1 Microprocessor Systems Lab. 30163361 3 Electromagnetic 30163330

2 Programming in Electrical Engineering 30163362 3 Signal Analysis &

Processing 30163350

3 Computer Organization and Microprocessor Systems 30163360

16 Total 18 Total ��

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Fourth Year Second Semester First Semester

Cr.H Course Title Course No. Cr.H Course Title Course No. 1 Engineering Workshop 30129101 3 Digital Electronics 30163420 1 Digital Electronics Lab. 30163421 3 Computer Architecture 30163460 3 Communication Circuits 30163422 3 Operating Systems 30163461

3 Microcontrollers and Embedded Systems 30163463 3 Software Engineering 30163462

1 Analogue Communications Lab 30163471 3 Analogue Communications 30163470 3 Digital Communications 30163472 3 Department Elective 1

15 Total 15 Total

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Fifth Year Second Semester First Semester

Cr.H Course Title Course No. Cr.H Course Title Course No. 3 Project 2 30163592 1 Digital Communications Lab 30163473 3 Department Elective 2 3 Digital Signal Processing 30163550 6 Practical Training 30163590 3 Computer Networks 30163560

3 Communication Transmission Systems 30163570

3 Project 1 30163591 3 University Elective 2

12 Total 16 Total

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Course Description

35003101 Arabic Language 1 3(3-0) This course contains a set of linguistic skills in different levels such as the sounds of the Arabic language, its morphology, syntax, rhetoric, lexicography and writing. It includes as well as on applications on the use of Arabic dictionaries and applications on some writing skills indispensable for scholars in their working lives. It also contains a refined set of Quranic, poetry and short stories of Arabic texts to give the learners the opportunity to be in contact with and to appreciate these texts.�

Pre-req. Arabic 99 or passing Arabic Level Exam 35003102 Arabic Language 2 3(3-0) This course aims to develop student's skills in writing and expression and to provide him with the necessary and basic ones in order to employ them in his daily use, and enable him to stand on the origins of various Arabic scripts, and access to various forms of technical and functional old and new writing.

Pre-req. 35003101 35004101 English 1 3(3-0) Is a complete graded course for foreign learners of English; it covers the skills of listening, speaking, reading, and writing; as well as improving pronunciation and building vocabulary; particular emphasis is placed on listening and speaking; the language of the course is British English.

Pre-req. English 99 or passing English Level Exam 35004102 English 2 3(3-0) Is a continuation of English I Course in terms of approach and methodology However, it covers a new range of interesting topics, and provides a more advanced grammar syllabus in a communicative context as well, therefore, this topic tends to be a continuation of ENGL 101 goals.

Pre-req. 35004101 35005101 Computer Skills 1 3(0-6) An introduction to computing and the broad field of information technology. Topics covered include the basic structure of digital computer systems; operating systems; application software; data communication and networks; and the Internet hands-on learning emphasizes windows (latest operating systems); MS-Office; and the Internet. 35001101 Military Science 3(3-0) This course aims at providing university students with general military culture and illustrating the overall military capabilities of the armed forces to defend the homeland and its role in development and service of the Jordanian society through lectures and field visits. 35002100 National Education 3(3-0) The course of National Education is one of the compulsory requirements of all students in Jordanian universities, national and private. The general intent is to provide students with the theoretical and practical knowledge of the homeland (Jordan), land and people, and to consolidate the love of the homeland and national brotherhood in them, to motivate them to serve the nation and the people consciously and sincerely, to be innovative and competitive by exhortations to achieve the desired progress in various fields of life. 30202101 Calculus 1 3(3-0) Review: functions, limits and continuity, the derivative integration, definite integral, indefinite integral, fundamental theorem of calculus, mean value theorem for integral area, volume of solid revolution, arc length, and surface area.

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Course Description

30202102 Calculus 2 3(3-0) Exponential, logarithmic, and inverse trigonometric functions hyperbolic functions, differentiations, integration, and limits of these function, principles of integral evaluation integration by parts, trigonometric substitution, partial fraction radical expression, infinite series, theorems in convergence and divergence, analytic geometry in calculus.(polar coordinate functions).

Pre-req. 30202101 30201101 Physics 1 3(3-0) Physics and measurements; vectors; motions in one dimension; motion in a plane; laws of motion; circular motion; Newton's laws and applications; work and energy; law of gravity; linear momentum and collisions; rotation of a rigid object about a fixed axis; rolling motion; angular momentum and torque. 30201102 Physics 2 3(3-0) Electric charge and Coulomb’s law; Electric fields and Gauss law; electric potential; potential energy, capacitors and dielectrics; DC and resistance; direct current circuits; magnetic fields; sources of magnetic field; Faraday’s law; inductance; alternating current circuits; electromagnetic waves.

Pre- req. 30201101 30201111 Physics Lab 1 1(0-3) Measurement and errors; vectors; rectilinear motion; projectile motion; Newton’s second law; friction; collisions; circular motion; rotational motion; simple harmonic motion.

Co-req. 30201101 30201112 Physics Lab 2 1(0-3) Electric field mapping; Ohm’s construction law; Wheatstone bridge; electric power; potentiometer; Kerchief's laws; charging and discharging circuits (R-C circuits); magnetic torque on a loop; Faraday’s laws of magnetic induction; resonance in R-L-C circuits.

Co-req. 30201102 30146210 Statics 3(3-0) Basic definitions and concepts Statics of particles; rigid bodies; equivalent systems of forces; centurions and centers of gravity; analysis of structures: frames, machines, and trusses; friction; moments of inertia; computer-aided statics.�

Pre-req. 30202102, 30201101 30801101 Computer Skills 2 3 (2-3) Computer programming languages and their implementation; including; writing flow charts, the basic C++ programming variable definitions, templates, branches, loops, functions, arrays, strings, pointers, files, introduction to object-oriented programming, applications.

Pre req. 35005101 30206101 Chemistry 1� 3 (3-0) Periodic table; atomic stricture and chemical bonds; electron configuration; chemical stoichiometry; Redo-system; chemical equilibrium; thermodynamic; chemical kinetics; electro-chemistry 30206111 Chemistry Lab 1� 1 (0-3) Basic concepts, atomic theory and periodic table. Chemical bonding and molecular structure. Chemical reactions in solutions, oxidation-reduction reactions, ideal gases, states of matter and intermolecular forces. Physical properties of solutions and colloids. Chemical equilibrium, solubility, molecular structure, types of chemical reactions. Thermodynamics principles and kinetics. Organic chemistry.

Co-req. 30206101

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Course Description

30129131 Engineering Workshops 1(0-3) Mechanical works including: hand filing, turning, welding, metal cutting, casting and molding, electrical circuits; elements of electrical circuits; open and closed circuits; AC/DC circuits; instruments and measurements. Carpentry works including: types of timber, timber works, equipment and tools. 30129231 Engineering Drawing 2(0-6) Use of instruments; lettering; graphic geometry; orthographic; isometric drawing and sketching; environmental applications; Introduction to AutoCAD, application of AutoCAD, commands, geometric entities. Geometric construction. Dimensioning, free –hand sketching, object representation, orthographic drawing and projections.

Pre-req. 35005101 30107253 Intermediary Analysis 3(3-0) Quadratic surfaces ,vectors, lines, planes, vector valued functions, function of several variables, partial differentiation. Multiple and triple integration, line integral, surface integral. Vector fields, Greens theorem, Gauss theorem, and Stokes theorem

Pre. Request: 30202102 30107251 Differential Equations 3(3-0) Classification of differential equations, methods of first order equations, orthogonal trajectories, linear homogeneous equations with constant coefficients, non-homogeneous equations, linear equations with variable coefficients, series solution, systems of linear ordinary differential equations, Cauchy-Euler equations, Laplace Transform, and partial differential equations.

Pre. Request: 30202102 30107250 Linear Algebra 3(3-0) Matrices, basic algebraic operations, reduced forms, rank and inverse solutions of systems of linear equations. Determinants and their properties. Vector spaces, subspaces, intersection and sum of subspaces, linear independence, spanning set, bases and dimension, line transformations and matrices of linear transformations, eigenvalues and eigenvectors.

Pre. Request: 30202102 30107252 Numerical Analysis 3(3-0) Calculate measuring errors and their reasons; solve non-linear equations in one variable. Sequences, series and power series, Students will learn approximation of functions by interpolation, numerical differentiation and integration, direct methods for solving non-linear equations and some numerical solutions of ordinary differential equations.

Pre. Request: 30202102, 30801101(synchronous) 30163210 Electrical Circuits (1) 3(3-0) Introduction. Current, Voltage, Resistance, Ohm’s low, Power and energy, Series, parallel and Series-Parallel resistive circuits, Current and Voltage Sources, Superposition, Thevenin’s, Norton’s theorems, Kerchov mesh current and node voltage methods. Capacitance and inductance, R-C and R-L-C circuits, frequency response, Complex numbers in reactive circuits, resonance and filters. Single-phase & three-phase circuits connections and analysis; two-port networks; troubleshooting in DC and AC circuits.

Pre. Request: 30201102, 30107251 (synchronous)

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Course Description

30163211 Electrical Circuits (2) 3(3-0) Single phase circuits analysis; three-phase circuits: connections and analysis; AC power and power factor; complex frequency; frequency response; parallel and series resonance; magnetically coupled circuits; two-port networks: impedance; admittance; and hybrid parameters; high and low-pass filters; troubleshooting in DC and AC circuits.

Pre. Request: 30163210 30163212 Electrical Circuits Lab. 1 1(0-3) DC circuits: Ohm’s law; KVL and KCL; network theorems; transient analysis of RL; RC; and RLC circuits; impedance concept and techniques; power and P.F; series and parallel resonance; three phase circuits; parameters of two-port networks; magnetically coupled circuits; filters; troubleshooting.

Pre. Request: 30163211 30163220 Electronics (1) 3(3-0) Properties of semiconductor materials; doping technique; p-n� junction; diode: forward and reverse biasing; VI static characteristics; small and large-signal models; junction capacitance and switching times; types and applications; bipolar junction transistors: construction; connections and biasing; applications; small signal models; ratings; and applications; field-effect transistors: construction types; VI characteristics; ratings; and applications.

Pre. Request: 30163210 30163221 Electronics Lab. (1) 1(0-3) Diode characteristics; rectification; regulation; clipping and clamping; BJT characteristic and applications; FET characteristics and applications; frequency response of amplifiers; DC regulated power supplies; troubleshooting projects.

Pre. Request: 30163220 30163260 Digital Logic Design 3(3-0) Binary Systems and Digital Components, Boolean Algebra and Logic Gates, Gate-Level Minimization, Combinational Logic, Synchronous Sequential Logic, Registers and Counters, Memory and Programmable Logic, Register Transfer Level.

Pre. Request: 30163220 (synchronous) 30163261 Digital Logic Design Lab. 1(0-3) Building combinational circuits using gates. Parallel adder. Decoders and Multiplexers. ROM and RAM. Registers and counters.

Pre. Request: 30163260 30163262 Data Structure 3(3-0) Data types: records, files, and sets. Dynamic data structure. Single, double, and circular linked lists and queues. Stacks and binary trees. Shell sort, quick sort, binary search, and hashing. Data compression. Definitions of algorithms. Design & analysis Algorithms: Divide and conquer, Greedy algorithm. Dynamics programming. Backtracking. Branch and bound technique. NP-hard and NP-complete problems.

Pre. Request: 30801101 30163300 Probability & Random Variables 3(3-0) Introduction to probability and Random Variables. Discrete random variable. Continuous random variable. The probability density function. The probability distribution function. Statistics of random variable. Random process, Ergodicity and stationary. Auto correlation function. Power spectral density. Estimating the autocorrelation function and power spectral density from raw data. Input output relations of linear systems.

Pre. Request: 30163350

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Course Description

30163320 Electronics (2) 3(3-0) Operational amplifiers: basic theory, characteristics and applications. Differential and multistage amplifiers. Frequency response of single and multistage amplifiers. Negative feedback analysis: feedback topology, Properties and stability analysis.

Pre. Request: 30163220 30163321 Electronics Lab. (2) 1(0-3) Amplifiers Frequency response of CE, CB, CC, CS and CD amplifiers. RC-Coupled amplifiers. Small signal analysis of Multistage amplifiers. Differential amplifiers. Operational amplifiers. Oscillators.

Pre. Request: 30163320 30163330 Electromagnetic 1 3(3-0) Electric charge, Coulomb’s law, static electric field, electric potential, electric flux, Gauss’s law, divergence theorem, electric conductor, dielectric media, permittivity, electric field boundary conditions, capacitance, electrostatic energy and forces, steady electric current, electromotive force, Kirchhoff’s voltage law and Kirchhoff’s current law; Static magnetic field, Amber's law of force, Biot-Savart law, Ampere’s circuital law, curl of the magnetic field, Stokes’ theorem, vector magnetic potential, magnetic flux, magnetic fields in media, permeability, magnetic field boundary conditions, magnetic forces and the Hall effect.

Pre. Request: 30107250, 30163210 30163340 Automatic Control 3(3-0) Concepts of control systems and mathematical background, transfer function, block diagram and signal flow graph, mathematical modeling of control systems and elements, time-domain analysis, root locus techniques and frequency-domain of control systems, measuring the character of control systems, design of control systems using the computer.

Pre. Request: 30163350 30163350 Signal Analysis & Processing 3(3-0) Classes of signals and systems. Laplace transform, Fourier series and transform. Convolution and impulse response. Correlation and power spectral density. Theory and design of digital filters. Discrete Fourier series and FFT. X-transform. Computer applications.

Pre. Request: 30107250, 30163211(synchronous) 30163360 Computer Organization and Microprocessor Systems 3(3-0) Basic computer organization; memory systems including caches, computer arithmetic, processors, controllers, input/output, buses, DMA; data formats; addressing modes; instruction sets and microcode; design of a simple computer.

Pre. Request: 30163260 30163361 Microprocessor Systems Lab. 1(0-3) Using the microprocessor kit; arithmetic instruction call and return instructions; conditional and unconditional jump; look up tables; software interrupts; hardware interrupts; I/O ports; 6840 Programmable Timer Module (PTM); course project; compiling; running and debugging; jumping and looping; strings; procedures; macros; riles; interrupts.

Pre. Request: 30163360 30163362 Programming in Electrical Engineering 2(0-6) The Matlab interactive environment. The programming elements of Matlab and its applications in electrical engineering (such as, in signal and system analysis and in automatic control). Introduction to Simulink. Introduction to Multisim and other electrical engineering applications software.

Pre. Request: 30163340 (synchronous)

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Course Description

30163420 Digital Electronics 3(3-0) Electronic devices. Diodes and transistors. BJT gates. RTL basic gates. RTL buffer. DTL basic gate. TTL Structure: operation, I/O characteristics, power dissipation, low power TTL, High-speed TTL, open-collector TTL, and Shottkey TTL. Main features of basic ECL gates. MOS gates. NMOS inverter and gates. CMOS inverter and gates. CMOS tri-state gates. Bilateral switches. Comparison and interfacing of logic families. Semiconductor ROM and RAM. A/D and D/A conversion. Timing circuits. Mono-stable and stable multi-vibrators. IC multi-vibrators.

Pre. Request: 30163260, 30163320 30163421 Digital Electronics Lab. �(�-�) Transistors as switching devices. RTL, CMOS logic circuits. TTL and CMOS characteristics. Monostable and stable multivibrators. Timing circuits. Waveform shaping circuits. A/D and D/A Circuit.

Pre. Request: 30163420 30163422 Communication Circuits 3(3-0) Surveys electronic hardware and circuit techniques used in communication. Topics covered include radio frequency amplifiers, AM/FM receivers and transmitters, phase-locked loops, frequency synthesis, modulation / demodulation circuits, and telephones. Digital, as well as analog, integrated circuit devices for communications are discussed.

Pre. Request: 30163420, 30163470 30163460 Computer Architecture 3(3-0) Analysis, synthesis and evaluation of different computer architectures. Emphasis on computer design with respect to price/performance and its relation to architectural choices such as pipelining, memory hierarchy, input/output, instruction set design, vector processing, and multiprocessing.

Pre. Request: 30163360 30163461 Operating Systems 3(3-0) Operating-system structures, process management, CPU scheduling, process synchronization, deadlocks, memory management (paged and segmentation), virtual memory, I/O systems, secondary storage structure, disk scheduling, distributed systems, designing and building various operating systems components.

Pre. Request: 30163262 30163462 Software Engineering 3(3-0) Software engineering concepts and methodologies, system concepts and systems life cycle, introduction to Unified Modeling Language (UML), software process and its difficulties; software life-cycle models, project planning including structured design, data structure oriented design, and software testing. A brief review of data structures is included.

Pre. Request: 30163262 30163463 Microcontrollers and Embedded Systems 3(3-0) Introduction to microcontroller-based Embedded Systems, examples, and characteristics. Systems’ architecture, hardware fundamentals: Processors, Memory, And Bus, etc. software: OS, Application Software. Software Development. Interrupts; Handlers and Interrupt Service Routines. Software Architectures. Real Time Operating Systems. Embedded Software Engineering. Testing and Debugging Embedded Systems.

Pre. Request: 30163460, 30163461

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Course Description

30163470 Analogue Communications 3(3-0) Signal analysis: equivalent low-pass and band pass models, power spectral density; amplitude modulation and demodulation: large carrier and suppressed carrier, single side band and vestigial side band, coherent and non-coherent detection. Angle modulation and demodulation. FM and PM, wideband and narrow-band FM, Transmission bandwidth, generation and demodulation of FM, FM stereo multiplexing. Noise representation and analysis: SNR analysis of AM and FM systems. Pulse modulation techniques: sampling theorem, PAM, PPM, PWM.

Pre. Request: 30163300 30163471 Analogue Communications Lab. �(�-�) Amplitude Modulation (AM), Single-Sideband (SSB), AM Receiver with Automatic Gain Control, Frequency Modulation (FM), Phase Modulator (PM), Quadrature Detector (Demodulation), Phase-Locked Loop (PLL) Circuit Phase-Locked Loop FM Detector.

Pre. Request: 30163470 30163472 Digital Communications 3(3-0) Sampling theorem, quantization and pulse code modulation, delta modulation, and noise analysis in PCM and DM systems, TDM. Base band digital systems: digital signaling over channels without and with inter-symbol interference and additive gaussion noise. Error probability analysis. Pass band digital systems: signal and system models of ASK, PSK, DPSK, FSK and QAM. Signal space representation and receiver model. Error probability analysis of digital modulation techniques for coherent and non-coherent detection. Power spectra of digital signals. Synchronization. Introduction to Information Theory. Introduction to Error control coding.

Pre. Request: 30163470 30163473 Digital Communications Lab. 1(0-3) PAM Signal Generation and Demodulation, PAM TDM Transmission and Reception, PTM Signal Generation and Demodulation, PCM Signal Generation and Demodulation, Delta Modulation; ASK, FSK, PSK (Generation and Demodulation), Operation of an FSK Modem, and Operation of a DPSK Modem.

Pre. Request: 30163472 30163550 Digital Signal Processing 3(3-0) Discrete-time signals and systems; discrete Fourier transform and related discrete time orthogonal transform, and related fast algorithm; IIR and FIR filter design techniques, and realizations; multi-rate digital signal processing; response of linear systems to random processes. Home works and term project are designed so that the students can apply theory learnt in the class to physical problems. MATLAB CAD tools are being used as an integral part of this course.

Pre. Request: 30163472 (synchronous) 30163551 Digital Image Processing 3(3-0) Introduction to the major categories of digital image processing, Digital image fundamentals, perception, discrimination, and sampling; Image transforms using FFT Fourier Algorithm, Image rectification and restoration, image enhancement, filtering and multi-image manipulation, image encoding, image segmentation and description, Image matching and data merging, image processing using Photoshop, Photo paint, ENVI, PCI, ERDAS .

Pre. Request: 30163472, 30163550 30163560 Computer Networks 3(3-0) Data communications and OSI Model. Open system standard. Circuit switching and packet switching. The physical layer and the electrical interface. Transmission media types. Attenuation and distortion sources. Noise signal delay and bandwidth. Data transmission. Error detection and control. LAN topologies and types. The Internet. Bridges and repeaters. Routers and switches. Introduction to WAN and internet. The X-25protocol. TCP/IP suite and applications.

Pre. Request: 30163472 (synchronous)

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Curriculum for the Bachelor Degree in Communication and Software Engineering�

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Course Description

30163570 Communication Transmission Systems 3(3-0) Line communication. Telephone and data transmission systems. Radio propagation system at HF, VHF, and UHF. Microwave transmission. Satellite systems. Earth station. Satellite link, VSAT, DBSAT, and other modern trends.

Pre. Request: 30163470, 30163330 30163571 Wave Propagation 3(3-0) Electromagnetic spectrum. Reflection. Refraction and scattering of waves. Ground waves. Basic physics of ionosphere. Propagation of waves in the ionosphere. Troposheric waves. Line of sight propagation of waves.

Pre. Request: 30163330, 30163472 30163572 Mobile Communications 3(3-0) Introduction. Mobile radio environment. Short term fading. Long term fading. Models and prediction of the median path loss. Coverage principles. Multichannel and cochannel schemes. Quasi-synchronous transmission. Cellular concept and frequency reuse. Interference. Adjacent channel. Cochannel and intermodulation. Modulation techniques. Mobile communication systems. Analog and digital cellular phone.(TACS, ANPS, GSM, and ADC), private and public access mobile radio and radio paging.

Pre. Request: 30163472, 30163330 30163573 Optical Communications 3(3-0) Light source, detectors, fiber components and optical systems for fiber communication; free-space inter-satellite optical networks for high-speed global communication; coding problems in optical fiber data transmission; three-dimensional optical data storage for database processing; propagation losses and fiber amplifiers.

Pre. Request: 30163472 (synchronous) 30163574 Radar Engineering 3(3-0) Nature of Radar. Radar frequencies. Radar antennas. Radar target. RCS of targets. Radar equation. Continuous and frequency modulated Radar. MTI Radar. Pulse Doppler Radar. Tracking Radar. Radar indicators and displays. Target. Noise. Ground and sea echoes and clutter. Weather Effect of Radar.

Pre. Request: 30163330, 30163470 30163580 Special Topics 3(3-0) Department Up-to date subjects in communications and software.

Pre. Request: Department approval 30163590 Practical Training 6(0-0) Every student must complete practical training as regulations specify in one of the following locations: engineering office, factory, or engineering projects company in communication or programming engineering topics. After finishing at least 100 hours of Academic study in the Communication and Software Engineering Department. Note: • The practical training is equivalent to an academic load of 6 hours. • Each 3 credit hours is equivalent to 140 practical field hours.

Pre. Request: 100 Cr. H. 30163591 Project 1 3(3-0) The student should arrange with one or more department academic members to select a particular project. He analyses this project and suggests methods to carry out the project in the next stage.

Pre. Request: 120 Cr. H. 30163592 Project 2 3(3-0) Based on the results obtained from the first stage, the student carries out the project suggested by the department.

Pre. Request: 30163591