53 courses with the subject ELN, each shown exactly as we captured it from the college's catalog, with every element we hold. Where the wording looks broken, that is our reading of the catalog, not the college's text.
ELN 101Introduction to Computing
for ECE Lec. 3./Credit 3. Fundamentals of high-level programming languages (e.g. Python, C++, etc), complexity and efficiency analysis, numerical precision and representations, and applications to solving electrical and computer engineering problems.
Introduction of the fundamentals of computer architecture and organization, including CPU, memory, registers, arithmetic unit, control unit, and input/ output components. The course will also include the introduction to hardware descriptive languages. Prerequisite: EGR 213, ELN 101.
EGR 102, EGR 219 and MAT 260 or consent of instruc-
ELN 300Network Theory I Lec. 3./Credit 3
Ohm’s law, Kirchhoff’s voltage and current laws, nodal analysis, mesh analysis, Thevenin’s theorem, Norton’s theorems, power, capacitors, induc- tors, transient analysis of RL and RC circuits and magnetic circuits. Prerequi- sites: PHY 204, MAT 260. Corequisite: ELN 308.
ELN 301Circuits and Instrumentation Lec. 3./Credit 3
Basic principles of electric measurements, use of test instruments and labora- tory techniques, Ohm’s law, Kirchhoff’s law, Network Theorem and introduc- tion to capacitance and inductance. Prerequisite: PHY 204. Corequisite: ELN 309.
Phasors, steady-state AC circuit analysis, operational amplifier AC circuits, AC power analysis, transformers frequency response, resonance. Prerequisites: EGR 218 and EGR 208. Corequisite: ELN 310.
ELN 304Engineering Electronics Il Lec. 3./Credit 3
Multistage RC, direct and transformer coupled amplifiers, large signal ampli- fiers, operational amplifiers, oscillator circuits, linear/digital ICS, integrated circuits, SCR and other semiconductor devices. Prerequisite: ELN 303.
Review of vector analysis, electric field intensity, Gauss’s law of divergence, electric potential, conductors, dielectrics and capacitors, steady-state, magnetic field, magnetic materials and inductance, time-varying fields, and Maxwell’s Equations and introduction to uniform plane wave and transmis- sion lines. Prerequisite: ELN 302, MAT 260 , MAT 251. Co-requisite: ELN313.
ELN 309Circuits and Instruments Lab Lab 3./Credit 1
Application-based multivariable analysis covering topics in linear algebra (vector and matrix operations, eigenvalues/eigenvectors, matrix exponentials, etc.), vector calculus, linear vector differential equations, discrete linear systems and vector difference equations. tor; Co-requisite: EGR 208. 300 Course Descriptions – Main Campus
Systems Security Lec. 3./Credit 3. ar This course surveys topics in cyber-physical systems security. The course covers security challenges at the physical system level, tools and techniques used by hackers, and approaches used to defend networks and embedded systems. Prerequisite: EGR 213 and ELN 101
This course reviews the fundamental principles of computer and network security by studying attacks on computer systems, network, and the internet. Course Descriptions – Main Campus 303
ELN 408Introduction to Control Systems Lec. 3./Credit 3
Control system design process, mathematical modeling, block diagrams, state variable models, feedback control system characteristics, performance criteria, stability, root locus, frequency response methods, design of feedback control systems, robustness, introduction to digital control. Prerequisite: ELN 307. Co-requisite: ELN433.
Fundamentals of electromechanical energy conversion, transform- ers, DC generators, DC motors, polyphase AC generators, induction motors, synchronous motors, fractional horsepower motors and transient analysis of electric machines. Prerequisite: ELN 302, ELN 310. Corequisite: ELN 435.
Review of Fourier series and Fourier transforms, signals and linear systems, amplitude modulation (AM) system, frequency modula- tion (FM) system, probability and random processes, pulse modula- tion systems. Prerequisites: ELN 307, MAT 305.
ELN 413Electrical Engineering Design II Lec. 3./Credit 3
Additional engineering design process, project planning and implementation, library search and technical research of design projects. Software verification of design projects. Group design projects are presented, approved and super- vised by course instructors or other electrical engineering faculty. Student will present his/ her project technical paper in a pre-arranged seminar.
Total 14 14 TOTAL CREDITS FOR GRADUATION 129 Technical electives are selected from 300, or higher, number courses in EGR or ELN with department permission. One course must be selected from EGR 303 or 307, ELN 415 or 417; or mathematics, with at least two courses selected from computer/electrical engineering. * EGR 315 is a substitute for economics class ECO 201/202 Hampton University 2018-2020
Digital data transmission, multiple access techniques, communication channel models, coding techniques for communication channels and system design consideration. Prerequisite: ELN 307.
Design II Laboratory Lab 3./Credit 1. Implementation of the design projects from ELN 413. Design performance judged by a faculty panel. Corequisite: ELN 413.
Lec. 3./Credit 3. Assembly language programming, microprocessor arithmetic, microprocessor architecture and operation, buses and system con- cepts. Prerequisite: ELN 304 and ELN 403. Course Descriptions – Main Campus 301
2nd EGR 204 Engineering Ethics and Safety . . . . . . . . . . . - 3 3 TOTAL 12 12 3 TOTAL CREDITS FOR GRADUATION 120 - - DEPARTMENT OF MECHANICAL 3 ENGINEERING 3 Students who earn a Bachelor of Science degree in 12 Mechanical Engineering will be involved in a variety of 120 mechanical-related problems in their careers. To ensure the necessary breath of knowledge, the mechanical engineering curricula includes basic (core) engineering courses in fluid dynamics, mechanics, and thermodyana- mics. The burgeoning field of AI and Machine Learning will School of Engineering, Architecture and Aviation 85
Measurement Techniques Lec. 3./Credit 3. An introduction to measurement science and techniques, application to electrical circuits, applications to systems with transducers, application to analog and digital systems, and applications involving microprocessors and personal computers. Prerequisite: ELN 403, ELN 431, ELN 460.
Sampling processes and theorems, z-transform, modified transforms, transfer functions, stability criteria, analysis in frequency and time domains, discrete state model of systems containing digital computers, and experimental exercises in controlling dynamic processes. Prerequisite: ELN 408.
ELN 469Introduction to Manufacturing Lec. 3./Credit 3
Systems approach to manufacturing, tools and concepts needed to integrate the computer in the manufacturing process such as numerical control and programmable controllers, flexible manufacturing systems, group technology, process planning and control, and modeling and simulation of factory opera- tions. Prerequisite: ELN 409.
ELN 483Computer Engineering Design II Lec. 3./Credit 3
Additional engineering design process, project planning and implementation, library search and technical research of design projects. Software verifica- tion of design projects. Group design projects are presented, approved and supervised by course instructors or other electrical/computer engineering faculty. Student will present his/ her project technical paper in a prearranged seminar: Prerequisite: ELN 482.
General concepts of digital signal processing, continuous-time system analysis, Fourier analysis, the sampling theorm, discrete- time system analysis and realization, z-transforms, finite impulse response (FIR) filters, infinite impulse response (IIR) filters, fast Fou- rier transforms (FFT), applications of the discrete Fourier transform.
Microcomputer architecture, bus inter connections, memories, serial inter- facing, parallel interfacing, magnetic recording techniques, CRT-controller design and software development. Prerequisite: ELN 515. Corequisite: ELN 531.
Lec. 3./Credit 3. Facility in the use of design simulations in CMOS design and verifi- cation using software packages such as SUPREME, SPICE, SEDAN PICES, ISED, etc. Prerequisites: ELN 304, 403, 431. Hampton University 2018-2020