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Tidewater Community College · Courses

EGR

11 courses with the subject EGR, 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.

EGR 121Foundations of Engineering2

Introduces the engineering profession and its impact on society and the environment, including engineering problem solving, the engineering design process, and professional practices. Covers fundamental engineering calculations, descriptive statistics, basic spreadsheet and mathematical scripting language applications, professional ethics, teamwork, and communication. (Credit will not be awarded for both EGR 120 and EGR 121.)

Subject
EGR
Credits (min)
2
Credits (max)
2
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
ENG 111 eligible; MTH 162 or MTH 167, or equivalent; or departmental approval.. Lecture 2 hours.
EGR 122Engineering Design3

Applies engineering methods to a semester-long team design project with an emphasis on engineering software involving 2D and 3D computer aided design; data modeling and analysis; and iterative programming solutions. Covers design drawings and dimensioning; spreadsheet software usage; mathematical scripting language; and professional practices. (Credit will not be awarded for both EGR 110 and EGR 122.)

Subject
EGR
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 121 (or EGR 120) or departmental permission. Lecture 2 hours. Laboratory 2 hours.
EGR 125Introduction to Computer Programming for Engineers4

Introduces problem solving and implementation of computer software solutions using a high-level programming language in a structured environment. Includes concepts and practice of algorithm design, language syntax, control structures, arrays, and introduction to object-oriented programming. Covers engineering applications, such as mathematical modeling, file input and output, and basic numerical methods. The assignments in this course require mathematical problem-solving skills, algebraic modeling, and functions, and use of variables. Credit may not be earned for both CSC 221 and EGR 125.

Subject
EGR
Credits (min)
4
Credits (max)
4
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
MTH 162 or MTH 167 or equivalent.
Corequisite
EGR 121. Lecture 4 hours.
EGR 206Engineering Economics3

Presents economic analysis of engineering alternatives. Studies economic and cost concepts, calculation of economic equivalence, comparison of alternatives, replacement economy, economic optimization in design and operation, depreciation, and after tax analysis.

Subject
EGR
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 120 or EGR 121 or departmental permission and MTH 167 or equivalent or placement into MTH 263. Lecture 3 hours.
EGR 240Statics3

Introduces basic concepts of engineering mechanics, systems of forces and couples, equilibrium of particles and rigid bodies, and internal forces and analysis of structures, including SI and U.S. customary units. Includes trusses, frames, machines, beams, distributed forces, friction, and centroids.

Subject
EGR
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
PHY 241 and EGR 122 .
Corequisite
MTH 264 . Lecture 3 hours.
EGR 245Dynamics3

Presents approach to kinematics and kinetics of particles (and systems of particles) in linear and curvilinear motion. Includes kinematics and kinetics of rigid bodies in plane motion. Teaches Newton’s second law, work-energy, and impulse-momentum methods.

Subject
EGR
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 140 or EGR 240 , MTH 264 , and PHY 241 . Lecture 3 hours.
EGR 246Mechanics of Materials3

Introduces concepts of stress, strain, deformation, internal equilibrium, and basic properties of engineering materials. Analyzes axial loads, torsion, bending, shear and combined loading. Studies stress transformation, principal stress, and buckling.

Subject
EGR
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 140 or EGR 240 . Lecture 3 hours.
EGR 247Mechanics of Materials Laboratory1

Examines mechanical behavior of bars, rods, shafts, tubes and beams subjected to various types of loading. Introduces experimental stress analysis techniques, such as the use of strain gauges and data reduction.

Subject
EGR
Credits (min)
1
Credits (max)
1
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 140 or EGR 240
Corequisite
EGR 246 . Laboratory 2 hours.
EGR 270Fundamentals of Computer Engineering4

Covers digital system analysis, design, and implementation. Includes digital logic, Boolean algebra, combinational and sequential circuits, hierarchical design, and introduction to computer organization and assembly language. Features in laboratory work the use of discrete logic, programmable logic devices, and hardware description language to design, simulate, implement, validate, and document digital circuits.

Subject
EGR
Credits (min)
4
Credits (max)
4
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
EGR 121 and either EGR 125 or CSC 221. Lecture 3 hours. Laboratory 3 hours.
EGR 271Electric Circuits I4

Covers fundamentals of electric circuits. Teaches resistive circuit analysis methods, including network theorems. Features operational amplifiers, capacitors, inductors, resistor-capacitor (RC), resistor-inductor (RL) and resistance-inductance-capacitance (RLC) circuit transient response. Introduces phasor representation of alternating current (AC) circuits. Utilizes circuit design processes, technical writing and computer software for problem solving. Includes laboratory analysis to explore course concepts. Part I of II.

Subject
EGR
Credits (min)
4
Credits (max)
4
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
MTH 264 and EGR 121. Lecture 3 hours. Laboratory 3 hours.
EGR 272Electric Circuits II4

Covers sinusoidal steady-state circuit response using phasors, frequency analysis of linear circuits including frequency response, Bode plots, Fourier series analysis, and design of basic filters. Examines Laplace circuit analysis and transfer functions, AC power analysis, nonlinear diode models, and technical writing. Includes laboratory analysis and open-ended design project. Part II of II.

Subject
EGR
Credits (min)
4
Credits (max)
4
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-2027 Catalog
Source
catalog.tcc.edu
Prerequisite
MTH 267 and EGR 271. Lecture 3 hours. Laboratory 3 hours.

Source: Tidewater Community College's catalog, linked per course · table learning_unit · CourseShelf publish 59