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Geneva College · Courses

EGR

20 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 100Engineering: Calling and Vocation1

Introduction to the engineering design profession, the Biblical concepts of calling and vocation, and skills and information to enhance the transition from high school or work to college. Fall semester.

Subject
EGR
Credits (min)
1
Credits (max)
1
Type
course
Edition
2026-2027
Source
www.geneva.edu
EGR 101Introduction to Engineering

Design 2

Subject
EGR
Type
course
Edition
2026-2027
Source
www.geneva.edu
EGR 102Computer-Aided Engineering2
Subject
EGR
Credits (min)
2
Credits (max)
2
Type
course
Edition
2026-2027
Source
www.geneva.edu
EGR 211Solid Mechanics4

Statics of particles and rigid bodies. Equivalent force- couple systems and equilibrium in 2D and 3D. Frames and machines; centroids; introduction to friction. Mechanics of deformable bodies: stress, strain, tension, compression, torsion, bending, shear. Design and deflection of beams, stability of columns. Every semester. Geneva College 20

Subject
EGR
Credits (min)
4
Credits (max)
4
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
MAT 161.
EGR 212Linear Circuit Analysis I3

DC and AC circuit analysis, network theorems, Kirchhoff’s Laws, topology, and computer aided techniques. Introduction to Fourier Analysis. Every semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
MAT 162.
EGR 214Dynamics3

Plane kinematics and kinetics of particles and rigid bodies. Equations of motion, work and energy, impulse and momentum. Simple gyroscopic phenomena. Spring semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
Grade of C- or higher in EGR 211, MAT 162.
EGR 225Signals and Systems3

Characterization of linear systems in terms of differential and difference equations, superposition, convolution, transfer function and frequency response. Emphasis on continuous-time signals and systems. Specific topics include Fourier series and transforms, Laplace transforms and their application to electrical systems, sampling theory and aliasing. Spring semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
EGR 212.
EGR 304Technology and Society3

courses), or permission of the instructor. An examination of the interactions between technological development and the development of human societies. Emphasizes the historical approach and involves the use of historical, imaginative, theoretical, sociological, philosophical, and/or theological writings on technology and society. Fall semester, even years.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
HUM 203, SCS 110 (or two lab science
EGR 316Process Control3

Introduction to classical and modern control theory. Discussion of the elements of a practical system and computer modeling of such systems. Spring semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
EGR 212, MAT 405.
EGR 322Manufacturing Engineering3

Introduction to both traditional and modern manufacturing engineering topics including Geometric Dimensioning and Tolerancing. Traditional manufacturing topics include machining, stamping, forming (plastics and metal), casting, metrology, etc. Modern manufacturing topics include Computer Numerical Control, Flexible Manufacturing Systems, 26-2027 118

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
EGR 211 or permission of instructor.
EGR 325Materials Engineering3

Atomic bonding, crystal lattices, dislocation theory, phase diagrams, heat treatment, ferrous and non- ferrous alloys, ceramics and glasses, polymers and composites. Fall semester, even years.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
CHM 221.
EGR 330Thermal Fluid Sciences3

Application of the first law of thermodynamics to systems involving heat transfer and fluid flow. Introduction to fluid properties, work and energy, basic rate processes (heat and momentum transfer), and application to heating, cooling, and movement of solids, liquids and gases. Every semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
PHY 201.
EGR 331Introduction to Thermal and Fluid

Engineering Laboratory (1) Selected experiments in thermodynamics, heat transfer, and fluid flow integrated with EGR 330 topics. Additional topics in report writing, appropriate statistical and data presentation approaches. Fall semester.

Subject
EGR
Type
course
Edition
2026-2027
Source
www.geneva.edu
Corequisite
EGR 330.
EGR 332Fluid Mechanics4

Fluid properties and hydrostatics. Open channel flow, compressible flow, pipe flow and pipe networks, pumps and turbo machinery, boundary layers, dimensional analysis, similitude, lift and drag. Spring semester.

Subject
EGR
Credits (min)
4
Credits (max)
4
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
EGR 330 and EGR 331.
EGR 371Operations Research3

371. Quantitative approaches to management decision making. Includes review of probability, decision theory, linear programming, network analysis, inventory control, waiting line theory and simulation. Applications to business and industry. Spring semester, even years.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
MAT 105 or MAT 265. Cross-listed with BUS
EGR 401Christian Ethics and Engineering2

instructor. The engineering profession, professional life. Christian ethics applied to engineering, discussion of case histories of ethical problems in engineering. Every semester. Geneva College 20

Subject
EGR
Credits (min)
2
Credits (max)
2
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
senior standing or permission of the
EGR 423Quality Engineering3

Prerequisite MAT 265 or BUS 242. Cross-listed as BUS 423. Introduction to traditional quality engineering topics such as statistical quality control (control charts, acceptance sampling, process capability analysis, design of experiments), total quality management, lean manufacturing, six-sigma concepts and practices, measurement, detection, reduction, elimination, and prevention of quality deficiencies. Taguchi method and its application to engineering design. Spring semester, even years.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Alias
BUS 423
EGR 441Project Management3

441. Students will learn the application of the nine Knowledge Areas and five Process Groups that comprise the Common Body of Knowledge for Project Management. Emphasis is placed on the five Process Groups- initiating, planning, executing, controlling, and closing. The course emphasizes refining individual communications skills necessary to the field of project management. Every semester.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
Prerequisite
junior standing. Cross-listed as BUS441, CSC
EGR 481Senior Design Project3
Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu
EGR 482Senior Design Project3

25-39 additional credit hours of engineering (BME, CHE, CIE, CPE, EGR, ELE, EVE, MEE) Credit hours in excess of requirements may used as free elective credits. 25-39 28-31 credit hours of core requirements not included in the major. Engineering students take EGR 100 (see above) instead of SSC 101. Engineering students need only take nine credit hours of humanities (HUM). Engineering students take ECO 270 as one of the two social science electives. Students in the chemical engineering concentration need not take a second social science elective in addition to ECO 270. 28-31 Two to four additional credit hours of free electives. 2-4 Zero to nine credit hours of computer programming 0-9 134 Summary of required credit hours 99-104 in major requirements 28-31 in core requirements not included in major 2-4 to four in electives. Specific requirements for concentrations in biomedical, chemical, civil, computer, electrical, environmental, mechanical, and interdisciplinary engineering are given below. Students completing the requirements for the BSE degree in four years (eight semesters) will be required to take 18 credit hours in two to four semesters.

Subject
EGR
Credits (min)
3
Credits (max)
3
Type
course
Edition
2026-2027
Source
www.geneva.edu

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