Engineering B.S. - Biomedical Concentration

A Bachelor of Science degree with a major in Engineering and a Biomedical concentration requires the completion of the Elon Core Curriculum as well as the Major Requirements listed below.

Major Requirements

Math and Science courses: 32 sh

CHM 1110General Chemistry I

4 sh

PHY 2210University Physics I

4 sh

PHY 2220University Physics II

4 sh

MTH 1510Calculus I

4 sh

MTH 2510Calculus II

4 sh

MTH 2520Multivariable Calculus and Analytic Geometry

4 sh

MTH 3510Differential Equations

4 sh

Choose at least one of the following courses: 4 sh

CHM 1120General Chemistry II

4 sh

BIO 1112Introductory Cell Biology

3 sh

BIO 1113Cell Biology Laboratory

1 sh

BIO 2312Human Anatomy

3 sh

BIO 2313Human Anatomy Lab

1 sh

BIO 2412Human Physiology

3 sh

BIO 2413Human Physiology Lab

1 sh

Engineering Foundations and Design courses: 33 sh

EGR 1210Introduction to Engineering

3 sh

EGR 1220Engineering Computing with MATLAB

2 sh

EGR 1230Engineering Graphical Communication

2 sh

CSC 1300Computer Science I

4 sh

EGR 2060Engineering Mechanics - Statics

3 sh

EGR 2080Engineering Mechanics - Dynamics

3 sh

EGR 2210Engineering Design for Service

4 sh

EGR 2260Structure and Properties of Materials

4 sh

EGR 4970Senior Engineering Design I

4 sh

EGR 4971Senior Engineering Design II

4 sh

EGR 0070Senior Comprehensive Evaluation

0 sh

Social Science and Humanities courses: 8 sh

Choose one economics and one ethics course. These courses may count toward the Elon Core Curriculum requirements. Possible options include the following courses. For other courses in this category seek approval of the Chair of the Engineering Department.

ECO 1000Principles of Economics

4 sh

ECO 2300Statistics for Decision Making

4 sh

PHL 2120Ethical Practice

4 sh

PHL 2150Ethics and Decision Making

4 sh

REL 3480/PHL 3480Environmental Ethics

4 sh

Additional Major Requirements: 24 sh

Choose from the following courses:

EGR 2110Circuit Analysis

3 sh

EGR 2120Circuit Analysis Lab

1 sh

EGR 3060Mechanics of Solids

4 sh

EGR 3080Engineering Fluid Mechanics

4 sh

EGR 3300Bioinstrumentation and Imaging

4 sh

EGR 3360Signals and Systems

4 sh

EGR 4100Heat and Mass Transfer

4 sh

PHY 3650Biophysics

4 sh

Total Credit Hours: 97

Program Outcomes

Identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics

Apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors

Recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts

Develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions

Acquire and apply new knowledge as needed, using appropriate learning strategies

Function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives

Communicate effectively with a range of audiences

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