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Temple University · Courses

ENGT

22 courses with the subject ENGT, 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.

ENGT 2202Programming Fundamentals in Bioengineering1.5

This course will introduce Engineering Technology and Mechanical Engineering Technology students to programmatic methods and matrix algebra with specific applications in Bioengineering. Students will learn programming fundamentals such as loops and conditionals, as well as how to apply these methods to data analysis. In addition to the use of built-in Matlab functions, including those used for basic human interface, students will also learn to write their own functions and the methods to assemble complex programs.

Subject
ENGT
Credits (min)
1.5
Credits (max)
1.5
Credit unit
Credit Hour
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (MATH 1031, MATH 1041, MATH 1941, or MATH 1951)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 2322Applied Strength of Materials3

Investigation of the elastic behavior of materials through the study of normal stress, strain, shear, and deformation under centric loading, flexural stress, shear, and deformation under transverse and eccentric loading, torsional stress, combined stress, stress concentration, and the stability of columns.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (ENGT 2331 or ENGR 2331)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 2329Additive Manufacturing - 3D Printing3

This course will introduce students to the engineering side of creating objects built layer by layer. The course is designed to offer a wide overview of the additive manufacturing dynamic field combined with in-depth, hands-on experience in the lab. Students will learn about the various 3D printing technologies, their applications, and their limitations. The lab teamwork will focus on designing products and testing the capabilities of Fused Deposition Modeling (FDM) 3D printers. A final project consisting of designing and processing of a complex object will be presented in class at the end of the semester.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- in (MEE 1117, ENGR 1117, or BIOE 2201)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 2331Applied Engineering Statics3

Provides an understanding and application of principles of equilibrium of particles and rigid bodies that are subjected to concentrated and distributed forces using vector mechanics. Subjects covered include vector mathematics, force and moment systems in two dimensions, free body diagrams and the static equilibrium of structures, centroids, moments of inertia, frictional systems, shearing force, and bending moment diagrams.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- (except where noted) in (MATH 1031 (may be taken concurrently), MATH 1042 (D- or higher; may be taken concurr
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 2521Applied Fluid Mechanics3

Fluid properties, fluid statics, fluid flow concepts, dynamic similitude, fluid resistance, ideal flow, compressible flow, pneumatic and hydraulic applications.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (ENGT 2331 or ENGR 2331)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3001Research Design and Methods in Bioengineering2

In this course the upper division students will learn how to integrate fundamental principles of biology, chemistry, engineering, mathematics (including statistics) and physics to develop practical solutions for a variety of biomedical problems from cells to organisms. Students will use both engineering (methodology) and scientific (hypothesis) approaches to problem-solving thereby learning to distinguish between the two approaches. This course will teach the students the fundamental principles underlying modern measurements and control instrumentation utilized in science and engineering. Taking a quantitative and hands-on approach to measurement theory and practice, this course will present and analyze example instruments currently used in academic and industrial research. In addition, the students will consider and discuss bioethical issues involving biological and living systems. Specific bioethics topics that will be covered include stem cells, patents, conflict of interest, patient rights, animal rights, organ donation, and data manipulations but are not limited to them.

Subject
ENGT
Credits (min)
2
Credits (max)
2
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (MATH 1031, MATH 1041, or MATH 1941) and (CHEM 1031 or CHEM 1951)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3182Independent Study in Engineering Technology1-5

Students may complete a regular course during semesters in which the course is not offered to meet prerequisite or graduation requirements. An instructor is assigned to supervise the student.

Subject
ENGT
Credits (min)
1
Credits (max)
5
Credit unit
Credit Hour
Type
course
Repeatable
Repeatability: This course may be repeated for additional credit.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3201Applied Materials Technology3

Atomic and molecular structures, bonding and interatomic forces, thermodynamics and kinetics of solid state reactions, mechanical and electronic properties.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (CHEM 1031 or CHEM 1035), (PHYS 1022, PHYS 1062, or PHYS 1962), MATH 1022, and (ENGT 2322 (may be taken co
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3306Machine Shop Laboratory1

This machine shop lab experience provides practical, hands-on training on the machine shop tools that students enrolled in the BS in Engineering Technology and BS in Engineering Technology with Optional Concentration in Mechanical Engineering Technology will use in their subsequent course work. Students will fabricate specific parts using the principal machine tools and using 3D Printing. Emphasis will be placed on safety procedures, on precise manufacture of parts, on using the right machine tool for a particular application, and for the judicious, least wasteful use of stock material. Specific topics covered are: use of measuring equipment (calipers rulers and micrometers); proper machine shop safety protocol; use of saw-room tools; use of manual Mill and Lathe; proper CNC programming techniques applications; and 3D Print processing.

Subject
ENGT
Credits (min)
1
Credits (max)
1
Credit unit
Credit Hour
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- (except where noted) in ENGR 2196, ENGT 2521, ENGT 3201, ENGT 4119, and ENGR 3003 (D or higher)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
Corequisite
ENGT 4175.
ENGT 3323Applied Dynamics3

A non-vector approach to the kinematics and kinetics of a particle employing the methods of force-mass acceleration, work-energy, and impulse momentum. Kinematics of rigid bodies in general plane motion using methods of force-mass acceleration and work-energy.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- (except where noted) in (ENGT 2331 or ENGR 2331) and (MATH 1031, MATH 1042 (D- or higher), MATH 1942 (D- or h
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3532Thermodynamics3

Properties of a substance, work and heat interaction, first law of thermodynamics, carnot cycle, entropy, ideal gases, irreversibility, and efficiency. NOTE: Special Authorization for Non-Technology Majors. Approved for ENGT, MET, CMT, ENVT.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- (except where noted) in (MATH 1031, MATH 1042 (D- or higher), 'Y' in MATW, or 'Y' in METW) and (PHYS 1022 or
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3651Manufacturing Control Systems3

A survey course covering pneumatic and hydraulic controls, programmable controllers, digital circuits, electro-mechanical servos and industrial instrumentation, and transducers. Laboratory.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- in ECE 2112.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3652CAD/CAM/CNC3

Solids modeling, geometric tolerancing, welds, treads, dimensions, numerical control simulation, and post processing. Basic components of NC systems, coordinate systems, motion control, programming languages, CNC and DNC, laboratory and demonstrations.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- in (ENGR 1117 or MEE 1117)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 3661Project Management in Engineering Technology2

This is a hands-on experience for Engineering Technology and Mechanical Engineering Technology students to gain practical insights into project management from the perspective of a Project Manager. Students will engage in hands-on learning through a simulated project experience, where they'll navigate every stage of project management. From analyzing a Request for Proposal to crafting a comprehensive contract proposal complete with budgeted costs, schedules, scope of work, and terms. Students will learn techniques for effectively managing technical teams, conducting impactful kick-off meetings, ensuring team accountability, performing critical path analyses, and mitigating issues like scope creep and change management. By the course's end, students will proficiently prepare written contract documents and present their findings in a professional setting.

Subject
ENGT
Credits (min)
2
Credits (max)
2
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4040Special Topics1-5

A course designed to present new and emerging areas of engineering technology. The course may also be used to present areas not normally taught in the college. Course requirements vary with the topic and instructor. Offered as needed or as appropriate.

Subject
ENGT
Credits (min)
1
Credits (max)
5
Credit unit
Credit Hour
Type
course
Repeatable
Repeatability: This course may be repeated for additional credit.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4119Professional Seminar1

Preparation for entering the working and professional worlds of engineering and the job market. Includes preparation of résumés, interviewing techniques, securing and holding a job, advancement, professional registration, ethics, and professional societies.

Subject
ENGT
Credits (min)
1
Credits (max)
1
Credit unit
Credit Hour
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4175Engineering Technology and Mechanical Engineering Technology Capstone Project I2

The Capstone Project serves as the culmination of the knowledge and expertise gained through the Engineering Technology and Mechanical Engineering Technology programs. This course is designed to prepare students for the execution phase of the Capstone Project by fostering the development and application of supplementary skills. These include: 1) choosing a project, problem identification, understanding constraints, defining the primary objective, and establishing a manageable scope of work, 2) acquiring additional technical proficiency essential for achieving the project's goals, and 3) refining technical, critical thinking, writing, and teamwork abilities. By the course's conclusion, students will have completed all conceptual design and preparatory tasks, seamlessly transitioning to the implementation phase of the project.

Subject
ENGT
Credits (min)
2
Credits (max)
2
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- (except where noted) in ENGT 2521, ENGT 3532, ENGT 4119 (may be taken concurrently), and ENGR 3003 (D- or hig
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4196Engineering Technology and Mechanical Engineering Technology Capstone Project II3

This course is the culmination of a two-semester capstone experience, emphasizing collaborative engineering technology and mechanical engineering technology projects across diverse domains. The course is designed to allow students to complete the execution phase of the Capstone Project. Students will present their work through an oral presentation and in a final report, allowing them to showcase their completed project and synthesis of theoretical knowledge and practical applications.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4278Cardiac Devices3

Intended for electrical engineering, biology, and bioengineering students. No course prerequisites. This course will cover cardiac anatomy and physiology, the hearts electrical system in health and disease, cardiac ecg rhythm interpretation, design and function of ecg monitoring devices, pacemakers and external and implanted defibrillators, and arrhythmia detection algorithms. The course will include observation of pacemaker implants, and troubleshooting in a pacemaker follow-up clinic. The course will prepare students to take the Heart Rhythm Society Allied Professional Pacemaker Certification examination. It is intended to put students in a competitive advantage for getting jobs in the expanding pacemaker and other medical electronics device industries.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of C- in (any MATH course numbered 1022 to 4999, 'Y' in MC6, 'Y' in MC6A, 'Y' in MATW, 'Y' in MC6T, or 'Y' in METW)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4342Machine Elements3

Survey of the design and application fundamentals underlying the sound selection and use of common machine elements such as shafts, bearings, clutches, brakes, gears, chain and belt drives, etc. Term design project.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- (except where noted) in (ENGR 1117 or MEE 1117), (ENGT 2322 or ENGR 2333 (C- or higher)), and (ENGT 3323 or E
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4532Heating, Ventilating, and Air Conditioning3

Establishment of design requirements for environmental comfort conditioning. Heating, heat pumps, humidity control, cooling, ventilation, integrated systems, controls and instrumentation, computer-aided design. Design project.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- in (ENGT 2521 and ENGT 3532)
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu
ENGT 4641Production Tooling3

Fundamentals of the design of work-holders and of tooling for inspection and gauging, welding and joining processes, and punch presses. A weekly practicum covers applications of fundamentals to typical tool design problems.

Subject
ENGT
Credits (min)
3
Credits (max)
3
Credit unit
Credit Hours
Type
course
Repeatable
Repeatability: This course may not be repeated for additional credits.Pre-requisites: Minimum grade of D- (except where noted) in ENGR 1117, (ENGR 2333 (C- or higher) or ENGT 2322 (C- or higher)), and ENGT 3652.
Edition
2026-2027
Catalog
Bulletin 2026-2027
Source
bulletin.temple.edu

Source: Temple University's catalog, linked per course · table learning_unit · CourseShelf publish 59