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Lehigh University · Courses

PSE

18 courses with the subject PSE, 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.

PSE 409Composite Materials3

Principles and technology of fiber reinforced composite materials. Design, processing, properties, and structural applications of composites, with emphasis on fiber-reinforced polymers.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 419Polymer Sustainability3

Understand the current scenario of the impact of polymers in the environment and what has been done so far to reduce its negative impact. Become equipped and encouraged to think ahead to make polymeric materials more sustainable. Understand the benefits of plastic use vs its impact. Understand the concepts of polymer degradation, biopolymers, recycling techniques and waste management. Overview of health effects of polymeric materials.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 426Biomimetic and Bio-enabled Materials3

The structure, function, properties and use of biopolymers, biocomposites, and biominerals. Biomimetic materials design, including colloids, interfaces, macromolecules, and applications of such materials. Environmental and ethical considerations, such as degradation products when using biomimetic materials. This course is a graduate version of MAT 326 and BIOE 326. Closed to students who have taken MAT/BIOE 326.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 460Engineering Project1-6

In-depth study of a problem in the area of polymers engineering or design. The study is to lead to specific conclusions and be embodied in a written report. Repeat Status: Course may be repeated.

Subject
PSE
Credits (min)
1
Credits (max)
6
Credit unit
Credits
Type
course
Repeatable
may be repeated.
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 462Independent Study1-4

An intensive study, with report, of a topic in polymeric materials and engineering which is not treated in other courses. Consent of instructor required. Repeat Status: Course may be repeated.

Subject
PSE
Credits (min)
1
Credits (max)
4
Credit unit
Credits
Type
course
Repeatable
may be repeated.
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 468(PHY 468) Soft Matter Physics3

Introduction to the physics of soft materials at the graduate level, including polymers, colloids, and liquid crystals. Topics include polymer conformations and elasticity, colloidal interactions and self-assembly, liquid crystalline order, hydrodynamics of complex fluids. The course provides an introduction to active matter and to soft matter in biological systems. The course integrates theoretical concepts with descriptions of experimental methods and provides an introduction to computational investigations of soft matter systems.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 482Mechanical Behaviors of Polymers3

A treatment of the mechanical behavior of polymers. Characterization of experimentally observed viscoelastic response of polymeric solids with the aid of mechanical model analogs. Topics include time-temperature superposition, experimental characterization of large deformation and fracture processes, polymer adhesion, and the effects of fillers, plasticizers, moisture and aging on mechanical behavior.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 483(CHE 483, CHM 483, MAT 483) Emulsion Polymers3

Examination of fundamental concepts important in the manufacture, characterization, and application of polymer latexes. Topics to be covered will include colloidal stability, polymerization mechanisms and kinetics, reactor design, characterization of particle surfaces, latex rheology, morphology considerations, polymerization with functional groups, film formation and various application problems.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 484(MAT 484) Biopolymers3

Understand the function and reason for using biopolymers in engineered products. Explain the sourcing, production methods, properties, and potential use of the materials presented. Evaluate materials for specific applications and argue for their use. Identify products that would benefit from the use of biopolymers. Evaluate performance test methods and results in the context of product design. Design methodologies to evaluate biopolymer performance. Prerequisites: PSE 492 or PSE 493

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 485(CHE 485, CHM 485, MAT 485) Polymer Blends3

Synthesis, morphology, and mechanical behavior of polymer blends. Polymer/polymer miscibility and thermodynamics of mixing of polymer/solvent and polymer/polymer blends. Prediction of miscibility using various theoretical models and methods that can be used to help enhance miscibility (H bonding etc.). Methods to enhance the compatibility of polymer/polymer blends (e.g., block copolymers, ternary addition, IPNs, etc.). Types of polymer blends. Must have completed any introductory polymer course or equivalent.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 486Polymer Nanocomposite3

Synthesis, morphology and properties of polymer nanocomposites. Comparisons with traditional particulate composites will be made and models predicting properties will be emphasized. Melt viscosity, mechanical properties, barrier properties and flame retardancy will be discussed. This course is a version of MAT 386 for graduate students, with additional research projects and advanced assignments. Closed to students who have taken MAT 386 or MAT 486. Prerequisites: MAT 393 or PSE 493

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 487Adhesion and Adhesives Techonology3

Basics of intermolecular forces, surface science, and mechanics of materials and how these relate to adhesion. Processing and design of adhesive joints. Formulation and behavior of pressure sensitive and structural adhesives. Background in polymers is helpful.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 488(MAT 488) Polymer Characterization3

Description of molecular weight measurements using dilute solutions (solution viscosity, size exclusion chromatography, osmotic pressure, and light scattering). Introduction to polymer thermal analysis techniques such as differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), and thermomechanical analyzer (TMA). Discussion of structure and morphology of polymers and polymer blends using nuclear magnetic resonance (NMR), infrared spectroscopy (IR), transmission electron microscopy (TEM) and atomic force microscopy (AFM). Prerequisites: MAT 392 or MAT 393 or PSE 492 or PSE 493

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 490Thesis1-6

This course code is designated for thesis credit hours. Repeat Status: Course may be repeated.

Subject
PSE
Credits (min)
1
Credits (max)
6
Credit unit
Credits
Type
course
Repeatable
may be repeated.
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 492Introduction to Polymer Science3

Introduction to concepts of polymer science. Kinetics and mechanism of polymerization, synthesis and processing of polymers, characterization. Relationship of molecular conformation, structure and morphology to physical and mechanical properties. Students cannot receive credit for both CHE/MAT 392 and PSE 492.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 493Physical Polymer Science3

Structural and physical aspects of polymers (organic, inorganic, natural). Molecular and atomic basis for polymer properties and behavior. Characteristics of glassy, crystalline, and paracrystal-line states (including viscoelastic and relaxation behavior) for single-and multi-component systems. Thermodynamics and kinetics of transition phenomena. Structure, morphology, and behavior. Students cannot receive credit for both CHE/MAT 393 and PSE 493.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 494(MAT 494) Polymer Thermodynamics3

Applications of thermodynamics in polymer science and engineering. Topics include: the thermodynamic basis for preparing polymer solutions, polymer blends and polymer composites, the importance of miscibility, phase separation and mechanical compatibilization of polymer solutions, polymer blends, etc., the methods used to characterize the role of thermodynamics; discussion of various thermodynamic models used to predict polymer compatibility and understand the importance of free energy of mixing. Understand the importance of thermodynamics in different application such as polymer crystallization, liquid polymers, etc.

Subject
PSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu
PSE 499Dissertation1-15

This course code is designated for dissertation credit hours. Repeat Status: Course may be repeated.

Subject
PSE
Credits (min)
1
Credits (max)
15
Credit unit
Credits
Type
course
Repeatable
may be repeated.
Edition
2026-2027
Catalog
2026-27 Catalog
Source
catalog.lehigh.edu

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