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University of Virginia-Main Campus · Courses

MSE

23 courses with the subject MSE, 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.

MSE 2010Materials That Shape Our Civilization3

Effective Date 01/01/2018 To introduce the issues surrounding long-term sustainability with respect to materials, including scarcity, recycling, climate change, and environmental stress on water resources, land resources and pollution. Scope of the issue at the present day will be discussed and projections of the effects of current patterns of material production, consumption, and recycling will be described. Methods of analysis will be developed.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 2090Introduction to Materials Science3

Effective Date 08/01/2018 The field of Materials Science drives technological innovations underlying all engineering fields. This course provides a scientific foundation to promote a rigorous understanding of materials from an atomistic to macroscopic viewpoint. Material systems (polymers, metals, ceramics, and electronic) are developed sequentially to provide a framework to explain the fundamental, physical origins of observable and important macro scale properties.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 2101Materials Science Investigations: Properties3

Effective Date 05/01/2023 The properties of any material help determine its ultimate usefulness to society. We can modify and manipulate properties by processing materials in different ways to control their structure. This class will examine mechanical, electrical and thermal properties of materials-what they mean, how they depend on structure, how to measure them, how to change them, and how to analyze the measurements. The course includes both a lecture and a lab. MSE 2090 required as a pre- or co-requisite. Requisites Students must be currently enrolled in or previously taken MSE 2090

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 2200Introduction to Additive Manufacturing and 3-D Printing3

Effective Date 04/29/2019 This course introduces state-of-the-art 3D printing and additive manufacturing techniques for metals, polymers, ceramics, and other materials. Students will be familiarized with both the fundamental science and industrial process, and learn critical limitations and current development efforts to resolve existing challenges. The course will develop a basic understanding for future engineers in working with existing additive manufacturing systems.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 2300Science of Cooking: From Modern Cuisine to Soft Matter Science3

Effective Date 06/22/2023 We discuss how soft matter science, a new and growing area of materials science and engineering, underpins everyday cooking and haute cuisine. The goal is to use cooking to educate students about the fundamental concepts and behavior of soft materials. The benefit is that students will be able to interrelate cooking techniques and recipes to physical, chemical, and biological transformations in food.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 2500Special Topics in Materials Science and Engineering1

Effective Date 01/01/2026 Special topic courses in Materials Science and Engineering

Subject
MSE
Credits (min)
1
Credits (max)
1
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 3050Thermodynamics and Phase Equilibria of Materials3

Effective Date 02/01/2023 The course includes (1) an overview of classical thermodynamics necessary for understanding the conditions for phase equilibria, phase stability and phase transformations in one-component and multi-component systems, (2) application of thermodynamic concepts to phase diagrams and construction of phase diagrams from thermodynamic data, (3) discussion of the thermodynamics of interfaces and the role the interfaces play in phase transformations.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
APMA 2120 or MATH 2310. Requisites Students must have completed APMA 2120 or MATH 2310 or MATH 2315. Credits: 3
MSE 3060Structures and Defects of Materials3

Effective Date 05/01/2023 Crystal structures of solids and their possible defects are examined. The structure-property paradigm is illustrated through discussion of the anisotropic properties of crystals, such as elasticity, thermal expansion, piezoelectricity, and magnetism. Point defects, dislocations, and interfaces are introduced along with the thermodynamic and kinetic principles that govern their interactions and roles during materials processing and application.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
APMA 2120 or MATH 2310 Requisites Students must have completed APMA 2120 or MATH 2310 or MATH 2315. Credits: 3
MSE 3070Kinetics and Phase Transformation in Materials3

Effective Date 05/01/2023 The course aims to let students learn how to perform the analysis of the key kinetic processes, phase transformations, and the development of microstructure in real materials. We will study the atomic mechanisms of diffusion and the analytical and numerical methods to describe diffusion, kinetics of phase transformations and formation of complex microstructure as defined by the interplay of thermodynamics and kinetics of mass transfer.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3050 or Instructor Permission Requisites Must have completed MSE 3050 Credits: 3
MSE 3080Corrosion, Batteries and Fuel Cells3

Effective Date 08/01/2023 Covers the principles of electrochemistry governing corrosion, batteries and fuel cells at the materials science and engineering level. Describes the basic electrochemistry, terminology, and performance of specific corrosion, battery and fuel cell systems using various energy materials including ion and solid-state lithium. Explains corrosion in recycling/sustainability as well as degradation and failure of functional and structural materials.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
CHEM 1410 or equivalent. Requisites Must have completed CHEM 1410 or CHEM 1610 or CHEM 1810 Credits: 3
MSE 3101Materials Science Investigations3

Effective Date 01/01/2015 The course amplifies topics covered in introductory materials science through laboratory demonstration and experimentation. An understanding of modern instruments and experimental techniques including x-ray diffraction, optical and electron microscopy is gained through lecture and laboratory experience. Experimental determination of the processing, structure, property relationship is emphasized. Laboratory report writing skills are developed.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 2090 Requisites Students must have completed MSE 2090 Credits: 3
MSE 3610Aerospace Materials3

Effective Date 08/01/2023 Introduces physical-chemical-microstructural-mechanical property relations for aerospace materials. Metal, polymer, ceramic, and composite material systems are covered. Topics include strength, fracture, corrosion, oxidation/corrosion, materials selection, phase diagrams, kinetics of phase change, and materials processing. Case studies include materials for aero turbine engines and ultralight structures. Prerequisite CHEM 1410 or 1610 or CHEM 1810. Corequisite MAE 2310 or CE 2310. Requisites Students must have completed CHEM 1410 or CHEM 1610 or CHEM 1810 and previously or currently taken MAE 2310 or CE 2310

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 3670Materials for Electronic, Magnetic and Optical Applications3

Effective Date 08/01/2024 The course introduces the basics of materials interactions with electric and magnetic fields, including electromagnetic radiation. It describes the classes of materials that exhibit useful electronic, optical, and magnetic properties. Particular attention will be devoted to the intrinsic (structure, chemistry) and extrinsic (processing, microstructure) material features that determine these properties.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
PHYS 2415 or equivalent. Requisites Must have completed PHYS 2415 or PHYS 1720 or ECE 2200 or ECE 2502 - Applied Physics: Electricity and Magnetism Credits: 3
MSE 4055Nanoscale Science & Technology3

Effective Date 05/01/2023 Covers the phenomena exhibited by materials below one hundred nanometers and their use in technology. The course will provide students with fundamental principles to analyze nanoscale phenomena, assemble nanostructures characterization. Electrical, mechanical and optical properties and synthesis will be discussed. Current and potential applications will be discussed with consideration of economic and societal aspects.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3670. Requisites Must have completed MSE 3670. Credits: 3
MSE 4200Additive Manufacturing of Metals3

Effective Date 05/01/2023 This course introduces state-of-the-art additive manufacturing techniques for metallic materials, processing considerations, unresolved challenges and future opportunities. The course focuses on the underlying mechanisms such as energy-matter interaction, solidification, melt pool characteristics, defects, as well as the impact on resulting materials properties based on the processing-structure-property relationships.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3070 Requisites Must have completed MSE 3070 Credits: 3
MSE 4210Materials Processing3

Effective Date 05/01/2023 This course examines the fundamental principles of physics, chemistry, materials science, and manufacturing which underlie the making, shaping, and fabrication of engineering components from casting and deformation processing (e.g. rolling, extrusion, forging) of metals, to powder processing of metals and ceramics, to polymer injection molding, to thin-film processing and lithography relevant to microelectronic circuit fabrication.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3070 or Instructor Permission Requisites Must have completed MSE 3070 Credits: 3
MSE 4220Polymer Physics3

Effective Date 08/01/2024 This course provides a rigorous understanding of polymers and polymeric materials from molecule to macroscopic viewpoint. Topics covered include single polymers, solutions, melts, gels, and networks. The knowledge obtained is universal to all polymeric systems across various length scales and can be applied to both synthetic and biopolymers. Thus, this course can serve as general guidance for the design and development of soft (bio) materials.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3050 or CHE 3316 or MAE 2100 or instructor permission Requisites Must have completed MSE 3050 or CHE 3316 or MAE 2100 Credits: 3
MSE 4270Introduction to Atomistic Simulations3

Effective Date 05/01/2023 Introduction to classical atomic-level simulation techniques (molecular dynamics, Metropolis and kinetic Monte Carlo). The basic concepts, capabilities and limitations of the methods are discussed, an overview of the state-of-the-art is provided, and examples of recent success stories are considered. The emphasis is on getting practical experience in designing and performing simulations.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
3rd year standing or instructor permission.
MSE 4320Origins of Mechanical Behavior3

Effective Date 05/01/2023 Explores the microstructural origins of material deformation and fracture in response to mechanical loading. Deformation and creep are understood based on elasticity theory and dislocation concepts. Fatigue and fracture are understood based on continuum fracture mechanics and microstructural damage mechanisms.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 3060 Requisites Must have completed MSE 3060. Credits: 3
MSE 4592Special Topics in Materials Science1

Effective Date 08/01/2026 Advanced undergraduate course on topics not normally covered in other course offerings. The topic usually reflects new developments in the materials science and engineering field. Offerings are based on student and faculty interests.

Subject
MSE
Credits (min)
1
Credits (max)
1
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
MSE 4610Materials Capstone Design 13

Effective Date 08/01/2026 This course is the first semester of a two-semester senior capstone design experience where groups of students bring together coursework fundamentals and laboratory practice skills to develop solutions to a major engineering design problem. Students will apply principles of engineering design to generate iterative concept and design reports in written and oral form.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
APMA 3110, MSE 2101, 3050, 3060, 3070, and 3101. Requisites Must have previously completed or be currently enrolled in STS 4500; AND must have previously completed APMA 3110, MSE 2101, 3050, 3060, 3070, and 3101. Restricted to 4th year MSE majors. Credits: 3
Corequisite
STS 4500
MSE 4620Materials Capstone Design 23

Effective Date 08/01/2026 This course is the second semester of a two-semester senior capstone design experience where groups of students bring together coursework fundamentals and laboratory practice skills to develop solutions to a major engineering design problem. Students will execute their detailed design from the fall semester. Technical reports and presentation will be generated in the form of milestone and final reports in both written and oral form.

Subject
MSE
Credits (min)
3
Credits (max)
3
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
MSE 4610 Requisites Must have completed MSE 4610 Credits: 3
MSE 4960Special Project in Materials Science and Engineering1

Effective Date 05/01/2023 A fourth-year project in MSE, under the supervision of a faculty member, is designed to give undergraduate students an application of principles learned in the classroom. The work may be experimental or computational, and the student is expected to become proficient in techniques used to process, characterize, or model materials. The project should make use of design principles in the solution of a problem.

Subject
MSE
Credits (min)
1
Credits (max)
1
Credit unit
Credits
Type
course
Edition
2026-2027
Catalog
Undergraduate Record 2026-2027
Source
virginia.catalog.acalog.com
Prerequisite
Instructor permission. Credits: 1 to 6

Source: University of Virginia-Main Campus's catalog, linked per course · table learning_unit · CourseShelf publish 59