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Classes
 
Classes taken at MIT toward Materials Science, Mechanical Engineering, or otherwise.
 
 
2.00b Toy Product Design
Project-centric intro to the product design, designing for play

2.001 Mechanics and Materials I
Intro to statics and the mechanics of deformable solids

2.003 Dynamics and Controls I
Intro to dynamics and vibrations of lumped-parameter models of mechanical systems

2.004 Dynamics and Controls II
Linear systems, feedback control, root-locus, frequency domain design

2.005 Thermal-Fluids Engineering I
Fundamental principles of thermodynamics, fluid mechanics, and heat transfer

2.12 Introduction to Robotics
Robotic kinematics, differential motion, computer vision, navigation

2.013 Engineering Systems Design
Designed low-cost continuous flow bioreactor with team of 9

2.014 Engineering Systems Development
Manufactured low-cost continuous flow bioreactor with team of 7

2.086 Numerical Computation for Mechanical Engineers
Approximation, differential equations, probabalistic approaches

2.671 Measurement and Instrumentation I
Experimental techniques, uncertainty analysis, frequency response, Fourier

2.678 Electronics for Mechanical Systems
Fundamentals of electronics in the context of electro-mechanical systems

2.C01 Physical Systems Modeling and Design Using Machine Learning
Uses energy and information to define supervised and unsupervised learning algorithms

space 3.091 Introduction to Solid State Chemistry
Basic principles of chemistry and their application to engineering systems

3.010 Structure of Materials
Fundamentals of bonding and structure that underpin materials science

3.020 Thermodynamics of Materials
Applies classical thermo to phase transformations, phase diagrams, and chemical reactions

3.030 Microstructural Evolution in Materials
Microstructures, defects, and structural evolution in all material classes. AKA "kinetics"

3.033 Electrical, Optical, and Magnetic Properties of Materials
Uses quantum mechanics, solid state physics, electricity and magnetism

3.044 Materials Processing
Using heat transfer, chemical diffusion, and fluid flow to analyze industrial processes

3.17 Manufacturing Principles
Semiconductor manufacturing, from boule to boot-up; Six Sigma Green Belt Certification

3.171 Structural Materials and Manufacturing
Specific materials in context of commercial specifications

3.44 Materials Processing for Micro- and Nano-Systems
Processing of bulk, thin film, and nanoscale materials

3.086 Innovation and Commericalization of Materials Technology
Case studies in fundamental innovations (transistor, ethernet, etc) and their development process

3.15 Electrical, Optical, and Magnetic Materials and Devices
Materials-centered case studies in modern devices

3.041 Computational Materials Design
Numerical methods for alloy design. Final project coming soon.

space 6.1910 Computation Structures
Architecture of digital systems, builds from NAND gates to CPUs


6.1903 Introduction to C and Assembly
Creates understanding of how high-level languages are translated to machine-level instructions

6.1010 Introduction to Programming
Computational concepts, software engineering, algorithmic techniques, data types, and recursion.

6.2080 Semiconductor Electronic Circuits
Basic circuit design, semiconductor devices, large and small signal models and analysis, amplifier and opamp circuits

6.C01 Modeling with Machine Learning
Intro to modern machine learning methods, from supervised to unsupervised models, with an emphasis on newer neural approaches

6.S092 The Art and Science of PCB Design
Designing and fabricating a PCB from scratch, including schematic capture, board layout, assembly, and debugging

9.01 Introduction to Neuroscience
Introduction to the mammalian nervous system, with emphasis on the structure and function of the human brain

space 3.985 Archaeological Science
Natural science and engineering methods archaeologists use to address pressing issues towards anthropology


3.986 The Human Past: Introduction to Archaeology
Examines ancient human activities and the forces that shaped them

3.987 Human Evolution: Data from Palaeontology, Archaeology, and Materials Science
Examines human physical and cultural evolution with human palaeontology, archaeology, and materials science

3.098 Ancient Engineering: Ceramic Technologies
Explores human interaction with ceramic materials from 25,000 years ago to the 16th century AD

9.00 Introduction to Psychology
A survey of the scientific study of human nature, including how the mind works, and how the brain supports the mind

9.85 Infant and Early Childhood Cognition
Introduction to cognitive development focusing on childrens' understanding of objects, agents, and causality

21H.001 How to Stage a Revolution
Explores questions about the causes and nature of revolutions

21T.001 Bodies in Motion
Students integrate with concepts like time, space, weight, and sight in an improvisatory style and communal course

     
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spacespace Last updated: February 07, 2002