
MIT OpenCourseWare
A free and open online publication of educational material from thousands of MIT courses, covering the entire MIT curriculum, ranging from introductory to the most advanced graduate courses. On the OCW website, each course includes a syllabus, instructional material like notes and reading lists, and learning activities like assignments and solutions. Some courses also have videos, online textbooks, and faculty insights on teaching. Knowledge is your reward. There's no signup or enrollment, and no start or end dates. OCW is self-paced learning at its best. Whether you’re a student, a teacher, or simply a curious person that wants to learn, MIT OpenCourseWare (OCW) offers a wealth of insight, inspiration, videos, and a whole lot more! Get the full picture on the OCW website at https://ocw.mit.edu. Accessibility: https://accessibility.mit.edu/ User comments policy: https://ocw.mit.edu/comments/ (Channel banner photo by Nietnagel on Flickr: https://flic.kr/p/8WXxfK.)
Episodes


Lecture 2: Doubly Efficient Interactive Proofs, Part 2

Lecture 5: The Kilian-Micali Protocol, Part 2

Lecture 9: BARGs Implies SNARGs and Connection to Non-Signaling PCPs, Part 1

Lecture 1: Interactive Proofs and the Sum-Check Protocol, Part 2

Lecture 1: Interactive Proofs and the Sum-Check Protocol, Part 1

MIT Milestone Celebration | Keynote Address (480p), Nov 28, 2007

MIT Milestone Celebration | The Future of OCW and Education (480p), Nov 28, 2007

MIT Milestone Celebration | Welcome (480p), Nov 28, 2007

Sujood from Sudan: An Open Learner's Story

How opening learning can close knowledge gaps with June Odongo

Lecture 16: Liquid-Vapor Equilibria in Mixtures; Ideal and Excess Chemical Potentials

Lecture 15: Stratification in Gas and Liquid Mixtures; Liquid-Vapor Spinodal Decomposition

Lecture 25: Thermodiffusive Effects; Multicomponent Transport

Lecture 19: Affinity and Nonequilibrium Law of Mass Action; Potential Energy Surface

Lecture 9: Minimum Work of Partitioning Small Systems; The Gibbs Phase Rule; The Van der Waals Model

Lecture 1: Definitions of System, Property, State, and Weight Process; First Law and Energy

Lecture 2: Second Law and Entropy; Adiabatic Availability; Maximum Entropy Principle

Lecture 24: Relative Diffusion Fluxes; Thermoelectric Effects

Lecture 21: Introduction to Nonequilibrium Theory; Onsager Reciprocity and Maximum Entropy...
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