
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


Algebraic solution of the harmonic oscillator

Energy eigenstates on a generic symmetric potential. Shooting method

Momentum operator, energy operator, and a differential equation

1. Course Overview and Introduction (MIT 15.S50 How to Win at Texas Hold 'Em, January IAP 2016)

6. Independent Chip Model

4. Preflop Re-raising Theory

7. An In-depth Combinatorial Hand Analysis in Cash Games

2. Introduction to Postflop Play

3. Tournaments vs. Cash Games

Quantum mechanics as a framework. Defining linearity

Associated Legendre functions and spherical harmonics

Incident packet and delay for reflection

The nature of superposition. Mach-Zehnder interferometer

Creation and annihilation operators acting on energy eigenstates

Hamiltonian and emerging spin angular momentum

Modelling a resonance

Compton Scattering

Reflection and transmission coefficients

Center of mass and relative motion wavefunctions
Follow this podcast in Podwise
Sign in to get AI summaries, transcripts and mind maps for any episode, including new ones.
