Faculty of Khan
The Quantum Harmonic Oscillator Solution | Schrodinger Equation | Part 1
updated
This video introduces #Functions in #realanalysis. I discuss inverse functions, composite functions, and bijective/injective/surjective functions. Questions/requests? Let me know in the comments!
Lecture Notes: drive.google.com/file/d/1n9eZeRn55rKwlGGe-42n5GwjMhM9z4NZ/view?usp=share_link
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9DOwrQqCGNQQwKuRXkj9pIu
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Tchsurvives
Patapom
Alec Dinerstein
Eugene Bulkin
Andy Johnston
chosenthomas
Lina Stritt
Chapters:
0:00 - Special thanks to Brilliant!
0:50 - Real Analysis: Introduction to Functions
This video introduces #DuhamelsPrinciple, and solves a #PDE problem using this principle alongside the #LaplaceTransform.
Questions/requests? Let me know in the comments! This video was sponsored by Brilliant.
Lecture Notes: drive.google.com/file/d/1JRBB-D64PoK5bFmwNL8jJY9z9fANwNYP/view?usp=share_link
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9Ab7UM8sCfQWgdbzxkXTNVD
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Tchsurvives
Patapom
Alec Dinerstein
Eugene Bulkin
Andy Johnston
chosenthomas
Lina Stritt
Chapters:
0:00 - Special thanks to Brilliant!
0:47 - Duhamel's Principle for Partial Differential Equations
In this video, I introduce the #QuantumHarmonicOscillator and begin to find the solution to the time-independent #SchrodingerEquation for this system!
Questions/requests? Let me know in the comments!
Thanks to Brilliant for sponsoring the video!
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9AtG88OsK_c8FDEBDLCC6_9
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Tchsurvives
Patapom
Alec Dinerstein
Eugene Bulkin
Andy Johnston
K2c2321
chosenthomas
Lina Stritt
Chapters:
0:00 - Special thanks to Brilliant!
0:44 - The Quantum Harmonic Oscillator
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9AtG88OsK_c8FDEBDLCC6_9
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Patapom
Alec Dinerstein
Eugene Bulkin
Kelvin Xie
Andy Johnston
Ike J.
K2c2321
Thomas Rossiter
Lina Stritt
a. Intuition: 0:00
b. Solved Problem: 3:40
Questions? Let me know in the comments!
PDE Playlist: youtube.com/playlist?list=PLdgVBOaXkb9Ab7UM8sCfQWgdbzxkXTNVD
Lecture Notes: drive.google.com/file/d/1rJato1GtQNHKhK9HVyn2ZVjH4mkqL1MO/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Patapom
Alec Dinerstein
Eugene Bulkin
Kelvin Xie
Andy Johnston
Ike J.
K2c2321
Danielle Shin
Thomas Rossiter
Lina Stritt
a. Intro: 0:00
b. Solved Problem: 8:36
Questions? Let me know in the comments!
PDE Playlist (you'll find the Laplace transform video here): youtube.com/playlist?list=PLdgVBOaXkb9Ab7UM8sCfQWgdbzxkXTNVD
Convolution Video: youtube.com/watch?v=N-zd-T17uiE
Green's Function Video: youtu.be/xNqLZnM-PPY
Lecture Notes: drive.google.com/file/d/1C-Ja9QFHKr51EZMWcwjG3ETVjIrVF15J/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Patapom
Alec Dinerstein
Eugene Bulkin
Kelvin Xie
Andy Johnston
Ike J.
K2c2321
Danielle Shin
Thomas Rossiter
Lina Stritt
Questions/requests? Let me know in the comments!
Pre-reqs: Previous videos in this playlist - youtube.com/playlist?list=PLdgVBOaXkb9CkdpdSWT9oPDSvQ8BjjNTq
Lecture Notes: drive.google.com/file/d/1SSiQqi4kvZNtVgxhnNsS4gjVCRtpQ7Mo/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special Thanks to my Patrons:
Patapom
Michael Mark
Alec Dinerstein
Eugene Bulkin
Rene Gastelumendi
Kelvin Xie
Andy Johnston
Ike J.
K2c2321
Danielle Shin
Thomas Rossiter
Eleonora
Questions/requests? Let me know in the comments!
Pre-reqs: Previous videos in this playlist - youtube.com/playlist?list=PLdgVBOaXkb9CkdpdSWT9oPDSvQ8BjjNTq
Lecture Notes: drive.google.com/file/d/1l8j0od5AQvmnk3XLYUpPHPtoZnSnHRhe/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special Thanks to my Patrons:
Patapom
Michael Mark
Alec Dinerstein
Mattheus Reischl
Eugene Bulkin
Rene Gastelumendi
Jose Antonio Sanchez-Migallon
Kelvin Xie
Andy Johnston
Ike J.
K2c2321
Danielle Shin
Thomas Rossiter
Alexander Taylor-Lash
Questions/requests? Let me know in the comments!
Pre-reqs: Previous videos in this playlist - youtube.com/playlist?list=PLdgVBOaXkb9CkdpdSWT9oPDSvQ8BjjNTq
Lecture Notes: drive.google.com/file/d/1l8j0od5AQvmnk3XLYUpPHPtoZnSnHRhe/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special Thanks to my Patrons:
Patapom
Charles Twardy
Michael Mark
Alec Dinerstein
Michael I Golub
Mattheus Reischl
Eugene Bulkin
Rene Gastelumendi
Jose Antonio Sanchez-Migallon
Kelvin Xie
Nidhi Rathi
Andy Johnston
Ike J.
K2c2321
Danielle Shin
Alexander Taylor-Lash
As you'll see in this video: the derivation is more involved than my derivation for the regular Euler-Lagrange equation. Unlike Euler-Lagrange, the second variation is also much harder to apply as it's not a simple matter of solving a differential equation.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9CD8igcUr9Fmn5WXLpE8ZE_
Lecture Notes: drive.google.com/file/d/13K1c7vQG1975ISsL-8rWymf0sK--OYV6/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Patapom
Charles Twardy
Michael Mark
Alec Dinerstein
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jacob Soares
Kelvin Xie
Nidhi Rathi
Andy Johnston
Ike J.
K2c2321
EDIT: At 1:40, I say that the derivative of the sum is the sum of the derivatives - this only applies for an infinite series if we're working within the radius of convergence. In this situation though, the radius of convergence can be infinite since the ODE doesn't have any singularities. Thanks to Quinn Kolt in the comments for pointing this out!
Questions/requests? Let me know in the comments!
Pre-Reqs: This video in my 'Topics in ODEs playlist': youtube.com/watch?v=c3XtwTsE7QY&list=PLdgVBOaXkb9ATVsK2Q84ghjBgIk5faHNc&index=1
Lecture Notes: drive.google.com/file/d/1LAztdvb4J3dxEX2Bgwa-9-G6vZkrtTrY/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Daigo Saito
Patapom
Charles Twardy
Michael Mark
Alec Dinerstein
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jacob Soares
Kelvin Xie
Nidhi Rathi
Andy Johnston
Ike J.
K2c2321
Questions/requests? Let me know in the comments!
Pre-reqs: Previous videos in this playlist - youtube.com/playlist?list=PLdgVBOaXkb9CkdpdSWT9oPDSvQ8BjjNTq
Lecture Notes: drive.google.com/file/d/1NrNGui-m6QRxalSpV_L7Xi7ZX3dWoeNO/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Daigo Saito
Patapom
Charles Twardy
Michael Mark
Alec Dinerstein
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jacob Soares
Kelvin Xie
Nidhi Rathi
Andy Johnston
Ike J.
K2c2321
Continuing from the previous lesson, this video further discusses #StationaryStates as solutions to the time-independent #SchrodingerEquation, by proving a number of theorems related to stationary states.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9AtG88OsK_c8FDEBDLCC6_9
Lecture Notes: drive.google.com/file/d/1suD-f7K4z_LQ9rp0J59G07A3U0zFg7s_/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Daigo Saito
Patapom
Charles Twardy
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
Celso Carranza
Kelvin Xie
Nidhi Rathi
Andy Johnston
Ike J.
This video was sponsored by Skillshare.
This video is the first of two parts on a mini-series discussing the solution to 4th order partial differential equations, using the vibrating beam as an example.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist - youtube.com/playlist?list=PLdgVBOaXkb9Ab7UM8sCfQWgdbzxkXTNVD
Lecture Notes: drive.google.com/file/d/1K7tSRaBBAWaUvZsG3D9yqfCHnc5kvvkr/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Daigo Saito
Patapom
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
Celso Carranza
Kelvin Xie
Nidhi Rathi
Andy Johnston
This video was sponsored by Skillshare.
Happy New Year! This video introduces #IsoperimetricProblems in #CalculusofVariations. These are constrained variation problems in which the length of the stationary function to be determined is a fixed constant. Here, we solve an example involving finding the equation of the curve of fixed length between two points such that the area under the curve is maximized. It turns out to be an arc on a circle connecting those two points!
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist (esp. the constrained variation video): youtube.com/playlist?list=PLdgVBOaXkb9CD8igcUr9Fmn5WXLpE8ZE_
Lecture Notes: drive.google.com/file/d/1VzX3KcIpnN5qoy7LKluUxESFl9PfU4V1/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Daigo Saito
Patapom
Jacob Best
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
Celso Carranza
Kelvin Xie
This video was sponsored by Skillshare.
This video introduces #StationaryStates as solutions to the time-independent #SchrodingerEquation discussed in the previous video.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9AtG88OsK_c8FDEBDLCC6_9
Lecture Notes: drive.google.com/file/d/1_RdzODnHLbtltvZ0-UmajCNHWOs0HCxz/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Patapom
Jacob Best
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
Celso Carranza
David Lee
This video was sponsored by Skillshare.
This video introduces the #MaterialDerivative and provides some intuition with derived examples using temperature and velocity. Essentially, the material derivative of a quantity carried by the particle in a substance in which that quantity varies is the combination of the intrinsic time variation of the system and the movement of the particle across the spatial gradient of the quantity.
Questions/requests? Let me know in the comments!
Pre-reqs: Basic understanding of ordinary and partial derivatives.
Lecture Notes: drive.google.com/file/d/1hqF32UGpa4lc0NR0K36O4BwbW_7NYwoe/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Patapom
Damjan
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
Celso Carranza
David Lee
This video was sponsored by Skillshare.
Introduction to #ConformalMapping with the definition and conformal mapping theorem (i.e. a conformal map is a function that preserves angles when it is used to transform one complex variable to another). I use the fact that a conformal map has preservation of angles to derive the requisite condition for a complex function f(z) to be a conformal map: that is to say, f(z) must be analytic and have a non-zero derivative in the area of interest.
Questions/requests? Let me know in the comments!
Pre-reqs: My basic #ComplexVariables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/file/d/1NKQ9VHriqionsQFJd_snDUFVIM-yy9et/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Patapom
Yenyo Pal
Lisa Bouchard
Eugene Bulkin
Rene Gastelumendi
Borgeth
Jose Antonio Sanchez-Migallon
This video was sponsored by Skillshare.
Questions/requests? Let me know in the comments!
Pre-requisites: know what a differential equation is (so basically 1st year undergrad calculus should be more than enough).
Lecture Notes: drive.google.com/file/d/1zufFLUeUVR6NZqb0MHCQWlnN_6SpOqIb/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Aaron Kaw
Cesar Garza
Daigo Saito
Alvin Barnabas
Patapom
Damjan
Yenyo Pal
Lisa Bouchard
Gabriel Sommer
Eugene Bulkin
Rene Gastelumendi
Nicholas Chowdhury
Borgeth
Jose Antonio Sanchez-Migallon
Questions/requests? Let me know in the comments!
Part 1: youtu.be/hx2moxHC-bk
Video on the separate plot technique (i.e. where I plot the line and exponential separately): youtu.be/5oPSHfKRKvI
Prerequisites: Previous videos on Nonlinear Dynamics: youtube.com/playlist?list=PLdgVBOaXkb9C8iPDD5xW0jT-c3dtP4TR5
Lecture Notes: drive.google.com/file/d/1h5s2Fh410Vmzs877_wkJzBl-i6RfEUeQ/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Cesar Garza
Daigo Saito
Alvin Barnabas
Patapom
Damjan
Yenyo Pal
Lisa Bouchard
Gabriel Sommer
Eugene Bulkin
Rene Gastelumendi
Nicholas Chowdhury
Borgeth
Jose Antonio Sanchez-Migallon
Questions/requests? Let me know in the comments!
Prerequisites: Knowing about nondimensionalization: youtube.com/watch?v=Fa28ifA7H9o and previous videos on Nonlinear Dynamics, though the latter are more relevant in part 2: youtube.com/playlist?list=PLdgVBOaXkb9C8iPDD5xW0jT-c3dtP4TR5
Lecture Notes: drive.google.com/open?id=1GURkwn--Z4zbQ7JO-SADz_s-YlApMJgA
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Cesar Garza
Daigo Saito
Odissei
Patapom
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
Nicholas Chowdhury
Questions/requests? Let me know in the comments!
Prerequisites: Video on #LaplaceMethod - youtube.com/watch?v=7PuZQhqkWxk
Lecture Notes: drive.google.com/file/d/1_RdzODnHLbtltvZ0-UmajCNHWOs0HCxz/view?usp=sharing
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Cesar Garza
Daigo Saito
Odissei
Patapom
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
Nicholas Chowdhury
Questions/requests? Let me know in the comments!
Video on separation of variables in PDEs: youtube.com/watch?v=aq2DAkJIA2w&list=PLdgVBOaXkb9Ab7UM8sCfQWgdbzxkXTNVD&index=4
Prerequisites: The videos before this one in my #QuantumMechanics playlist: youtube.com/playlist?list=PLdgVBOaXkb9AtG88OsK_c8FDEBDLCC6_9
Lecture Notes: drive.google.com/open?id=12poejGIqrDLEZHdDoBdvOpCl6VHXLoYO
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
Cesar Garza
Daigo Saito
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
Nicholas Chowdhury
Questions/requests? Let me know in the comments!
Pre-reqs: Every video before this one in my #ComplexVariables playlist, especially the video on Branch Points and Branch Cuts right before this: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/open?id=1JHiTM9r6liwQDz9XTE_lUmhe3najPJ1h
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
Specifically, I describe the natural log function as an example of a multiple-valued function requiring us to 'cut it up' to form a single-valued function which is more amenable to integration. The process of 'cutting it up' involves the construction of a branch cut, which will come in handy when we get to integrating these functions in the next video.
Questions/requests? Let me know in the comments!
Pre-reqs: Every video before this one in my #ComplexVariables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/open?id=1RMcdOb5zeqUL2Lasvy7LC84PTHNg8z2c
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
I describe meromorphic functions as lying in the middle of the spectrum of continuity (between frankly discontinuous functions and perfectly continuous functions). I then define and give the intuition of the winding number, both for typical curves and for functions.
Questions/requests? Let me know in the comments!
Pre-reqs: Every video before this one in my #ComplexVariables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/open?id=1vr6WIptIgHJH9ATLwxIMTAy6ANwLc5_g
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Adam Pesl
Yiu Chong
René Gastelumendi
I describe the intuition behind the curvature as the extent to which a curve deviates from a straight line (zero curvature). I then derive the expression for curvature for both a unit speed curve and a regular curve, using the #UnitNormal.
Questions/feedback? Let me know in the comments!
Pre-reqs: the previous videos in my playlist youtube.com/playlist?list=PLdgVBOaXkb9DJjk8V0-RkXTnD4ZXUOFsc
Lecture Notes: drive.google.com/open?id=1_40zI8E2r81zOmb_nkhWbN7q2gSqUc7x
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special Thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Damjan
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Yiu Chong
René Gastelumendi
In this video, I discuss perturbation methods in ODEs (ordinary differential equations). Perturbation methods become necessary in differential equations which are otherwise linear, but are 'perturbed' by a small complicated (usually nonlinear) term. I discuss the steps behind performing perturbation methods, and finish the video with an example problem of using perturbation methods to solve a second-order ODE.
Questions/requests? Let me know in the comments!
Prereqs: my playlist on topics in differential equations (youtube.com/playlist?list=PLdgVBOaXkb9ATVsK2Q84ghjBgIk5faHNc) is helpful, but ultimately, knowing how to solve linear ODEs with constant coefficients is enough.
Lecture Notes: drive.google.com/open?id=1FzDATKN-hhyjKPOJXOCx7BOV0fW4dXQM
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special Thanks to my Patrons:
Cesar Garza
Daigo Saito
Alvin Barnabas
Yenyo Pal
Lisa Bouchard
Patapom
Gabriel Sommer
Eugene Bulkin
Jiexian Ma
This video was sponsored by Skillshare.
In this video, I begin by discussing the difference between open and closed curves. I then move on to define important terms, such as a periodic curve, a closed curve, and the period of the curve. I then prove an important theorem that if a smooth regular curve is periodic, then its unit-speed reparameterization (i.e. reparameterization with respect to arc length per the previous video) is also periodic.
Questions/requests? Let me know in the comments!
Pre-reqs: the previous videos in my playlist youtube.com/playlist?list=PLdgVBOaXkb9DJjk8V0-RkXTnD4ZXUOFsc
Lecture Notes: drive.google.com/open?id=1JZjgA997IVsqrTmYK4R4hjAhQl1UJ6KN
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
#DifferentialGeometry #ArcLength #PeriodicCurve
In this video, I begin by discussing how reparametrizing with respect to arc length is a valid choice, and why doing this procedure is important in the context of Differential Geometry (re: unit-speed curves). I then prove two theorems related to using arc length as the parameter and the resultant unit speed properties of the curve.
Questions/requests? Let me know in the comments!
Pre-reqs: the previous videos in my playlist youtube.com/playlist?list=PLdgVBOaXkb9DJjk8V0-RkXTnD4ZXUOFsc
Lecture Notes: drive.google.com/open?id=1WWXM084fohiIqbeCwinT4bwBVTMSF9hl
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
#DifferentialGeometry #ArcLength #UnitSpeedCurve
There are two types of pitchfork bifurcations: supercritical and subcritical. Supercritical bifurcations are bifurcations in which varying a parameter changes the stability of one fixed point from stable to unstable, and causes two stable fixed points to appear. A subcritical bifurcation is the opposite, in that an unstable fixed point becomes stable, while two new unstable fixed points appear after crossing the bifurcation point.
Questions/requests? Let me know in the comments!
Pre-reqs: The videos before this one on this playlist: youtube.com/playlist?list=PLdgVBOaXkb9C8iPDD5xW0jT-c3dtP4TR5
Lecture Notes: drive.google.com/open?id=1xus7TiyNmpvgn7m_olEQhMcs9GzWT-H1
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Cesar Garza
- Daigo Saito
- Alvin Barnabas
- Aldo Mendes Martins
- Yenyo Pal
- Lisa Bouchard
- Richard Mcnair
- Patapom
- Bernardo Marques
- Jacob Soares
- Otar Kemularia
- Eugene Bulkin
#NonlinearDynamics #Bifurcations #FacultyofKhan
Transcritical bifurcations are bifurcations in which varying a parameter causes two fixed points to fuse and become a half-stable fixed point, after which they switch stability. I also solve an example of a transcritical bifurcation, which ultimately reduces to its normal form.
Questions/requests? Let me know in the comments!
Pre-reqs: The videos before this one on this playlist: youtube.com/playlist?list=PLdgVBOaXkb9C8iPDD5xW0jT-c3dtP4TR5
Lecture Notes: drive.google.com/open?id=1jwIMJVksbeX5xplKyfhKJbDRTj-zO1HP
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Cesar Garza
- Daigo Saito
- Alvin Barnabas
- Aldo Mendes Martins
- Yenyo Pal
- Lisa Bouchard
- Richard Mcnair
- Patapom
- Bernardo Marques
- Jacob Soares
- Otar Kemularia
Following the proof, I apply Rouche's Theorem to an important example involving the proof of the Fundamental Theorem of Algebra. I'm sure that the pure math lovers who watch my videos will be excited to see this proof!
Questions/requests? Let me know in the comments!
Pre-reqs: Every video before this one in my Complex Variables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/open?id=1Fm0RdZj5DAX460v8RvBrY0ilhYjBwhxg
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Cesar Garza
- Alvin Barnabas
- Aldo Mendes Martins
- Yenyo Pal
- Lisa Bouchard
- Richard Mcnair
- Patapom
- Bernardo Marques
- Jacob Soares
- Otar Kemularia
In this lesson, I derive the Argument Principle in complex variables, which relates the winding number of a complex function with respect to a traversal over a contour C to the number of zeros and poles of that function inside C.
This video will be particularly useful when it comes to proving Rouche's Theorem, which will be the next video coming up. Questions/requests? Let me know in the comments!
Pre-reqs: Every video before this one in my Complex Variables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Lecture Notes: drive.google.com/open?id=1W8E1xLxwECVX1VJjKNkCF5992W0bmRCs
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Cesar Garza
- Alvin Barnabas
- Aldo Mendes Martins
- Yenyo Pal
- Lisa Bouchard
- Richard Mcnair
- Guillaume Chereau
- Patapom
- Bernardo Marques
- Jacob Soares
- Otar Kemularia
For this reason, they come up in many places in Physics that make use of complex variables. I begin this derivation by discussing the Cauchy Principal Value, setting up the assumptions, and performing an integration over a slightly modified semicircular contour. Then, I use the definition of the Principal Value, the polar representation of complex numbers, Jordan's Lemma, and Cauchy's Theorem to make some simplifications, after which I complete the derivation.
You'll notice that a lot of this proof takes elements from multiple videos in my Complex Variables playlist, so I highly recommend you watch those so that you can best engage with the content presented in this video!
Questions/Requests? Let me know in the comments!
Pre-reqs: My entire Complex Variables playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Improper Integral Video: youtube.com/watch?v=a2ocry6LBe0
Lecture Notes: drive.google.com/open?id=1dxk08qUIfItegpJwG2FXww8fF0Ozj7yt
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
Lecture Notes: drive.google.com/open?id=1PUSPfoI7g8lcU0-Gzcxi9n9pBdMXjjKY
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
EDIT: At 8:35, when I write the components of a, I meant to use superscripts instead of subscripts! a is a contravariant tensor, so superscripts are the way to go!
Then, I define the transformation law for a general (p,q) tensor. I finish the video by defining a couple of simple tensor operations: summation, scalar multiplication, and the extension of the two: linear combination.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
Lecture Notes: drive.google.com/open?id=1EkKWJPxplILIxH4pgHKOVLyk3yMAVIrp
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
I describe two examples of contravariant and covariant tensors. For contravariant tensors, I use the tangent vector of a parametric curve. For a covariant tensor, I use the example of a gradient vector of a scalar field.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
Lecture Notes: drive.google.com/open?id=1E2I-LpQcKV-ERMUXqYMOtIH2dZs5EM5E
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
I discuss contravariant and covariant components and give some intuition of what they mean by using two examples. The next video will cover a more rigorous definition of contravariant and covariant vector components.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
2nd video on Tensors: youtube.com/watch?v=j6DazQDbEhQ&list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_&index=3&t=0s
Lecture Notes: drive.google.com/open?id=1CVYgE5iEGAeuSe16L1x0ULYiL0GVTgJn
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
I give 3 important examples of curvilinear coordinates: polar, cylindrical, and spherical. Afterwards, I finish the video by defining the Jacobian matrix and its determinant, the Jacobian.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
Lecture Notes: drive.google.com/open?id=1rrdneshnzStDXi62CTEURivd9uMYwM-M
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Anonymous
- Cesar Garza
- Odissei
- Alvin Barnabas
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
This video covers the basics of the vertebrobasilar circulation, which supplies the brainstem, spinal cord, cerebellum, and the posterior part of the cerebrum. If you've been staring at your Anatomy book for the past 5 hours trying to make sense of things, then hopefully this video can explain the same concepts in just over 7 minutes. Questions/requests? Let me know in the comments!
Pre-reqs: Basic knowledge of vertebra anatomy, meninges, and basic knowledge of the major heart blood vessels. However, I've explained the relevant portions just to refresh your memory.
Lecture Notes: drive.google.com/open?id=1JvqdHDMG1mzQ5MW-PFv91MAabbJ4I-HA
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons:
- James Mark Wilson
- Cesar Garza
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
I then move on to a discussion on reparametrization. I define reparametrization, give a short example to provide necessary context, and then finish the video by defining regular and singular points on a curve.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9DJjk8V0-RkXTnD4ZXUOFsc
Lecture Notes: drive.google.com/open?id=19bbVU9HczuCaFJ64ceQBncwoYqrfsh5H
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Cesar Garza
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
My lecture series on Tensors assumed knowledge of Linear Algebra, so this should be a fairly elementary review for most people. Nonetheless, in my effort to be as self-contained as possible, I made this 'detour' video just in case people needed it. In any case, we have the foundation necessary to tackle the actual Mathematics of Tensors, starting from the next video in the series.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in the playlist - youtube.com/playlist?list=PLdgVBOaXkb9D6zw47gsrtE5XqLeRPh27_
Lecture Notes: drive.google.com/open?id=1ZWnssKy7wghon0UHOzzNOtsncYRj4KsR
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Cesar Garza
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- McKay Oyler
- Dieter Walter Reule
I discuss these postulates, as well as their implications. Then, I define events and give an especially pertinent (and spicy) example with the Youtube Rewind video of 2018, after which I finish the video with an explanation of the relativity of simultaneity. This concept will be re-visited in future videos when I go over spacetime diagrams, but this should be a good introduction.
This series should be a good companion to my concurrent Tensor Calculus and Differential Geometry series (I'm going to upload the next videos on these next!) - which should serve as a nice prelude to General Relativity. Questions/requests? Let me know in the comments!
Pre-reqs: Just know what coordinate systems are and know that speed = distance/time. Knowledge of grade 12 Classical Mechanics helps but isn't absolutely essential.
Lecture Notes: drive.google.com/open?id=1gXPrsZGL92TKVMHKRvZA66gScT6XL74X
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- McKay Oyler
Here, I describe the assumptions underlying the application of Laplace's Method. This method also comes in handy when deriving the Stirling formula using the definition of the Gamma Function, which is what we do in the second part of this video.
Questions/requests? Let me know in the comments!
Gamma Function Video: youtube.com/watch?v=PwCl7vVyXwY
Pre-reqs: My Gamma Function Video and knowledge of 1st-year undergraduate Calculus (especially knowledge of integrating the exponential of -x^2 from -infinity to infinity).
Lecture Notes: drive.google.com/open?id=1Jb0EBzEXPh18mpHaEEKg16nOUXB5HmyG
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- Cooper Wang
I finish the video by showing that the geodesic on a sphere carries the exact same form as the great circle. This leads to the conclusion that the curve representing the shortest distance between two points on a sphere is an arc on the great circle connecting those two points.
Questions/requests? Let me know in the comments!
Pre-reqs: The videos before this one in this playlist: youtube.com/playlist?list=PLdgVBOaXkb9CD8igcUr9Fmn5WXLpE8ZE_
Previous Geodesic Video: youtube.com/watch?v=f8ACx2iN6fk&list=PLdgVBOaXkb9CD8igcUr9Fmn5WXLpE8ZE_&index=4&t=0s
Lecture Notes: drive.google.com/open?id=1PNGrNpjTjG-dsuCMJaTC5uGPKgcWEC3E
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
- Vitor Ciaramella
- Cooper Wang
I begin by explaining the 5-step process in solving problems involving a Fourier integral (i.e. when you're integrating f(x)*cos(ax) or f(x)*sin(ax)) with infinite limits. After explaining the process, I apply it to a simple example problem.
Questions/Requests? Let me know in the comments!
Pre-reqs: The videos before this one on this playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
Improper Integral Video: youtube.com/watch?v=a2ocry6LBe0
Lecture Notes: drive.google.com/open?id=18w4I-qVTCKbkWqh_qk4H2KwrFRvIFwm1
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
- Elm Mara
There are multiple ways to derive the Stirling Formula; I've just shown one of the simple ones here. The drawback is that this is a less powerful derivation; perhaps this could be a hint for a more rigorous proof in a later video???
Special thanks to James Mark Wilson for suggesting this video!
Questions/Requests? Let me know in the comments!
Pre-reqs: Basic Calculus (i.e. you should know what integration means).
Lecture Notes: drive.google.com/open?id=1uMzWmrJXWyeUXUTwBDnmyCwmO6ENRdEW
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Yuan Gao
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
- Patapom
ERRATA: At 4:25, evaluating the integral should actually give you NlnN - N + 1, but since N is large, I automatically neglected the '1'.
I begin by proving Jordan's Inequality, which then leads nicely into the proof of Jordan's Lemma. Note here that Jordan is pronounced in the French manner (i.e. as 'Jordon').
Questions/Requests? Let me know in the comments!
Pre-reqs: The videos before this one on this playlist: youtube.com/playlist?list=PLdgVBOaXkb9CNMqbsL9GTWwU542DiRrPB
ML Inequality Video: youtube.com/watch?v=sEyVa_W1Syo
Lecture Notes: drive.google.com/open?id=1ZQCg9XhPXkqIvjl5H3UIPKkPMaK5GARH
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- James Mark Wilson
- Yuan Gao
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair
- Guillaume Chereau
In this video, I explain saddle node bifurcations. These are bifurcations in which varying a parameter causes the appearance of a half-stable fixed point, followed by two fixed points from nothing. I discuss bifurcation diagrams, bifurcation points, and describe the concept of normal forms.
Questions/requests? Let me know in the comments!
Pre-reqs: The videos before this one on this playlist: youtube.com/playlist?list=PLdgVBOaXkb9C8iPDD5xW0jT-c3dtP4TR5
Lecture Notes: drive.google.com/open?id=1mt_5XJqUB6wtST-J0KBlRhSJY5v7lM7q
Patreon: patreon.com/user?u=4354534
Twitter: twitter.com/FacultyOfKhan
Special thanks to my Patrons for supporting me at the $5 level or higher:
- Jose Lockhart
- James Mark Wilson
- Yuan Gao
- Marcin Maciejewski
- Sabre
- Jacob Soares
- Yenyo Pal
- Lisa Bouchard
- Bernardo Marques
- Connor Mooneyhan
- Richard McNair


