L27: Poincaré's Question and Perelman's Answer
The Shape of Nature
Professor Satyan Devadoss
L23: Orange Stackings and Bubble Partitions
The Shape of Nature
Professor Satyan Devadoss
L21: Convex Hulls and Computational Complexity
The Shape of Nature
Professor Satyan Devadoss
L19: Mountain Terrains and Surface Reconstruction
The Shape of Nature
Professor Satyan Devadoss
L18: Cauchy's Rigidity and Connelly's Flexibility
The Shape of Nature
Professor Satyan Devadoss
L12: Reaching Boundaries and Losing Orientations
The Shape of Nature
Professor Satyan Devadoss
L11: Surfaces and a New Notion of Equivalence
The Shape of Nature
Professor Satyan Devadoss
L10: Platonic Solids and Euler's Masterpiece
The Shape of Nature
Professor Satyan Devadoss
L8: The Messy Business of Tangles and Mutations
The Shape of Nature
Professor Satyan Devadoss
24:The Monster at the End of the Book
Memory and the Human Lifespan
Professor Steve Joordens
23: Aging, Memory, and Cognitive Transition
Memory and the Human Lifespan
Professor Steve Joordens
22: How We Choose What's Important to Remember
Memory and the Human Lifespan
Professor Steve Joordens
21: Mind the Gaps! Memory as Reconstruction
Memory and the Human Lifespan
Professor Steve Joordens
20: Recovered Memories or False Memories?
Memory and the Human Lifespan
Professor Steve Joordens
19: Déjà Vu and the Illusion of Memory
Memory and the Human Lifespan
Professor Steve Joordens
18: That Powerful Glow of Warm Familiarity
Memory and the Human Lifespan
Professor Steve Joordens
17: The Many Challenges of Alzheimer’s Disease
Memory and the Human Lifespan
Professor Steve Joordens
16: Learning from Brain Damage and Amnesias
Memory and the Human Lifespan
Professor Steve Joordens
12: Infant and Early Childhood Memory
Memory and the Human Lifespan
Professor Steve Joordens
11: Sleep and the Consolidation of Memories
Memory and the Human Lifespan
Professor Steve Joordens
10: When Memory Systems Battle—Habits vs. Goals
Memory and the Human Lifespan
Professor Steve Joordens
9: From Procedural Memory to Habit
Memory and the Human Lifespan
Professor Steve Joordens
8: The Secret Passage—Implicit Memory
Memory and the Human Lifespan
Professor Steve Joordens
7: Episodic and Semantic Long-Term Memory
Memory and the Human Lifespan
Professor Steve Joordens
6: Encoding—Our Gateway into Long-Term Memory
Memory and the Human Lifespan
Professor Steve Joordens
5: The Conveyor Belt of Working Memory
Memory and the Human Lifespan
Professor Steve Joordens
4: Sensory Memory—Brief Traces of the Past
Memory and the Human Lifespan
Professor Steve Joordens
3: Rote Memorization and a Science of Forgetting
Memory and the Human Lifespan
Professor Steve Joordens
L24: The Greatest Processes in the World
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L23: The Chemical Reaction Quotient
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L22: Chemical Reactions—Getting to Equilibrium
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L21: The Electrochemical Potential
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L20: More Engines—Materials at Work
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L19: The Carnot Engine and Limits of Efficiency
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L18: Melting and Freezing of Mixtures
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L17: To Mix, or Not To Mix?
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L16: Properties of Phases
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L15: Phase Diagrams—Ultimate Materials Maps
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L14: Phases of Matter—Gas, Liquid, Solid
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L13: How Materials Respond to Heat
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L12: How Materials Hold Heat
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L11: Mixing & Osmotic Pressure
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L10: Enthalpy, Free Energy, & Equilibrium
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L9: The Chemical Potential
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L8: Entropy—The Arrow of Time
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L7: Work-Heat Equivalence
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L6: Energy Transferred & Conserved
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L5: The Ideal Gas Law & a Piston
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L4: Salt, Soup, Energy, & Entropy
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L3: Temperature — Thermodynamics' First Force
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L2: Variables & the Flow of Energy
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
L1: Thermodynamics—What's Under the Hood
Thermodynamics: Four Laws that Move the Universe
Professor Joffrey Grossman
Part 2- 24: The Future of Science
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 23: Synchronization
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 21: Chaos in Health and Disease
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 20: Cloaking Messages with Chaos
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 19: Embracing Chaos— From Tao to Space Travel
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 17: Fractals Inside Us
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 16: Fractals Around Us
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 15: A New Concept of Dimension
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 14: The Properties of Fractals
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 2- 13: Fractals— The Geometry of Chaos
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 12: Experimental Tests of the New Theory
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 11: Universal Features of the Route to Chaos
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 10: Displaying How Systems Turn Chaotic
Chaos
Taught by Professor Steven Strogatz
Cornell Universityaudiofile
Part 1- 09: How Systems Turn Chaotic
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 08: Animating Chaos as Disorder—Iterated Maps
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 07: Picturing Chaos as Order— Strange Attractors
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 06: Chaos as Disorder— The Butterfly Effect
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 05: The Return of Chaos
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 04: Chaos Found and Lost Again
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 03: From Clockwork to Chaos
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 02: The Clockwork Universe
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1- 01: The Chaos Revolution
Chaos
Taught by Professor Steven Strogatz
Cornell University
Part 1 - 00: Professor Bio
Chaos
Taught by Professor Steven Strogatz
Cornell University
L24 - The Meaning of Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L23 - It from Bit: Physics from Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L22 - Quantum Cryptography via Entanglement
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L21 - Qubits and Quantum Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L20 - Uncomputable Functions and Incompleteness
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L19 - Turing Machines and Algorithmic Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L18 - Horse Races and Stock Markets
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L17 - Erasure Cost and Reversible Computing
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L16 - Entropy and Microstate Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L15 - Neural Codes in the Brain
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L14 - Life's Origins and DNA Computing
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L13 - What Genetic Information Can Do
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L12 - Unbreakable Codes and Public Keys
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L11 - Cryptanalysis and Unraveling the Enigma
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L10 - Cryptography and Key Entropy
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumache
L9 - Signals and Bandwidth
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L8 - Error-Correcting Codes
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L7 - Noise and Channel Capacity
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L6 - Encoding Images and Sounds
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L5 - Data Compression and Prefix-Free Codes
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L4 - Entropy and the Average Surprise
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L3 - Measuring Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L2 - Computation and Logic Gates
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
L1 - The Transformability of Information
The Science of Information - From Language to Blackholes
by Professor Benjamin Schumacher
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie
The Book of Why - The New Science of Cause and Effect
by Judea Pearl and Dana Mackenzie