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  3. The Very Best of the Feynman Lectures
The Very Best of the Feynman Lectures

UPC · Release

The Very Best of the Feynman Lectures

Richard P. Feynman

9780465099009
43 tracksReleased 2005-01-01Basic Books

Last verified: March 26, 2026

9780465099009 is the Universal Product Code (UPC barcode) for the release “The Very Best of the Feynman Lectures” by Richard P. Feynman, released 2005-01-01 on Basic Books. UPCs are unique numeric identifiers assigned by distributors to identify a music release — album, EP, or single — across every digital and physical retail platform. This release contains 43 tracks, each with its own ISRC.

Format

978GS1 prefix
0465Company prefix
09900Product
9Check digit
GS1 prefix:
Country/region prefix assigned by GS1 (e.g. 060/061 = USA/Canada, 50 = UK).
Company prefix:
Label/distributor identifier assigned by the local GS1 office.
Product:
Unique product number assigned by the company.
Check digit:
Modulo-10 check digit that validates the rest of the barcode.

Track List (43)

#Track TitleArtist(s)ISWC
Planetary Motions1Planetary Motions—
Kepler's Laws2Kepler's Laws—
Development of Dynamics3Development of Dynamics—
Newton's Law of Gravitation4Newton's Law of Gravitation—
Universal Gravitation5Universal Gravitation—
Cavendish's Experiment6Cavendish's Experiment—
What Is Gravity?7What Is Gravity?—
Gravity and Relativity8Gravity and Relativity—
Curved Spaces With Two Dimensions2-1Curved Spaces With Two Dimensions—
Curvature in Three-Dimensional Space2-2Curvature in Three-Dimensional Space—
Our Space Is Curved2-3Our Space Is Curved—
Geometry in Space-Time2-4Geometry in Space-Time—
Gravity and the Principle of Equivalance2-5Gravity and the Principle of Equivalance—
The Speed of Clocks in a Gravitational Field2-6The Speed of Clocks in a Gravitational Field—
The Curvature of Space-Time2-7The Curvature of Space-Time—
Motion in Curved Space-Time2-8Motion in Curved Space-Time—
Einstein's Theory of Gravitation2-9Einstein's Theory of Gravitation—
Electrical Forces3-1Electrical Forces—
Electrical and Magnetic Fields3-2Electrical and Magnetic Fields—
Characteristics of Vector Fields3-3Characteristics of Vector Fields—
The Laws of Electromagnetism3-4The Laws of Electromagnetism—
What Are the Fields?3-5What Are the Fields?—
Electromagnetism in Science and Technology3-6Electromagnetism in Science and Technology—
Chance and Likelihood4-1Chance and Likelihood—
Fluctuations4-2Fluctuations—
The Random Walk4-3The Random Walk—
A Probability Distribution4-4A Probability Distribution—
The Uncertainty Principle4-5The Uncertainty Principle—
Probability Wave Amplitudes5-1Probability Wave Amplitudes—
Measurement of Position and Momentum5-2Measurement of Position and Momentum—
Crystal Diffraction5-3Crystal Diffraction—
The Size of an Atom5-4The Size of an Atom—
Energy Levels5-5Energy Levels—
Philosophical Implications5-6Philosophical Implications—
Schrödinger's Equation in a Magnetic Field6-1Schrödinger's Equation in a Magnetic Field—
The Equation of Continuity for Probabilities6-2The Equation of Continuity for Probabilities—
Two Kinds of Momentum6-3Two Kinds of Momentum—
The Meaning of the Wave Function6-4The Meaning of the Wave Function—
Superconductivity6-5Superconductivity—
The Meissner Effect6-6The Meissner Effect—
Flux Quantization6-7Flux Quantization—
The Dynamics of Superconductivity6-8The Dynamics of Superconductivity—
The Josephson Junction6-9The Josephson Junction—
Planetary Motions
Planetary Motions
—
Kepler's Laws
Kepler's Laws
—
Development of Dynamics
Development of Dynamics
—
Newton's Law of Gravitation
Newton's Law of Gravitation
—
Universal Gravitation
Universal Gravitation
—
Cavendish's Experiment
Cavendish's Experiment
—
What Is Gravity?
What Is Gravity?
—
Gravity and Relativity
Gravity and Relativity
—
Curved Spaces With Two Dimensions
Curved Spaces With Two Dimensions
—
Curvature in Three-Dimensional Space
Curvature in Three-Dimensional Space
—
Our Space Is Curved
Our Space Is Curved
—
Geometry in Space-Time
Geometry in Space-Time
—
Gravity and the Principle of Equivalance
Gravity and the Principle of Equivalance
—
The Speed of Clocks in a Gravitational Field
The Speed of Clocks in a Gravitational Field
—
The Curvature of Space-Time
The Curvature of Space-Time
—
Motion in Curved Space-Time
Motion in Curved Space-Time
—
Einstein's Theory of Gravitation
Einstein's Theory of Gravitation
—
Electrical Forces
Electrical Forces
—
Electrical and Magnetic Fields
Electrical and Magnetic Fields
—
Characteristics of Vector Fields
Characteristics of Vector Fields
—
The Laws of Electromagnetism
The Laws of Electromagnetism
—
What Are the Fields?
What Are the Fields?
—
Electromagnetism in Science and Technology
Electromagnetism in Science and Technology
—
Chance and Likelihood
Chance and Likelihood
—
Fluctuations
Fluctuations
—
The Random Walk
The Random Walk
—
A Probability Distribution
A Probability Distribution
—
The Uncertainty Principle
The Uncertainty Principle
—
Probability Wave Amplitudes
Probability Wave Amplitudes
—
Measurement of Position and Momentum
Measurement of Position and Momentum
—
Crystal Diffraction
Crystal Diffraction
—
The Size of an Atom
The Size of an Atom
—
Energy Levels
Energy Levels
—
Philosophical Implications
Philosophical Implications
—
Schrödinger's Equation in a Magnetic Field
Schrödinger's Equation in a Magnetic Field
—
The Equation of Continuity for Probabilities
The Equation of Continuity for Probabilities
—
Two Kinds of Momentum
Two Kinds of Momentum
—
The Meaning of the Wave Function
The Meaning of the Wave Function
—
Superconductivity
Superconductivity
—
The Meissner Effect
The Meissner Effect
—
Flux Quantization
Flux Quantization
—
The Dynamics of Superconductivity
The Dynamics of Superconductivity
—
The Josephson Junction
The Josephson Junction
—

What other identifiers does this connect to?

Creative Contributors (ISNI)

00000001193412090000000120960218

Credits Graph

People also ask

What is UPC 9780465099009?+
UPC 9780465099009 is the Universal Product Code (barcode) for "The Very Best of the Feynman Lectures" by Richard P. Feynman, released on Basic Books.
What is a UPC code in music?+
A UPC (Universal Product Code) — also called an EAN barcode — is a unique numeric identifier assigned to a music release by its distributor. It identifies the release as a whole (album, EP, or single) and is required by every digital storefront and physical retailer.
How is a UPC different from an ISRC?+
A UPC identifies a release (the bundle of tracks sold as one product). An ISRC identifies a specific sound recording (a single track). Every track on a UPC release has its own ISRC, but they all share the same UPC.
How many tracks are on UPC 9780465099009?+
UPC 9780465099009 contains 43 tracks.
SourcesMusicBrainzDiscogs✓2 sources

Verified on

  • MusicBrainz release search

What is UPC 9780465099009?

9780465099009 is a Universal Product Code (UPC) assigned to The Very Best of the Feynman Lectures by Richard P. Feynman. UPCs (also called EAN barcodes) are unique numeric identifiers assigned by distributors to identify music releases — albums, EPs, and singles — across all digital and physical retail platforms.

This release contains 43 tracks. Each track has its own ISRC (International Standard Recording Code) that identifies the specific sound recording, while the UPC identifies the release as a whole. Knowing your release's UPC is essential for neighboring rights collection societies like SoundExchange and for transferring music between distributors.

Learn more about UPCs · Data powered by Notes.fm

Richard P. Feynman

9780465099009 is the Universal Product Code (UPC barcode) for the release “The Very Best of the Feynman Lectures” by Richard P. Feynman, released 2005-01-01 on Basic Books. UPCs are unique numeric identifiers assigned by distributors to identify a music release — album, EP, or single — across every digital and physical retail platform. This release contains 43 tracks, each with its own ISRC.

Track List (43)

#Track TitleArtist(s)ISWC
Planetary Motions1Planetary Motions—
Kepler's Laws2Kepler's Laws—
Development of Dynamics3Development of Dynamics—
Newton's Law of Gravitation4Newton's Law of Gravitation—
Universal Gravitation5Universal Gravitation—
Cavendish's Experiment6Cavendish's Experiment—
What Is Gravity?7What Is Gravity?—
Gravity and Relativity8Gravity and Relativity—
Curved Spaces With Two Dimensions2-1Curved Spaces With Two Dimensions—
Curvature in Three-Dimensional Space2-2Curvature in Three-Dimensional Space—
Our Space Is Curved2-3Our Space Is Curved—
Geometry in Space-Time2-4Geometry in Space-Time—
Gravity and the Principle of Equivalance2-5Gravity and the Principle of Equivalance—
The Speed of Clocks in a Gravitational Field2-6The Speed of Clocks in a Gravitational Field—
The Curvature of Space-Time2-7The Curvature of Space-Time—
Motion in Curved Space-Time2-8Motion in Curved Space-Time—
Einstein's Theory of Gravitation2-9Einstein's Theory of Gravitation—
Electrical Forces3-1Electrical Forces—
Electrical and Magnetic Fields3-2Electrical and Magnetic Fields—
Characteristics of Vector Fields3-3Characteristics of Vector Fields—
The Laws of Electromagnetism3-4The Laws of Electromagnetism—
What Are the Fields?3-5What Are the Fields?—
Electromagnetism in Science and Technology3-6Electromagnetism in Science and Technology—
Chance and Likelihood4-1Chance and Likelihood—
Fluctuations4-2Fluctuations—
The Random Walk4-3The Random Walk—
A Probability Distribution4-4A Probability Distribution—
The Uncertainty Principle4-5The Uncertainty Principle—
Probability Wave Amplitudes5-1Probability Wave Amplitudes—
Measurement of Position and Momentum5-2Measurement of Position and Momentum—
Crystal Diffraction5-3Crystal Diffraction—
The Size of an Atom5-4The Size of an Atom—
Energy Levels5-5Energy Levels—
Philosophical Implications5-6Philosophical Implications—
Schrödinger's Equation in a Magnetic Field6-1Schrödinger's Equation in a Magnetic Field—
The Equation of Continuity for Probabilities6-2The Equation of Continuity for Probabilities—
Two Kinds of Momentum6-3Two Kinds of Momentum—
The Meaning of the Wave Function6-4The Meaning of the Wave Function—
Superconductivity6-5Superconductivity—
The Meissner Effect6-6The Meissner Effect—
Flux Quantization6-7Flux Quantization—
The Dynamics of Superconductivity6-8The Dynamics of Superconductivity—
The Josephson Junction6-9The Josephson Junction—
Planetary Motions
Planetary Motions
—
Kepler's Laws
Kepler's Laws
—
Development of Dynamics
Development of Dynamics
—
Newton's Law of Gravitation
Newton's Law of Gravitation
—
Universal Gravitation
Universal Gravitation
—
Cavendish's Experiment
Cavendish's Experiment
—
What Is Gravity?
What Is Gravity?
—
Gravity and Relativity
Gravity and Relativity
—
Curved Spaces With Two Dimensions
Curved Spaces With Two Dimensions
—
Curvature in Three-Dimensional Space
Curvature in Three-Dimensional Space
—
Our Space Is Curved
Our Space Is Curved
—
Geometry in Space-Time
Geometry in Space-Time
—
Gravity and the Principle of Equivalance
Gravity and the Principle of Equivalance
—
The Speed of Clocks in a Gravitational Field
The Speed of Clocks in a Gravitational Field
—
The Curvature of Space-Time
The Curvature of Space-Time
—
Motion in Curved Space-Time
Motion in Curved Space-Time
—
Einstein's Theory of Gravitation
Einstein's Theory of Gravitation
—
Electrical Forces
Electrical Forces
—
Electrical and Magnetic Fields
Electrical and Magnetic Fields
—
Characteristics of Vector Fields
Characteristics of Vector Fields
—
The Laws of Electromagnetism
The Laws of Electromagnetism
—
What Are the Fields?
What Are the Fields?
—
Electromagnetism in Science and Technology
Electromagnetism in Science and Technology
—
Chance and Likelihood
Chance and Likelihood
—
Fluctuations
Fluctuations
—
The Random Walk
The Random Walk
—
A Probability Distribution
A Probability Distribution
—
The Uncertainty Principle
The Uncertainty Principle
—
Probability Wave Amplitudes
Probability Wave Amplitudes
—
Measurement of Position and Momentum
Measurement of Position and Momentum
—
Crystal Diffraction
Crystal Diffraction
—
The Size of an Atom
The Size of an Atom
—
Energy Levels
Energy Levels
—
Philosophical Implications
Philosophical Implications
—
Schrödinger's Equation in a Magnetic Field
Schrödinger's Equation in a Magnetic Field
—
The Equation of Continuity for Probabilities
The Equation of Continuity for Probabilities
—
Two Kinds of Momentum
Two Kinds of Momentum
—
The Meaning of the Wave Function
The Meaning of the Wave Function
—
Superconductivity
Superconductivity
—
The Meissner Effect
The Meissner Effect
—
Flux Quantization
Flux Quantization
—
The Dynamics of Superconductivity
The Dynamics of Superconductivity
—
The Josephson Junction
The Josephson Junction
—