9 Folgen

This course is comprised of a six-quarter sequence of classes that will explore the essential theoretical foundations of modern physics. The topics covered in this course sequence will include classical mechanics, quantum mechanics, the general and special theories of relativity, electromagnetism, cosmology, and black holes. While these courses will build upon one another, each course also stands on its own, and both individually and collectively they will let students attain the “theoretical minimum” for thinking intelligently about modern physics.
Quantum theory governs the universe at its most basic level. In the first half of the 20th century physics was turned on its head by the radical discoveries of Max Planck, Albert Einstein, Niels Bohr, Werner Heisenberg, and Erwin Schroedinger. An entire new logical and mathematical foundation—quantum mechanics—eventually replaced classical physics. We will explore the quantum world, including the particle theory of light, the Heisenberg Uncertainty Principle, and the Schroedinger Equation.

Modern Physics: The Theoretical Minimum - Classical Mechanics Stanford Continuing Studies Program

    • Wissenschaft
    • 4,4 • 11 Bewertungen

This course is comprised of a six-quarter sequence of classes that will explore the essential theoretical foundations of modern physics. The topics covered in this course sequence will include classical mechanics, quantum mechanics, the general and special theories of relativity, electromagnetism, cosmology, and black holes. While these courses will build upon one another, each course also stands on its own, and both individually and collectively they will let students attain the “theoretical minimum” for thinking intelligently about modern physics.
Quantum theory governs the universe at its most basic level. In the first half of the 20th century physics was turned on its head by the radical discoveries of Max Planck, Albert Einstein, Niels Bohr, Werner Heisenberg, and Erwin Schroedinger. An entire new logical and mathematical foundation—quantum mechanics—eventually replaced classical physics. We will explore the quantum world, including the particle theory of light, the Heisenberg Uncertainty Principle, and the Schroedinger Equation.

    • video
    PHY 25 Lecture 7 (November 26, 2007)

    PHY 25 Lecture 7 (November 26, 2007)

    November 26, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 7 s
    • video
    PHY 25 Lecture 9 (December 20, 2007)

    PHY 25 Lecture 9 (December 20, 2007)

    December 20, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 4 s
    • video
    PHY 25 Lecture 1 (October 15, 2007)

    PHY 25 Lecture 1 (October 15, 2007)

    October 15, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 2 s
    • video
    PHY 25 Lecture 8 (December 17, 2007)

    PHY 25 Lecture 8 (December 17, 2007)

    December 17, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 6 s
    • video
    PHY 25 Lecture 6 (November 19, 2007)

    PHY 25 Lecture 6 (November 19, 2007)

    November 19, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 6 s
    • video
    PHY 25 Lecture 5 (November 12, 2007)

    PHY 25 Lecture 5 (November 12, 2007)

    November 12, 2007 lecture of Leonard Susskind's Modern Physics course concentrating on Classical Mechanics.

    • 6 s

Kundenrezensionen

4,4 von 5
11 Bewertungen

11 Bewertungen

Top‑Podcasts in Wissenschaft

Aha! Zehn Minuten Alltags-Wissen
WELT
Das Wissen | SWR
SWR
radioWissen
Bayerischer Rundfunk
Sternengeschichten
Florian Freistetter
Methodisch inkorrekt!
Methodisch inkorrekt!
Quarks Daily
Quarks

Das gefällt dir vielleicht auch

Mehr von Stanford

The Future of Everything
Stanford Engineering
Machine Learning
Andrew Ng
Modern Physics: The Theoretical Minimum - Quantum Mechanics
Stanford Continuing Studies Program
J.S. Bach Cello Suites
Christopher Costanza
String Theory and M-Theory
Stanford Continuing Studies Program
Modern Physics: General Theory of Relativity (Fall 2012)
Stanford Continuing Studies