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Dimensions: a walk through mathematics

Season 1

2008 · 9 episodes

Nine chapters, two hours of maths, that take you gradually up to the fourth dimension. Mathematical vertigo guaranteed!

  1. 1. Dimension Two

    2008-07-18 · 15m

    Hipparchus explains how two numbers can describe the position of a point on a sphere. He then explains stereographic projection: how can one draw a picture of the Earth on a piece of paper?

  2. 2. Dimension Three

    2008-07-25 · 15m

    M. C. Escher tells the adventures of two-dimensional creatures who are trying to imagine three-dimensional objects.

  3. 3. The fourth dimension (1)

    2008-08-01 · 15m

    Mathematician Ludwig Schläfli talks to us about objects in the fourth dimension and shows us a procession of regular polyhedra in dimension 4, strange objects with 24, 120 and even 600 faces!

  4. 4. The fourth dimension (2)

    2008-08-08 · 15m

    Mathematician Ludwig Schläfli talks to us about objects in the fourth dimension and shows us a procession of regular polyhedra in dimension 4, strange objects with 24, 120 and even 600 faces!

  5. 5. Complex Numbers (1)

    2008-08-15 · 15m

    Mathematician Adrien Douady explains complex numbers. The square root of negative numbers is explained in simple terms. Transforming the plane, deforming pictures, creating fractal images.

  6. 6. Complex Numbers (2)

    2008-08-22 · 15m

    Mathematician Adrien Douady explains complex numbers. The square root of negative numbers is explained in simple terms. Transforming the plane, deforming pictures, creating fractal images.

  7. 7. Fibration (1)

    2008-08-29 · 15m

    The mathematician Heinz Hopf describes his "fibration". Using complex numbers he builds beautiful arrangements of circles in space.

  8. 8. Fibration (2)

    2008-09-05 · 15m

    The mathematician Heinz Hopf describes his "fibration". Using complex numbers he builds beautiful arrangements of circles in space.

  9. 9. Proof

    2008-09-12 · 15m

    Mathematician Bernhard Riemann explains the importance of proofs in mathematics. He proves a theorem on stereographic projection.

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