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In Our Time, In Our Time, Lise Meitner

In Our Time

In Our Time

Lise Meitner

June 5, 2025

57 minutes

Available for over a year

To access this episode early and ad-free, subscribe to BBC Podcast on Apple Podcasts. The episode will be available for free with adverts on 5th June.

Melvyn Bragg and guests discuss the decisive role of one of the great 20th Century physicists in solving the question of nuclear fission. It is said that Meitner (1878-1968) made this breakthrough over Christmas 1938 while she was sitting on a Sweden during a snowy walk with her nephew Otto Frisch (1904-79). Both were Jewish-Austrian refugees who had only recently escaped from Nazi . Others had already broken uranium into the smaller atom barium, but could not explain what they found; was the larger atom bursting, or the smaller atom being chipped off or was something else happening? They turned to Meitner. She, with Frisch, deduced the nucleus really was splitting like a drop of water into a dumbbell shape, with the electrical charges at each end forcing the divide, something previously thought impossible, and they named this ‘fission’. This was a crucial breakthrough for which Meitner was eventually widely recognised if not at first.

With

Jess Wade

A Royal Society University Research Fellow and Lecturer in Functional Materials at Imperial College, London

Frank Close

Professor Emeritus of Theoretical Physics and Fellow Emeritus at Exeter College, University of Oxford

And

Steven Bramwell

Director of the London Centre for Nanotechnology and Professor of Physics at University College London

Producer: Simon Tillotson

Reading list:

Frank Close, Destroyer of Worlds: The Deep History of the Nuclear Age, 1895-1965 (Allen Lane, 2025)

Ruth Lewin Sime, Lise Meitner: A Life in Physics (University of California Press, 1996)

Marissa Moss, The Woman Who Split the Atom: The Life of Lise Meitner (Abrams Books, 2022)

Patricia Rife, Lise Meitner and the Dawn of the Nuclear Age (Birkha Verlag, 1999)

In Our Time is a BBC Studios Audio Production