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This is not just a history of the subject with no "meat", and it is not a scientific treatise either. It is a historical trip through this quantum revolution giving important experimental evidence to support the developing ideas, so that the reader can follow along with the logical developments and see why it was necessary to dump classical physics and take up the rather strange ideas of quantum physics. The book contains several equations and a few partial derivatives, but this should not deter the less mathematically inclined reader.
Leslie Green CEng MIEE
His book is enlivened by unique photos of the great physicists and mathematicians, their families and friends. We see Niels Bohr and his wife on a motorcycle, Wolfgang Pauli and George Gamow (in lederhosen) on a steamer on a Swiss Lake, Werner Heisenberg in swim trunks, Enrico Fermi playing tennis without a shirt, George Gamow and Leon Rosenfeld resting on a snow covered peak (supposedly discussing nuclear physics), and Niels Bohr and Albert Einstein chatting at a technical session in Brussels.
Many contemporary books on physics for the layman, following publisher's dictates, scrupulously avoid all mathematics. Writing in the 1960's, Gamow assumed that algebraic equations, graphs, and diagrams of experimental setups would actually help clarify explanations and not send readers fleeing in panic. Algebra is necessary; more advanced math is not. Gamow is fun to read, but be prepared to think.
It is amusing how many of the Amazon reviewers mention that they first encountered Gamow in their youth. I too read Gamow, reveling in the excitment of scientific work and discovery.
Gamow adds a bit of fun and comedy to science. We all learn (but may have forgotten) about the Pauli Exclusion Principle that only two electrons with opposite spins can occupy the same quantum orbit. Gamow also introduces us to a lessor known observation, the Pauli Effect, which states that the mere presence of Wolfgang Pauli, a theoretical physicist, near a laboratory ensured that the experimental apparatus would break.
Gamow concludes his history of quantum theory with a light-hearted play created by students of Niels Bohr and presented one evening during technical meetings in 1932 in Copenhagen. "The theme of this dramatic masterpiece has Pauli (Mephistopheles) trying to sell to the unbelieving Ehrenfest (Faust) the idea of a weightless neutrino (Gretchen)."
Gamow has remained in print since the 1960's, due largely to his unique style and for his obvious enthusiasm for physics and for people that do physics. I heartily recommend this book for the layman, and for any student of science, high school or college.
Recently, his popular "Mr. Tompkins in Wonderland" and "Mr. Tompkins Explores the Atom" have been released again, with some updates for recent discoveries. A typical review claims: "will vastly fascinate the whimsical, and is also scientific". Don't miss Gamow.
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