A Brief History of Quantum Physics. From Planck to Quantum Computing
The Discoveries That Redefined Matter, Energy, and Reality (“A BRIEF HISTORY OF…”, Book 27)
カートのアイテムが多すぎます
カートに追加できませんでした。
ウィッシュリストに追加できませんでした。
ほしい物リストの削除に失敗しました。
ポッドキャストのフォローに失敗しました
ポッドキャストのフォロー解除に失敗しました
聴き放題対象外タイトルです。Audibleプレミアムプラン登録で、非会員価格の30%OFFで購入できます。
¥1,300 で購入
-
著者:
-
Isaac Volpe
この作品は、デジタルナレーションを使用しています
What if the universe is not made of definite objects—but of possibilities?
At the beginning of the twentieth century, classical physics appeared capable of explaining almost everything. Max Planck proposed a reluctant solution; Einstein turned it into a revolutionary idea, and physics would never be the same again.
A Brief History of Quantum Physics tells the extraordinary story of the discoveries, experiments, debates, and brilliant minds that transformed our understanding of matter, energy, and reality.
Inside this book, you will discover:
• How Planck, Einstein, Bohr, Heisenberg, Schrödinger, Dirac, and Feynman reshaped modern physics
• Why the double-slit experiment and the uncertainty principle overturned classical certainty
• What superposition, entanglement, decoherence, and the measurement problem really mean
• How the Bohr–Einstein debates, Schrödinger’s cat, and Bell’s theorem challenged conventional ideas of reality
• Why Copenhagen, pilot-wave theory, and many-worlds offer competing interpretations of the same mathematics
• How quantum field theory and the Standard Model transformed our understanding of particles and forces
Engaging, informative, and thought-provoking, this book is ideal for science enthusiasts, students, teachers, and anyone fascinated by the universe's deepest mysteries. The quantum revolution changed science, technology, and our picture of existence. Its greatest questions remain unanswered.
BUY YOUR COPY TODAY AND ENTER THE STRANGE, BRILLIANT, AND REVOLUTIONARY WORLD OF QUANTUM PHYSICS.
TAGS
quantum mechanics, history of physics, Max Planck, Albert Einstein, Niels Bohr, Werner Heisenberg, Erwin Schrödinger, Richard Feynman, wave-particle duality, uncertainty principle, superposition, quantum entanglement, double-slit experiment, quantum field theory, Standard Model, quantum technology, philosophy of science,
©2026 UNITEXTO (P)2026 UNITEXTO