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UNDERSTANDING THE UNIVERSE

FROM QUARKS TO THE COSMOS

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The Big Bang marked the universe's birth, concentrating all matter at a single point with extreme temperatures where protons and neutrons did not yet exist, replaced by a chaotic mix of energy, matter, and antimatter. This book delves into the intriguing world of quarks and leptons, exploring the forces that govern their behavior. Presented from an experimental physicist's viewpoint, it avoids complex mathematics, opting for accessible figures and relatable analogies. Alongside the established facts about quarks and leptons, the author, a leading researcher at a premier particle physics laboratory, addresses both experimental and theoretical mysteries, connecting these concepts to cosmology and the universe's origins. The narrative spans from the minuscule realm of quarks to the vastness of the universe with remarkable clarity. Casual science enthusiasts will appreciate the distinctions made between known entities (quarks, leptons, antimatter), suspected phenomena (Higgs bosons, neutrino oscillations, the scarcity of antimatter), and speculative ideas (supersymmetry, superstrings, extra dimensions). A unique chapter details the accelerators and detectors used in modern particle physics, while the pursuit of the Higgs boson adds a dramatic flair to the narrative. Ultimately, the text fosters a profound appreciation for the particle realm and its significant influence on the universe's intricate beauty.

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UNDERSTANDING THE UNIVERSE, Don Lincoln

Taal
Jaar van publicatie
2004
Bindwijze
(Paperback)
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Titel
UNDERSTANDING THE UNIVERSE
Ondertitel
FROM QUARKS TO THE COSMOS
Taal
Engels
Jaar van publicatie
2004
Formaat
Paperback
Aantal pagina's
567
ISBN10
9812387056
ISBN13
9789812387059
Reeks
Aantekening
The Big Bang marked the universe's birth, concentrating all matter at a single point with extreme temperatures where protons and neutrons did not yet exist, replaced by a chaotic mix of energy, matter, and antimatter. This book delves into the intriguing world of quarks and leptons, exploring the forces that govern their behavior. Presented from an experimental physicist's viewpoint, it avoids complex mathematics, opting for accessible figures and relatable analogies. Alongside the established facts about quarks and leptons, the author, a leading researcher at a premier particle physics laboratory, addresses both experimental and theoretical mysteries, connecting these concepts to cosmology and the universe's origins. The narrative spans from the minuscule realm of quarks to the vastness of the universe with remarkable clarity. Casual science enthusiasts will appreciate the distinctions made between known entities (quarks, leptons, antimatter), suspected phenomena (Higgs bosons, neutrino oscillations, the scarcity of antimatter), and speculative ideas (supersymmetry, superstrings, extra dimensions). A unique chapter details the accelerators and detectors used in modern particle physics, while the pursuit of the Higgs boson adds a dramatic flair to the narrative. Ultimately, the text fosters a profound appreciation for the particle realm and its significant influence on the universe's intricate beauty.