"Version: 20151201"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.Appendix A. Relevant results from linear algebra -- Appendix B. Directory of definitions and notation.Preface -- 1. Postulates -- 1.1. State space -- 1.2. Time evolution -- 1.3. Quantum measurement -- 1.4. Composite systems -- 1.5. The geni…
"Version: 20180401"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. The continuum Universe -- 1.1. The right use of x[square] : describing a continuum2. Everything is a wave -- 2.1. Waves in what medium : waves made of what stuff? -- 2.2. Evidence for waves -- 2.3. Early clues to the size and nature of a…
"Version: 20191101"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. Classical field theory -- 1.1. Lagrangian formalism for fields -- 1.2. The Klein-Gordon field -- 1.3. The electromagnetic field -- 1.4. Lorentz invariance -- 1.5. Transformation of fields under Lorentz transformations -- 1.6. Noether's t…
"Version: 20191101"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. Path integral formulation of quantum mechanics -- 1.1. The transition probability amplitude -- 1.2. Derivation of the quantum mechanical path integral -- 1.3. Path integral in terms of the Lagrangian -- 1.4. Computing simple path integra…
"Version: 20191101"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. QCD phenomenology -- 1.1. Electron-muon scattering -- 1.2. Form factors -- 1.3. Elastic electron-proton scattering and the proton form factors -- 1.4. Inelastic electron-proton scattering -- 1.5. The parton model and Bjorken scaling -- 1…
"Version: 202306"--Title page verso.Includes bibliographical references.part II. Quantum fault tolerance. 19. Quantum fault-tolerant circuits -- 19.1. The need for quantum fault-tolerant circuits -- 19.2. The fault-tolerant quantum adder -- 19.3. The fault-tolerant multiplier -- 19.4. The quantum fault-tolerant integer divider -- 19.5. Summarypart III. Quantum-dot cellular automata. 20. Quantum…
"Version: 20250401"--Title page verso.Includes bibliographical references.1. Relativistic quantum mechanics -- 1.1. The rotation groups SO(3) and SO(n) -- 1.2. Special relativity -- 1.3. Klein-Gordon equation -- 1.4. Dirac equation -- 1.5. Free solutions of the Dirac equation -- 1.6. Lorentz covariance : first look -- 1.7. Representations of the Lorentz group -- 1.8. Exercises -- 1.9. Solutions…
"Version: 20250601"--Title page verso.Includes bibliographical references.12. The Wilson and functional renormalization group equations -- 12.1. Wilson renormalization group approach -- 12.2. The Wilson approximate recursion formulas -- 12.3. Generating functionals -- 12.4. The functional renormalization group -- 12.5. The vertex expansion approximation method for 04 -- 12.6. The gradient expan…
"Version: 20251101"--Title page verso.Includes bibliographical references.part I. Mathematical background. 1. Vectors and tensors -- 1.1. Introduction -- 1.2. Vector calculus -- 1.3. Generalization of matrices into tensors -- 1.4. Geometric algebra -- 1.5. Group theory2. Differential equations and the Lagrangian formalism -- 2.1. Differential equations -- 2.2. Differential equations with severa…
"Version: 20231101"--Title page verso.Includes bibliographical references.1. Introduction to the fundamental parts of modern physics -- 1.1. History of physics up to the establishment of Newtonian mechanics -- 1.2. Mystery of light -- 1.3. Theory of special relativity -- 1.4. Theory of general relativity -- 1.5. Quantum mechanics -- 1.6. Spin and relativistic quantum mechanics2. Recently solved…