Docker: Sviluppare e rilasciare software tramite container (Italian Edition)
معرفی کتاب «Docker: Sviluppare e rilasciare software tramite container (Italian Edition)» نوشتهٔ Sands، Feynman، Leighton و Serena Sensini، منتشرشده توسط نشر Apogeo Editore در سال 2020. این کتاب در 2 صفحه، فرمت pdf، زبان it ارائه شده است.
Foreword......Page 1 01 Atoms in Motion......Page 6 02 Basic Physics......Page 19 03 The Relation of Physics to Other Sciences......Page 30 04 Conservation of Energy......Page 40 05 Time and Distance......Page 48 06 Probability......Page 58 07 The Theory of Gravitation......Page 69 08 Motion......Page 80 09 Newton's Laws of Dynamics......Page 90 10 Conservation of Mementum......Page 99 11 Vectors......Page 108 12 Characteristics of Force......Page 118 13 Work and Potential Energy (A)......Page 130 14 Work and Potential Energy (conclusion)......Page 139 15 The Special Theory of Relativity......Page 148 16 Relativistic Energy and Momentum......Page 160 17 Space-Time......Page 170 18 Rotation in Two Dimensions......Page 178 19 Center of Mass; Moment of Inertia......Page 186 20 Rotation in space......Page 195 21 The Harmonic Oscillator......Page 203 22 Algebra......Page 208 23 Resonance......Page 219 24 Transients......Page 228 25 Linear Systems and Review......Page 234 26 Optics: The Principle of Least Time......Page 243 27 Geometrical Optics......Page 251 28 Electromagnetic Radiation......Page 259 29 Interference......Page 265 30 Diffraction......Page 272 31 The Origin of the Refractive Index......Page 284 32 Radiation Damping. Light Scattering......Page 295 33 Polarization......Page 304 34 Relativistic Effects in Radiation......Page 314 35 Color Vision......Page 325 36 Mechanism of Seeing......Page 335 37 Quantum Behavior......Page 347 38 The Relation of Wave and Particle Viewpoints......Page 359 39 The Kinetic Theory of Gases......Page 369 40 The Principles of Statistical Mechanics......Page 381 41 The Brownian Movement......Page 391 42 Applications of Kinetic Theory......Page 401 43 Diffusion......Page 411 44 The Laws of Thermodynamics......Page 421 45 Illustrations of Thermodynamics......Page 434 46 Ratchet and Pawl......Page 442 47 Sound. the wave equation......Page 452 48 Beats......Page 460 49 Modes......Page 471 50 Harmonics......Page 479 51 Waves......Page 489 52 Symmetry in Physical Laws......Page 499 53 Index......Page 511 Feynman Lectures on Physics Volume 2......Page 514 Contents......Page 521 01 Electromagnetism......Page 525 02 Differential Calcululs of Vector Fields......Page 536 03 Vector Integral Calculus......Page 549 04 Electrostatics......Page 561 05 Application of Gauss' Law......Page 573 06 The Electric Field in Various Circumstances......Page 582 07 The Electric Field in Various Circumstances (continued)......Page 596 08 Electrostatic Energy......Page 607 09 Electricity in the Atmosphere......Page 619 10 Dielectrics......Page 630 11 Inside Dielectrics......Page 639 12 Electrostatic Analogs......Page 650 13 Magnetostatics......Page 663 14 The Magnetic Field in Various Situations......Page 675 15 The Vector Potential......Page 685 16 Induced Currents......Page 701 17 The Laws of Induction......Page 711 18 The Maxwell Equations......Page 726 19 The Principle of Least Action......Page 737 20 Solutions of Maxwell's Equations in Free Space......Page 751 21 Solution's of Maxwell's Equations with Currents and Charges......Page 766 22 AC Circuits......Page 779 23 Cavity Resonators......Page 797 24 Waveguides......Page 808 25 Electrodynamics in Relativistic Notation......Page 820 26 Lorentz Transformations of the Fields......Page 831 27 Field Energy and Field Momentum......Page 844 28 Electromagnetic Mass......Page 855 29 The Motion of Charges in Electric and Magnetic Fields......Page 869 30 The Internal Geometry of Crystals......Page 877 31 Tensors......Page 903 32 Refractive Index of Dense Materials......Page 917 33 Reflection from Surfaces......Page 930 34 The Magnetism of Matter......Page 943 35 Paramagnetism and Magnetic Resonance......Page 955 36 Ferromagnetism......Page 967 37 Magnetic Materials......Page 982 38 Elasticity......Page 995 39 Elastic Materials......Page 1007 40 The Flow of Dry Water......Page 1020 41 The Flow of Wet Water......Page 1032 42 Index......Page 1044 Feynman's Preface......Page 1050 Contents......Page 1053 01 Quantum Behavior......Page 1055 02 The Relation of Wave and Particle Viewpoint......Page 1066 03 Probability Amplitudes......Page 1074 04 Identical Particles......Page 1087 05 Spin One......Page 1102 06 Spin One-Half......Page 1119 07 The Dependence of Amplitude on Time......Page 1133 08 The Hamiltonian Matrix......Page 1146 09 The Ammonia Maser......Page 1160 10 Other Two-State Systems......Page 1175 11 More Two-State Systems......Page 1192 12 The Hyperfine Splitting in Hydrogen......Page 1216 13 Propagation in a Crystal Lattice......Page 1232 14 Semiconductors......Page 1245 15 The Independent Particle Approximation......Page 1257 16 The Dependence of Amplitudes on Position......Page 1270 17 Symmetry and Conservation Laws......Page 1286 18 Angular Momentum......Page 1302 19 The Hydrogen Atom and The Periodic Table......Page 1323 20 Operators......Page 1341 21 The Schrödinger Equation in a Classical Context......Page 1358 Epilogue......Page 1376 Feynman Lectures on Physics Volume 1 1 Feynman's Preface 1 Foreword 1 Contents 6 01 Atoms in Motion 6 02 Basic Physics 19 03 The Relation of Physics to Other Sciences 30 04 Conservation of Energy 40 05 Time and Distance 48 06 Probability 58 07 The Theory of Gravitation 69 08 Motion 80 09 Newton's Laws of Dynamics 90 10 Conservation of Mementum 99 11 Vectors 108 12 Characteristics of Force 118 13 Work and Potential Energy (A) 130 14 Work and Potential Energy (conclusion) 139 15 The Special Theory of Relativity 148 16 Relativistic Energy and Momentum 160 17 Space-Time 170 18 Rotation in Two Dimensions 178 19 Center of Mass; Moment of Inertia 186 20 Rotation in space 195 21 The Harmonic Oscillator 203 22 Algebra 208 23 Resonance 219 24 Transients 228 25 Linear Systems and Review 234 26 Optics: The Principle of Least Time 243 27 Geometrical Optics 251 28 Electromagnetic Radiation 259 29 Interference 265 30 Diffraction 272 31 The Origin of the Refractive Index 284 32 Radiation Damping. Light Scattering 295 33 Polarization 304 34 Relativistic Effects in Radiation 314 35 Color Vision 325 36 Mechanism of Seeing 335 37 Quantum Behavior 347 38 The Relation of Wave and Particle Viewpoints 359 39 The Kinetic Theory of Gases 369 40 The Principles of Statistical Mechanics 381 41 The Brownian Movement 391 42 Applications of Kinetic Theory 401 43 Diffusion 411 44 The Laws of Thermodynamics 421 45 Illustrations of Thermodynamics 434 46 Ratchet and Pawl 442 47 Sound. the wave equation 452 48 Beats 460 49 Modes 471 50 Harmonics 479 51 Waves 489 52 Symmetry in Physical Laws 499 53 Index 511 Feynman Lectures on Physics Volume 2 514 Contents 521 01 Electromagnetism 525 02 Differential Calcululs of Vector Fields 536 03 Vector Integral Calculus 549 04 Electrostatics 561 05 Application of Gauss' Law 573 06 The Electric Field in Various Circumstances 582 07 The Electric Field in Various Circumstances (continued) 596 08 Electrostatic Energy 607 09 Electricity in the Atmosphere 619 10 Dielectrics 630 11 Inside Dielectrics 639 12 Electrostatic Analogs 650 13 Magnetostatics 663 14 The Magnetic Field in Various Situations 675 15 The Vector Potential 685 16 Induced Currents 701 17 The Laws of Induction 711 18 The Maxwell Equations 726 19 The Principle of Least Action 737 20 Solutions of Maxwell's Equations in Free Space 751 21 Solution's of Maxwell's Equations with Currents and Charges 766 22 AC Circuits 779 23 Cavity Resonators 797 24 Waveguides 808 25 Electrodynamics in Relativistic Notation 820 26 Lorentz Transformations of the Fields 831 27 Field Energy and Field Momentum 844 28 Electromagnetic Mass 855 29 The Motion of Charges in Electric and Magnetic Fields 869 30 The Internal Geometry of Crystals 877 31 Tensors 903 32 Refractive Index of Dense Materials 917 33 Reflection from Surfaces 930 34 The Magnetism of Matter 943 35 Paramagnetism and Magnetic Resonance 955 36 Ferromagnetism 967 37 Magnetic Materials 982 38 Elasticity 995 39 Elastic Materials 1007 40 The Flow of Dry Water 1020 41 The Flow of Wet Water 1032 42 Index 1044 Feynman Lectures on Physics Volume 3 1050 Feynman's Preface 1050 Contents 1053 01 Quantum Behavior 1055 02 The Relation of Wave and Particle Viewpoint 1066 03 Probability Amplitudes 1074 04 Identical Particles 1087 05 Spin One 1102 06 Spin One-Half 1119 07 The Dependence of Amplitude on Time 1133 08 The Hamiltonian Matrix 1146 09 The Ammonia Maser 1160 10 Other Two-State Systems 1175 11 More Two-State Systems 1192 12 The Hyperfine Splitting in Hydrogen 1216 13 Propagation in a Crystal Lattice 1232 14 Semiconductors 1245 15 The Independent Particle Approximation 1257 16 The Dependence of Amplitudes on Position 1270 17 Symmetry and Conservation Laws 1286 18 Angular Momentum 1302 19 The Hydrogen Atom and The Periodic Table 1323 20 Operators 1341 21 The Schrödinger Equation in a Classical Context 1358 Epilogue 1376
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