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Diffraction of Electromagnetic Waves 107Ĭhapter 4. Interference of Electromagnetic Waves 106ģ.9.2. Emission of Electromagnetic Waves by Oscillating Charges. Some Properties of Radiation Fields 100ģ.8.3. Emission by a Charge Moving Uniformly in a Circle 98ģ.8.1. Emission by a Charge Moving with an Acceleration 95ģ.7.3. Field of a Uniformly Moving Charge 91ģ.7.2. Motion of a Charge in a Coulomb Field 86ģ.7. Motion of a Charge in a Constant Uniform Magnetic Field 86ģ.6.3. Motion of a Charge in a Constant Uniform Electric Field 85ģ.6.2. Magnetic Moment and Its Relation with Mechanical (Angular) Momentum 83ģ.6.1. Magnetic Field of a Current Surface 82ģ.5.3. Magnetic Field of a Direct Current 82ģ.5.2. Charge-Dipole and Dipole-Dipole Interactions 80ģ.5.1. Field of Charges Distributed over a Sphere, Line or Plane Surface 74ģ.4.3. Field of a Stationary Point Charge 74ģ.4.2. Relation Between a Varying Electric Field and a Vortex Magnetic Field 72ģ.4.1. Additional Analysis of the Third Field Equation. Relation Between a Varying Magnetic Field and a Vortex Electric Field 71ģ.3.6. Relation Be tween Current and “Something” with a Vortex Magnetic Field 68ģ.3.5. Relation Between Electric Field and Electric Charge 67ģ.3.3.
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Equation of Motion of a Charge in a Field 64ģ.3.1. Role of Relativistic Constant c in Physics 61ģ.2.1. Relativistic Energy and Momentum 58Ģ.7.4. Experiments on Accelerators and Ultimate Velocity 54Ģ.7.3. Mechanics of High-Energy Particles 54Ģ.7.1. Applications of Conservation Laws 46Ģ.6.3. Applications and Universal Nature of ConservationLaws 43Ģ.6.2. Motion of a Material Particle in a Gravitational Field 39Ģ.5. Relative Nature of Velocities and the Law of Their Transformation 37Ģ.2.3. Absolute Nature of Dimensions and Time Intervals 36Ģ.2.2. Coordinates, Velocity, Acceleration 34Ģ.2.1. Scales of Space and Time in Nature 30ġ.3.3. Comparative Estimates for the Intensity of All Types of Interactions 29 1.2.7. Four Types of Fundamental Interactions 26ġ.2.1. The book was published by Mir in 1989 and was translated from the Russian by R. Physics is fast becoming an important element in the modern civilization. This is besides the fact that a knowledge of physical sciences is essential for new industrial ventures lying at the root of technical progress. The progress being made at present in all branches of natural science is due, as a rule, to the introduction of physical concepts and techniques in them. Physics essentially deals with the fundamental laws of nature. We shall describe physics here in the way re searchers understand it today. Nor is the book intended for a light reading you have to use a pen and paper, think, analyze, and even compute whenever it is necessary. This is not a textbook, but rather a helpbook that should be used in conjunction with the standard textbooks. A good deal of the material may be useful to teachers delivering lectures on various topics of physics. It can be used by students of physics and mathematical schools, as well as by those who have finished school and are engaged in self- education. This book is intended for those who wish to acquire a deeper knowledge of physical phenomena. This means that the scientists and industrial workers engaged in fields like physical materials science, nuclear and semiconductor engineering, laser What prompted the author to adopt this approach? Indeed, the creation of new materials with unusual mechanical, thermal, electrical, magnetic, and optical properties requires a microscopic approach to the problem and a clear understanding of the practical significance of the approach "from atom to matter". The principle underlying the preparation of this course can be summarized as follows: "From atom to matter". The book being offered by the author differs from other existing books on the subject in its nontraditional approach to the course of physics. In this post, we will see the book Fundamentals of Physics by B.