
| 钟学富,1939年生,四川新都人,毕业于四川大学物理系理论物理专门化。曾任中国科学院半导体研究所副研究员,硕士生导师。1987年赴美为访问学者,在密苏里大学堪萨斯城分校物理系从事固体理论研究。现居美国。 单独与合作发表中英文物理论文约30篇。主要成果包括确立半导体中一类光转化杂质模型,经实验证实并获中国科学院科技成果二等奖;首次提出在晶体场计算中考虑传导电子贡献,此概念被用于修改穆斯堡尔效应中的电场梯度公式。另外在《中国社会科学》、《哲学研究》、《光明日报》、《自然辩证法研究.. << 查看详细 |
| 《电动力学讲义》 preface lecture 1 introduction to electricity and magnetism, vector analysis (i): gradient lecture 2 vector analysis (ii): divergence lecture 3 vector analysis (iii): curl lecture 4 electrostatic field (i) lecture 5 electrostatic field (ii) lecture 6 poisson's equation and laplace's equation lecture 7 solving laplace's equation lecture 8 example of boundary value problem: conducting sphere in a uniform field lecture 9 electrostatic images lecture 10 solving poisson's equation lecture 11 electric field in dielectric media lecture 12 gauss's law in dielectric media lecture 13 poisson's and laplace's equations, boundary conditions in dielectric media lecture 14 solving electrostatic problems in dielectric media lecture 15 microscopic theory of dielectrics lecture 16 energy of electrostatic field lecture 17 electric current (i) lecture 18 electric current (ii) .lecture 19 magnetic field of steady current lecture 20 vector potential of magnetic field lecture 21 magnetic field in matter lecture 22 field equation,and boundary conditions lecture 23 magnetic properties of matter (i) lecture 24 magnetic properties of matter (ii) lecture 25 electromagnetic induction lecture 26 magnetic energy lecture 27 slowly varying currents (i) : transient behavior lecture 28 slowly varying currents (ii) : steady-state behavior lecture 29 resonance in r-l-c circuit lecture 30 physics of plasma lecture 31 electromagnetic properties of superconductor lecture 32 maxwell's equations, electromagnetic energy lecture 33 electromagnetic waves, boundary conditions lecture 34 the wave equation with sources lecture 35 propagation of plane wave in non-conducting media lecture 36 propagation of plane wave in conducting media lecture 37 reflection and refraction of monochromatic wave (i) lecture 38 reflection and refraction of monochromatic wave (ii) lecture 39 interference, waveguide and cavity resonator lecture 40 linear response, harmonic oscillator model lecture 41 theory of electromagnetic radiation lecture 42 electrodynamics, the field of moving charges lecture 43 basic postulates and concepts of relativistic theory lecture 44 covariant form of electromagnetic equations lecture 45 relativistic mechanics lecture 46 lagrangian formalism of electromagnetic field |
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