Theoretical Physics
Joos, Georg.
Theoretical Physics - 1986 - 873 páginas
1.Vector analysis. 2.Mathematical representation of periodic phenomena theory of vibrations and waves. 3.Selected topics in the theory of functions of a complex variable. 4.The fundamental problem of the calculus of variations and its solution. 5.The mechanics of a single particle. 6.General theorems on the mechanics of systems of particles. 7.The mechanics of rigid bodies. 8.Elasticity the mechanics of deformable solids. 9.The mechanics of liquids and gases (hydro - and aero-mechanics). 10.Relativistic mechanics. 11.The electrostatic filed in a vacuum (or in air). 12.The electrostatic field in dielectric media. 13.Energy and pondermotive forces in the electrostatic field. 14.Stationary electric fields and steady currents. 15.The magnetostatic field. 16.Slowly varying (quasi stationary) fields. 17.Rapidly alternating electromagnetic waves fields: propagation in homogeneous isotropic media. 18.Electromagnetic waves II - phenomena in two adjoining media. 19.Electromagnetic waves III - propagation in anisotropic media. The optics of crystals. 20.Electromagnetic waves IV – the theory of diffraction. 21.The elements of geometrical optics and of interference optics 22.Electrolytic conduction. 23.The conduction of electricity in gases. 24.The fundamental ideas of the theory of metallic conduction. 25.Electron theory the dielectric constant, index of refraction and magnetic permeabitily. 26.Phenomenological theory of superconductivity. 27.The electrodynamics of moving bodies. 28.Theory of the conduction of heat. 29.The equation of state of thermodynamic systems. 30.The first of thermodynamics: the conservation of energy. 31.The second law of thermodynamics: the law of entropy. 32.Applications of the second law to the calculation of the equilibrium of thermodynamics systems. 33.The Nernst heat theorem. 34.The elementary kinetic theory of matter. 35.The classical statistical of Boltzmann. 36.The classical quantum statistic. 37.The theory of thermal radiation. 38.The bose-Einstein and the Fermi-Dirac Statistics. 39.The mechanics of simple atomic model. 40.Critical atomic theory: the new quantum mechanics. 41.Atomic problems first solved by the wave mechanics. 42.Nuclear physics. 43.Further matters connected with the geometric optics of light and of electrons. 44.Piezoelectricity and its applications. 45.Space-charge effect in gaseous discharges. 46.Theory of elastomers.
fcnm1261
530.1I/J74
Theoretical Physics - 1986 - 873 páginas
1.Vector analysis. 2.Mathematical representation of periodic phenomena theory of vibrations and waves. 3.Selected topics in the theory of functions of a complex variable. 4.The fundamental problem of the calculus of variations and its solution. 5.The mechanics of a single particle. 6.General theorems on the mechanics of systems of particles. 7.The mechanics of rigid bodies. 8.Elasticity the mechanics of deformable solids. 9.The mechanics of liquids and gases (hydro - and aero-mechanics). 10.Relativistic mechanics. 11.The electrostatic filed in a vacuum (or in air). 12.The electrostatic field in dielectric media. 13.Energy and pondermotive forces in the electrostatic field. 14.Stationary electric fields and steady currents. 15.The magnetostatic field. 16.Slowly varying (quasi stationary) fields. 17.Rapidly alternating electromagnetic waves fields: propagation in homogeneous isotropic media. 18.Electromagnetic waves II - phenomena in two adjoining media. 19.Electromagnetic waves III - propagation in anisotropic media. The optics of crystals. 20.Electromagnetic waves IV – the theory of diffraction. 21.The elements of geometrical optics and of interference optics 22.Electrolytic conduction. 23.The conduction of electricity in gases. 24.The fundamental ideas of the theory of metallic conduction. 25.Electron theory the dielectric constant, index of refraction and magnetic permeabitily. 26.Phenomenological theory of superconductivity. 27.The electrodynamics of moving bodies. 28.Theory of the conduction of heat. 29.The equation of state of thermodynamic systems. 30.The first of thermodynamics: the conservation of energy. 31.The second law of thermodynamics: the law of entropy. 32.Applications of the second law to the calculation of the equilibrium of thermodynamics systems. 33.The Nernst heat theorem. 34.The elementary kinetic theory of matter. 35.The classical statistical of Boltzmann. 36.The classical quantum statistic. 37.The theory of thermal radiation. 38.The bose-Einstein and the Fermi-Dirac Statistics. 39.The mechanics of simple atomic model. 40.Critical atomic theory: the new quantum mechanics. 41.Atomic problems first solved by the wave mechanics. 42.Nuclear physics. 43.Further matters connected with the geometric optics of light and of electrons. 44.Piezoelectricity and its applications. 45.Space-charge effect in gaseous discharges. 46.Theory of elastomers.
fcnm1261
530.1I/J74