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The nature of the atom and of chemical bonds Crystal lattice
8 other sections not shown
additional half-plane anions atoms ions bonds cations ceramic ceramic materials changes Chapter composition compressive stresses concentration of impurity conduction band constant crack decrease deformation denotes dielectric diffusion dipoles direction dislocation line domains edge dislocation elastic strain electric field electron holes equation fibres formation formed free energy frequency glass grain boundaries grain centres growth heat high temperatures impurity atoms increase interfaces interstitial ionic crystals ions lattice point layers ledge Let us consider liquid phase magnetic mass transport maximum mechanism metals multiphase materials nucleation nuclei number of atoms obtain occur orbitals oscillations oxygen particles permittivity photons planes point defects polarization polycrystals pores quantum number radius ratio reactions result screw dislocation Section shown in Fig silicate melts single crystals sintering slip solid phase strength structure supersaturations takes place tensile stresses tetrahedra thermal tion valence valence band vapour vector viscous vitrification volume fraction whiskers Young's modulus