Physical Properties of Crystals |
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Page 17
... quadric . For this reason the surface ( 26 ) is called the representation quadric for the tensor S. † All the second - rank tensors given in Table 1 , p . 7 , are symmetrical ; and , indeed , all except one of the second - rank tensors ...
... quadric . For this reason the surface ( 26 ) is called the representation quadric for the tensor S. † All the second - rank tensors given in Table 1 , p . 7 , are symmetrical ; and , indeed , all except one of the second - rank tensors ...
Page 22
... representation quadric . This surface , whose equation contains as many independent coefficients as there are independent components in a symmetrical second - rank tensor , represents the tensor property completely . Its symmetry is the ...
... representation quadric . This surface , whose equation contains as many independent coefficients as there are independent components in a symmetrical second - rank tensor , represents the tensor property completely . Its symmetry is the ...
Page 31
John Frederick Nye. 8. Representation quadric ( § 4 ) . The representation quadric for the sym- metrical tensor [ S1 ; ] is defined as S1j x¡ xj = 1 ; or , referred to principal axes ( § 4.1 ) , S1x2 + S2x2 + S2x = 1 . Radius vector ...
John Frederick Nye. 8. Representation quadric ( § 4 ) . The representation quadric for the sym- metrical tensor [ S1 ; ] is defined as S1j x¡ xj = 1 ; or , referred to principal axes ( § 4.1 ) , S1x2 + S2x2 + S2x = 1 . Radius vector ...
Contents
THE GROUNDWORK OF CRYSTAL PHYSICS | 11 |
EQUILIBRIUM PROPERTIES | 45 |
PARAMAGNETIC AND DIAMAGNETIC SUSCEPTIBILITY | 53 |
20 other sections not shown
Common terms and phrases
angle anisotropic applied biaxial birefringence centre of symmetry Chapter coefficients components conductivity constant crystal classes crystal properties crystal symmetry cube cubic crystals D₁ defined deformation denoted diad axis dielectric dijk displacement electric field ellipsoid equal equation example expression follows forces given grad H₁ heat flow Hence hexagonal indicatrix isothermal isotropic k₁ magnetic magnitude matrix notation measured moduli monoclinic number of independent Onsager's Principle optic axis optical activity orientation orthorhombic Ox₁ P₁ parallel Peltier permittivity perpendicular photoelastic photoelastic effect piezoelectric effect plane plate polarization positive principal axes pyroelectric effect quadric radius vector referred refractive index relation representation quadric represents right-handed rotation S₁ scalar second-rank tensor shear shown strain stress suffixes symmetry elements Table temperature gradient thermal expansion thermodynamics thermoelectric effects Thomson heat tion transformation law triclinic trigonal uniaxial values wave normal wave surface x₁ Young's Modulus zero ат