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E17' 2.00000 -1.83996 1.38545 -0.70921 -0.08053 0.85739 -1.49702 1.89707 -1.99351 1.77091 -1.26489 0.55643 0.24107 -1.00000 1.59889 -1.94188 1.97410 -1.69038 1.13613 -0.40005 0.00000 2.00000 -1.83996 -0.70921 0.85739 1.89707 1.77091 0.55643 -1.00000 -1.94188 -1.69038 -0.40005 1.13613 1.97410 1.59889 0.24107 -1.26489 -1.99351 -1.49702 -0.08053 1.38545 0.00000 ... ... ..... ....... ......... ........... ............. E17" 2.00000 -1.83996 1.38545 -0.70921 -0.08053 0.85739 -1.49702 1.89707 -1.99351 1.77091 -1.26489 0.55643 0.24107 -1.00000 1.59889 -1.94188 1.97410 -1.69038 1.13613 -0.40005 0.00000 -2.00000 1.83996 0.70921 -0.85739 -1.89707 -1.77091 -0.55643 1.00000 1.94188 1.69038 0.40005 -1.13613 -1.97410 -1.59889 -0.24107 1.26489 1.99351 1.49702 0.08053 -1.38545 0.00000 ... ... ..... ....... ......... ........... ............. E18' 2.00000 -1.94188 1.77091 -1.49702 1.13613 -0.70921 0.24107 0.24107 -0.70921 1.13613 -1.49702 1.77091 -1.94188 2.00000 -1.94188 1.77091 -1.49702 1.13613 -0.70921 0.24107 0.00000 2.00000 -1.94188 -1.49702 -0.70921 0.24107 1.13613 1.77091 2.00000 1.77091 1.13613 0.24107 -0.70921 -1.49702 -1.94188 -1.94188 -1.49702 -0.70921 0.24107 1.13613 1.77091 0.00000 ... ... ..... ....... ......... ........... ............. E18" 2.00000 -1.94188 1.77091 -1.49702 1.13613 -0.70921 0.24107 0.24107 -0.70921 1.13613 -1.49702 1.77091 -1.94188 2.00000 -1.94188 1.77091 -1.49702 1.13613 -0.70921 0.24107 0.00000 -2.00000 1.94188 1.49702 0.70921 -0.24107 -1.13613 -1.77091 -2.00000 -1.77091 -1.13613 -0.24107 0.70921 1.49702 1.94188 1.94188 1.49702 0.70921 -0.24107 -1.13613 -1.77091 0.00000 ... ... ..... ....... ......... ........... ............. E19' 2.00000 -1.99351 1.97410 -1.94188 1.89707 -1.83996 1.77091 -1.69038 1.59889 -1.49702 1.38545 -1.26489 1.13613 -1.00000 0.85739 -0.70921 0.55643 -0.40005 0.24107 -0.08053 0.00000 2.00000 -1.99351 -1.94188 -1.83996 -1.69038 -1.49702 -1.26489 -1.00000 -0.70921 -0.40005 -0.08053 0.24107 0.55643 0.85739 1.13613 1.38545 1.59889 1.77091 1.89707 1.97410 0.00000 ... ... ..... ....... ......... ........... ............. E19" 2.00000 -1.99351 1.97410 -1.94188 1.89707 -1.83996 1.77091 -1.69038 1.59889 -1.49702 1.38545 -1.26489 1.13613 -1.00000 0.85739 -0.70921 0.55643 -0.40005 0.24107 -0.08053 0.00000 -2.00000 1.99351 1.94188 1.83996 1.69038 1.49702 1.26489 1.00000 0.70921 0.40005 0.08053 -0.24107 -0.55643 -0.85739 -1.13613 -1.38545 -1.59889 -1.77091 -1.89707 -1.97410 0.00000 ... ... ..... ....... ......... ........... ............. Irrational character values: 1.993514616268 = 2*cos(2*π/78) = 2*cos(π/39) 1.974100525276 = 2*cos(4*π/78) = 2*cos(2*π/39) 1.941883634852 = 2*cos(6*π/78) = 2*cos(π/13) 1.897072883894 = 2*cos(8*π/78) = 2*cos(4*π/39) 1.839958887318 = 2*cos(10*π/78) = 2*cos(5*π/39) 1.770912051306 = 2*cos(12*π/78) = 2*cos(2*π/13) 1.690380171088 = 2*cos(14*π/78) = 2*cos(7*π/39) 1.598885526807 = 2*cos(16*π/78) = 2*cos(8*π/39) 1.497021496342 = 2*cos(18*π/78) = 2*cos(3*π/13) 1.385448707019 = 2*cos(20*π/78) = 2*cos(10*π/39) 1.264890751191 = 2*cos(22*π/78) = 2*cos(11*π/39) 1.136129493462 = 2*cos(24*π/78) = 2*cos(4*π/13) 0.857385122806 = 2*cos(28*π/78) = 2*cos(14*π/39) 0.709209774085 = 2*cos(30*π/78) = 2*cos(5*π/13) 0.556434927833 = 2*cos(32*π/78) = 2*cos(16*π/39) 0.400051387552 = 2*cos(34*π/78) = 2*cos(17*π/39) 0.241073360511 = 2*cos(36*π/78) = 2*cos(6*π/13) 0.080531880219 = 2*cos(38*π/78) = 2*cos(19*π/39) Symmetry of Rotations and Cartesian products A1' d+g+i+k+m z2, z4, z6 A2' R Rz A2" p+f+h+j+l z, z3, z5 E1' p+f+h+j+l {x, y}, {xz2, yz2}, {xz4, yz4} E1" R+d+g+i+k+m {Rx, Ry}, {xz, yz}, {xz3, yz3}, {xz5, yz5} E2' d+g+i+k+m {x2−y2, xy}, {z2(x2−y2), xyz2}, {z4(x2−y2), xyz4} E2" f+h+j+l {z(x2−y2), xyz}, {z3(x2−y2), xyz3} E3' f+h+j+l {x(x2−3y2), y(3x2−y2)}, {xz2(x2−3y2), yz2(3x2−y2)} E3" g+i+k+m {xz(x2−3y2), yz(3x2−y2)}, {xz3(x2−3y2), yz3(3x2−y2)} E4' g+i+k+m {(x2−y2)2−4x2y2, xy(x2−y2)}, {z2((x2−y2)2−4x2y2), xyz2(x2−y2)} E4" h+j+l {z((x2−y2)2−4x2y2), xyz(x2−y2)} E5' h+j+l {x(x2−(5+2√5)y2)(x2−(5−2√5)y2), y((5+2√5)x2−y2)((5−2√5)x2−y2)} E5" i+k+m {xz(x2−(5+2√5)y2)(x2−(5−2√5)y2), yz((5+2√5)x2−y2)((5−2√5)x2−y2)} E6' i+k+m {x2(x2−3y2)2−y2(3x2−y2)2, xy(x2−3y2)(3x2−y2)} E6" j+l E7' j+l E7" k+m E8' k+m E8" l E9' l E9" m E10' m Notes: α The order of the D39h point group is 156, and the order of the principal axis (S39) is 78. The group has 42 irreducible representations. β The D39h point group is isomorphic to D39d, C78v and D78. γ The D39h point group is generated by two symmetry elements, S39 and either a perpendicular C2′ or a vertical σv. Also, the group may be generated from two σv planes, or a σv and a C2′ (some pairs will yield smaller groups, though; choosing a minimum angle is safe). The canonical choice, however, is to use redundant generators: C39, C2′ and σh. δ The group contains one set of C2′ symmetry axes perpendicular to the principal (z) axis. The x axis (but not the y axis) is a member of that set. Similarly, the single set of symmetry planes denoted σd contains the xz plane but not the yz plane. ε The lowest nonvanishing multipole moment in D39h is 4 (quadrupole moment). ζ This point group is non-Abelian (some symmetry operations are not commutative). Therefore, the character table contains multi-membered classes and degenerate irreducible representations. η Some of the characters in the table are irrational because the order of the principal axis is neither 1,2,3,4 nor 6. These irrational values can be expressed as cosine values, or as solutions of algebraic equations with a leading coefficient of 1. All characters are algebraic integers of a degree much less than half the order of the principal axis. θ The point group corresponds to a polygon inconstructible by the classical means of ruler and compass. Yet it becomes constructible if angle trisection is allowed, e.g., with neusis construction or origami. This is because the order of the principal axis is given by a product of any number of different Pierpont primes (...,5,7,13,17,19,37,73,97,109,163,...) times arbitrary powers of two and three. All characters of this group can be expressed using complex numbers, elementary arithmetic operations, square roots and third roots.
D37h | ||
D38h | ||
C39 C39v C39h D39 | D39h | D39d |
D40h | ||
D41h |
This Character Table for the D39h point group was created by Gernot Katzer.
For other groups and some explanations, see the Main Page.