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  2. List of character tables for chemically important 3D point groups

    en.wikipedia.org/wiki/List_of_character_tables...

    The two rightmost columns indicate which irreducible representations describe the symmetry transformations of the three Cartesian coordinates (x, y and z), rotations about those three coordinates (R x, R y and R z), and functions of the quadratic terms of the coordinates(x 2, y 2, z 2, xy, xz, and yz).

  3. Dihedral group of order 8 - Wikipedia

    en.wikipedia.org/wiki/Dihedral_group_of_order_8

    Applying two symmetry transformations in succession yields a symmetry transformation. For instance a ∘ a, also written as a 2, is a 180° degree turn. a 3 is a 270° clockwise rotation (or a 90° counter-clockwise rotation). We also see that b 2 = e and also a 4 = e. A horizontal flip followed by a rotation, a ∘ b is the same as b ∘ a 3.

  4. Symmetry (physics) - Wikipedia

    en.wikipedia.org/wiki/Symmetry_(physics)

    The symmetry of a physical system is a physical or mathematical feature of the system (observed or intrinsic) that is preserved or remains unchanged under some transformation. A family of particular transformations may be continuous (such as rotation of a circle) or discrete (e.g., reflection of a bilaterally symmetric figure, or rotation of a ...

  5. Equivariant map - Wikipedia

    en.wikipedia.org/wiki/Equivariant_map

    That is, applying a symmetry transformation and then computing the function produces the same result as computing the function and then applying the transformation. Equivariant maps generalize the concept of invariants, functions whose value is unchanged by a symmetry transformation of their argument. The value of an equivariant map is often ...

  6. Symmetry operation - Wikipedia

    en.wikipedia.org/wiki/Symmetry_operation

    In mathematics, a symmetry operation is a geometric transformation of an object that leaves the object looking the same after it has been carried out. For example, a 1 ⁄ 3 turn rotation of a regular triangle about its center, a reflection of a square across its diagonal, a translation of the Euclidean plane, or a point reflection of a sphere through its center are all symmetry operations.

  7. Wigner's theorem - Wikipedia

    en.wikipedia.org/wiki/Wigner's_theorem

    A geometric interpretation is that a symmetry transformation is an isometry of ray space. Some facts about symmetry transformations that can be verified using the definition: The product of two symmetry transformations, i.e. two symmetry transformations applied in succession, is a symmetry transformation. Any symmetry transformation has an inverse.

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