forked from lijiext/lammps
fix typos and indentations
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@ -13,7 +13,7 @@ Syntax
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Examples
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Examples
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""""""""
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""""""""
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.. code-blocK:: LAMMPS
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.. code-block:: LAMMPS
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bond_style none
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bond_style none
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@ -57,8 +57,8 @@ is computed from the structure factor F using the equations:
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.. math::
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.. math::
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I = & \frac{F^{*}F}{N} \\
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I = & \frac{F^{*}F}{N} \\
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F(\mathbf{k}) = & \sum_{j=1}^{N}f_j(\theta)exp(2\pi i \mathbf{k} \cdot \mathbf{r}_j)
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F(\mathbf{k}) = & \sum_{j=1}^{N}f_j(\theta)exp(2\pi i \mathbf{k} \cdot \mathbf{r}_j)
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Here, K is the location of the reciprocal lattice node, :math:`r_j` is the
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Here, K is the location of the reciprocal lattice node, :math:`r_j` is the
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position of each atom, :math:`f_j` are atomic scattering factors.
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position of each atom, :math:`f_j` are atomic scattering factors.
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@ -116,8 +116,8 @@ The analytic approximation is computed using the formula
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.. math::
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.. math::
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f_j\left ( \frac{sin(\theta)}{\lambda} \right )=\sum_{i}^{5}
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f_j\left ( \frac{sin(\theta)}{\lambda} \right )=\sum_{i}^{5}
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a_i exp\left ( -b_i \frac{sin^{2}(\theta)}{\lambda^{2}} \right )
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a_i exp\left ( -b_i \frac{sin^{2}(\theta)}{\lambda^{2}} \right )
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Coefficients parameterized by :ref:`(Fox) <Fox>` are assigned for each
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Coefficients parameterized by :ref:`(Fox) <Fox>` are assigned for each
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atom type designating the chemical symbol and charge of each atom
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atom type designating the chemical symbol and charge of each atom
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@ -16,7 +16,7 @@ Syntax
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Examples
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Examples
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""""""""
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""""""""
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.. code:: LAMMPS
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.. code-block:: LAMMPS
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pair_style meam/spline
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pair_style meam/spline
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pair_coeff * * Ti.meam.spline Ti
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pair_coeff * * Ti.meam.spline Ti
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