... | ... | @@ -130,8 +130,8 @@ the accelerator is uniquely defined by the sequence of physical elements |
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in latexmath:[K]. The beam elements are numbered
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latexmath:[e_0, \ldots , e_i, \ldots e_n].
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image:figures/opalt/coords.png[Illustration of local and global
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coordinates.]
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.Illustration of local and global coordinates.
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image:figures/opalt/coords.png[]
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[[local-cartesian-coordinate-system]]
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Local Cartesian Coordinate System
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... | ... | @@ -236,8 +236,8 @@ the reference orbit. The two other axes are perpendicular to the |
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reference orbit and are labelled latexmath:[x] (in the bend plane)
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and latexmath:[y] (perpendicular to the bend plane).
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image:figures/opalt/curvcoords.png[Illustration of
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latexmath:[K_\text{sc}] and latexmath:[K_s]]
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.Illustration of latexmath:[K_\text{sc}] and latexmath:[K_s]
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image:figures/opalt/curvcoords.png[]
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Both coordinate systems are described in Figure [KS2].
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... | ... | @@ -295,8 +295,8 @@ empty set latexmath:[\emptyset]. |
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Flow Diagram of _OPAL-t_
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^^^^^^^^^^^^^^^^^^^^^^^^
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image:figures/opalt/flowdiagram.png[Schematic workflow of ’s execute
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method.]
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.Schematic workflow of _OPAL-t_’s execute method.
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image:figures/opalt/flowdiagram.png[]
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A regular time step in _OPAL-t_ is sketched in
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Figure [OPALTSchemeSimple]. In order to compute the coordinate system
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