Add missing $ sign
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@ -85,6 +85,15 @@
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(setq org-export-before-parsing-hook '(org-ref-glossary-before-parsing
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(setq org-export-before-parsing-hook '(org-ref-glossary-before-parsing
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org-ref-acronyms-before-parsing))
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org-ref-acronyms-before-parsing))
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#+END_SRC
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#+END_SRC
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#+begin_src emacs-lisp
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(org-export-define-derived-backend 'my-org 'org
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:translate-alist '((link . nil)(latex-fragment . nil)(latex-environment . nil)(special-block . nil)
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(table . nil)
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(property-drawer . nil)))
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#+end_src
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#+begin_src emacs-lisp
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(org-export-to-file 'my-org "text.org")
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#+end_src
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* Notes :noexport:
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* Notes :noexport:
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Prefix is =uniaxial=
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Prefix is =uniaxial=
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@ -6184,5 +6193,5 @@ colors = colororder;
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* Footnotes
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* Footnotes
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[fn:3]DLPVA-100-B from Femto with a voltage input noise is $2.4\,nV/\sqrt{\text{Hz}}$
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[fn:3]DLPVA-100-B from Femto with a voltage input noise is $2.4\,nV/\sqrt{\text{Hz}}$
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[fn:2]Mark Product L-22D geophones are used with a sensitivity of $88\,\frac{V}{m/s} and a natural frequency of $\approx 2\,\text{Hz}$
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[fn:2]Mark Product L-22D geophones are used with a sensitivity of $88\,\frac{V}{m/s}$ and a natural frequency of $\approx 2\,\text{Hz}$
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[fn:1]Mark Product L4-C geophones are used with a sensitivity of $171\,\frac{V}{m/s}$ and a natural frequency of $\approx 1\,\text{Hz}$
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[fn:1]Mark Product L4-C geophones are used with a sensitivity of $171\,\frac{V}{m/s}$ and a natural frequency of $\approx 1\,\text{Hz}$
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@ -1,4 +1,4 @@
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% Created 2024-05-02 Thu 12:04
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% Created 2024-11-05 Tue 13:26
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% Intended LaTeX compiler: pdflatex
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% Intended LaTeX compiler: pdflatex
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\documentclass[a4paper, 10pt, DIV=12, parskip=full, bibliography=totoc]{scrreprt}
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\documentclass[a4paper, 10pt, DIV=12, parskip=full, bibliography=totoc]{scrreprt}
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@ -38,7 +38,7 @@
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pdftitle={Nano Active Stabilization System - Uniaxial Model},
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pdftitle={Nano Active Stabilization System - Uniaxial Model},
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pdfkeywords={},
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pdfkeywords={},
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pdfsubject={},
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pdfsubject={},
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pdfcreator={Emacs 29.3 (Org mode 9.6)},
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pdfcreator={Emacs 29.4 (Org mode 9.6)},
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pdflang={English}}
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pdflang={English}}
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\usepackage{biblatex}
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\usepackage{biblatex}
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@ -213,7 +213,7 @@ For further analysis, 9 ``configurations'' of the uniaxial NASS model of Figure
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\end{figure}
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\end{figure}
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\chapter{Disturbance Identification}
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\chapter{Disturbance Identification}
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\label{sec:uniaxial_disturbances}
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\label{sec:uniaxial_disturbances}
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To quantify disturbances (red signals in Figure \ref{fig:uniaxial_model_micro_station_nass}), three geophones\footnote{Mark Product L-22D geophones are used with a sensitivity of \$88$\backslash$,\frac{V}{m/s} and a natural frequency of \(\approx 2\,\text{Hz}\)} are used.
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To quantify disturbances (red signals in Figure \ref{fig:uniaxial_model_micro_station_nass}), three geophones\footnote{Mark Product L-22D geophones are used with a sensitivity of \(88\,\frac{V}{m/s}\) and a natural frequency of \(\approx 2\,\text{Hz}\)} are used.
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One is located on the floor, another one on the granite, and the last one on the micro-hexapod's top platform (see Figure \ref{fig:uniaxial_ustation_meas_disturbances}).
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One is located on the floor, another one on the granite, and the last one on the micro-hexapod's top platform (see Figure \ref{fig:uniaxial_ustation_meas_disturbances}).
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The geophone located on the floor was used to measure the floor motion \(x_f\) while the other two geophones were used to measure vibrations introduced by scanning of the \(T_y\) stage and \(R_z\) stage (see Figure \ref{fig:uniaxial_ustation_dynamical_id_setup}).
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The geophone located on the floor was used to measure the floor motion \(x_f\) while the other two geophones were used to measure vibrations introduced by scanning of the \(T_y\) stage and \(R_z\) stage (see Figure \ref{fig:uniaxial_ustation_dynamical_id_setup}).
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