Nomenclature per chapter Announcing the arrival of Valued Associate #679: Cesar Manara ...
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Nomenclature per chapter
Announcing the arrival of Valued Associate #679: Cesar Manara
Planned maintenance scheduled April 17/18, 2019 at 00:00UTC (8:00pm US/Eastern)List of symbols for each chapterNotation table in each Chapter/PartConverting LyX Nomenclature to GlossariesHow to create nomenclature using TeXnicCenter?Non numbered chapter* header issueCompiling nomenclature adds section number to bibliographyNomencl and nomenclature in included PDFcustom sorting of nomencl groupsvary headline of different groups in nomencl-nomenclatureNomenclature not appearingEquation and nomenclature shortcut macros yield duplicate nomenclature entriesNomenclature not working
I would like add a nomenclature at the end of each chapter of my dissertation, including the parameters of that chapter.
documentclass{report}
usepackage[intoc]{nomencl}
makenomenclature
begin{document}
chapter{First Chapter}
section{Introduction 1}
Only $a$ will be discussed in this chapter. So, i do not need $N$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$a$}{The number of angels per unit area}%
printnomenclature
chapter{Second chapter}
section{Introduction 2}
Only $N$ will be discussed in this chapter. So, i do not need $a$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$N$}{The number of angels per needle point}%
printnomenclature
end{document}
Thank you all for your help.
chapters nomenclature nomencl
bumped to the homepage by Community♦ 14 mins ago
This question has answers that may be good or bad; the system has marked it active so that they can be reviewed.
add a comment |
I would like add a nomenclature at the end of each chapter of my dissertation, including the parameters of that chapter.
documentclass{report}
usepackage[intoc]{nomencl}
makenomenclature
begin{document}
chapter{First Chapter}
section{Introduction 1}
Only $a$ will be discussed in this chapter. So, i do not need $N$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$a$}{The number of angels per unit area}%
printnomenclature
chapter{Second chapter}
section{Introduction 2}
Only $N$ will be discussed in this chapter. So, i do not need $a$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$N$}{The number of angels per needle point}%
printnomenclature
end{document}
Thank you all for your help.
chapters nomenclature nomencl
bumped to the homepage by Community♦ 14 mins ago
This question has answers that may be good or bad; the system has marked it active so that they can be reviewed.
Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07
add a comment |
I would like add a nomenclature at the end of each chapter of my dissertation, including the parameters of that chapter.
documentclass{report}
usepackage[intoc]{nomencl}
makenomenclature
begin{document}
chapter{First Chapter}
section{Introduction 1}
Only $a$ will be discussed in this chapter. So, i do not need $N$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$a$}{The number of angels per unit area}%
printnomenclature
chapter{Second chapter}
section{Introduction 2}
Only $N$ will be discussed in this chapter. So, i do not need $a$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$N$}{The number of angels per needle point}%
printnomenclature
end{document}
Thank you all for your help.
chapters nomenclature nomencl
I would like add a nomenclature at the end of each chapter of my dissertation, including the parameters of that chapter.
documentclass{report}
usepackage[intoc]{nomencl}
makenomenclature
begin{document}
chapter{First Chapter}
section{Introduction 1}
Only $a$ will be discussed in this chapter. So, i do not need $N$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$a$}{The number of angels per unit area}%
printnomenclature
chapter{Second chapter}
section{Introduction 2}
Only $N$ will be discussed in this chapter. So, i do not need $a$ in the nomenclature. Besides I would like to have the nomenclature as a non numbered section (not a chapter).
nomenclature{$N$}{The number of angels per needle point}%
printnomenclature
end{document}
Thank you all for your help.
chapters nomenclature nomencl
chapters nomenclature nomencl
edited Aug 7 '16 at 8:48
Johannes_B
21.1k352206
21.1k352206
asked Jul 10 '14 at 2:40
user56855
bumped to the homepage by Community♦ 14 mins ago
This question has answers that may be good or bad; the system has marked it active so that they can be reviewed.
bumped to the homepage by Community♦ 14 mins ago
This question has answers that may be good or bad; the system has marked it active so that they can be reviewed.
Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07
add a comment |
Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07
Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07
add a comment |
1 Answer
1
active
oldest
votes
I can do it "manually" with the other nomenclature package: "nomentbl". You have to configure the tex compiler. I used Texstudio so I add an user command in:
Options > Configure Texstudio > Build > User commands then put these command in
makeindex -s nomentbl.ist -o %.nls %.nlo
Normally, you have to do the following procedure to have nomenclature:
Compile > Make index > Recompile
The principle is the same: when you run a make index, Latex will generate an .nls file. Next time you compile, the nomenclature will appear.
So instead of run a second compile, all you need is create a file name nomen_chap0x then you copy the content in the .nls file into the nomen_chap0x then you put the command : input{nomen_chap0x}. When you compile, the nomenclature will appear in the section.
The important thing is you have to delete the .nls file and comment all of nomenclature in the chapter to avoid the same nomenclature's appearance in the next chapter.
In the second chapter, you have to create another nomenclature, used only for this chapter, and you repeat the procedure above
Her an mwe for what I'm talking about:
documentclass[openany]{book}
usepackage{booktabs}
usepackage{lipsum}
usepackage{setspace}
usepackage{amssymb, amsmath, mathtools} % math formulations
usepackage{siunitx}
usepackage[intoc,noprefix]{nomentbl}
makeatletter % to put nomenclature in the section range of the TOC
defthenomenclature{%
section*{nomname}
if@intocaddcontentsline{toc}{section}{nomname}fi%
nompreamble
list{}{%
labelwidthnom@tempdim
leftmarginlabelwidth
advanceleftmarginlabelsep
itemsepnomitemsep
letmakelabelnomlabel}}
makeatother
makenomenclature
begin{document}
tableofcontents
chapter{blabla1}
section{Example 01}
lipsum[2]
begin{equation}
mathbf{J_i} = - {D_i}left( {nabla} {c_i} + dfrac{{{z_i}F}}{{RT}}{c_i} {nabla} varphi right)
label{eq505}
end{equation}
where $ mathbf{J_i} $ is the ion flux, $ D_i $ is the bulk diffusion coefficient of the ionic species, $ F $ is the Faraday constant, $ R $ is the universal gas constant and $ T $ is the temperature
nomenclature[A]{$ D_{i} $}{Bulk diffusion coefficient of the species}{si{squarem / s}}{}
nomenclature[A]{$ F $}{Faraday constant}{si{coulomb / mole}}{}
nomenclature[A]{$ R $}{ Universal gas constant}{si{J / kelvin mole}}{}
nomenclature[A]{$ T $}{Temperature}{si{kelvin}}{}
nomenclature[A]{$ z $}{Charge number of the ionic species }{}{}
nomenclature[A]{$ J $}{ Flux of the ionic species}{si{mole / m^2 s}}{}
nomenclature[G]{$ varphi $}{Total electric potential}{si{volt}}{}
input{nomen_chap1}
chapter{blabla2}
section{Example 02}
lipsum[1]
The Ohm's law:
begin{equation}
R_{s}= frac{U}{I}
end{equation}
where $ R_s $ is the resistance (si{ohm}), $ U $ is the voltage (si{volt}) and $ I $ is the electric current (si{ampere})
nomenclature[A]{$ R_s $}{Resistance}{si{ohm}}{}
nomenclature[A]{$ U $}{Voltage}{si{volt}}{}
nomenclature[A]{$ I $}{Electric current}{si{ampere}}{}
input{nomen_chap2}
end{document}
Here is the results:
I also put the entire mwe folder fmi:
enter link description here
add a comment |
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I can do it "manually" with the other nomenclature package: "nomentbl". You have to configure the tex compiler. I used Texstudio so I add an user command in:
Options > Configure Texstudio > Build > User commands then put these command in
makeindex -s nomentbl.ist -o %.nls %.nlo
Normally, you have to do the following procedure to have nomenclature:
Compile > Make index > Recompile
The principle is the same: when you run a make index, Latex will generate an .nls file. Next time you compile, the nomenclature will appear.
So instead of run a second compile, all you need is create a file name nomen_chap0x then you copy the content in the .nls file into the nomen_chap0x then you put the command : input{nomen_chap0x}. When you compile, the nomenclature will appear in the section.
The important thing is you have to delete the .nls file and comment all of nomenclature in the chapter to avoid the same nomenclature's appearance in the next chapter.
In the second chapter, you have to create another nomenclature, used only for this chapter, and you repeat the procedure above
Her an mwe for what I'm talking about:
documentclass[openany]{book}
usepackage{booktabs}
usepackage{lipsum}
usepackage{setspace}
usepackage{amssymb, amsmath, mathtools} % math formulations
usepackage{siunitx}
usepackage[intoc,noprefix]{nomentbl}
makeatletter % to put nomenclature in the section range of the TOC
defthenomenclature{%
section*{nomname}
if@intocaddcontentsline{toc}{section}{nomname}fi%
nompreamble
list{}{%
labelwidthnom@tempdim
leftmarginlabelwidth
advanceleftmarginlabelsep
itemsepnomitemsep
letmakelabelnomlabel}}
makeatother
makenomenclature
begin{document}
tableofcontents
chapter{blabla1}
section{Example 01}
lipsum[2]
begin{equation}
mathbf{J_i} = - {D_i}left( {nabla} {c_i} + dfrac{{{z_i}F}}{{RT}}{c_i} {nabla} varphi right)
label{eq505}
end{equation}
where $ mathbf{J_i} $ is the ion flux, $ D_i $ is the bulk diffusion coefficient of the ionic species, $ F $ is the Faraday constant, $ R $ is the universal gas constant and $ T $ is the temperature
nomenclature[A]{$ D_{i} $}{Bulk diffusion coefficient of the species}{si{squarem / s}}{}
nomenclature[A]{$ F $}{Faraday constant}{si{coulomb / mole}}{}
nomenclature[A]{$ R $}{ Universal gas constant}{si{J / kelvin mole}}{}
nomenclature[A]{$ T $}{Temperature}{si{kelvin}}{}
nomenclature[A]{$ z $}{Charge number of the ionic species }{}{}
nomenclature[A]{$ J $}{ Flux of the ionic species}{si{mole / m^2 s}}{}
nomenclature[G]{$ varphi $}{Total electric potential}{si{volt}}{}
input{nomen_chap1}
chapter{blabla2}
section{Example 02}
lipsum[1]
The Ohm's law:
begin{equation}
R_{s}= frac{U}{I}
end{equation}
where $ R_s $ is the resistance (si{ohm}), $ U $ is the voltage (si{volt}) and $ I $ is the electric current (si{ampere})
nomenclature[A]{$ R_s $}{Resistance}{si{ohm}}{}
nomenclature[A]{$ U $}{Voltage}{si{volt}}{}
nomenclature[A]{$ I $}{Electric current}{si{ampere}}{}
input{nomen_chap2}
end{document}
Here is the results:
I also put the entire mwe folder fmi:
enter link description here
add a comment |
I can do it "manually" with the other nomenclature package: "nomentbl". You have to configure the tex compiler. I used Texstudio so I add an user command in:
Options > Configure Texstudio > Build > User commands then put these command in
makeindex -s nomentbl.ist -o %.nls %.nlo
Normally, you have to do the following procedure to have nomenclature:
Compile > Make index > Recompile
The principle is the same: when you run a make index, Latex will generate an .nls file. Next time you compile, the nomenclature will appear.
So instead of run a second compile, all you need is create a file name nomen_chap0x then you copy the content in the .nls file into the nomen_chap0x then you put the command : input{nomen_chap0x}. When you compile, the nomenclature will appear in the section.
The important thing is you have to delete the .nls file and comment all of nomenclature in the chapter to avoid the same nomenclature's appearance in the next chapter.
In the second chapter, you have to create another nomenclature, used only for this chapter, and you repeat the procedure above
Her an mwe for what I'm talking about:
documentclass[openany]{book}
usepackage{booktabs}
usepackage{lipsum}
usepackage{setspace}
usepackage{amssymb, amsmath, mathtools} % math formulations
usepackage{siunitx}
usepackage[intoc,noprefix]{nomentbl}
makeatletter % to put nomenclature in the section range of the TOC
defthenomenclature{%
section*{nomname}
if@intocaddcontentsline{toc}{section}{nomname}fi%
nompreamble
list{}{%
labelwidthnom@tempdim
leftmarginlabelwidth
advanceleftmarginlabelsep
itemsepnomitemsep
letmakelabelnomlabel}}
makeatother
makenomenclature
begin{document}
tableofcontents
chapter{blabla1}
section{Example 01}
lipsum[2]
begin{equation}
mathbf{J_i} = - {D_i}left( {nabla} {c_i} + dfrac{{{z_i}F}}{{RT}}{c_i} {nabla} varphi right)
label{eq505}
end{equation}
where $ mathbf{J_i} $ is the ion flux, $ D_i $ is the bulk diffusion coefficient of the ionic species, $ F $ is the Faraday constant, $ R $ is the universal gas constant and $ T $ is the temperature
nomenclature[A]{$ D_{i} $}{Bulk diffusion coefficient of the species}{si{squarem / s}}{}
nomenclature[A]{$ F $}{Faraday constant}{si{coulomb / mole}}{}
nomenclature[A]{$ R $}{ Universal gas constant}{si{J / kelvin mole}}{}
nomenclature[A]{$ T $}{Temperature}{si{kelvin}}{}
nomenclature[A]{$ z $}{Charge number of the ionic species }{}{}
nomenclature[A]{$ J $}{ Flux of the ionic species}{si{mole / m^2 s}}{}
nomenclature[G]{$ varphi $}{Total electric potential}{si{volt}}{}
input{nomen_chap1}
chapter{blabla2}
section{Example 02}
lipsum[1]
The Ohm's law:
begin{equation}
R_{s}= frac{U}{I}
end{equation}
where $ R_s $ is the resistance (si{ohm}), $ U $ is the voltage (si{volt}) and $ I $ is the electric current (si{ampere})
nomenclature[A]{$ R_s $}{Resistance}{si{ohm}}{}
nomenclature[A]{$ U $}{Voltage}{si{volt}}{}
nomenclature[A]{$ I $}{Electric current}{si{ampere}}{}
input{nomen_chap2}
end{document}
Here is the results:
I also put the entire mwe folder fmi:
enter link description here
add a comment |
I can do it "manually" with the other nomenclature package: "nomentbl". You have to configure the tex compiler. I used Texstudio so I add an user command in:
Options > Configure Texstudio > Build > User commands then put these command in
makeindex -s nomentbl.ist -o %.nls %.nlo
Normally, you have to do the following procedure to have nomenclature:
Compile > Make index > Recompile
The principle is the same: when you run a make index, Latex will generate an .nls file. Next time you compile, the nomenclature will appear.
So instead of run a second compile, all you need is create a file name nomen_chap0x then you copy the content in the .nls file into the nomen_chap0x then you put the command : input{nomen_chap0x}. When you compile, the nomenclature will appear in the section.
The important thing is you have to delete the .nls file and comment all of nomenclature in the chapter to avoid the same nomenclature's appearance in the next chapter.
In the second chapter, you have to create another nomenclature, used only for this chapter, and you repeat the procedure above
Her an mwe for what I'm talking about:
documentclass[openany]{book}
usepackage{booktabs}
usepackage{lipsum}
usepackage{setspace}
usepackage{amssymb, amsmath, mathtools} % math formulations
usepackage{siunitx}
usepackage[intoc,noprefix]{nomentbl}
makeatletter % to put nomenclature in the section range of the TOC
defthenomenclature{%
section*{nomname}
if@intocaddcontentsline{toc}{section}{nomname}fi%
nompreamble
list{}{%
labelwidthnom@tempdim
leftmarginlabelwidth
advanceleftmarginlabelsep
itemsepnomitemsep
letmakelabelnomlabel}}
makeatother
makenomenclature
begin{document}
tableofcontents
chapter{blabla1}
section{Example 01}
lipsum[2]
begin{equation}
mathbf{J_i} = - {D_i}left( {nabla} {c_i} + dfrac{{{z_i}F}}{{RT}}{c_i} {nabla} varphi right)
label{eq505}
end{equation}
where $ mathbf{J_i} $ is the ion flux, $ D_i $ is the bulk diffusion coefficient of the ionic species, $ F $ is the Faraday constant, $ R $ is the universal gas constant and $ T $ is the temperature
nomenclature[A]{$ D_{i} $}{Bulk diffusion coefficient of the species}{si{squarem / s}}{}
nomenclature[A]{$ F $}{Faraday constant}{si{coulomb / mole}}{}
nomenclature[A]{$ R $}{ Universal gas constant}{si{J / kelvin mole}}{}
nomenclature[A]{$ T $}{Temperature}{si{kelvin}}{}
nomenclature[A]{$ z $}{Charge number of the ionic species }{}{}
nomenclature[A]{$ J $}{ Flux of the ionic species}{si{mole / m^2 s}}{}
nomenclature[G]{$ varphi $}{Total electric potential}{si{volt}}{}
input{nomen_chap1}
chapter{blabla2}
section{Example 02}
lipsum[1]
The Ohm's law:
begin{equation}
R_{s}= frac{U}{I}
end{equation}
where $ R_s $ is the resistance (si{ohm}), $ U $ is the voltage (si{volt}) and $ I $ is the electric current (si{ampere})
nomenclature[A]{$ R_s $}{Resistance}{si{ohm}}{}
nomenclature[A]{$ U $}{Voltage}{si{volt}}{}
nomenclature[A]{$ I $}{Electric current}{si{ampere}}{}
input{nomen_chap2}
end{document}
Here is the results:
I also put the entire mwe folder fmi:
enter link description here
I can do it "manually" with the other nomenclature package: "nomentbl". You have to configure the tex compiler. I used Texstudio so I add an user command in:
Options > Configure Texstudio > Build > User commands then put these command in
makeindex -s nomentbl.ist -o %.nls %.nlo
Normally, you have to do the following procedure to have nomenclature:
Compile > Make index > Recompile
The principle is the same: when you run a make index, Latex will generate an .nls file. Next time you compile, the nomenclature will appear.
So instead of run a second compile, all you need is create a file name nomen_chap0x then you copy the content in the .nls file into the nomen_chap0x then you put the command : input{nomen_chap0x}. When you compile, the nomenclature will appear in the section.
The important thing is you have to delete the .nls file and comment all of nomenclature in the chapter to avoid the same nomenclature's appearance in the next chapter.
In the second chapter, you have to create another nomenclature, used only for this chapter, and you repeat the procedure above
Her an mwe for what I'm talking about:
documentclass[openany]{book}
usepackage{booktabs}
usepackage{lipsum}
usepackage{setspace}
usepackage{amssymb, amsmath, mathtools} % math formulations
usepackage{siunitx}
usepackage[intoc,noprefix]{nomentbl}
makeatletter % to put nomenclature in the section range of the TOC
defthenomenclature{%
section*{nomname}
if@intocaddcontentsline{toc}{section}{nomname}fi%
nompreamble
list{}{%
labelwidthnom@tempdim
leftmarginlabelwidth
advanceleftmarginlabelsep
itemsepnomitemsep
letmakelabelnomlabel}}
makeatother
makenomenclature
begin{document}
tableofcontents
chapter{blabla1}
section{Example 01}
lipsum[2]
begin{equation}
mathbf{J_i} = - {D_i}left( {nabla} {c_i} + dfrac{{{z_i}F}}{{RT}}{c_i} {nabla} varphi right)
label{eq505}
end{equation}
where $ mathbf{J_i} $ is the ion flux, $ D_i $ is the bulk diffusion coefficient of the ionic species, $ F $ is the Faraday constant, $ R $ is the universal gas constant and $ T $ is the temperature
nomenclature[A]{$ D_{i} $}{Bulk diffusion coefficient of the species}{si{squarem / s}}{}
nomenclature[A]{$ F $}{Faraday constant}{si{coulomb / mole}}{}
nomenclature[A]{$ R $}{ Universal gas constant}{si{J / kelvin mole}}{}
nomenclature[A]{$ T $}{Temperature}{si{kelvin}}{}
nomenclature[A]{$ z $}{Charge number of the ionic species }{}{}
nomenclature[A]{$ J $}{ Flux of the ionic species}{si{mole / m^2 s}}{}
nomenclature[G]{$ varphi $}{Total electric potential}{si{volt}}{}
input{nomen_chap1}
chapter{blabla2}
section{Example 02}
lipsum[1]
The Ohm's law:
begin{equation}
R_{s}= frac{U}{I}
end{equation}
where $ R_s $ is the resistance (si{ohm}), $ U $ is the voltage (si{volt}) and $ I $ is the electric current (si{ampere})
nomenclature[A]{$ R_s $}{Resistance}{si{ohm}}{}
nomenclature[A]{$ U $}{Voltage}{si{volt}}{}
nomenclature[A]{$ I $}{Electric current}{si{ampere}}{}
input{nomen_chap2}
end{document}
Here is the results:
I also put the entire mwe folder fmi:
enter link description here
edited Mar 20 '18 at 17:31
answered Mar 20 '18 at 14:34
NGUYEN Quang HungNGUYEN Quang Hung
11
11
add a comment |
add a comment |
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Dear All, any idea? I appreciate your help
– user56855
Jul 10 '14 at 13:46
Look at tex.stackexchange.com/questions/123824/… and tex.stackexchange.com/questions/121952/… for advices and a possible solutions.
– jotagah
Aug 7 '16 at 14:07