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User manual: correct asciidoc markup for proper alignment of subheadings
Sections 6 and 9.3 of the user manual has some problems with the ascii-doc code for maintaining the prper alignment of subheadings. This patch corrects the asciidoc markup code to solve this problem Signed-off-by: Willem Ferguson <willemferguson@zoology.up.ac.za> Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
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1 changed files with 16 additions and 22 deletions
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@ -1858,17 +1858,17 @@ The HTML dive log contains most of the information and also contains a search
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option to search the dive log. HTML export is specified on the second tab of the
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Export dialog (image *B* above).
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** _General Settings_, under the HTML tab, provides the following options:
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* _General Settings_, under the HTML tab, provides the following options:
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*** Subsurface Numbers: if this option is checked, the dive(s) are exported with the
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** Subsurface Numbers: if this option is checked, the dive(s) are exported with the
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numbers associated with them in Subsurface, Otherwise the dive(s) will be numbered
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starting from 1.
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*** Minimum Javascript: This will minimize the Javascript produced with the file,
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** Minimum Javascript: This will minimize the Javascript produced with the file,
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some functionality will be lost.
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*** Export List only: a list of dives will only be exported and the detailed dive
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** Export List only: a list of dives will only be exported and the detailed dive
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information will not be available.
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** Under _Style Options_ some style-related options are available like font
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* Under _Style Options_ some style-related options are available like font
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size and theme.
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Export to other formats can be achieved through third party facilities, for
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@ -2130,28 +2130,24 @@ planning.
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=== Managing nitrogen, oxygen and gas consumption
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- The planning is performed in three stages:
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The planning is performed in three stages:
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** *a) Nitrogen management*: This is performed by specifying the rates for descent and ascent,
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- *a) Nitrogen management*: This is performed by specifying the rates for descent and ascent,
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as well as the gradient factors (GFLow and GFHigh) under the headings _Rates_ and _Planning_
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to the bottom left of the planning screen. Initially, the GFHigh and GFLow values in the _Preferences_
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panel of _Subsurface_ is used. If these are changed within the planner (see _Gas Options_ within
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the planner), the new values are
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used without changing the original specifications in the _Preferences_.
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Gradient Factor settings strongly affect the calculated ceilings and their depths.
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used without changing the original specifications in the _Preferences_. Gradient Factor settings strongly affect the calculated ceilings and their depths.
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A very low GFLow value brings about decompression stops early on during the dive.
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For more information about Gradient factors, see the section on xref:S_GradientFactors[Gradient Factor Preference settings].
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** For more information about Gradient factors, see the section on xref:S_GradientFactors[Gradient Factor Preference settings].
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For more information external to this manual see:
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** link:http://www.tek-dive.com/portal/upload/M-Values.pdf[Understanding M-values by Erik Baker, _Immersed_ Vol. 3, No. 3.]
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** link:http://www.rebreatherworld.com/general-and-new-to-rebreather-articles/5037-gradient-factors-for-dummies.html[Gradient factors for dummies, by Kevin Watts]
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** link:http://www.amazon.com/Deco-Divers-Decompression-Theory-Physiology/dp/1905492073/ref=sr_1_1?s=books&ie=UTF8&qid=1403932320&sr=1-1&keywords=deco+for+divers[_Deco for Divers_, by Mark Powell (2008). Aquapress] Southend-on-Sea, UK. ISBN 10: 1-905492-07-3.
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*** link:http://www.tek-dive.com/portal/upload/M-Values.pdf[Understanding M-values by Erik Baker, _Immersed_ Vol. 3, No. 3.]
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*** link:http://www.rebreatherworld.com/general-and-new-to-rebreather-articles/5037-gradient-factors-for-dummies.html[Gradient factors for dummies, by Kevin Watts]
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*** link:http://www.amazon.com/Deco-Divers-Decompression-Theory-Physiology/dp/1905492073/ref=sr_1_1?s=books&ie=UTF8&qid=1403932320&sr=1-1&keywords=deco+for+divers[_Deco for Divers_, by Mark Powell (2008). Aquapress] Southend-on-Sea, UK. ISBN 10: 1-905492-07-3.
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An excellent non-technical review.
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** The ascent rate is critical for nitrogen off-gassing at the end of the dive and is specified
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** The ascent rate is critical for nitrogen off-gassing at the end of the dive and is specified
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for several depth ranges, utilising the average (or mean) depth as a yardstick. The mean depth
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of the dive plan is indicated on the dive profile in the green panel of the dive planner. Ascent rates
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at deeper levels are often in the range of 8-12 m/min, while ascent rates near the surface are
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@ -2160,19 +2156,17 @@ is activated, then the descent phase of the planned dive will be at the maximal
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in the _Rates_ section of the dive setup.
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** *b) Oxygen management*: In the *Gas Options* part of the dive specification, the maximum partial
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- *b) Oxygen management*: In the *Gas Options* part of the dive specification, the maximum partial
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pressure for oxygen needs to be specified for the
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bottom part of the dive (_bottom po2_) as well as for the decompression part of the dive (_deco po2_).
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The most commonly
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used values are 1.4 bar for the bottom part of the dive and 1.5 bar for any decompression
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stages. Normally, a partial pressure of 1.5 bar is not exceeded.
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Po2 settings and the depth at which switching to a gas takes place can also be edited in the
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stages. Normally, a partial pressure of 1.5 bar is not exceeded. PO2 settings and the depth at which switching to a gas takes place can also be edited in the
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_Available Gases_ dialog. Normally the planner decides on switching to a new gas when, during
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ascent, the partial pressure of the new gas has decreased to 1.6 bar.
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** *c) Gas management*: One needs keep within the limits of the amount of gas contained in the dive
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- *c) Gas management*: One needs keep within the limits of the amount of gas contained in the dive
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cylinder(s), allowing for an appropriate margin for safe return to the surface, possibly
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sharing with a buddy. Under the _Gas Options_ heading, specify the best (but conservative) estimate
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of your surface-equivalent air consumption (SAC, also termed RMV) in litres/min (or cft/min,
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