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The table below will contain links to course material as it becomes available. as long as the "Under Construction" heading is shown, these materials should be assumed to be incomplete, but you are welcome to read them anyway.
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||<:v style=" font-size:12pt;">'''Session'''||<:v style=" font-size:12pt;">'''Mon'''||<:v style=" font-size:12pt;">'''Tue'''||<:v style=" font-size:12pt;">'''Wed'''||<:v style=" font-size:12pt;">'''Thur'''||<:v style=" font-size:12pt;">'''Fri'''||<style=""> ||<style=""> ||
||<:v style="
font-size:10pt;">'''1'''||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Mathematical principles of<<BR>> metabolic network analysis (CS)||<:: style=" font-size:10pt;">Linear Programming and Flux Balance <<BR>> Analysis of metabolic networks (OE)||||<style=" font-size:10pt;">Modelling photosynthesis<<BR>> in Rice (MP)||<style=""> ||
||<:v style="
font-size:10pt;">'''2'''||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Metabolic nework analysis of <<BR>> eukaryotic photosynthesis (MP)||<:: style=" font-size:10pt;">LP and FBA with Python and<<BR>> ScrumPy (MP)||||<style=" font-size:10pt;">Modelling energy metabolism<<BR>> in ''Salmonella ''(HH)||<style=""> ||
||<:v style="
font-size:10pt;">'''Lunch'''||<:: style=" font-size:10pt;"> ||<style=""> ||<style=""> ||<style=""> ||<style=""> ||<style=""> ||<style=""> ||
||<:v style="
font-size:10pt;">'''3'''||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Mathematical representations <<BR>> of metabolic networks, (DF)||<:: style=" font-size:10pt;">Biotechnological applications of<<BR>> metabolic network analysis (DF)||<:: style=" font-size:10pt;">'''Practical '''- Elementary modes <<BR>> of photosynthesis||||||<style=" font-size:10pt;">'''Practical '''- FBA on small models||
||<:v style=" font-size:10pt;">'''4'''||<:: style=" font-size:10pt;">Complementary skills||<:: style=" font-size:10pt;">Computational representation<<BR>> of metabolic networks. (MP)||<:: style=" font-size:10pt;">'''Practical''' - Python and ScrumPy||<:: style=" font-size:10pt;">'''Practical '''- Elementary modes <<BR>> of photosynthesis (ctd.)||||||<style=" font-size:10pt;">'''Practical''' - FBA on genome-scale <<BR>> models||
=== Notes ===
 1. Please follow [[Meetings/Riga2013/Practicals/ScrumPyVM|these instructions]] to install ScrumPy on your lap-top, before you arrive in Oxford.


 1. There is a certain ammount of lee-way built into the timing of the practicals. Do not be alarmed if you do not complete a given practical by the end of the slot - simply pick up from where you left off in the next one.

 1. Students should work independently as far as possible. Of course, discussion with your colleagues is expected and encouraged, but make sure ''you'' do the work on ''your'' computer.


||<tablewidth="1188px" tableheight="216px"style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Session''' ||<style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Mon''' ||<style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Tue''' ||<style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Wed''' ||<style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Thur''' ||<style="font-size:12pt;                 ;text-align:center;vertical-align:bottom">'''Fri''' ||
||<style="font-size:10pt;                 ;text-align:center;vertical-align:bottom">'''1''' ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">Mathematical principles of metabolic network analysis (CS) ||<style="font-size:10pt;                 ;text-align:center">Linear Programming and Flux Balance Analysis of metabolic networks (OE) ||||<style="font-size:10pt;                 ;text-align:center">Modelling photosynthesis in Rice (MP) ||
||<style="font-size:10pt;                 ;text-align:center;vertical-align:bottom">'''2''' ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">Metabolic nework analysis of eukaryotic photosynthesis (MP) ||<style="font-size:10pt;                 ;text-align:center">EMs, (SSs ?) LP and FBA with Python and ScrumPy  + Q&A (MP) ||||<style="font-size:10pt;                 ;text-align:center">Modelling energy metabolism in ''Salmonella ''(HH) ||
||<style="font-size:10pt;                 ;text-align:center;vertical-align:bottom">'''Lunch''' ||<style="font-size:10pt;                 ;text-align:center">                        || || || || ||
||<style="font-size:10pt;                 ;text-align:center;vertical-align:bottom">'''3''' ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">[[http://mudsharkstatic.brookes.ac.uk/AccliPhot/Workshop1/TueSes3.pdf|Mathematical representations of metabolic networks, (DF)]] ||<style="font-size:10pt;                 ;text-align:center">Biotechnological applications of metabolic network analysis (DF) ||<style="font-size:10pt;                 ;text-align:center">'''Practical '''- Elementary modes             of photosynthesis ||||||<style="font-size:10pt;                 ;text-align:center">'''Practical '''- FBA on small models ||
||<style="font-size:10pt;                 ;text-align:center;vertical-align:bottom">'''4''' ||<style="font-size:10pt;                 ;text-align:center">Complementary skills ||<style="font-size:10pt;                 ;text-align:center">[[http://mudsharkstatic.brookes.ac.uk/AccliPhot/Workshop1/TueSes4.pdf|Computational representation of metabolic networks. (MP)]] ||<style="font-size:10pt;                 ;text-align:center">[[AccliPhot/WorkshopOne/prac1|Practical - Python and ScrumPy]] ||<style="font-size:10pt;                 ;text-align:center">'''Practical '''- Elementary modes of photosynthesis (ctd.) ||||||<style="font-size:10pt;                 ;text-align:center">'''Practical''' - FBA on genome-scale models ||

Under Construction

The table below will contain links to course material as it becomes available. as long as the "Under Construction" heading is shown, these materials should be assumed to be incomplete, but you are welcome to read them anyway.

Notes

  1. Please follow these instructions to install ScrumPy on your lap-top, before you arrive in Oxford.

  2. There is a certain ammount of lee-way built into the timing of the practicals. Do not be alarmed if you do not complete a given practical by the end of the slot - simply pick up from where you left off in the next one.
  3. Students should work independently as far as possible. Of course, discussion with your colleagues is expected and encouraged, but make sure you do the work on your computer.

Session

Mon

Tue

Wed

Thur

Fri

1

Complementary skills

Complementary skills

Mathematical principles of metabolic network analysis (CS)

Linear Programming and Flux Balance Analysis of metabolic networks (OE)

Modelling photosynthesis in Rice (MP)

2

Complementary skills

Complementary skills

Metabolic nework analysis of eukaryotic photosynthesis (MP)

EMs, (SSs ?) LP and FBA with Python and ScrumPy + Q&A (MP)

Modelling energy metabolism in Salmonella (HH)

Lunch

3

Complementary skills

Mathematical representations of metabolic networks, (DF)

Biotechnological applications of metabolic network analysis (DF)

Practical - Elementary modes of photosynthesis

Practical - FBA on small models

4

Complementary skills

Computational representation of metabolic networks. (MP)

Practical - Python and ScrumPy

Practical - Elementary modes of photosynthesis (ctd.)

Practical - FBA on genome-scale models

None: AccliPhot/WorkshopOne (last edited 2013-10-29 12:41:35 by mark)